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strict";A.d(t,"a",(function(){return i}));const i={2021:{12:[{title:"21领域!工业、发电、建筑...氢能应用行业居然这么多! ",outerImg:A("351c"),publishTime:{year:"2021",month:"12",day:"17",time:"19:05"},theme:[{type:"p",text:"谈到对氢能的利用,或许很多人第一印象是氢燃料电池大巴车,因为它已经成为冬奥会交通运输的标配。但事实上除了在汽车领域的应用,人们对氢能的利用方式有很多种是你意想不到的。"},{type:"p",text:"当宇通、吉利、东风等公司的氢燃料电池车在路上竞速行驶的时候,有很多人正骑着永安行的氢能自行车,操控着未来氢能亦或是氢航科技的无人机,拍摄着宝武集团或者河钢集团利用氢能大炼钢铁的场景。"},{type:"p",text:"当人们打开燃气开关,用着中石油掺了氢气的天然气烧了一壶水,准备签收利用氢燃料电池货船送来的外国代购商品的时候……"},{type:"p",text:"你会不知不觉地发现,生活的一切似乎都变得“氢”风徐来!"},{type:"h2",text:"一、交通运输部门"},{type:"p",text:"目前氢能应用场景日渐丰富,在我国氢能应用比例最大的是交通领域,预计到2050年,交通运输领域氢能消耗量在全球氢能消费结构中占比接近40%。交通运输领域不仅氢燃料电池车在汽车领域占据一定空间,氢燃料电池船舶及氢燃料电池飞机也将迅猛发展。"},{type:"h3",text:"01.氢燃料电池车"},{type:"img",text:A("2f51")},{type:"h4",text:"(1)氢燃料电池乘用车"},{type:"p",text:"氢燃料电池汽车是氢能高效利用的最有效途径,当前全球多个国家都在积极布局氢燃料电池汽车产业链。联合国开发计划署驻华代表白雅婷在8日举行的“2021联合国开发计划署氢能产业大会”上说,过去五年里,氢能燃料电池汽车在中国各地城市开展了示范运营,中国氢能燃料电池汽车产量已有近8000辆之多,并已建成100多个加氢站,中国交通领域正走在氢能应用的前沿。"},{type:"h4",text:"(2)氢燃料电池重卡"},{type:"p",text:"在国家“双碳”目标下,我国氢能产业发展正步入快车道,氢燃料电池重卡正成为新的发展趋势,国内外企业都已开始布局。长续航、大载重的重卡领域,被普遍认为是氢燃料电池非常重要的应用场景。"},{type:"img",text:A("1f2e")},{type:"p",text:"今年11月30日上午9时20分,一辆辆氢燃料电池重卡汽车从内江国际会展中心驶出,标志着西部首条氢燃料电池重卡示范线在内江正式运营。当天,四川省和重庆市在成都、九龙坡区和内江三地同时举行“成渝氢走廊”启动暨氢燃料电池物流车首发仪式。"},{type:"h4",text:"(3)氢物流卡车"},{type:"img",text:A("5a4e")},{type:"p",text:'京东物流于2018年6月首次推出氢物流卡车,以弥补其"618"促销活动期间不断增长的运输需求。这些卡车能够在三分钟内补充氢燃料,行程超过350公里。其他电子商务和物流公司也紧随其后,但仅限于区域内运输。'},{type:"h4",text:"(4)自行车"},{type:"img",text:A("a635")},{type:"p",text:"最近,自行车成了氢能应用热点!在攀业在佛山大会上公布获取南海区政府1000辆两轮车订单后,天能股份与雅迪在氢燃料电动自行车方面达成战略合作。9月28日永安行科技股份有限公司研发的氢能自行车正式入驻该公园的未来智谷。作为当前中国共享交通领域的“黑科技”代表,这款氢能自行车受到了现场不少嘉宾和市民的青睐。"},{type:"h4",text:"(5)叉车"},{type:"p",text:"因燃料电池恒功率输出和充氢气时间短的特点,可以显著提高叉车的工作效率,并且具有更长的使用寿命,使其氢能在叉车上的应用也逐渐备受重视。"},{type:"img",text:A("b2aa")},{type:"p",text:"10月8日,在燕山石化氢能叉车场景应用启动仪式上,天津港保税区临港氢能产业示范区企业——天津新氢动力科技有限公司正式交付燕山石化37台氢燃料电池叉车。氢燃料电车叉车将主要用于燕山石化储运厂高压、低压粉料、PIA包装库房及物质装备中心化学品库区等场景,实现对原有内燃机叉车的替换,开启石化行业工业车辆“氢新时代”,更标志着氢燃料电池叉车实现国内首次批量化商业应用。"},{type:"h4",text:"(6)其他"},{type:"p",text:"氢动智能无人运输车、应急救援车、平衡车、观光车等也在被逐步研发,具有续航里程长、加注时间短、动力充足等优点,相信以后也会逐步进入大众的视野。"},{type:"h3",text:"02.铁路(氢能机车)"},{type:"p",text:"随着铁路交通领域的发展,我们国家的高铁已成为一张靓丽的名片,大家见到的高铁列车多为电力机车牵引。然而,除主要干线架设电网使用电力机车外,其他线路多使用内燃机车。在电网遇到电力供应不足时,也使用内燃机车作为主要动力。内燃机车输入能源为柴油,会产生大量二氧化碳、甲烷等温室气体,而氢能机车的出现,将有望改善这种现状。氢燃料电池实际上是将氢气与氧气反应的化学能直接转换成电能的发电装置,是氢能利用环节的核心设备。"},{type:"img",text:A("be2e")},{type:"p",text:"10月29日,全国首台氢燃料电池混合动力机车从国家电投锦州—白音华铁路(简称锦白铁路)大板东站成功驶出,标志着我国轨道交通装备在新能源领域实现由产品开发到实践应用的重大跨越,开创国内氢能机车上线试运行的先例。"},{type:"p",text:"由于没有任何污染物的排放,也不用重新架设取电网,相较传统燃油和电力机车,氢燃料电池混合动力机车在相对密闭的地铁、隧道、矿山等环境下使用优势更加明显,应用和维护成本也更低。"},{type:"h3",text:"03.航空"},{type:"p",text:"航空业的快速增长使其成为未来交通运输领域温室气体排放的主要来源之一,对气候和环境的影响越来越显著。航空业使用氢能源不但可以实现二氧化碳零排放,同时还能有效减少其他污染物的排放量,具有非常明显的优势。"},{type:"p",text:"氢的高能量也引起了飞机制造商的关注。在英国,2020年看到了六座氢乘用飞机的飞行,而空中客车公司公布了全球首款零排放民用飞机的三种概念机型,并计划于2035年投入使用。他们认为氢动力飞机的维护成本要比电池飞机低,因为电池的使用寿命有限。"},{type:"img",text:A("0659")},{type:"p",text:"氢燃料电池在无人机飞行器领域的研发具有开拓性的意义和广阔的应用前景。氢动力无人机产品广泛应用于天然气泄漏检测、海事搜索与巡查、大面积林草防火巡查、大范围地理信息采集、照明无人机的应急搜救等复杂作业类型。"},{type:"p",text:"氢能航空被认为是航空业未来实现污染物零排放和可持续发展的关键。虽然氢能具有绿色环保、能量密度高等优点,但发展氢能航空还需要突破氢燃烧、氢燃料加注和储存等一系列关键技术瓶颈。"},{type:"h3",text:"04.海事行业"},{type:"p",text:"海运业是温室气体主要排放源之一,船舶领域减碳脱碳工作也已是当务之急。近年来,研究清洁、高效、可持续发展的新能源动力推进技术已经成为绿色船舶的重要发展方向,而将零排放的氢燃料电池技术应用于船舶,则被普遍视为一种有效的解决方案。全球范围内,不少国家和企业将推动船舶业的脱碳进程作为实现气候目标的重要手段。"},{type:"p",text:"2021年1月,大连海事大学新能源船舶动力技术研究院牵头建造的中国第一艘燃料电池游艇“蠡湖”号通过试航,标志着我国燃料电池在船舶动力上的实船应用迈出关键一步。"},{type:"img",text:A("6481")},{type:"p",text:"2021年5月,广东省南海区成功举行“仙湖1号”氢能游船下水,该船由广东中氢博创产业发展有限公司研发,也标志着南海区正式跨入氢能船舶时代。"},{type:"p",text:"尽管“氢能上船”呼声渐起,但是氢能船舶的投用仍需克服成本、技术、法规、安全、监管和管理方面存在的各种困难。同时,作为一项新的能源技术,氢能船舶的推广应用还面临许多问题。"},{type:"h2",text:"二、工业领域"},{type:"p",text:"随着国家碳达峰、碳中和“顶层设计”的落地,氢能产业不断获得国家政策的“加持”。其中,氢在多个难以脱碳领域的“不可替代性”正备受关注。近日,工信部印发的《“十四五”工业绿色发展规划》提出,提升清洁能源消费比重,鼓励氢能等替代能源在钢铁、水泥、化工等行业的应用。"},{type:"p",text:"中能建氢能源有限公司董事长李京光表示,传统的冶金、水泥、化工等难以脱碳的领域,正面临着越来越大的压力,一方面,国家的碳达峰、碳中和目标使其减排压力越来越大;另一方面,欧美发达国家设置的绿色能源和绿色产品壁垒,已经影响到这些行业企业的出口和销售,而这类传统工业领域要达到减碳的目的,用氢替代传统化石能源是唯一的选择。"},{type:"h3",text:"01.氢能冶金"},{type:"p",text:"氢能冶金是金属冶炼行业碳减排的一种重要途径,目前的研发应用主要集中在钢铁领域。钢铁是世界上最大的碳排放源之一,炼钢过程中会产生很多的二氧化碳。在全球应对气候变化形势下,主要国家或经济体制定了碳减排目标,钢铁企业纷纷进行减碳技术研究,以应对已经到来的碳减排挑战。"},{type:"p",text:"2019年11月,德国蒂森克虏伯钢铁集团正式注入杜伊斯堡9号高炉;奥地利林茨奥钢联钢厂6MW电解制氢装置投产,开启了氢能冶金时代。中国宝武钢铁、鞍钢、酒钢等均开始可再生能源制氢-氢能冶金立项,探寻循环经济的可行性。"},{type:"h3",text:"02.炼油加氢"},{type:"p",text:"在炼油过程中,需要使用氢气对油品进行加氢裂化、加氢精制等处理出去杂质,提高中间馏分油的精收效率,以获得更多高附加值产品。"},{type:"h3",text:"03.氢化工"},{type:"p",text:"氢能可以促进传统化石能源的转型升级,由燃料向原料彻底转变,杜绝了将煤炭作为原料使用时中间过程排放的二氧化碳,从而实现煤炭作为原料利用过程二氧化碳零排放。"},{type:"p",text:"用绿氢耦合煤化工产业,可实现压煤减碳、节能降耗的目标。用于合成氨、甲醇,合成甲烷等工业原料和燃料。"},{type:"h3",text:"04.水泥煅烧"},{type:"p",text:"水泥是世界上使用最广泛的制造材料,但水泥厂通常都规模小、分散且资金不足,要敦促它们为人类的福祉服务十分困难。在印度和非洲等地,水泥(与水和骨料混合以生产混凝土)的需求势必飙升。这意味着还将生成巨量二氧化碳。氢能作为燃料,替代化石能源,实现二氧化碳减排,可以用于水泥煅烧。"},{type:"h3",text:"05.陶瓷产业"},{type:"p",text:"建陶产业一直都是能源消耗大户,加快能源结构调整是转型升级中的重要一环。在“双碳”的战略目标之下,氢能无疑为陶企的脱碳之路开辟了一条新道路。"},{type:"p",text:"目前,包括蒙娜丽莎、科达、萨克米、SITIB&T、Porcelanosa(宝路莎)等国内外多家头部陶企已启用氢能的相关应用和研发,国内几大窑炉公司也将氢能等非化石燃料作为窑炉能源替代的研究方向。"},{type:"h3",text:"06.天然气掺氢"},{type:"p",text:"将风/光能转化的部分电能用于电解水制氢,并将氢气以一定比例掺入天然气,形成掺氢天然气,再利用新建管网或在役天然气管网输送至用户终端、加气站和储气库等,可起到储能和电力负荷削峰填谷的作用,同时避免了新建输氢管道所需的高昂建造成本。"},{type:"p",text:"当前,在一些重点工业领域,氢能应用已存在一定基础。据李庆勋介绍,2020年,中国钢研科技集团有限公司、河钢集团等企业已启动氢冶金项目。今年,宝丰能源宁东化工基地太阳能电解水制氢正式投产,氢气产能达2万标方/小时;中国石油玉门油田清洁能源制氢纳入甘肃省“十四五”规划,并被确立为该省氢能源产业链链主企业。"},{type:"p",text:"“一系列利好政策的密集发布,将对氢能产业可持续高质量发展发挥引领作用。”中国石油天然气股份有限公司石油化工研究院氢能研究所副所长李庆勋表示,未来,氢能在工业领域推广应用将持续加快,其中,冶金、水泥、化工、建筑和发电等行业将成为产业发展的“突破口”。"},{type:"h2",text:"三、电力"},{type:"p",text:"在技术、成本、政策等推动下,氢能作为电力介质和纽带成为可能,在高渗透率可再生能源电力系统中扮演着越来越重要的角色。氢能可以通过一定的途径转化为电能,氢能燃料也正逐步应用于发电机和燃料电池。"},{type:"p",text:"通过氢能发电机和燃料电池两种技术手段,均可以实现由氢能向电能的转化。"},{type:"h3",text:"01.氢能发电机"},{type:"p",text:"氢能发电机特指以氢气为原料的发电机,原理类似传统内燃机,经过吸气、压缩、爆炸、排气过程,带动电机产生电流输出。氢能发电机是一种环保型的发电设备,具有无噪音、零排放和移动性强的特点。"},{type:"h3",text:"02.PEMFC燃料电池"},{type:"p",text:"PEMFC燃料电池是当前在氢能应用领域的研发重点之一。其工作原理为氢气与氧气(或空气)发生电化学反应生成水并释放出电能,即电解水的逆反应。PEMFC燃料电池的结构与工作原理如下图,当阳极和阴极分别供给氢气和氧气(或空气)时,在催化剂的作用下,氢气在阳极上被氧化离解成电子和氢原子。氧气在阳极上被还原接受电子反应生成水。与此同时,电子在外电路的连接下形成电流,向外部释放电能。"},{type:"img",text:A("0b91")},{type:"h3",text:"03.热电"},{type:"p",text:"分布式燃料电池发电站可作为主电网的补充。2016年,AkzoNobel、MTSA和NedStack在辽宁省营口市交付了一座容量为2兆瓦的氢燃料电池电站,年发电量为16兆瓦时。紧急备用电池也被应用于电信行业,其容量和规模相对较小。"},{type:"p",text:"氢能发电可以用来解决电网削峰填谷、新能源稳定并网问题,还可以提高可再生能源所发电力并网的稳定性和电力系统安全性、灵活性,大幅降低碳排放。目前,通过氢能发电在部分发达国家已经陆续进入了建设试点的阶段。但对中国电力行业而言,目前仍以火力发电为主,氢能技术的应用较少。"},{type:"h2",text:"四、建筑热电联供"},{type:"p",text:"氢能应用场景多点开花,成长空间广阔。建筑领域氢能作为清洁能源解决建筑用能,氢能为建筑发电的同时,产生余热用于供暖、洗浴热水。"},{type:"p",text:"在住宅建筑领域,75%的传统能源用于空间供暖、热水和烹饪。氢可与天然气混合(氢气掺混比例为0~20%),通过基于燃气轮机或燃料电池的CHP技术,利用现有建筑和能源网络基础设施提供灵活性和连续性的热能、电力供应,从而取代化石燃料CHP。"},{type:"p",text:"2021年7月22日,由上海国际汽车城、同济大学联合打造的全球首个离网氢能应用展示馆(以下简称“展示馆”)在上海国际汽车城落地。展示馆集成了多项领先的氢能技术和产品,填补了国内氢能源应用在建筑领域的空白。"},{type:"p",text:"上海国际汽车城(集团)有限公司党委委员、工会主席管清平在致辞中表示,汽车城高度关注氢能产业和燃料电池产业发展,积极响应国家发展可再生能源战略部署,将氢能的应用终端从交通领域扩展到建筑领域,推动能源结构转型调整,用更清洁、更高效的绿色能源支撑社会经济高质量发展。"},{type:"h2",text:"五、氢储能"},{type:"p",text:"继氢能汽车后,被称为储能领域“后浪”的“氢储能”又成为最新的新能源热词。氢储能将会在储能领域占据一席之地。"},{type:"img",text:A("4162")},{type:"p",text:"目前在储能领域,抽水蓄能系统占据绝对主导,电化学储能、氢能储能、飞轮储能等新的储能技术也在不断发展。氢能能量密度高,运行维护成本低,可同时适用于极短或极长时间供电的能量储备,是少有的能够储存上百GWh以上的储能形式,被认为是极具潜力的新型大规模储能技术。相对而言,电池只是一个短周期、高频率、分布式的储能装置。"},{type:"p",text:"在碳中和战略大背景下,氢能的应用进一步延伸,从交通运输到工业部门,再到建筑、电力等领域,行业空间大幅打开,战略重要性显著提升,行业内发展动力也将随之打开。"},{type:"h2",text:"六、氢医疗"},{type:"p",text:"实际上氢能在医疗领域也有应用。对此,国内著名呼吸病学者钟南山院士指出:“长期在室外作业的交警,环卫工人,通过氢气吸入能够对雾霾清除氧化自由基的清除有促进作用,即使吸入污染空气也会产生氧化应激作用,目前正在进行试验。”"},{type:"p",text:"“由于氢气的独特性质,使得氢气在肺部疾病治疗中潜在的积极作用备受关注,用氢气治疗疾病的研究在国际上已经逐渐成为一个热点,氢气选择性抗氧化是目前公认的氢气治疗疾病的主要机制,可以说,中国在氢分子医学研究领域发展前景广阔。"},{type:"p",text:"上述氢能终端应用到底有哪些主流企业在做?氢能汇(h2-2005)记者盘点了一些氢能应用端的企业,以飨读者。"},{type:"img",text:A("31c0")},{type:"p",text:"尽管如此,但当前氢能应用规模还十分有限是业内共识。以目前氢能的主要应用场景氢燃料电池汽车为例,相关统计显示,虽然我国燃料电池公司已有2000多家,但氢燃料电池汽车却仅有6000多辆。规模过小严重制约氢能产业发展。"},{type:"p",text:"对此,国家电投集团氢能科技发展有限公司总经理张银广认为,经过近几年的发展,我国在氢能技术上形成了一定积累,在自主技术上具备了一定基础。但缺乏应用场景、应用规模,导致我国氢能技术不能快速升级成熟、改进迭代,这是当前氢能产业面临的主要瓶颈。氢能产业只靠政府买单很难做大,需要创新商业化运营模式,让氢能产业可以规模化发展,把资本引进来、成本降下去。"},{type:"p",text:"“十四五”初年,在“双碳目标”背景下,为助力能源转型,促进企业创新、产业变革与社会可持续发展,国际能源网凭借16年蓄积之力,继续构筑产业重磅年度盛会。"},{type:"p",text:"“2021第六届中国光伏产业论坛”将在12月2-3日(延期)北京举办。论坛以“能源转型光伏先行”为主题,将深入解读新时代能源高质量发展形势与政策,探讨新型电力系统下光储充一体化的发展机遇,宣扬业内新技术、新产品与创新理念,探索光伏产业发展新目标,并对光伏产业各先进企业进行表彰,凝心聚力为实现碳达峰、碳中和献计献策!"},{type:"end",text:"来源于 国际能源网/氢能汇"}]},{title:"储氢方法已超10种!哪种更有优势?",outerImg:A("5e3a"),publishTime:{year:"2021",month:"12",day:"27",time:"19:40"},theme:[{type:"p",text:"作为氢气从生产到利用过程中的桥梁,储氢技术贯穿产业链氢能端至燃料电池端,是控制氢气成本的重要环节。"},{type:"p",text:" 氢气的储存方式是人们非常关心的问题。氢气能量密度高,是汽油的3倍;重量轻,11.2立方米的氢气重量只有1公斤; 因为密度远远小于空气,所以非常容易散失;而且它还容易和很多物质发生化学反应,因此其在存储方面面临很多挑战。"},{type:"p",text:"目前常用的储氢技术主要包括物理储氢、化学储氢与其它储氢。不同的储氢方式应用场景不同,通常所说,物理储氢技术成熟,化学储氢更有前瞻性。从细分领域看,已经有11中储氢方式在不同的应用领域已经或者将要使用。目前技术上并不能说哪种技术是具备独占性优势的,很多技术在实验室和量产方面会存在较大差异,因此一些前沿技术需要经过时间和市场的双重考验。"},{type:"h2",text:"一、物理储氢:技术最为成熟"},{type:"p",text:"物理储氢技术是指单纯地通过改变储氢条件提高氢气密度,以实现储氢的技术。该技术为纯物理过程,无需储氢介质,成本较低,且易放氢,氢气浓度较高。主要分为高压气态储氢与低温液化储氢。"},{type:"h3",text:"1、高压气态储氢:发展最成熟、最常用的储氢技术"},{type:"p",text:"高压气态储氢技术是指在高压下,将氢气压缩,以高密度气态形式储存,具有成本较低、能耗低、易脱氢、工作条件较宽等特点,这是发展最成熟、最常用的储氢技术。但是它储量小、耗能大,需要耐压容器,存在氢气泄露与容器爆破等不安全因素。"},{type:"p",text:"sssss该技术的储氢密度受压力影响较大,压力又受储罐材质限制。因此,目前研究热点在于储罐材质的改进。ZUTTEL等发现氢气质量密度随压力增加而增加,在30~40MPa时,增加较快,当压力大于70 MPa时,变化很小。因此,储罐工作压力须在35~70MPa。故寻找轻质、耐高压的储氢罐成为了高压气态储氢的关键。"},{type:"p",text:"目前,高压气态储氢容器主要分为纯钢制金属瓶(I型),钢制内胆纤维环向缠绕瓶(II型),铝内胆纤维全缠绕瓶(III型)及塑料内胆纤维缠绕瓶(IV型)4个类型。其中III型瓶和IV型瓶具有重容比小、单位质量储氢密度高等优点,已广泛应用于氢燃料电池汽车。高压储氢瓶的工作压力一般为35~70兆帕,国内车载高压储氢系统主要采用35兆帕型III瓶,国外以70兆帕IV型瓶为主。"},{type:"img",text:A("38ca")},{type:"small",text:"Ⅰ型(左)Ⅱ型(右)"},{type:"img",text:A("9f4f")},{type:"small",text:"Ⅲ型(左)Ⅳ型(右)"},{type:"p",text:"未来高压气态储氢如何达到轻量化、高压化、质量稳定、成本低的目标,还需不断探索。"},{type:"h3",text:"2、低温液态储氢:或将在未来与高压气态储氢互补共存发展"},{type:"p",text:"低温液态储氢技术是利用氢气在高压、低温条件下液化,体积密度为气态时的845倍的特点,实现高效储氢,其输送效率高于气态氢。"},{type:"img",text:A("aefd")},{type:"small",text:"液氢储罐和储存系统结构图示"},{type:"p",text:"然而,为了保证低温、高压条件,不仅对储罐材质有要求,而且需要有配套的严格的绝热方案与冷却设备。因此,低温液化液态储氢的储罐容积一般较小,氢气质量密度为10%左右。目前,低温液态储氢技术还须解决以下几个问题:"},{type:"h3",text:"1、为了提高保温效率,须增加保温层或保温设备,如何克服保温与储氢密度之间的矛盾。"},{type:"h3",text:"2、如何减少储氢过程中,由于氢气气化所造成的1%左右的损失。"},{type:"h3",text:"3、如何降低保温过程所耗费的相当于液氢质量能量30%的能量。"},{type:"p",text:"低温液态储氢技术主要应用于军事与航天领域,商业化研究与应用才刚刚开始,然而由于在大规模、长距离储运方面的优势,随着我国三项液氢国标正式实施以及储氢技术的不断进步与降本,低温液态储氢或将在未来与高压气态储氢互补共存发展。"},{type:"h2",text:"二、化学储氢:未来前沿技术"},{type:"p",text:"化学储氢技术是利用储氢介质在一定条件下能与氢气反应生成稳定化合物,再通过改变条件实现放氢的技术,主要包括有机液体储氢、液氨储氢、配位氢化物储氢、无机物储氢与甲醇储氢。"},{type:"h3",text:"1、有机液体储氢:在安全性、储氢密度、储运效率上极具优势"},{type:"p",text:"有机液体储氢技术基于不饱和液体有机物在催化剂作用下进行加氢反应,生成稳定化合物,当需要氢气时再进行脱氢反应。常用的不饱和液体有机物及其性能如表所示。"},{type:"img",text:A("cce6")},{type:"p",text:"与常见的高压气态储氢、低温液态储氢相比,有机液态液体储氢具有以下特点:(1)反应过程可逆,储氢密度高;(2)氢载体储运安全方便,适合长距离运输;(3)可利用先有汽油输送管道、加油站等基础设施。"},{type:"p",text:"液体有机储氢技术目前处于从实验室向工业化生产过度阶段。液态有机物储氢未来能否成为氢气运输主流方式,取决于:(1)技术迭代速度能否快于其他储氢手段;(2)工业化和市场化速度能否快于低温液态储氢成本降低速度。"},{type:"h2",text:"2、液氨储氢:在长距离氢能储运中有一定优势"},{type:"p",text:"氢与氮气在催化剂作用下合成液氨,以液氨形式储运。液氨在常压、约400℃下分解放氢。利用途径如图所示:"},{type:"img",text:A("fb41")},{type:"p",text:"相比于低温液态储氢技术要求的极低氢液化温度-253℃,氨在一个大气压下的液化温度-33℃高得多,“氢-氨-氢”方式耗能、实现难度及运输难度相对更低。同时,液氨储氢中体积储氢密度比液氢高1.7倍,更远高于长管拖车式气态储氢技术。该技术在长距离氢能储运中有一定优势。然而,液氨储氢的也具有较多劣势。液氨具有较强腐蚀性与毒性,储运过程中对设备、人体、环境均有潜在危害风险;合成氨工艺在我国较为成熟,但过程转换中存在一定比例损耗;合成氨与氨分解的设备与终端产业设备仍有待集成。"},{type:"h3",text:"3、甲醇储氢能量密度高"},{type:"p",text:"绿色甲醇能量密度高,是理想的液体能源储运方式。利用可再生能源发电制取绿氢,再和二氧化碳结合生成方便储运的绿色甲醇,是通向零碳排放的重要路径。”甲醇储氢技术是指将一氧化碳与氢气在一定条件下反应生成液体甲醇,作为氢能的载体进行利用。在河北张家口已建成一个小型的撬装示范站,就是利用甲醇在站内制氢,再给燃料电池车加氢用。"},{type:"h3",text:"4、配位氢化物储氢安全性好"},{type:"p",text:"化学储氢因其在存储密度、能效及安全度性等方面颇具技术优势而备受关注,具有较高重量储氢密度的配位氰化物是当前化学储氢材料研究中的热点之一。配位氢化物储氢利用碱金属与氢气反应生成离子型氢化物,在一定条件下,分解出氢气。下表为常见的配位氢化物的储氢性质。"},{type:"img",text:A("3be0")},{type:"p",text:"目前,作为一种极具前景的储氢材料,研究人员还在努力探索改善其低温放氢性能的方法。同时,也在针对这类材料的回收、循环、再利用做进一步深入研究。"},{type:"h3",text:"5、无机物化合物储氢成本高"},{type:"p",text:"无机物储氢材料基于碳酸氢盐与甲酸盐之间相互转化,实现储氢、放氢。反应一般以Pd或PdO作为催化剂,吸湿性强的活性炭作载体,因为Pd这种金属钯也是价格昂贵,数量稀少的存在,其价格甚至不比铂金要低多少。因此这种材料储氢的成本是相当贵的。作储氢材料时,氢气质量密度可达2%。该方法便于大量的储存和运输,安全性好,但储氢量和可逆性都不是很理想。"},{type:"h2",text:"三、其他储氢小众化"},{type:"h3",text:"1、吸附储氢"},{type:"p",text:"吸附材料主要包括金属合金、碳质材料、金属框架物等。"},{type:"h4",text:"(1)金属合金:合金材料突破,引发储氢技术变革"},{type:"p",text:"储氢合金一般由两部分组成,一部分为吸氢元素或与氢有很强亲和力的元素,它控制着储氢量的多少,是组成储氢合金的关键元素,主要包括钛、镁等;另一部分是吸氢量小或根本不吸氢的元素,常见的有铁、镍等。"},{type:"p",text:"对于金属合金储氢技术来说,储氢量范围为1-8wt.%,优点是具有较高的安全性、稳定性和可操作性。缺点是储氢性能差,易于粉化,输运不方便。"},{type:"img",text:A("467e")},{type:"img",text:A("1c2e")},{type:"small",text:"常用金属合金储氢材料特点和应用范围"},{type:"h4",text:"(2)碳质材料储氢:纳米碳材料作为储氢介质有巨大潜力"},{type:"p",text:"碳质材料由于吸附能力强,在一定条件下也可进行储氢。下表为常见碳质材料的储氢性质。"},{type:"img",text:A("bf95")},{type:"p",text:"纳米材料具有极高的比表面积以及孔隙率,有效地增加了氢气的物理吸附位。但是这类材料难以通过系统的设计来控制其结构形貌,如比表面积、孔隙率、微孔体积以及微孔形状,并且难以大量制备,成本高,目前还处于实验室研究阶段。尽管很多工作还未展开,但纳米碳材料极高的储氢量已经充分显示了其作为储氢介质的优越性及巨大的潜力。"},{type:"p",text:"碳质材料作为储氢介质亟待解决的问题以及发展方向:加强碳质储氢材料吸放氢机理以及催化机理的研究,为实验研究工作提供理论指导;改进材料的制备工艺、后处理方法以及测试手段,使之标准化和可控化;寻找储氢量大、成本低的碳材料,发展大规模连续制备技术,降低碳质材料储氢成本。"},{type:"h4",text:"(3)金属有机框架物储氢"},{type:"p",text:"金属有机框架是一种设计材料,由金属离子与有机分子耦合而成,具多孔特性、结构高度可调、高表面积、良好的气体吸附性等特点。是最有前景的储氢方式之一。"},{type:"p",text:"MOF材料储氢的难点在于设计桥接的配体、表面官能团和金属离子的选择,进而形成储氢框架结构。未来MOF材料的稳定性、成本及大规模生产的产业化的储氢研究,将极大的改善H2的储存和使用问题。"},{type:"h2",text:"2、水合物法储氢"},{type:"p",text:"氢气在低温、高压条件下,生成固体水合物。水合物在常温、常压下即可分解,脱氢速度快、能耗低,其储存介质仅为水,具有成本低、安全性高等特点。"},{type:"img",text:A("4549")},{type:"small",text:"不同储氢技术对比"},{type:"p",text:"当前高压气态储氢是主流,但是因为安全性其发展一直受到限制,且储氢密度较低,不适合大规模长距离运输;"},{type:"p",text:"低温液态储氢由于高成本、储运难度大,在国内的发展面临重重困难;"},{type:"p",text:"液态有机储氢技术在安全性、储氢密度、储运效率上极具优势,在我国70MPa高压储氢和低温液态储氢均发展滞后的前提下,有望成为未来我国氢气储运的主要方式之一。"},{type:"p",text:"作为储氢材料的氢化物,与高压氢气相比,氢化物具有在低压下以高密度储存氢的优点。"},{type:"p",text:"中南大学教授唐有根认为,目前要使氢能得到广泛应用,需要开发高效、便捷的储氢技术。"},{type:"h4",text:"一是开发轻质、耐压、高储氢密度的新型储罐;"},{type:"h4",text:"二是完善化学储氢技术中相关储氢机理,寻找高储氢密度、高放氢效率、高氢气浓度的方法;"},{type:"h4",text:"三是提高储氢技术的效率,降低储氢成本,提高安全性;"},{type:"h4",text:"四是开发复合储氢技术,两种或多种储氢技术协同使用,提高复合储氢技术的效率。"},{type:"end",text:"来源于 国际能源网/氢能汇"}]}]},2022:{1:[{title:"氢能:产业化之路还要走多远?",outerImg:A("2745"),publishTime:{year:"2022",month:"01",day:"13",time:"14:26"},theme:[{type:"p",text:"近日,国内首座站内氢气检测实验室——中国石化西湾子氢气检测实验室在河北崇礼正式投运。该实验室能完成燃料电池氢气的13项典型指标检测,将为保障北京冬奥会氢能质量安全可靠提供有力技术支撑,助力“绿色冬奥”。"},{type:"img",text:A("a2d6")},{type:"p",text:"随着氢能产业在世界发展热度进一步提升,氢能的利用情况已经开始成为国与国之间竞技未来能源技术的展示窗口。即将开幕的2022年北京冬奥会上,中国对氢能的推广和利用提前做好了布局——境内接力火炬全部应用氢燃料,在开幕式上使用氢燃料点燃北京冬奥赛场的主火炬,大量使用氢燃料电池车,以减少污染物排放。"},{type:"p",text:"氢能为何受到青睐?氢能对于低碳发展有何作用?记者采访了清华大学清华三峡气候与低碳中心、核能与新能源技术研究院副研究员欧训民。"},{type:"p",text:"北京冬奥会氢能的大规模使用体现“绿色办奥”理念,展现了我国加强绿色低碳技术研发和示范、实现“双碳”目标的决心和勇气"},{type:"h4",text:"记者:2022年北京冬奥会将采用氢燃料火炬,还将大规模采用氢燃料电池汽车。在北京冬奥会上大规模应用氢能,对氢能的发展有什么意义?"},{type:"p",text:"欧训民:从申办到筹办,北京冬奥会始终坚持绿色、低碳、可持续原则,“绿色办奥”的理念贯穿于方方面面。"},{type:"p",text:"2019年6月,北京冬奥组委发布的《北京2022年冬奥会和冬残奥会低碳管理工作方案》提出,以低碳能源、低碳场馆、低碳交通、低碳标准为主要目标,采取碳减排和碳中和措施,实现北京冬奥会低碳目标。其中,在“低碳交通”这一部分,《方案》强调,用于赛事服务的客运车辆基本使用新能源,在各赛区推广新能源汽车,积极推动符合相关车型目录氢燃料车辆的示范应用,同时建设配套的充电桩、加氢站等,满足赛区电动汽车、氢能源汽车运行需求。"},{type:"p",text:"为了在确保安全的前提下,最大限度应用节能与清洁能源车辆,北京冬奥组委制定了“北京赛区内,主要使用纯电动、天然气车辆;延庆和张家口赛区内,主要使用氢燃料车辆”的配置原则。我们了解到,北京冬奥会将示范运营1000多辆氢燃料电池车,30多个加氢站。其中,延庆赛区和张家口赛区将有700余辆氢燃料大巴车投入使用,至少30辆氢燃料电池客车负责赛时观众及工作人员的运输。"},{type:"p",text:"此次北京冬奥会大规模使用氢燃料电池公交车及氢能火炬,体现国家扩大氢能应用场景的发展趋势。在冬奥会上使用氢能,既可以减少交通等活动中的碳排放,协助实现绿色低碳奥运,也为氢能技术示范运行提供了大型平台,验证技术的同时也进行了公众推广。此外,这也展现了我国加强绿色低碳技术研发和示范、实现“双碳”目标的决心和勇气,并搭建起氢能相关的自主知识产权技术和产业发展的大舞台。借助北京冬奥的机遇,氢能将有望被更多的民众了解和认可,中国的氢能产业也有望进入高速发展的快车道。"},{type:"p",text:"记者:北京冬奥会将大规模采用氢燃料电池汽车,氢燃料电池汽车的工作原理是怎样的?与传统汽车及市面上电动汽车相比,氢燃料电池汽车有何优势?"},{type:"p",text:"欧训民:氢燃料电池汽车是氢能较为常见的终端应用。近年来,随着氢能产业的不断发展,氢燃料电池汽车受到了广泛重视。"},{type:"p",text:"氢燃料电池汽车和燃油车的结构较为相似,只是把燃油车的油箱换为储氢罐,把燃油车的内燃机换为燃料电池动力系统。氢燃料电池汽车与普通燃油车的区别,主要在于动力系统。普通燃油车通常注入柴油或汽油,通过燃烧释放化学能,以转化为汽车的动能。氢燃料电池汽车中,氢燃料电池的工作原理是在氢与氧结合生成水的同时,将化学能转化为电能。"},{type:"p",text:"具体说来,氢燃料电池由阳极、阴极和电解质组成。氢气进入燃料电池的阳极,在催化剂的作用下分解为氢离子和电子。随后,氢气穿过质子交换膜到达阴极,在催化剂的作用下与氧气结合成水,电子则通过外部电路向阴极移动,形成电流,电能通过电动机转化为机械能,驱动车辆行驶。"},{type:"p",text:"和传统汽车相比,氢燃料电池汽车在运行过程中没有废气排放,只会排放水,因此不会污染环境。和电动汽车相比,氢燃料电池汽车的主要优势有三点:第一,补充能量快。氢燃料电池汽车加注氢气的过程持续时间短,就像加油一样,只需3到5分钟就能充满长途行驶所需的氢气。第二,续航更长。氢燃料电池储能密度高且重量轻,具有更长的续航里程,通常会超过500公里,甚至达到700公里以上。第三,氢燃料电池汽车更适合在寒冷气候条件下行驶。"},{type:"p",text:"氢能作为清洁、高效、可持续的二次能源,在全球能源转型方面被寄予厚望,但在制备、储存和运输方面还存在瓶颈。"},{type:"h4",text:"记者:氢能在全球能源转型的过程中扮演了什么样的角色,有哪些主要的应用场景?目前,制约氢能发展的主要瓶颈是什么?"},{type:"p",text:"欧训民:随着应对气候变化、实现“碳中和”的呼声日益高涨,氢能在全球能源转型方面被寄予厚望。作为一种清洁、高效、可持续的二次能源,氢能是构建未来以可再生能源为主的多元能源结构的重要载体,其开发和利用技术也成为了新一轮世界能源技术变革的重要方向。 "},{type:"p",text:"氢是地球的重要组成元素,也是宇宙中最常见的物质。氢的来源多样,不仅可以通过煤炭、石油、天然气等化石能源重整、生物质热裂解或微生物发酵等途径制取,还可以来自焦化、氯碱、钢铁、冶金等工业副产气,也可以利用电解水制取,特别是与可再生能源发电结合,不仅实现全生命周期绿色清洁,更拓展了可再生能源的利用方式。"},{type:"p",text:"氢具有燃烧热值高的特点,约是同质量汽油的3倍,酒精的3.9倍,焦炭的4.5倍。通过燃料电池可实现综合转化效率90%以上,具有很高的经济性。此外,氢燃烧的产物只有水,没有污染物及碳排放,是世界上最干净的能源,能够有效缓解温室效应和环境污染。"},{type:"p",text:"氢能之所以备受青睐,还在于氢气可作为储能载体,弥补可再生能源波动性、间歇性等短板,可以促进可再生能源的大规模发展。此外,氢能既可实现电力和氢气之间的灵活转化,又能搭建“桥梁”实现电、热、冷乃至固体、气体、液体燃料的互联互通,构建更加清洁高效的能源体系。"},{type:"p",text:"形式多样的氢能有着多元的应用场景,大规模应用正从汽车交通领域逐步拓展至其他交通、工业和建筑领域。氢能除了可以用在燃料电池汽车、轨道交通和船舶交通等领域,还可应用于分布式发电,可为家庭住宅、商业建筑供电供暖;氢能还可以直接为石化、钢铁、冶金等化工行业提供高效原料、还原剂和高品质热源。"},{type:"p",text:"不过,氢能也不是“尽善尽美”的。氢能在制备、储存和运输方面还存在一些技术和成本方面的障碍。首先,当前全球氢气年产量约为7000万吨,其中通过化石能源制取、在生产过程中排放二氧化碳的氢气(灰氢)占比约95%,而制取过程中不排放二氧化碳的绿氢所占比例则较低。究其原因,是由于绿氢制备的主要装备——电解槽的生产技术要求高、制造成本高。目前,全球电解制氢仍处于初始阶段,远未达到规模化。"},{type:"p",text:"此外,氢气还存在易挥发、易燃的特点,在运输方面还存在“氢脆”现象,存在对输配管道和容器产生破坏的潜在风险。这也对氢能设备的安全性提出了更高的要求。如何实现安全、高效、经济的氢气储存,还有很大的努力空间。"},{type:"h4",text:"记者:当前,世界氢能技术与产业发展趋势是怎样的?我国氢能的开发与利用情况又如何?"},{type:"p",text:" 欧训民:近年来,世界各国正以前所未有的速度推进氢能产业发展,不少国家都已认识到氢能在未来能源系统乃至社会系统中的地位和作用,竞相开始抢占产业链各个环节的技术制高点。仅2020年,就有欧盟、德国、西班牙、加拿大等11个国家或区域发布氢能发展战略。截至2020年底,占全球GDP总量52%的27个国家中,有16个已制定全面的国家氢能战略,还有11个国家正在制定国家氢能战略。氢能应用场景日渐丰富,交通领域应用规模稳步提升,工业、建筑等领域应用方兴未艾。"},{type:"p",text:"我国提出实现“碳中和”目标,对绿色低碳发展提出了更高要求,也为氢能产业的快速发展提供广阔空间。2019年,氢能源首次写入政府工作报告,明确将推动加氢等设施建设;2021年10月发布的《关于完整准确全面贯彻新发展理念做好碳达峰碳中和工作的意见》提出,统筹推进氢能“制储输用”全链条发展;推动加氢站建设;加强氢能生产、储存、应用关键技术研发、示范和规模化应用。"},{type:"p",text:"根据《中国氢能源及燃料电池产业白皮书2020》,当前我国氢气产能约每年4100万吨,产量约3342万吨,是世界第一产氢国。截至2020年底,我国建成加氢站128座,氢燃料电池汽车累计保有量达7000多辆。中国氢能联盟预计到2050年,氢能在中国终端能源体系中占比超过10%,产业链年产值达到12万亿元。"},{type:"p",text:"随着氢能产业受到国家相关部门及地方政府的高度重视,产业政策及标准、法规体系逐步完善,技术创新成效显著,基础设施建设以及车辆推广初具规模。不过,我国氢能产业发展仍存在制约瓶颈。例如,电解水技术路线方面,仍存在不少短板和“卡脖子”现象,部分关键材料及核心零部件严重依赖进口的局面还没有得到根本改观。另外,氢能发展在地区间的差异十分明显,部分地区发展氢能的产业基础相对薄弱,却存在氢能项目一哄而上、仓促上马的情况。"},{type:"p",text:"要客观清醒认识氢能的角色与氢能产业发展面临的困难与挑战,理性推进中国氢能产业高质量发展。"},{type:"h4",text:"记者:目前也有声音指出,氢能虽有较大潜力,但热潮之中仍有不少需要冷静思考和解决的问题。您认为“氢能热潮”中有哪些问题需要审慎对待?"},{type:"p",text:"欧训民:我非常认同“氢能热”中的冷思考的提法。事实上,从全球来看,“氢能热”已经发生过2、3次了。在数次热潮的发展中,随着油价回落、应对气候变化政策的不确定性以及基础设施建设等问题,热潮并没有转化成持续的投资,且未形成大的产业规模。目前,全球氢能产业仍处于商业化早期,尚未形成成熟、固定的盈利模式,主要受政策推动,需要依靠各国政府大规模补贴才能发展。"},{type:"p",text:"本次“氢能热”既有近十年技术发展进步的推动,也有低碳发展目标的需求拉动。但是热潮能否转变成长久持续、逐步前进的发展趋势,还需要多方面助力。比如氢能制储运用各环节技术的突破,以及在个别场合真正实现大规模的应用,带动基础设施的建设和氢能生产成本的下降。对国内的氢能技术和产业基础而言,与先进国家相比尚有差距,既需要立足于自身资源禀赋,通过自主科研、合作开发进行发展,同时也要注重制定和完善标准、专利等知识产权标准,推进氢能开发利用。"},{type:"p",text:"值得指出的是,不少相关技术的进步和突破需要进行高强度、长时间的资源和成本的投入,不要过于乐观,更不要幻想能一蹴而就,在几年之内就建立起氢能社会。作为二次能源,氢能利用的确具有其独特的优势,也具有较大的潜力,但我们需要更加客观和清醒地认识氢能的角色,以及氢能产业发展面临的困难与挑战,理性推进,以期实现中国氢能产业的高质量发展。"},{type:"h4",text:"记者:在“双碳”背景下,氢能的未来发展走向如何?对于促进我国氢能产业持续健康发展,您有哪些建议?"},{type:"p",text:"欧训民:二氧化碳排放力争于2030年前达到峰值,努力争取2060年前实现碳中和,这是中国对国际社会的承诺。这意味着我国在持续为减缓气候变化影响作贡献的基础上,按下了减碳的加速键,并将采取更加有力的政策和措施。"},{type:"p",text:"2021年四季度以来,关于“碳达峰、碳中和”的政策和措施纷纷出台,引发全社会关注。2021年10月24日,中共中央、国务院印发《关于完整准确全面贯彻新发展理念做好碳达峰碳中和工作的意见》;2021年10月26日,国务院印发《2030年前碳达峰行动方案》,在这两份“双碳”顶层设计的文件中,氢能被多次提及,寄予厚望。"},{type:"p",text:"据不完全统计,目前,全国有30个省份、150多个城市在其“十四五”规划中提及氢能发展,有50多个城市出台了地方氢能产业发展专项规划。根据各省区市规划目标,到2025年全国将建成加氢站超过1000座,推广氢燃料车超过54000辆。业内预计,随着“双碳”战略的实施推进,中国氢能产业发展将进一步提速。"},{type:"p",text:"在“双碳”背景下,我国氢能的未来发展具有良好前景,尤其是绿氢的发展,有望成为接下来几十年的能源转型中的关键角色。建议未来我国氢能产业从技术研发、产业布局和降低成本等多个方面推动可持续的健康发展。"},{type:"end",text:"来源于 李云舒"}]},{title:"权威声音 | 习近平:要把促进新能源和清洁能源发展放在更加突出的位置",outerImg:A("853d"),publishTime:{year:"2022",month:"01",day:"26",time:"07:30"},theme:[{type:"h2",text:"序 言"},{type:"p",text:"习近平总书记指出:要把促进新能源和清洁能源发展放在更加突出的位置,积极有序发展光能源、硅能源、氢能源、可再生能源。要推动能源技术与现代信息、新材料和先进制造技术深度融合,探索能源生产和消费新模式。要加快发展有规模有效益的风能、太阳能、生物质能、地热能、海洋能、氢能等新能源,统筹水电开发和生态保护,积极安全有序发展核电。"},{type:"p",text:"习近平在中共中央政治局第三十六次集体学习时指出,推动能源革命。要立足我国能源资源禀赋,坚持先立后破、通盘谋划,传统能源逐步退出必须建立在新能源安全可靠的替代基础上。要加大力度规划建设以大型风光电基地为基础、以其周边清洁高效先进节能的煤电为支撑、以稳定安全可靠的特高压输变电线路为载体的新能源供给消纳体系。要坚决控制化石能源消费,尤其是严格合理控制煤炭消费增长,有序减量替代,大力推动煤电节能降碳改造、灵活性改造、供热改造“三改联动”。要夯实国内能源生产基础,保障煤炭供应安全,保持原油、天然气产能稳定增长,加强煤气油储备能力建设,推进先进储能技术规模化应用。要把促进新能源和清洁能源发展放在更加突出的位置,积极有序发展光能源、硅能源、氢能源、可再生能源。要推动能源技术与现代信息、新材料和先进制造技术深度融合,探索能源生产和消费新模式。要加快发展有规模有效益的风能、太阳能、生物质能、地热能、海洋能、氢能等新能源,统筹水电开发和生态保护,积极安全有序发展核电。"},{type:"p",text:"要进一步完善能耗“双控”制度,新增可再生能源和原料用能不纳入能源消费总量控制。要健全“双碳”标准,构建统一规范的碳排放统计核算体系,推动能源“双控”向碳排放总量和强度“双控”转变。要健全法律法规,完善财税、价格、投资、金融政策。要充分发挥市场机制作用,完善碳定价机制,加强碳排放权交易、用能权交易、电力交易衔接协调。"},{type:"h3",text:"习近平在中共中央政治局第三十六次集体学习时强调"},{type:"h3",text:"深入分析推进碳达峰碳中和工作面临的形势任务扎扎实实把党中央决策部署落到实处"},{type:"p",text:"中共中央政治局1月24日下午就努力实现碳达峰碳中和目标进行第三十六次集体学习。中共中央总书记习近平在主持学习时强调,实现碳达峰碳中和,是贯彻新发展理念、构建新发展格局、推动高质量发展的内在要求,是党中央统筹国内国际两个大局作出的重大战略决策。我们必须深入分析推进碳达峰碳中和工作面临的形势和任务,充分认识实现“双碳”目标的紧迫性和艰巨性,研究需要做好的重点工作,统一思想和认识,扎扎实实把党中央决策部署落到实处。"},{type:"p",text:"这次中央政治局集体学习,由中央政治局同志自学并交流工作体会,刘鹤、李强、李鸿忠、胡春华同志结合分管领域和地方的工作作了发言,大家进行了交流。"},{type:"p",text:"习近平在主持学习时发表了重要讲话。他指出,党的十八大以来,党中央贯彻新发展理念,坚定不移走生态优先、绿色低碳发展道路,着力推动经济社会发展全面绿色转型,取得了显著成效。我们建立健全绿色低碳循环发展经济体系,持续推动产业结构和能源结构调整,启动全国碳市场交易,宣布不再新建境外煤电项目,加快构建“双碳”政策体系,积极参与气候变化国际谈判,展现了负责任大国的担当。实现“双碳”目标,不是别人让我们做,而是我们自己必须要做。我国已进入新发展阶段,推进“双碳”工作是破解资源环境约束突出问题、实现可持续发展的迫切需要,是顺应技术进步趋势、推动经济结构转型升级的迫切需要,是满足人民群众日益增长的优美生态环境需求、促进人与自然和谐共生的迫切需要,是主动担当大国责任、推动构建人类命运共同体的迫切需要。我们必须充分认识实现“双碳”目标的重要性,增强推进“双碳”工作的信心。"},{type:"p",text:"习近平强调,实现“双碳”目标是一场广泛而深刻的变革,不是轻轻松松就能实现的。我们要提高战略思维能力,把系统观念贯穿“双碳”工作全过程,注重处理好4对关系:"},{type:"p",text:"一是发展和减排的关系。减排不是减生产力,也不是不排放,而是要走生态优先、绿色低碳发展道路,在经济发展中促进绿色转型、在绿色转型中实现更大发展。要坚持统筹谋划,在降碳的同时确保能源安全、产业链供应链安全、粮食安全,确保群众正常生活。"},{type:"p",text:"二是整体和局部的关系。既要增强全国一盘棋意识,加强政策措施的衔接协调,确保形成合力;又要充分考虑区域资源分布和产业分工的客观现实,研究确定各地产业结构调整方向和“双碳”行动方案,不搞齐步走、“一刀切”。"},{type:"p",text:"三是长远目标和短期目标的关系。既要立足当下,一步一个脚印解决具体问题,积小胜为大胜;又要放眼长远,克服急功近利、急于求成的思想,把握好降碳的节奏和力度,实事求是、循序渐进、持续发力。"},{type:"p",text:"四是政府和市场的关系。要坚持两手发力,推动有为政府和有效市场更好结合,建立健全“双碳”工作激励约束机制。"},{type:"p",text:"习近平指出,推进“双碳”工作,必须坚持全国统筹、节约优先、双轮驱动、内外畅通、防范风险的原则,更好发挥我国制度优势、资源条件、技术潜力、市场活力,加快形成节约资源和保护环境的产业结构、生产方式、生活方式、空间格局。"},{type:"p",text:"第一,加强统筹协调。要把“双碳”工作纳入生态文明建设整体布局和经济社会发展全局,坚持降碳、减污、扩绿、增长协同推进,加快制定出台相关规划、实施方案和保障措施,组织实施好“碳达峰十大行动”,加强政策衔接。各地区各部门要有全局观念,科学把握碳达峰节奏,明确责任主体、工作任务、完成时间,稳妥有序推进。"},{type:"p",text:"第二,推动能源革命。要立足我国能源资源禀赋,坚持先立后破、通盘谋划,传统能源逐步退出必须建立在新能源安全可靠的替代基础上。要加大力度规划建设以大型风光电基地为基础、以其周边清洁高效先进节能的煤电为支撑、以稳定安全可靠的特高压输变电线路为载体的新能源供给消纳体系。要坚决控制化石能源消费,尤其是严格合理控制煤炭消费增长,有序减量替代,大力推动煤电节能降碳改造、灵活性改造、供热改造“三改联动”。要夯实国内能源生产基础,保障煤炭供应安全,保持原油、天然气产能稳定增长,加强煤气油储备能力建设,推进先进储能技术规模化应用。要把促进新能源和清洁能源发展放在更加突出的位置,积极有序发展光能源、硅能源、氢能源、可再生能源。要推动能源技术与现代信息、新材料和先进制造技术深度融合,探索能源生产和消费新模式。要加快发展有规模有效益的风能、太阳能、生物质能、地热能、海洋能、氢能等新能源,统筹水电开发和生态保护,积极安全有序发展核电。"},{type:"p",text:"第三,推进产业优化升级。要紧紧抓住新一轮科技革命和产业变革的机遇,推动互联网、大数据、人工智能、第五代移动通信(5G)等新兴技术与绿色低碳产业深度融合,建设绿色制造体系和服务体系,提高绿色低碳产业在经济总量中的比重。要严把新上项目的碳排放关,坚决遏制高耗能、高排放、低水平项目盲目发展。要下大气力推动钢铁、有色、石化、化工、建材等传统产业优化升级,加快工业领域低碳工艺革新和数字化转型。要加大垃圾资源化利用力度,大力发展循环经济,减少能源资源浪费。要统筹推进低碳交通体系建设,提升城乡建设绿色低碳发展质量。要推进山水林田湖草沙一体化保护和系统治理,巩固和提升生态系统碳汇能力。要倡导简约适度、绿色低碳、文明健康的生活方式,引导绿色低碳消费,鼓励绿色出行,开展绿色低碳社会行动示范创建,增强全民节约意识、生态环保意识。"},{type:"p",text:"第四,加快绿色低碳科技革命。要狠抓绿色低碳技术攻关,加快先进适用技术研发和推广应用。要建立完善绿色低碳技术评估、交易体系,加快创新成果转化。要创新人才培养模式,鼓励高等学校加快相关学科建设。"},{type:"p",text:"第五,完善绿色低碳政策体系。要进一步完善能耗“双控”制度,新增可再生能源和原料用能不纳入能源消费总量控制。要健全“双碳”标准,构建统一规范的碳排放统计核算体系,推动能源“双控”向碳排放总量和强度“双控”转变。要健全法律法规,完善财税、价格、投资、金融政策。要充分发挥市场机制作用,完善碳定价机制,加强碳排放权交易、用能权交易、电力交易衔接协调。"},{type:"p",text:"第六,积极参与和引领全球气候治理。要秉持人类命运共同体理念,以更加积极姿态参与全球气候谈判议程和国际规则制定,推动构建公平合理、合作共赢的全球气候治理体系。"},{type:"p",text:"习近平强调,要加强党对“双碳”工作的领导,加强统筹协调,严格监督考核,推动形成工作合力。要实行党政同责,压实各方责任,将“双碳”工作相关指标纳入各地区经济社会发展综合评价体系,增加考核权重,加强指标约束。各级领导干部要加强对“双碳”基础知识、实现路径和工作要求的学习,做到真学、真懂、真会、真用。要把“双碳”工作作为干部教育培训体系重要内容,增强各级领导干部推动绿色低碳发展的本领。"},{type:"end",text:"来源于 新华网"}]}],3:[{title:"沈南鹏作政协大会发言:区域碳中和布局要算好“三本账”",outerImg:A("136f"),publishTime:{year:"2022",month:"03",day:"07",time:"11:22"},theme:[{type:"img",text:A("136f")},{type:"p",text:"3月7日,全国政协十三届五次会议第二次全体会议在北京人民大会堂举行。第十三届全国政协委员、红杉中国创始及执行合伙人、香港X科技创业平台和创科香港基金会主席沈南鹏作大会发言。沈南鹏认为,“双碳”目标可释放巨大的低碳发展潜能,为东西部互补融合发展提供新的共享引擎,有利于推动实现共同富裕。"},{type:"p",text:"在大会发言中,沈南鹏强调碳中和布局要做好“全国一盘棋”,重点“算好三本账”。他提出,一是算好“西能东输”的经济账,把西部地区的清洁能源优势转变为经济优势;二是算好“产业转移”的效益账,不让西部在“存量减碳、增量避碳”的产业发展中掉队;三是算好“固碳增汇”的生态账,打通西部“点绿成金”的转化通道。"},{type:"p",text:"对此,沈南鹏建议:第一,加大跨区可再生能源配置建设,落实东中西部地方政府合理承担相应清洁电力发展责任;第二,以单位GDP碳排放考核带动换道领跑,让清洁能源产业在西部就近壮大;第三,做实碳贡献的量化和补偿。扩大西部地区风光电发展的土地供给,让西部减碳贮碳固碳地区得到更多实惠。"},{type:"h3",text:"以下为沈南鹏大会发言全文:"},{type:"p",text:"坚持全国一盘棋推动区域共富、系统推进东西部协作是实现共同富裕的必然要求。在此背景下,“双碳”目标可释放出巨大的低碳发展潜能,为区域间互补融合提供新的共享引擎。为更好发挥碳中和作用,减少东西部差距,我们需重点算好“三本账”:"},{type:"p",text:"一是算好“西能东输”的经济账,把西部地区的清洁能源优势转变成经济优势。随着东中部能源需求增加,能源供给半径不断向西延伸,西部丰富的可再生能源资源,无论是为东中部负荷中心提供绿色电力,还是实现对化石能源的替代,都将发挥重大作用。预计2060年实现碳中和时,我国非化石能源发电量占比将大幅提高,西部地区的风、光、水电将在其中发挥重要作用,“绿电送出去、电费收进来”的想象空间巨大。但至少目前,跨区域消纳不足、电网调节等仍在制约西部的资源优势向经济优势转化,如何破解西部有电发不出、发出卖不掉等难题,值得认真研究。"},{type:"p",text:"二是算好“产业转移”的效益账,不让西部在“存量减碳、增量避碳”的产业发展中掉队。西部一些具有比较优势的产业是东部“腾笼换鸟”后的碳排放密集行业,如钢铁、水泥、石化等。随着碳排放成为产业发展的约束因子,西部可能会面临低碳发展成本更大、竞争力下降等问题。与此同时西部也会有产业升级需求,要从源头净化增量,为高效产能的发展腾出空间。面对碳排放约束,西部如何在产业转移中做到既接得住、更接得好,是时代出给我们的一道考题。"},{type:"p",text:"三是算好“固碳增汇”的生态账,打通西部“点绿成金”的转化通道。西部的森林、草原、湖泊、湿地是我国重要的生态屏障,也有一定的固碳潜力,广袤的沙漠戈壁更是重要的风光发电基地。如何把绿水青山转变为当地人民的金山银山,让保护环境者不吃亏,在生态保护补偿方面,仍有不少大文章可作。"},{type:"p",text:"为此提三点建议:"},{type:"p",text:"一、加大跨区可再生能源配置建设,落实东中西部地方政府合理承担相应清洁电力发展责任。在国家层面,进一步加大西电东送通道建设,保障清洁能源的大规模开发和远距离输送。在地区层面,一方面稳步提升东部可再生能源消纳占比,形成西部稳定输电、东部稳定消纳的长效机制;另一方面发挥东部技术资金优势,支持西部重点发展特高压输电和储能技术,提升电网灵活性和调峰能力。"},{type:"p",text:"二、以单位GDP碳排放考核带动换道领跑,让清洁能源产业在西部就近壮大。西部要逐步摆脱对化石能源依赖,产业规划中既要免短痛更要避长痛,警惕能源禀赋可能带来的产业锁定,把单位GDP碳排放作为产业承接的新标尺,让风光电等产业就近布局,带动当地摊薄工业碳强度和扩大就业税收。此外,鼓励政府和社会资本在中西部共建零碳产业园,吸引东部优秀制造企业入驻,把零碳产业园绿色用电的碳排放和成本优势,转化为企业的竞争力和区域的经济优势。"},{type:"p",text:"三、做实碳贡献的量化和补偿。扩大西部地区风光电发展的土地供给,让西部减碳贮碳固碳地区得到更多实惠。荒漠减碳、生态固碳,用之不觉,失之难存。过去由于价值核算分摊的困难,西部大都存在生态补偿不足问题。建议引入基于自然的解决方案等标准,摸清生态碳汇家底,让西部的碳贡献可度量、可核算,形成合理生态补偿机制,用市场化手段做到添绿又生金,按“谁保护、谁受偿”原则,将西部生态碳汇项目优先纳入全国碳市场,从固碳和增汇潜力中得到更多实惠。"},{type:"end",text:"来源于 沈南鹏"}]},{title:"一图读懂 | 氢能产业发展中长期规划(2021-2035年)",outerImg:A("df74"),publishTime:{year:"2022",month:"03",day:"24",time:"14:33"},theme:[{type:"img",text:A("ac83")},{type:"end",text:"来源于 国家发展改革委"}]}],4:[{title:"33项!国家重点“氢能技术”等专项2022年度项目申报指南",outerImg:A("6ed4"),publishTime:{year:"2022",month:"04",day:"29",time:"15:35"},theme:[{type:"p",text:"4月28日,科技部发布国家重点研发计划“氢能技术”等重点专项2022年度项目申报指南。"},{type:"img",text:A("2155")},{type:"p",text:"其中共包括33项氢能技术,其中氢能技术重点专项中包括24个;稀土材料重点专项中包括1项氢能技术;“高端功能与智能材料”重点专项包括4项氢能技术;“可再生能源技术”重点专项包括1项氢能技术;“煤炭清洁高效利用技术”重点专项包括1项氢能技术;“新能源汽车”重点专项包括2项氢能技术。"},{type:"p",text:"33项氢能技术分别为:"},{type:"p",text:"氢能技术重点专项:"},{type:"p",text:"1.氢能绿色制取与规模转存体系"},{type:"p",text:"1.1 兆瓦级电解水制氢质子交换膜电解堆技术(共性关键技术类)"},{type:"p",text:"1.2 电解水制高压氢电解堆及系统关键技术(共性关键技术类)"},{type:"p",text:"1.3 固体氧化物电解水蒸汽制氢系统与电解堆技术(共性关键技术类)"},{type:"p",text:"1.4 质子交换膜电解水制氢测试诊断技术与设备研发(共性关键技术类)"},{type:"p",text:" 1.5 分布式氨分解制氢技术与灌装母站集成(共性关键技术类)"},{type:"p",text:"1.6 高温质子导体电解制氢技术(基础研究类)"},{type:"p",text:"1.7 新型中低温固体电解质氨电化学合成与转化技术(基础研究类)"},{type:"p",text:"1.8 耦合高附加值氧化产物的电解水制氢技术(基础研究类,青年科学家项目)"},{type:"h3",text:"2. 氢能安全存储与快速输配体系"},{type:"p",text:"2.1 液氢加氢站关键装备研制与安全性研究(共性关键技术类)"},{type:"p",text:"2.2 液氢转注、输运和长期高密度存储技术(共性关键技术类)"},{type:"p",text:"2.3 高可靠性高压储氢压力容器的设计制造技术(共性关键技术类)"},{type:"p",text:"2.4 基于液态载体的可逆储放氢关键材料与应用技术(基础研究类,青年科学家项目)"},{type:"p",text:"2.5 基于固态新材料的可逆储放氢技术(基础研究类,青年科学家项目)"},{type:"p",text:"2.6 加氢站用新型氢压机核心理论及关键技术(基础研究类,青年科学家项目)"},{type:"p",text:"2.7 纯氢与天然气掺氢长输管道输送及应用关键技术(共性关键技术类)"},{type:"h3",text:"3. 氢能便捷改质与高效动力"},{type:"p",text:" 3.1 兆瓦级发电用质子交换膜燃料电池堆应用关键技术(共性关键技术类)"},{type:"p",text:"3.2 百千瓦级固体氧化物燃料电池热电联供系统应用关键技术(共性关键技术类)"},{type:"p",text:"3.3 质子交换膜燃料电池与氢基内燃机混合发电系统技术(共性关键技术类)"},{type:"p",text:"3.4 燃料电池测试技术及关键零组件研制(共性关键技术类)"},{type:"p",text:"3.5 掺氢/氨清洁高效燃烧关键技术(共性关键技术类)"},{type:"p",text:"3.6 基于固体电解质的直接氨燃料电池技术(基础研究类,青年科学家项目)"},{type:"p",text:"3.7 聚合物膜燃料电池非贵金属催化的电极设计与应用关键技术(基础研究类,青年科学家项目)"},{type:"p",text:"3.8 燃料电池系统用先进空气压缩机技术(基础研究类,青年科学家项目)"},{type:"h3",text:"4.“氢进万家”综合示范"},{type:"p",text:" 4.1 中低压氢气管道固态储氢系统及其应用技术(共性关键技术类)高端功能与智能材料重点专项:高效低成本光催化制氢关键材料及应用(共性关键技术类)、高效高安全氢储运关键合金材料开发及应用(应用示范类)、大功率供氢系统用常温常压储氢材料技术及应用(应用示范类)、催化膜材料的设计制备及其应用(基础研究类)。"},{type:"p",text:"稀土材料重点专项:高能量密度新型稀土储氢材料及应用技术(共性关键技术类)。"},{type:"p",text:"煤炭清洁高效利用技术重点专项:合成气转化制可降解材料非贵金属加氢催化剂的开发(基础研究类,青年科学家项目)。"},{type:"p",text:"新能源汽车重点专项:乘用车用高功率密度燃料电池电堆及发动机技术(共性关键技术)、商用车用大功率长寿命燃料电池电堆及发动机技术(共性关键技术)。"},{type:"img",text:A("4216")},{type:"img",text:A("e291")},{type:"img",text:A("9478")},{type:"img",text:A("d6ae")},{type:"img",text:A("e297")},{type:"img",text:A("e6e1")},{type:"img",text:A("9378")},{type:"img",text:A("2154")},{type:"img",text:A("8e8d")},{type:"img",text:A("1202")},{type:"img",text:A("9adc")},{type:"img",text:A("bc7e")},{type:"img",text:A("9de8")},{type:"img",text:A("afa4")},{type:"img",text:A("8e0c")},{type:"img",text:A("b597")},{type:"img",text:A("449b")},{type:"img",text:A("429e")},{type:"img",text:A("5d50")},{type:"img",text:A("e7ec")},{type:"img",text:A("d164")},{type:"img",text:A("eb7d")},{type:"img",text:A("0809")},{type:"end",text:"来源于 科技部"}]}],7:[{title:"氢易能源储放氢技术中试试验正式启动",outerImg:A("a5a2"),publishTime:{year:"2022",month:"07",day:"05",time:"09:35"},theme:[{type:"img",text:A("a5a2")},{type:"p",text:"近日,基于自主催化技术的芳杂环可逆储放氢中试试验正式启动。本次中试试验由陕西氢易能源科技有限公司主持、西安交通大学技术团队配合实施,对于将有机液体储氢技术推向商用,实现安全、大规模、低成本的氢储运具有重要意义。"},{type:"p",text:"氢易能源选取了当前储放氢效率突出的芳杂环作为储氢载体,通过多年研发实现了载体合成工艺和储放氢催化工艺的基础研究突破。基于前期技术积累,氢易能源自主研发、设计了10 m³/h级撬装式储放氢中试设备,在经过近一个月的调试后,中试试验已于近日正式启动。氢易能源将进行数月的多维度测试,后续基于测试数据,氢易能源将先行设计应用于加氢站的技术方案与配套产品,与合作伙伴共同推动该技术的商业化应用。"}]}],8:[{title:"佛山市南海区委书记顾耀辉、国电投广东公司董事长石彦彪一行莅临氢易能源调研考察",outerImg:A("7d72"),publishTime:{year:"2022",month:"08",day:"16",time:"06:35"},theme:[{type:"img",text:A("53ab")},{type:"p",text:"8月15日,佛山市南海区委书记顾耀辉、国电投广东公司董事长石彦彪等一行莅临氢易能源有机液体储氢中试基地实地调研考察。氢易能源技术委员会主任方涛教授、副主任杨福胜教授,公司董事长王斌、总经理张健铮陪同接待。"},{type:"img",text:A("7d72")},{type:"p",text:"在调研过程中,方涛教授、杨福胜教授、王斌博士向各位领导、专家详细讲解了氢易能源有机液体储氢中试相关情况,同时就公司未来的业务发展规划做了介绍。最后,王斌博士代表公司向各位领导、专家一直以来对公司的关注与支持表达了感谢。/h级撬装式储放氢中试设备,在经过近一个月的调试后,中试试验已于近日正式启动。氢易能源将进行数月的多维度测试,后续基于测试数据,氢易能源将先行设计应用于加氢站的技术方案与配套产品,与合作伙伴共同推动该技术的商业化应用。"},{type:"p",text:"佛山市南海区委书记顾耀辉表示,佛山市是我国氢能产业发展的排头兵,但大湾区氢气供应不足,储运成本高昂,终端用氢成本始终居高不下,严重制约产业的进一步发展。氢易能源在该领域有十余年的研发积累,实力雄厚,公司在佛山市的落地发展将帮助佛山市有效解决当前面临的产业发展瓶颈,并对全国生产示范起导向作用。希望南海区各部门与氢易能源公司积极配合,做好支持服务。"},{type:"p",text:"国电投广东公司董事长石彦彪表示,国电投广东公司对氢易能源的技术方案高度认可,今年五月,国电投广东公司已与氢易能源公司结成战略合作伙伴。之后,在各级政府的支持配合下,国电投广东公司将与氢易能源公司共同加快推动大湾区的首个示范应用项目。"},{type:"p",text:"未来,氢易能源将继续深耕有机液体储氢技术的研究与应用,助力实现安全、高效、低成本的新型氢气供应体系。"},{type:"p",text:"佛山市南海区相关领导,国电投广东公司规划发展首席专家常胜等领导,海德利森公司相关领导,巨正源公司相关领导参与调研考察。"}]},{title:"第六届丝博会秦创原发展论坛在西咸新区举办,氢易能源公司与西咸新区现场签约",outerImg:A("5c99"),publishTime:{year:"2022",month:"08",day:"17",time:"04:32"},theme:[{type:"p",text:"8月16日,第六届丝博会秦创原发展论坛在西咸新区举办。本次论坛以“创新开放·融合发展”为主题,由科技部指导、陕西省政府主办,省科技厅、西咸新区管委会和西安交通大学联合承办,旨在利用丝博会平台宣传推介秦创原,为“一带一路”沿线国家和地区搭建科技创新交流合作平台。"},{type:"p",text:"科技部原部长、中科院院士徐冠华作主旨演讲,副省长叶牛平出席并致辞。省委科技工委书记、省科技厅厅长孙科,西咸新区党工委书记杨仁华,省科技厅副厅长王军、西安交通大学党委常委、副校长柴渭等出席并见证签约。西咸新区党工委委员、管委会副主任陈辉代表西咸新区签约。"},{type:"img",text:A("5c99")},{type:"h3",text:"现场签约环节"},{type:"h3",text:"禾丰股份丝路总部项目"},{type:"h3",text:"陕西健康医疗集团信息科技公司项目"},{type:"h3",text:"智能化柔性卫星制造工厂项目"},{type:"h3",text:"华兴电能液流储能项目"},{type:"h3",text:"迈特铝空电池项目"},{type:"p",text:"氢易能源有机液体储氢项目"},{type:"p",text:"高端风机及鼓风机项目"},{type:"p",text:"复杂装备系统仿真项目"},{type:"p",text:"铜铁合金项目"},{type:"p",text:"干式一体化超低排放项目"},{type:"p",text:"10个项目签约落户西咸新区"},{type:"img",text:A("495c")},{type:"img",text:A("69c8")},{type:"p",text:"陕西氢易能源科技有限公司董事长王斌代表公司上台签约,并与西咸新区党工委书记杨仁华、西安交通大学副校长柴渭合影留念。"}]}],10:[{title:"氢易能源西安研发中心正式投入运营",outerImg:A("e75e"),publishTime:{year:"2022",month:"10",day:"31",time:"09:32"},theme:[{type:"img",text:A("e75e")},{type:"p",text:"近日,在西咸新区的政策支持和秦创原创新驱动平台的推动下,氢易能源西安研发中心正式投入运营。"},{type:"img",text:A("c4e2")},{type:"p",text:"氢易能源西安研发中心位于陕西省西咸新区沣东新城科创智慧产业园,总面积上千平米。"},{type:"img",text:A("5b6f")},{type:"p",text:"氢易能源长期致力于有机液体储氢技术(LOHC)的进步与商业化。公司以西安交通大学化工学院科研团队十余年研发积累为基础,目前已搭建起涵盖储放氢催化剂、有机氢载体、储放氢装置等领域的全链条研发平台,自主开发了LOHC技术体系,各项性能指标均已处于行业上游。"},{type:"img",text:A("6cb4")},{type:"p",text:"研发中心投入运营后,氢易能源将在已有技术的基础上持续进行迭代升级,推动实现更安全、更高效、更低成本的氢能供应体系。"}]}],11:[{title:"氢易能源董事长王斌一行赴彬州市考察调研,与彬州市长陈加宝等洽谈合作事宜",outerImg:A("a106"),publishTime:{year:"2022",month:"11",day:"18",time:"10:16"},theme:[{type:"img",text:A("a106")},{type:"p",text:"2022年11月17日上午,氢易能源董事长王斌、技术委员会主任方涛一行受邀来到彬州市考察调研。"},{type:"img",text:A("0e93")},{type:"p",text:"首先,王斌一行来到新民高端能源化工区,彬州市招商局相关领导同志介绍了新民高端能源化工区的基本情况,并针对公司的相关问题进行了解答。"},{type:"p",text:"之后,王斌一行来到彬州市行政中心,与彬州市长陈加宝、彬州市副市长李军申等进行座谈交流。"},{type:"img",text:A("b2ca")},{type:"p",text:"在座谈中,陈加宝、李军申等对氢易能源团队的到访表示欢迎,认为氢易能源掌握的有机液体储氢整体解决方案处于行业上游水平,该方案的推广应用对于整个氢能行业的发展都有着重要意义,鼓励支持氢易能源在彬州市设厂投产。王斌董事长对陈市长等彬州市领导的热情接待和对氢易能源技术实力的认可表示感谢,希望能为彬州市产业发展和转型升级做出贡献。"},{type:"p",text:"双方商定,加快对接,推动“氢易能源万吨级新型有机液体储氢材料”项目尽快落地投产。"}]}]},2023:{2:[{title:"中国海洋工程装备技术发展有限公司来访",outerImg:A("11c5"),publishTime:{year:"2023",month:"02",day:"24",time:"08:16"},theme:[{type:"p",text:"2023年2月24日上午,中国海洋工程装备技术发展有限公司副总经理韩忍之、系统设备事业部副总经理王文涛(正职级)、总体设计事业部副总经理倪明杰(正职级)、系统设备事业部副总经理黄志遂一行8人访问西安交通大学化工学院。西安交通大学校长助理黄忠德、化工学院党委书记苗晋英、化工学院副院长余云松、氢易能源有机液体储氢团队方涛、杨福胜、王斌、张健铮等参与考察交流。"},{type:"img",text:A("11c5")},{type:"p",text:"韩忍之一行首先参观了化工过程机械研究平台、有机液体储氢实验室和分测中心。在参观过程中,方涛教授、王斌博士对有机液体储氢技术研发情况、产业化示范进展进行了讲解。"},{type:"img",text:A("1410")},{type:"p",text:"随后,双方在化工学院会议室召开座谈会,会议由苗晋英书记主持。"},{type:"img",text:A("93dd")},{type:"img",text:A("0ef7")},{type:"p",text:"座谈会上,校长助理黄忠德对韩忍之一行的到来表示欢迎,并就西安交大的基本情况做了介绍。他强调,西安交大积极推动科技创新和校企合作,希望为国家科技进步和产业升级提供强有力支持。韩忍之对西安交大的热情接待表示感谢,并介绍了中国海工的基本情况:中国海工是2021年在国务院统一协调下,由中石油、中石化、中海油、中船、中车、中国远洋海运、招商局等10家中央企业出资200亿元在上海联合组建成立,是我国开发海上风电、海洋油气资源、矿产资源、生物资源的国家队。韩忍之指出西交大化工学院汇聚了氢储运人才、试验设施、研究平台等资源优势,与中国海工服务国家需求,引领行业发展,助力海洋强国的使命相契合,期待与化工学院在海上风电氢储能相关的产品研发、工程应用、重大实验、行业动态、前沿技术交流、技术孵化、人才培养等方面进行全方位合作。"},{type:"p",text:"最后,苗晋英书记总结此次交流为双方明确了合作方向,为西交化工与中国海工的全面战略合作开了个好局。双方一致表示,将以此次交流为契机,围绕科学研究、人才培养等,深化双方产学研合作交流,尽快促进科研成果转化落地。"}]}],3:[{title:"氢易能源年产万吨有机液体储氢材料及配套催化剂项目正式落地彬州市",outerImg:A("4657"),publishTime:{year:"2023",month:"03",day:"13",time:"12:31"},theme:[{type:"p",text:"经过数月洽谈,在氢易能源公司与彬州市相关部门的共同协作下,氢易能源年产万吨有机液体储氢材料及配套催化剂项目正式落地彬州市新民高端能源化工园区。"},{type:"img",text:A("81ef")},{type:"p",text:"彬州市拥有丰富的煤炭资源,紧邻银西高铁、西平铁路、福银高速,地理位置优越,交通便捷。彬州新民高端能源化工园区是陕西省“重点县域工业集中区”,是咸阳市“彬长旬能化基地”的重要组成部分。园区规划总面积13平方公里,分产业集中区、生活配套区和安全卫生防护带。"},{type:"img",text:A("4657")},{type:"p",text:"氢易能源公司以西安交大化工学院为技术依托,自主开发了有机液体储氢技术体系,特别是新型有机液体储氢材料及配套催化剂的各项性能指标均已处于行业上游。公司的相关产品目前已经完成中试,此次在彬州设厂,标志着公司完成了由研究向产业化迈进的关键一步。"},{type:"p",text:"氢易能源彬州工厂将分两期建设。首期工程设计产能为千吨/年,预期产值约1亿元/年,目前已完成相关设计,施工建设将于近期启动,预计于2023年四季度正式投产;二期工程设计产能为万吨/年,预期产值约5亿元/年,二期工程将于2024年上半年启动,2025年初投产。"}]}],4:[{title:"【秦创原两周年】氢易能源CEO王斌向陕西省委书记赵一德、省长赵刚等介绍公司发展情况",outerImg:A("9768"),publishTime:{year:"2023",month:"04",day:"01",time:"10:11"},theme:[{type:"p",text:"2023年3月31日,秦创原启动建设两周年之际,秦创原创新驱动平台建设推进大会在西咸新区召开。"},{type:"p",text:"会前,陕西省委书记赵一德、省长赵刚等与会人员共同参观了秦创原创新驱动平台建设成果展。"},{type:"img",text:A("9768")},{type:"p",text:"作为秦创原科创企业的优秀代表之一,氢易能源公司的展品“有机液体储放氢原理验证装置”置于广场中间位置。"},{type:"img",text:A("a66c")},{type:"p",text:"参观过程中,赵一德、赵刚等来到氢易能源展台前。氢易能源创始人、CEO王斌向各位领导同志详细介绍了公司的发展情况:氢易能源是以西安交大化工学院方涛教授团队多年研究成果为基础成立的储运氢技术公司,致力于用自主研发的有机液体储氢技术革新现有的氢供应体系。在秦创原的支持下,公司成立后即进入发展快车道,现已组建起50余人的全职研发团队,各项产品均已完成中试,即将进入规模化生产阶段。与此同时,在秦创原的协助与对接下,氢易能源与国内各投资机构和产业伙伴建立起了广泛联系,现已获得来自红杉中国基金等机构的近亿元投资,逐步成长为国内有机液体储氢技术商业化的当先者。"},{type:"p",text:"赵一德、赵刚等领导同志对公司目前取得的成绩表示赞赏,并勉励公司再接再厉、继续奋斗,更好地服务国家高水平科技自立自强,更好地推动陕西高质量发展现代化建设。"}]},{title:"霍尼韦尔推出液态有机氢载体解决方案",outerImg:A("2c0e"),publishTime:{year:"2023",month:"04",day:"11",time:"11:21"},theme:[{type:"p",text:"美国伊利诺伊州德斯普兰斯,2023年4月11日——霍尼韦尔(纳斯达克代码:HON)近日推出霍尼韦尔液态有机氢载体 (LOHC) 解决方案,以实现清洁氢气的长距离运输。这种具有成本效益的解决方案可沿用现有的炼油和运输设施,帮助满足各行业日益增长的氢能使用需求。"},{type:"p",text:"氢有望成为削减温室气体排放的重要手段,但在标准条件下,氢是一种低密度的易燃气体,并且无法在其气态形式下高效运输。现有的氢运输解决方案主要包括液化氢和化学载体(比如氨),其通常都需要额外的设施来装载。霍尼韦尔UOP的LOHC解决方案则可利用现有的炼油设备设施制造和运输载体。"},{type:"p",text:"在霍尼韦尔LOHC解决方案中,氢气通过霍尼韦尔UOP甲苯饱和工艺以化学方式合成与现有设施兼容的便捷液态载体,随后用汽油或类似烃类相同的方式运输。载体运达目的地之后,将通过霍尼韦尔UOP甲基环己烷脱氢工艺从载体中回收氢。现有的闲置炼油资产可以进行改造,以释放液态载体中的氢,满足各种商业及工业应用。霍尼韦尔LOHC解决方案使用的载体不仅易于获取,且所需补充较少。"},{type:"p",text:"“随着企业日益重视减少碳足迹和发展氢经济,霍尼韦尔LOHC解决方案可提供一种长距离运输解决方案,推动氢生态系统发展。” 霍尼韦尔UOP总裁Bryan Glover表示,“我们的LOHC解决方案能够利用现有的炼油资产,提供覆盖整个氢价值链的综合解决方案,促进能源转型。霍尼韦尔成熟的解决方案可用于氢生产、转换、运输、存储到分配和使用,使运营更安全、更高效、更可靠。”"},{type:"p",text:"“作为一种可再生清洁高效的二次能源,氢能是应对气候变化、建设脱碳社会的重要产业方向,对能源转型发展起到关键作用。在中国 ‘双碳目标的要求下,氢能是有助于交通、储能、工业等领域实现低碳转型的重要选择,”霍尼韦尔UOP副总裁兼中国总经理石文才表示, “霍尼韦尔看好氢能产业广阔的发展前景,相信氢能产业的发展将有效助力中国能源结构转型。我们将持续携手中国合作伙伴,以成熟的解决方案助力中国氢能产业的发展,共创可持续未来。”"},{type:"p",text:"LOHC解决方案是霍尼韦尔绿氢计划的重要组成部分。该计划结合了公司数十年在气体处理、炼化、钢铁和石化行业积累的市场领先的膜类和催化剂研发和制造经验,以及应用于电池和电力的新型膜的最新研发经验。"}]},{title:"「氢易能源」完成数千万元Pre-A轮融资,持续推动有机液体储氢技术进步与商业化",outerImg:A("2cc7"),publishTime:{year:"2023",month:"04",day:"12",time:"14:37"},theme:[{type:"p",text:"近日,陕西氢易能源科技有限公司(以下简称「氢易能源」)宣布完成数千万元Pre-A轮融资,投资方为重塑集团、华汯资产与陕西高校科创基金。长期以来,低成本氢源地(化工厂、大型风光基地等)与氢能应用区域错位严重,而现有氢气储运方式在能效、安全性和成本上无法协调统一,导致终端氢气价格居高不下,严重制约氢能的推广应用。"},{type:"p",text:"目前,几种主流的氢气储运方式是高压气态、低温液态和有机液体氢储运,几种方式各有优劣。"},{type:"p",text:" 高压气态储运最为常见,通过将氢气加压至20-45 Mpa以提升储运效率,尽管如此,单车运氢能力也仅有200-400kg。同时,在规模化储氢场景通过高压方式储存氢气需要预备较大的安全间距,这也导致了一定程度的用地浪费。"},{type:"p",text:"低温液态储氢在航天等领域已有几十年的应用历史,其优势是储氢密度高,但劣势在于液化能耗较大,且氢气液化装置需要很高的一次性投资,有行业人士称,一天液化一吨氢气的装置,造价在数千万元。"},{type:"img",text:A("7014")},{type:"p",text:"有机液体储氢技术被认为是当下前景理想的氢储运技术之一。有机液体储氢技术的原理是:通过加氢反应将氢气固定到芳香族有机化合物中,在常温常压状态下运输至应用地后,富氢有机化合物液体再通过催化反应释放出氢气,脱氢后的无氢有机化合物则可以循环使用。"},{type:"p",text:"「氢易能源」创始人、CEO王斌认为:首先,有机液体储氢技术在储运氢过程中以富氢有机化合物液体的形式进行,其在常温常压下不易挥发、不易燃、不易爆,像普通货物一样便于储存和运输。其次,储氢密度也相当可观,基于氮杂环有机物的LOHC体系可达到1/600-700的压缩比,一辆有机液体运输车的氢气运输量就能抵过5-10辆不同压力等级的高压长管拖车。第三,有机液体储氢技术所应用到的反应装置也相对简单,“日储放一吨氢的装置一次性投入仅在数百万元级别,并且实现了全国产化”。 目前,有机液体储运氢方案已逐步受到政府和产业界的广泛认可。不过最大的难点在于,如何设计高活性、高稳定性和低成本的储/放氢催化剂,并通过合适的反应工艺来实现氢的有效储放。"},{type:"p",text:"王斌表示,这也是「氢易能源」技术壁垒的重心。早在2019年,氢易能源团队就已经在实验室内打通了连续储放氢工艺,同时,反应速率比市面上同类产品高出数倍。"},{type:"p",text:"去年,「氢易能源」启动了高度集成化的储放氢流程模拟中试试验,实现了数百小时的稳定运行。接下来,公司将在此基础上进行二次开发,定型面向不同应用场景的多个商业化产品。与此同时,占地近30亩的「氢易能源」生产工厂也已完成各项设计工作,即将开工建设,预计于2023年四季度正式投产。经过逐步的产能释放,公司将具备数千吨的有机氢载体及配套催化剂生产能力,为有机液体储氢技术的广泛商用提供强力支撑。"},{type:"img",text:A("2cc7")},{type:"h2",text:"投资人意见"},{type:"p",text:"重塑集团董事长兼总裁林琦表示:“有机液体储氢技术相较于其他各种氢气储运方式具备显著优势,特别适合于大规模长距离的氢气储运。氢易能源团队经过多年的研发努力,解决了大量技术难题,特别是储/放氢催化剂已处于行业上游水平,具备了向规模化应用迈进的能力,相信氢易能源未来能和重塑集团等业界伙伴一起,共同助力氢能的推广应用。”"},{type:"p",text:"陕西高校科创基金总经理李凯伦表示:“陕西高校科创基金以秦创原平台优秀科技成果为依托,以优秀校友创新企业为抓手,发挥以校友经济为纽带的共享协同创新效应,打造‘先进技术成果转化+校友资源配置’的协同创新模式。氢易能源初创技术团队依托于西安交通大学化工学院方涛教授团队,在该领域深耕多年,具备扎实的技术功底,自公司创立之初我们便给予格外的关注和支持。我们持续看好氢易能源未来的发展,并将进一步为公司赋能校友及陕西本地资源,助力公司成长。”"}]},{title:"氢易能源参加“三项改革”进咸阳活动",outerImg:A("1139"),publishTime:{year:"2023",month:"04",day:"13",time:"15:41"},theme:[{type:"p",text:"2023年4月12日,“三项改革”进咸阳暨科技成果集中路演活动在咸阳市举办。"},{type:"img",text:A("9480")},{type:"p",text:"咸阳市委书记夏晓中出席活动并为兴平市、武功县、乾县、礼泉县、三原县、彬州市、旬邑县等7个县级科技局揭牌。"},{type:"img",text:A("7f36")},{type:"p",text:"省委科技工委书记、省科技厅厅长姜建春为兴平、武功、礼泉3个省级高新区授牌。"},{type:"img",text:A("1139")},{type:"p",text:"之后,氢易能源新型有机液体储氢项目等15个项目分3个专场进行了路演。氢易能源总经理张健铮代表公司参加路演,向各位领导与机构代表详细介绍了公司的发展情况。各机构代表认真观看路演项目,并提出了多个问题,张健铮一一进行了解答。路演结束后,各方机构代表又与团队进行了深入交流,后续将持续对接跟进。"},{type:"img",text:A("ae9c")}]}],5:[{title:"国家发改委副主任李春临调研,何雅玲院士代表团队做讲解",outerImg:A("8f74"),publishTime:{year:"2023",month:"05",day:"05",time:"18:07"},theme:[{type:"p",text:"5月4日至5日,国家产教融合创新平台建设现场会在西安交通大学召开。国家发展改革委党组成员、副主任李春临,教育部党组成员、副部长吴岩出席会议并讲话,陕西省委常委、常务副省长王晓出席并致辞。有关高等院校、行业企业、地方政府部门负责同志作交流发言。参会人员实地调研了西安交通大学储能技术、医学攻关2个国家产教融合创新平台建设情况。"},{type:"p",text:"中国科学院院士、国家储能技术产教融合创新平台主任、西安交大教授何雅玲代表团队讲解有机液体储氢技术成果和氢易能源发展现状,李春临主任详细询问后点出催化剂和储氢载体制造是技术核心。"},{type:"img",text:A("8f74")},{type:"p",text:"化工学院方涛教授、王斌团队长期从事有机液体储氢技术的研究工作,历经十余年探索研发出的具有自主知识产权的储放氢催化剂,是目前国内报道的脱氢效率最高、贵金属用量最低的可工业化催化剂。氢易能源 (团队孵化公司)形成的工艺包对比国际主流LOHC提供商,在可用储氢密度、气源要求、单元储放氢能力等核心性能指标面均已具备较强竞争力。且公司目前已在氮杂环储氢介质、储放氢催化剂等领域取得多个创新成果,相关产品已成功实现规模化生产及商业应用。团队现有教授5名、副教授5名、在读博士、硕士20余名,全职工作人员近百人。"},{type:"img",text:A("6f8d")},{type:"p",text:"氢易能源通过创新平台深化顶尖高校合作,协同开展人才培养、学科建设、科技创新,打通基础研究、应用开发、成果转移和产业化链条,催化产业技术变革。以共建国家产教融合创新平台为纽带,以服务国家战略需求为使命,不断开辟发展新领域新赛道,塑造发展新动能新优势,打造高质量发展的新引擎。"}]},{title:"世界氢能技术大会|方涛教授演讲“有机液态储氢载体:从基础研究到工程放大”",outerImg:A("dfcb"),publishTime:{year:"2023",month:"05",day:"24",time:"14:20"},theme:[{type:"p",text:"2023年5月23日,由中国科学技术协会、中国机械工业联合会和国际氢能协会共同主办的2023世界氢能技术大会(WHTC2023)在佛山南海开幕,本届大会以“氢能与双碳战略:从现在到未来”为主题,聚焦双碳战略下全球氢能领域的最新产品、技术及装备,以及氢能在交通、能源、化工、冶金及建筑等领域的应用。"},{type:"img",text:A("dfcb")},{type:"p",text:"氢易能源技术委员会主任、西安交通大学化工学院教授方涛参与会议演讲,其演讲题目为“有机液态储氢载体:从基础研究到工程放大”。方涛教授指出,与传统的石油燃料易运输、可规模化存储不同,当前主流的氢储运技术在能效、安全性和成本上尚存难点。利用有机液体储氢技术,每千克氢的储运成本最高可降低47%,在运输环节具有规模大、高周转等明显优势。"},{type:"img",text:A("074a")},{type:"p",text:"有机液体储氢技术不仅可用在建筑供热领域,还可在加氢站供氢、交通供能、工业用氢及储能等多元场景中大规模应用,有助于实现多种能源资源的灵活互补,大幅降低用能成本,创造经济价值和环境价值。"},{type:"img",text:A("04cf")},{type:"p",text:"方涛教授认为,在加氢站供氢方面,有机液体储氢技术可解决高压加氢站内规模化储运氢的难题,站内储氢更加安全、高效,具有投资强度低、供氢成本低、建设面积小、审批难度低等优势,可破除制约氢能作为危化品运输的制约,从根本上完善氢能生产、储运和供销体系,大幅助力加氢站建设推广。“目前,有机液体储氢技术已在日本进行商业化探索,通过在文莱建设天然气重整制氢、加氢工厂,在日本川崎建设脱氢厂,实现了有机液体长距离海运输氢。”"},{type:"img",text:A("49a2")},{type:"p",text:"相信在不久的将来,随着技术的不断深入发展,有机液体储氢将成为氢能储存运输的主流方式之一。"}]}],6:[{title:"陕西省委书记赵一德在氢易能源公司调研",outerImg:A("7af6"),publishTime:{year:"2023",month:"06",day:"14",time:"19:00"},theme:[{type:"p",text:"按照主题教育安排,6月12日至13日,陕西省委书记赵一德在西安市调研高质量发展情况。他强调,西安是国家中心城市和省会城市,在陕西高质量发展、现代化建设中肩负特殊重要责任。要深入学习贯彻习近平总书记在听取省委和省政府工作汇报时的重要讲话精神,完整、准确、全面贯彻新发展理念,紧扣高质量发展首要任务,协同推进城市转型和产业创新,更好发挥省会城市示范带动作用,为奋力谱写中国式现代化建设的陕西新篇章作出更大贡献。"},{type:"img",text:A("7af6")},{type:"p",text:"13日下午,赵一德一行来到位于沣东新城科创智慧产业园的氢易能源西安研发中心。氢易能源创始人、CEO王斌和联合创始人张健铮向各位领导介绍了公司技术及发展情况。"},{type:"img",text:A("6688")},{type:"p",text:"王斌表示,两年前,陕西省全面推动“三项改革”试点工作,有效破解了科技成果转化中“不敢转”、“不想转”的难题,在西安交通大学和秦创原创新驱动平台的共同推动下,氢易能源于2021年底正式设立。"},{type:"p",text:"在半小时的调研过程中,赵一德详细询问了公司发展历史、技术研发、产能建设等情况,王斌一一进行了解答。受益于西安市、西咸新区各部门和秦创原创促中心的大力支持和帮助,公司自成立起便进入发展快车道,现已搭建起涵盖储放氢催化剂、有机氢载体、储放氢装置等领域的全链条研发平台,技术方案处于领先水平。在秦创原(咸阳)创新促进中心的协助下,氢易能源已与彬州市政府建立合作关系,将首个生产工厂落地彬州市新民高端能化园区,并与区内企业形成产业协同。未来产能落地以后,公司技术方案将为打通陕北能源基地与西安之间的氢供应走廊提供极大助力。与此同时,公司已完成两轮股权融资,得到了包括红杉中国基金、重塑集团、陕西高校科创基金等国内知名投资机构和行业龙头企业的加持,助力公司产能建设与市场推广。"},{type:"p",text:"赵一德对公司目前取得的成绩表示赞赏,并勉励公司坚定不移走好创新发展的路子,紧盯市场需求,为陕西省的氢能产业发展贡献力量,同时不断开辟新领域新赛道,培育竞争新优势。"},{type:"img",text:A("bfcc")},{type:"p",text:"省委常委王晓、方红卫、王琳,副省长戴彬彬,西安市市长叶牛平,省直有关部门负责同志,西咸新区党工委书记杨仁华参加相关调研。"}]},{title:"“人才兴咸”|氢易能源CEO王斌现场签约",outerImg:A("1130"),publishTime:{year:"2023",month:"06",day:"21",time:"12:00"},theme:[{type:"p",text:"6月20日,咸阳市第二届“人才兴咸”大会成功举行。大会深入学习贯彻党的二十大精神和习近平总书记在听取省委和省政府工作汇报时的重要讲话精神,落实全省“三个年”活动要求,以“慧聚秦创原、赋能先行区”为主题,加强政产研学金深度融合,为加快建设现代化“西部名市丝路名都”贡献科技人才力量。"},{type:"img",text:A("1130")},{type:"p",text:"市长冷劲松致欢迎辞。市人大常委会主任汪文展,市政协主席李晓静出席并见签。市委副书记贾珉亮主持。市委常委、组织部部长王宏兵推介咸阳人才服务政策,市委常委、副市长李慧超参加,副市长李忠平推介打造秦创原科技成果转化先行区建设情况。咸阳高新区管委会主任毛建荣参加活动。"},{type:"p",text:"会上,陕西氢易能源科技有限公司与咸阳市彬州市签约彬州市新型有机液体储氢材料中试项目,氢易能源年产万吨有机液体储氢材料及配套催化剂项目正式落地彬州市新民高端能源化工园区。"},{type:"img",text:A("c29b")},{type:"img",text:A("5958")},{type:"p",text:"本次大会以线上召开、线下集中签约的方式举行,设主会场1个、分会场13个,共邀请到省内外42所高校、34所科研院所、4家金融投资机构和31家企业。签约项目253个、总投资额701.2亿元,涵盖科技成果转化项目、企业与高端人才创新团队合作项目、金融+科技项目、招商引资类项目。"},{type:"p",text:"氢易能源将密切协同创新,强化融合力度,做好科研创新的“出题人”、平台建设的“保障人”、成果应用的“受益人”。寻求高质量发展的最优路径,推动我国储能行业产业实现跨越式发展,为实现我国“双碳”目标作出贡献。"}]},{title:"福布斯国际大厦将成为全球首个使用LOHC氢系统运行的摩天大楼",outerImg:A("ab57"),publishTime:{year:"2023",month:"06",day:"28",time:"09:56"},theme:[{type:"p",text:"来源:新能源网 china-nengyuan.com"},{type:"img",text:A("ab57")},{type:"p",text:"Magnom Properties宣布,未来主义的“福布斯国际大厦(Forbes International Tower)”将是世界上第一个完全使用液态有机氢载体(LOHC)系统的项目。LOHC技术使氢气能够以安全、环保的方式储存、运输和释放。"},{type:"p",text:"根据零碳排放商业大厦的可持续发展愿景,Magnom Properties与能源管理和自动化数字化转型的领导者施耐德电气(Schneider Electric)以及全球制氢和储能解决方案公司H2-Enterprises签署了一份谅解备忘录(MoU),以挖掘清洁氢的长期潜力,加速实现由Adrian设计的福布斯国际大厦雄心勃勃的零碳排放目标史密斯·戈登·吉尔建筑事务所(即GG建筑事务所)。"},{type:"p",text:"福布斯国际大厦利用H2-Enterprises的专有技术,利用以前不可回收的塑料和其他有机垃圾作为能源生产的原料,利用施耐德电气的创新能源管理数字解决方案,生产清洁氢气,不仅可以解决关键的能源挑战,还可以以可持续的方式为塔楼的运营提供24/7的电力需求。"},{type:"p",text:"关键的能源挑战"},{type:"p",text:"根据战略合作伙伴关系,计划在阿联酋,沙特阿拉伯和埃及建造的福布斯国际大厦(Forbes International Tower)将通过利用可再生废物来源以气候中性方式生产的清洁氢来满足其运营需求,从而应对关键的能源挑战。剩余的无二氧化碳排放、安全且易于储存的清洁氢气将用于广泛的其他应用,以支持该地区企业的能源需求。"},{type:"p",text:"谅解备忘录签约仪式在位于迪拜国际金融中心(DIFC)ICD Brookfield place的Magnum Properties办公室举行。"},{type:"p",text:"Magnom Properties的首席执行官Maged Marie说:“清洁氢代表了发电的未来。通过采用新的垃圾制氢技术来满足其能源需求,福布斯国际大厦再次展示了其在推动创新以提高能源效率和实现零碳排放愿景方面的主导作用。”"},{type:"p",text:"“与施耐德电气和H2-Enterprises的合作进一步加强了我们对建设自我维持、环保智能结构的承诺,并将福布斯国际大厦置于该地区可持续发展格局变革的最前沿。”"},{type:"img",text:A("fdf0")},{type:"p",text:"全球能源转型"},{type:"p",text:"通过这一伙伴关系,福布斯国际大厦(Forbes International Tower)解决了垃圾污染和创造清洁能源这两项全球环境挑战。通过建设氢气生产、储存、运输和贸易能力,它为全球能源转型和氢经济的出现铺平了道路。"},{type:"p",text:"施耐德电气中东非洲地区数字能源软件副总裁Amel Chadli表示:“通过利用清洁氢技术,福布斯国际大厦体现了施耐德电气对电力4.0的愿景,以及我们通过能源供应脱碳实现净零建筑的承诺。这个具有里程碑意义的项目为可持续发展的未来铺平了道路,重新定义了我们在中东和非洲推动和塑造建筑环境的方式。”"},{type:"p",text:"所利用的能源很可能超过建筑物所需的容量。此外,清洁氢能源的多用途特性使其非常适合建筑内的各种用途,包括提供热量和满足其他能源需求,进一步最大化福布斯国际大厦的效率和资源。"},{type:"p",text:"这种创新的方法产生了负的净碳足迹,也利用了垃圾产生的能量。"},{type:"p",text:"零排放电气化"},{type:"p",text:"关键的能H2-Enterprises首席执行官Stusch表示:“随着这一具有里程碑意义的谅解备忘录的签署,房地产零排放电气化的过渡正在进行中,由LOHC产生的氢气提供动力。”源挑战"},{type:"p",text:"他补充说:“我们很高兴能与Magnum Properties和AS GG合作建设福布斯国际大厦,这是一个提升绿色建筑设计和零排放标准的项目,将推动现代建筑的发展。”"},{type:"p",text:"“通过与施耐德电气作为我们尊敬的合作伙伴合作,我们可以迅速部署这一变革性技术,这是我们坚定不移的承诺的一部分,即应对气候变化,到2030年将全球气温上升限制在1.5°C以内。通过这种合作,并在全球各地的未来建筑中采用这种创新技术,我们可以加快变革进程,拥抱可持续发展的未来。”"},{type:"p",text:"通过合作,Magnum Properties将利用清洁氢的长期潜力,加速实现福布斯国际大厦雄心勃勃的零碳目标。利用施耐德电气在智慧城市和建筑领域引入的专业知识和创新技术,将使摩天大楼能够实现其可持续发展目标,减少电费,合理化能源消耗并提高整体生活质量。"},{type:"p",text:"(原文来自:氢能新闻 全球氢能网、新能源网综合)"},{type:"p",text:"标签:福布斯国际大厦 液态有机储氢 垃圾制氢"}]}],7:[{title:"西安市委组织部赴西咸新区开展主题党日活动",outerImg:A("447e"),publishTime:{year:"2023",month:"07",day:"05",time:"15:13"},theme:[{type:"p",text:"为庆祝中国共产党成立102周年,7月4日下午,西安市委组织部副部长、市公务员局局长张勇一行赴西咸新区开展主题党日活动。市委组织部一行从市委出发,前往科创智慧产业园参观陕西氢易能源科技有限公司。"},{type:"img",text:A("447e")},{type:"p",text:"氢易能源CEO王斌博士向市委组织部副部长张勇、西咸新区管委会副主任杨胜良一行介绍了企业的发展历程,并就招聘和用工情况做了重点说明。在得知企业招聘的18名应届硕士毕业生即将入职后,张勇和杨胜良表示赞赏,同时指出高校毕业生等青年群体就业创业工作事关高质量发展、民生福祉和社会稳定,政府始终高度重视,要把促进高校毕业生等青年就业工作摆在突出位置。"},{type:"img",text:A("c61b")},{type:"p",text:"最后,张勇表示,新能源行业对从业人员的素质要求很高,需要大量研究型人才,同时这类人才又要具有跨学科的知识背景。氢易能源专注科技研发、积极开拓新市场,是西咸新区的标杆型科技企业,政府要持续支持,不断鼓励科创研究,保护企业创新和培养人才的积极性。"}]},{title:"榆林市委副书记李雄斌一行在氢易能源公司调研",outerImg:A("ca2f"),publishTime:{year:"2023",month:"07",day:"08",time:"10:31"},theme:[{type:"p",text:"7月7日,榆林市全巿秦创原工作推进会在西咸新区沣东新城立体联动孵化器总基地召开。会前,榆林市委副书记李雄斌、榆林市委组织部长谢杉,榆林市委常委、副市长赵勇一行来到位于秦创原科创大厦的氢易能源公司进行调研。"},{type:"img",text:A("ca2f")},{type:"p",text:"氢易能源创始人、CEO王斌和联合创始人张健铮向各位领导进行了介绍。李雄斌一行仔细询问了相关技术细节,王斌一一进行了解答。"},{type:"img",text:A("f4de")},{type:"p",text:"最后,李雄斌书记表示,氢能产业是战略性新兴产业和未来产业的发展方向。榆林每年有近200亿立方米的副产氢,同时具备制氢低成本优势和工业需氢量大、重卡改氢规模大相叠加的巨大市场优势,发展氢能产业具有丰富的资源优势、完善的产业配套、特有的应用场景。推动氢能产业链式发展新突破,打造千亿级氢能产业集群规划前景广阔。希望氢易能源未来与榆林市各县区及相关企业加强交流合作,持续推进科技成果转化,不断推动榆林“西部氢谷”建设、促进区域氢能产业高质量发展。"}]},{title:"山东省莒南县县长厉伟一行到氢易能源研发中心进行合作交流",outerImg:A("ec81"),publishTime:{year:"2023",month:"07",day:"18",time:"14:31"},theme:[{type:"p",text:"7月18日,山东省莒南县县长厉伟一行来到氢易能源研发中心,就氢能在莒南县钢铁、化工领域的应用进行合作交流。"},{type:"img",text:A("ec81")},{type:"p",text:"在参观过程中,厉县长详细了解了公司产品研发、市场拓展以及管理团队建设等方面的情况。氢易能源创始人、CEO王斌博士向各位领导进行介绍。厉县长对氢易能源的创新能力和专业技术给予了肯定,同时也对企业未来的发展提出了宝贵的建议。"},{type:"p",text:"莒南县以临沂钢投氢能产业基地建设为依托,立足区域内独有的能源互补优势,全面打造资源共享、产品互补的“钢-焦-化-氢”一体化产业链,积极配套氢能产业。该氢能产业基地项目利用上游116万吨煤炭干馏处理综合利用项目副产的焦炉煤气,通过压缩、净化、脱碳、深冷分离制得LNG/CNG产品,深冷分离出口部分富氢气送至PSA提氢装置,生产工业氢产品和高纯氢产品。"},{type:"p",text:"厉县长表示,希望氢易能源能够参与到莒南县氢能大发展的队伍里来,为莒南县的氢能产业发展提供支持和帮助,共同发展壮大。"},{type:"img",text:A("faf9")},{type:"p",text:"氢易能源CEO王斌博士表示,莒南县依托其良好的地理区位优势及氢能上下游产业配套建设,为氢能产业的发展奠定了基础,希望后期双方能够加强合作,共同推动氢能行业的共同发展。"},{type:"p",text:"莒南县招商局、县机关保障中心等同志参与考察,氢易能源联合创始人、总经理张健铮等参与接待。"}]},{title:"“打通氢能储运关键环节”|氢易能源参加势银氢储运&加氢站产业大会",outerImg:A("b85f"),publishTime:{year:"2023",month:"07",day:"27",time:"09:23"},theme:[{type:"p",text:"7月27日,由势银(TrendBank)主办、浙江蓝能氢能科技股份有限公司联合主办的2023势银氢储运产业大会在上海新华联索菲特大酒店正式召开。"},{type:"img",text:A("b85f")},{type:"p",text:"会上,陕西氢易能源科技有限公司(简称:氢易能源)联合创始人、总经理张健铮作了题目为《基于有机液体储氢技术的新型氢气供应体系》的精彩报告。"},{type:"img",text:A("ebe3")},{type:"p",text:"氢易能源由西安交通大学化工学院孵化,致力于为氢气储运提供安全、高效、低成本解决方案。氢易能源的有机液体储氢技术体系由载体技术、催化技术与工艺技术三方面相结合,可实现氢源端定向反应储氢、常温常压下安全运氢、用氢端稳定持续高纯度放氢,同时有机储氢载体可以循环再利用,从而实现更具经济性的氢气供应体系。"},{type:"p",text:"张健铮表示:“现在行业中的有机液体储氢技术路线有很多,氢易能源凭借十多年研发积累得出的经验是:以N-杂环芳烃为载体的技术路线最具潜力。以N-杂环芳烃为载体的有机液体储氢体系,可实现200℃以下储放氢,能耗更低,易进行多系统耦合,同时放氢流速更高,放氢纯度可达99.997%,并且过程中没有CO、NH₃等易毒化燃料电池系统的气体生成。以N-杂环芳烃为载体的技术路线在科研领域有很多团队在进行研究,但在商业领域应用得不多,归结原因主要还是N-杂环芳烃本身价格较高(高于20万/吨)。氢易能源之所以坚定不移地走N-杂环芳烃的路线,是因为氢易能源在低成本合成该载体的技术上取得突破,使得该载体的获取成本下降近70%。与此同时,氢易能源的另一个技术优势是通过催化技术和工艺技术的结合,能够实现低纯度氢气的存储,高纯度氢气的释放,从而省去了粗氢提纯的成本,进一步提升了体系的经济性。”"},{type:"p",text:"目前,氢易能源自主研发的储放氢设备已完成10Nm³级反应的工艺验证和优化,公司已具备面向吨级加氢站的技术能力,与合作伙伴共建的有机液体储氢示范项目也将于2024年正式投运。"},{type:"img",text:A("e79d")},{type:"p",text:"近日,氢易能源N-杂环芳烃和催化剂生产工厂正式落地陕西咸阳,预计将于2024年二季度投料试产,经过逐步的产能释放,公司将在2024年下半年实现每日30吨氢的储运能力。"},{type:"p",text:"未来,氢易能源将基于自身技术,拓宽有机液体储氢技术的应用领域,积极推动产业降本。氢易能源期待携手合作伙伴,共同推动实现安全、高效、低成本的新型氢供应体系。"}]}],8:[{title:"【交大新闻网】产教融合、协同育人正当时",outerImg:A("abd9"),publishTime:{year:"2023",month:"08",day:"05",time:"10:03"},theme:[{type:"p",text:"基础研究是科技创新的源头"},{type:"p",text:"在西安交通大学化学工程与技术研究院内,方涛教授团队暑假期间仍保持着紧张的科研进程,对有机液体储氢技术持续进行优化研究。团队深耕有机液体储氢技术十余年,2021年依托“秦创原”平台成功孵化为陕西氢易能源科技有限公司。"},{type:"img",text:A("abd9")},{type:"p",text:"关键核心技术自主可控是坚实基础"},{type:"p",text:"氢易能源创始人、CEO王斌博士表示:“氢易能源作为西安交通大学科技成果转化项目落户秦创原,经过一年多的发展形成了自有知识产权,构建起涵盖储放氢催化剂研发、有机氢载体生产、储放氢装备制造等领域业务板块的全链条研发平台,把握关键核心技术自主可控。目前,我们在做的有机液体储氢技术,在储运环节解决了氢气作为危化品储运的安全和复杂管理问题,整个储存和运输的过程中,氢气的储存、运输的成本和安全性都得到了大幅度的提升。”"},{type:"img",text:A("75b5")},{type:"img",text:A("182e")},{type:"p",text:"以应用研究推动产业向中高端迈进"},{type:"p",text:"应用研究前承基础研究,后启成果转化和产业化,应用研究确定基础研究成果的用途,为解决经济社会发展的实际问题提供科学依据,是推动产业发展和向中高端迈进的重要动力。"},{type:"p",text:"氢易能源始终秉持应用研究是创新链的重要环节这一观念。在团队不懈努力下,年底年产2000吨有机氢载体工厂即将投产,将应用于广东的示范项目,使其嵌入现有的氢能终端供应体系,将使研究成果真正从实验室走向产业化。"},{type:"img",text:A("d172")},{type:"img",text:A("c9a0")},{type:"img",text:A("b4c0")},{type:"p",text:"尊重人才培养规律 构建完备人才梯队"},{type:"p",text:"面对人才链与产业链深度融合发展需要,氢易能源瞄准国家战略目标和世界科技前沿,加强顶层设计的战略性和前瞻性,在氢能储运领域积累国产化核心技术,同时培养一批氢能领域研发和应用的人才队伍,建立长期稳定的科技前沿人才培养、激励等。为人才提供一流的创新平台,尊重科技人才,充分激发科技人才创新创造活力,发掘培养一线经验丰富、科研素养深厚、前瞻性目光敏锐、学科交叉能力突出的协同作战领军人才。"},{type:"img",text:A("0b38")},{type:"img",text:A("4d07")},{type:"img",text:A("6765")},{type:"p",text:"科研是在“无人区”长期探索的过程,经历着日复一日的单调、甘坐冷板凳的坚持,品尝着久旱逢甘霖的喜悦。炎炎夏日,正是在这苦与甜的品尝之中,团队将继续共同奋力追逐氢能领域的梦想,感受着科研的魅力。"},{type:"p",text:"报道来源:http://news.xjtu.edu.cn/info/1033/199777.html"}]},{title:"【国家电投广东公司】广东公司召开有机液体储氢企业标准评审会",outerImg:A("0364"),publishTime:{year:"2023",month:"08",day:"18",time:"11:35"},theme:[{type:"p",text:"国家电投广东公司与西安交通大学团队孵化企业陕西氢易能源科技有限公司合作研发的“有机液体储氢”和“加氢站耦合”等技术取得突破性进展。8月17日,在科创部的指导下,由国家电投广东公司广州分公司组织实施,召开有机液体储氢企业标准评审会,来自国内氢能行业各位知名专家、教授对该企业标准进行了深入探讨交流和评审。"},{type:"img",text:A("0364")},{type:"p",text:"结合高质量发展的需求,氢易能源与国家电投广东公司联合攻坚研发的“有机液体储氢”和“加氢站耦合”等技术取得突破性进展,完成了相关技术企业标准的编制,在理论上解决氢储运的难题,在技术和标准方面取得一定成就。"},{type:"p",text:"来自国内氢能行业的著名专家和教授一致认为该标准提供了站内制氢加氢站专用有机液态载体放氢催化剂的评价方法和验收规则,实现了重要突破、填补了行业体系空白,为建设氢储运输和运营企业的安全管理提供了有力指导。氢易能源独有的LOHC技术不仅有助于解决能源分布不均和季节能源供需矛盾等问题,还将极大地助力放氢催化剂应用和实现高质量发展,专家们一致同意通过该企业标准。"},{type:"img",text:A("7043")},{type:"p",text:"下一步,公司将根据专家评审意见和建议,继续推进与国家电投广东之间的合作,将有机液体储氢企业标准进行修编完善,并实践于示范应用,逐步推广为国内行业、团体标准,充分发挥知识产权及企业标准价值。充分促进氢易能源这样的科技领军企业发挥市场需求、集成创新、组织平台的优势,打通从科技强到企业强、产业强、经济强的通道,更好服务推动高质量发展。"},{type:"p",text:"报道链接:https://mp.weixin.qq.com/s/VQ7QhJxyyKqMWkblACfz6A"}]},{title:"【西安广播电视台】深入推进校地合作 促进科技经济深度融合",outerImg:A("c0ba"),publishTime:{year:"2023",month:"08",day:"21",time:"14:30"},theme:[{type:"p",text:"氢易能源以高水平科技自立自强助推高质量发展,在西安市、西咸新区各部门和秦创原创新促进中心的大力支持和帮助下,公司自成立起便进入发展快车道。现已搭建起涵盖储放氢催化剂、有机氢载体、储放氢装置等领域的全链条研发平台,技术方案处于行业领先水平。8月21日,西安广播电视台每日聚焦播发《西咸新区:深入推进校地合作 促进科技与经济深度融合》。"},{type:"img",text:A("c0ba")},{type:"p",text:"氢易能源科技有限公司位于沣东新城科创智慧产业园,是在西安交通大学和秦创原创新驱动平台联合推动下成立的储运氢技术公司。近期,在氢易能源研发中心,公司的研发团队正在围绕氢能的安全、高效、低成本储运技术进行新一轮的研发与测试。"},{type:"p",text:"在氢能全产业链中,其储运环节一直是制约我国氢能产业大规模应用的重要瓶颈,由于氢气特殊的物理化学性质,导致氢的存储和运输比固体煤、液体石油更困难。但氢易能源研发的核心技术,令氢的安全、高效、低成本储运将不再是一件难事。"},{type:"p",text:"工艺总监王海强介绍,公司研发的有机液体储氢技术除安全性更高以外,相较于传统的高压力储氢方式,其储氢密度可以提升五至十倍。"},{type:"img",text:A("4cd1")},{type:"p",text:"氢易能源研发的储氢液体具备可循环使用的特性,在一定程度上同样降低了储运的成本。此外,公司一直以来都致力于突破关键核心技术难题,在重点领域、关键环节已实现自主可控,所研发的新型有机氢载体和加脱氢催化剂均为公司团队独立开发,掌握完全自主知识产权。"},{type:"img",text:A("4504")},{type:"p",text:"目前,公司与地方政府和国有企业联合承建的示范项目正在筹备中,预计2024年投运,届时将实现国内有机液体储氢技术商用“零”的突破。"},{type:"p",text:"基础研究是原始创新的根基,氢易能源将进一步加快协同创新,推进关键核心技术攻关,抢占行业制高点,坚定创新自信,坚持走中国特色自主创新道路,不断向科学技术的广度和深度进军。"},{type:"p",text:"报道链接:http://v.xiancity.cn/folder6/folder75/folder360/folder361/2023-08-21/266189.html"}]}],9:[{title:"【陕西新闻联播】“氢”装启程蓄势勃发 新引擎开拓产业绿色转型发展新赛道",outerImg:A("ace5"),publishTime:{year:"2023",month:"09",day:"17",time:"11:30"},theme:[{type:"p",text:"氢易能源积极践行绿色发展理念,牢牢把握时代脉搏,主动作为,在氢能产业的新征程上跑出了绿色发展的加速度,正成为氢能产业发展的先锋力量之一。9月16日晚,陕西广播电视台《陕西新闻联播》播发氢易能源团队科技成果及应用转化情况。"},{type:"p",text:"“氢”装上阵 奔赴绿色转型发展新赛道"},{type:"p",text:"西安交通大学创新港校区内,氢易能源技术委员会主任、化工学院方涛教授带领的科研团队十余年深耕有机液态储氢技术,积极推进有机液态储氢载体技术在加氢站、氢纯化、风光电氢储能、氢动力船等在实际场景中的工程应用。"},{type:"p",text:"方涛教授向记者介绍道:“现在市面上一吨价格22万的储氢载体,我们能够把成本降至4万-5万,相关的加氢脱氢高效反应器已进入第三代研发阶段。”"},{type:"img",text:A("ace5")},{type:"p",text:"“氢”程无限 助推双碳目标 践行绿色发展"},{type:"p",text:"在秦创原创新驱动平台推动下,方涛、王斌团队在西咸新区成立了氢易能源科技有限公司。最近,由氢易能源实施的基于自主催化技术的10m³/h级氮杂环可逆储放氢中试实验取得成功,解决了氢气在储运过程中的卡脖子难题,成为国内首个掌握该技术的商业公司。"},{type:"p",text:"记者了解到,此项新型有机液态储氢技术由氢易能源独立开发、掌握完全自主知识产权。将该技术用于储存氢气,能够实现氢气在储运过程中由Ⅰ类危化品向普通化学品的质变。"},{type:"img",text:A("b455")},{type:"p",text:"氢易能源研发工程师王翊骁说:“氢易能源所开发的有机载体不仅储氢密度大,是传统高压储氢的5-10倍,并且不易燃、不易爆、不易挥发,使用普通拖车运输即可,是氢能储运环节的一大突破。”"},{type:"img",text:A("a617")},{type:"img",text:A("c8cd")},{type:"p",text:"厚植氢能 “氢”启未来"},{type:"p",text:"陕西省氢能发展已经进入快车道阶段,氢易能源将继续聚力氢能产-学-研一体化,有力推动氢能产业链上中下游衔接配套,为推动全国氢能产业高质量发展贡献力量,为全球氢能行业绿色低碳发展提供更好的“氢易方案”。"}]},{title:"创新储能技术引领者|氢易能源参加2023年中国全面储能产业发展峰会",outerImg:A("fab4"),publishTime:{year:"2023",month:"09",day:"20",time:"12:00"},theme:[{type:"p",text:"2023年9月18-19日,“2023中国全面储能产业发展峰会”于广东省深圳市举办 。本次会议的主题为“全面储能赋能零碳•千企社群共襄未来”。"},{type:"p",text:"随着储能技术的发展,将新能源与相关储能技术相互结合、共同发展,正成为推动现代能源体系建设的重要方向,能源新产业、新业态,已经成为世界各国关注的焦点,是国际能源战略、先进制造业的重要指标。"},{type:"img",text:A("fab4")},{type:"p",text:"陕西氢易能源科技有限公司技术委员会主任、西安交通大学化工学院方涛教授作为公司代表参加峰会,并在“氢机磁热储能产业发展论坛”中发表演讲。会上,方涛教授讲解了有机液态储氢综合体系、基于氢易能源独有的产品技术背景下的应用场景、公司现阶段发展状况及取得的各项成果等内容,得到了能源领域两院院士郭烈锦先生的肯定,并表示此路线的成熟应用将为解决全球能源危机和推动可再生能源的发展提供新的可能。"},{type:"img",text:A("79c2")},{type:"img",text:A("56df")},{type:"img",text:A("1e1c")},{type:"img",text:A("9b37")},{type:"p",text:"氢易能源在技术装备研发、示范项目建设、商业化模式探索等方面都已取得了实质性进展。将进一步依托产业相关平台以有机液态储氢作为基础、与产业相关企业联动,集聚优势资源实现合作共赢,努力打造氢产业示范典型。为推动储能规模化、产业化、市场化发展,推进氢能产业上下游融合,助力碳达峰、碳中和的快步实现作出贡献。"}]}],10:[{title:"【全国一等奖】氢易能源获第八届“创客中国”高校成果转化中小企业创新创业大赛企业组全国一等奖",outerImg:A("8bbe"),publishTime:{year:"2023",month:"10",day:"16",time:"12:34"},theme:[{type:"p",text:"近日,由工信部、财政部联合举办的第八届“创客中国”高校成果转化中小企业创新创业大赛决赛结果公布。陕西氢易能源科技有限公司“基于有机液体储氢技术的新型氢气供应体系”项目荣获企业组全国一等奖。"},{type:"img",text:A("f58e")},{type:"p",text:"“创客中国”大赛作为全国性赛事,在激发创新潜力,集聚创业资源,营造创新创业氛围方面具有突出优势,致力于发掘更多高校科技成果转化创新项目,孵化一批科技成果转化优质企业,激发高校创新活力和成果转化潜力,推动科技成果有效“赋智”中小企业。"},{type:"img",text:A("8bbe")},{type:"p",text:"作为西安交通大学科技成果转化项目,氢易能源于2021年落户沣东新城秦创原科统区。在沣东新城秦创原相关政策支持下,企业步入发展快车道,已构建起涵盖储放氢催化剂研发、有机氢载体生产、储放氢装备制造等领域业务板块的全链条贯通研发平台,相关专利技术均处于全国领先水平。"},{type:"img",text:A("4066")},{type:"img",text:A("a784")},{type:"p",text:"氢易能源研发的有机液态储氢技术(LOHC-Tech),具有储氢密度高、极致安全、绿色环保、经济性佳、适用范围广的技术优点,可有效降低产业储运成本,解决了氢气在储运过程中的“卡脖子”难题,填补了行业相关领域技术空白,并且该技术相关的新型有机氢载体和加脱氢催化剂均为氢易能源独立研发,掌握完全自主知识产权。"},{type:"img",text:A("f9c0")},{type:"img_desc",text:"实验团队进行研发试验"},{type:"p",text:"目前,氢易能源正在筹备与该技术相关的全新示范项目,预计2024年投运,届时将实现国内有机液态储氢技术商用“零”的突破。"}]}],11:[{title:"氢易能源获近亿元A轮融资,加速有机液态储氢技术产业化落地",outerImg:A("06fc"),publishTime:{year:"2023",month:"11",day:"01",time:"08:24"},theme:[{type:"p",text:"摘要:氢易能源首个生产工厂目前已开工建设,将于2024年正式投产,届时公司将具备每天数十吨的氢储运能力。"},{type:"p",text:"陕西氢易能源科技有限公司(以下简称“氢易能源”)近日已完成近亿元A轮融资。本轮融资由国中资本领投,西安财金跟投。本轮资金将用于产线建设与持续研发,进一步巩固公司在国内有机液态储氢技术领域的领先优势。在本次融资之前,氢易能源已获得来自红杉中国种子基金和重塑集团领投的两轮投资。"},{type:"img",text:A("f82e")},{type:"p",text:"氢易能源团队脱胎于西安交通大学化工学院,基础研究团队由方涛教授带头于2009年组建,是首批在全球范围内开展LOHC技术(Liquid Organic Hydrogen Carriers,液态有机物储氢)研究的团队之一。"},{type:"p",text:"氢易能源创始人、CEO王斌博士对记者表示,从第一性原理出发,有机液态储氢是最佳选择,因为它从根本上解决了氢存在形式的问题。“虽然在技术推广初期会存在系统集成度不高、工艺响应慢等问题,但可以通过持续的研发和积累项目实践经验来解决。”王斌说,“一旦突破了临界点,该技术便可以有力地革新现有的氢供应体系,创造出巨大的价值。”"},{type:"p",text:"从技术路线上来看,氢易能源选取的是基于氮杂环芳烃的储放氢体系。王斌介绍,有机液态储氢技术的实现,需要两类核心材料:一是储氢载体;二是对应的储/放氢催化剂。"},{type:"p",text:"氮杂环芳烃是学术界和产业界从基础化学原理出发,设计出的性能最佳的有机储氢载体。此前,限制其商用的主要原因是生产成本高昂,一吨氮杂环芳烃的售价达到数十万元,严重制约了该技术方案的应用推广。因此,从材料经济性出发,很多技术开发和项目团队被迫选择了更加易得的储氢载体,牺牲了储氢性能,增加了运营成本。"},{type:"p",text:"氢易能源花费数年时间,自研了氮杂环芳烃的全合成工艺,大幅降低了储氢载体的获取成本。而在储/放氢催化剂方面,氢易能源技术团队已持续研究十余年,是公司的传统优势方向。目前,氢易能源首个生产工厂已开工建设,将于2024年正式投产,届时公司将具备每天数十吨的氢储运能力。"},{type:"p",text:"除了技术方面的持续迭代,氢易能源在商业化层面也不断取得进展。截至目前,氢易能源已与国电投集团、中国海工、鹏飞集团、舜华新能源、海德利森等多家氢能产业链企业建立起合作伙伴关系,规划的多个商业示范项目将于2024年起有序落地。届时,海上风电、“沙戈荒”光伏、工业副产等多种形式产出的氢气均可与有机液态储氢技术结合,以安全、低成本的形式储运至应用地。"},{type:"p",text:"投资人观点:"},{type:"p",text:"国中资本西安负责人高博:有机液态储氢技术相较于其他各种氢气储运方式具备显著优势,特别适合于大规模长距离的氢气储运。氢易能源团队在该领域的研究长达十余年,在设立公司不到两年的时间里又在产业化方面取得迅猛进展,逐步奠定了在该领域的领先优势。国中资本将持续践行“扶小做大”的投资使命,全力支持和培养更多行业标杆企业,努力为投资人创造良好的回报,共同助力中国经济高质量发展。"},{type:"p",text:"西安财金基金相关负责人:西安财金将深入贯彻落实西安市委、市政府关于创新立市各项决策部署,聚焦主责主业,服务实体经济,切实履行基金管理人职责,充分发挥创新基金支持创新创业和科技成果转化的作用,更好支持西安市产业链协同、创新创业和“专精特新”企业发展,助力西安市创投生态体系建设和实体经济高质量发展。"}]},{title:"九三学社北京市委副主委韩敏芳一行到氢易能源参观交流",outerImg:A("33d0"),publishTime:{year:"2023",month:"11",day:"03",time:"11:13"},theme:[{type:"p",text:"2023年11月3日,九三学社北京市委会副主委、清华大学能源与动力工程系学术委员会副主任、燃料电池与储能研究中心主任、长江学者特聘教授韩敏芳,带领参观考察团队来到氢易能源科技有限公司(以下简称“氢易能源”),对公司的氢能研究和产业化情况进行深入交流与探讨。西咸新区党工委委员、管委会副主任陈辉、秦创原创新促进中心副主任卢宁陪同考察。"},{type:"img",text:A("33d0")},{type:"p",text:"参观过程中,氢易能源董事长兼CEO王斌博士为韩敏芳教授一行详细介绍了公司LOHC技术在氢能产业链发展中处于的关键位置和创新点,以及在燃料电池、氢能储运等领域的突破。此外,公司团队还展示了氢能在工业、交通、电力等领域的应用案例,与韩教授分享了氢能产业的发展趋势和前景。"},{type:"img",text:A("85a1")},{type:"p",text:"韩敏芳教授在深入了解公司的氢能技术研发、产品应用及市场推广情况后,对氢易能源在氢能领域的卓越成就表示赞赏,并结合实际案例,提出了富有指导性、现实性、针对性的新观点。韩教授表示:“氢能作为一种清洁、高效的能源形式,对于解决全球能源危机和环境污染问题具有重大意义。氢易能源发展基础优良、动能充沛、前景广阔,在氢能产业链的关键环节上取得的多项突破,对于推动我国氢能产业的发展具有积极作用。”她还强调,“九三学社作为学术界高、中级知识分子为主的具有政治联盟特点的政党,将继续关注和支持包括氢易能源在内的氢能企业的发展,希望氢易能源能够继续发挥自身优势,助推我国氢能产业全方位高质量发展。”"},{type:"img",text:A("31ed")},{type:"p",text:"未来,九三学社北京市委与氢易能源将谋求务实合作、共享发展机遇;共同探索我国氢能产业的发展路径;助推我国氢能产业链构筑、为高质量跨越式发展增添新动能。相信在双方的共同努力下,氢能产业将会在我国的能源矩阵中扮演更加重要的角色。"}]},{title:"【革新创享 聚势三秦】氢易能源参加民革中央助力陕西经济高质量发展招商大会项目签约仪式",outerImg:A("2f4f"),publishTime:{year:"2023",month:"11",day:"03",time:"11:34"},theme:[{type:"p",text:"2023年11月3日,以“革新创享 聚势三秦”为主题的民革中央助力陕西经济高质量发展招商大会在西安开幕。本次大会由中共陕西省委统战部、陕西省商务厅、民革陕西省委会承办。全国政协副主席、民革中央常务副主席何报翔出席开幕式并讲话。陕西省委书记赵一德致辞,省长赵刚主持。"},{type:"img",text:A("2f4f")},{type:"p",text:"氢易能源科技有限公司(以下简称“氢易能源”)作为陕西省的优秀企业代表之一参加此次签约大会。会上,沣东新城与氢易能源二期项目在现场签署了合作协议。此次签约的氢易能源二期项目位于沣东新城云检科创园内,建筑面积近5000平方米,将搭建起涵盖储放氢催化剂、有机氢载体、储放氢装置等领域的全链条研发平台,预计5年内引入氢能专业人才300人,年营收达到10亿元。"},{type:"img",text:A("8605")},{type:"img",text:A("d112")},{type:"p",text:"与会期间,赵一德在介绍陕西省科技成果转化“三项改革”经验时提及氢易能源,并对公司的发展情况表示了肯定与赞赏。"},{type:"p",text:"氢易能源作为西咸新区氢能产业的典型代表,将进一步加强与民革中央和陕西省政府的沟通与合作,共同探索氢能产业的发展路径和未来拓展方向,为推动陕西经济的高质量发展注入强劲动力。"}]},{title:"陕西科技控股集团总经理周吉峰一行到氢易能源考察交流",outerImg:A("becc"),publishTime:{year:"2023",month:"11",day:"15",time:"22:30"},theme:[{type:"p",text:"11月15日,陕西科技控股集团党委副书记、总经理周吉峰一行来到氢易能源总部考察交流。氢易能源创始人、 CEO王斌博士与总经理张健铮陪同介绍。"},{type:"img",text:A("becc")},{type:"p",text:"参观过程中,王斌博士详细介绍了氢易能源自主研发的有机液态储氢技术,该项技术可将氢气转化为常温常压普通化学品,进行大规模、长距离、低成本安全储运,攻克了氢能领域的“卡脖子”难题。张健铮总经理则对公司现阶段融资及研发投入情况进行说明。周吉峰对公司取得的成就给予了高度赞赏,并表示陕西科技控股集团一直关注氢能领域的发展,氢易能源的研发实力和产业化成果令人印象深刻。"},{type:"img",text:A("6c8e")},{type:"p",text:"座谈会上,周吉峰对陕西科技控股集团目前在新能源相关领域的布局规划进行了简单介绍,并希望能够结合氢易能源优秀的科研实力,在氢能领域优势互补。随后,双方就陕西省内氢能产业共建、商业合作等方面达成多项共识。未来双方将携手同行,持续深化合作,为氢能行业的高质量发展蓄势赋能。"}]},{title:"【科技引领“秦”创未来】氢易能源参加丝博会 西咸副主任陈辉重点推介",outerImg:A("99f8"),publishTime:{year:"2023",month:"11",day:"16",time:"10:30"},theme:[{type:"p",text:"11月16日,氢易能源受邀参加第七届丝绸之路国际博览会暨中国东西部合作与投资贸易洽谈会。"},{type:"img",text:A("99f8")},{type:"p",text:"在第七届丝博会秦创原科技成果路演推介会上,西咸新区党工委委员、管委会副主任陈辉介绍秦创原创新驱动平台总窗口建设成果时,率先展示了由氢易能源自主研发的新型有机液态储氢载体及撬装式脱氢设备模型,并对公司技术、融资及发展情况等做详细介绍。"},{type:"img",text:A("7291")},{type:"img",text:A("64ba")},{type:"img",text:A("9899")},{type:"p",text:"西安国际会展中心开放平台展区内,氢易能源将公司产品进行了全方位、立体式的展示,令参观人员更加清晰的了解公司完备的技术体系和优秀的科技创新成果。接下来,公司将继续发挥自身优势,为高水平科技自立自强贡献“氢易”力量。"}]},{title:"【西安广播电视台】氢易能源专题报道 CEO王斌接受采访",outerImg:A("eeae"),publishTime:{year:"2023",month:"11",day:"22",time:"10:30"},theme:[{type:"p",text:"2023年11月22日,西安广播电视台对陕西氢易能源科技有限公司进行专题报道,公司董事长兼CEO王斌接受采访。"},{type:"img",text:A("eeae")},{type:"p",text:"报道中,王斌详细介绍了公司的发展历程、技术创新、业务领域以及未来规划。他表示,氢易能源是在西安交通大学和秦创原创新驱动平台联合推动下成立的储运氢技术公司。企业自成立以来,一直致力于新型有机液态储氢技术的研发和应用,希望通过创新技术和专业知识,推动氢能源在双碳时代背景下的普及和应用。"},{type:"img",text:A("d2f7")},{type:"p",text:"2022年入驻西咸新区沣东新城秦创原科统区以来,氢易能源依托先进的研发实力与强大的技术团队,在有机液态储氢技术领域取得了重大突破。氮杂环芳烃全合成工艺,更是打破了行业内的技术瓶颈,不仅显著降低了储氢载体的成本,还为推动有机液态储氢技术的广泛应用奠定了坚实基础。公司现已搭建起涵盖储放氢催化剂、有机氢载体、储放氢装置等领域的全链条研发平台,形成了特有的有机液态储氢技术体系,技术方案处于行业领先水平。"},{type:"img",text:A("d53e")},{type:"p",text:"王斌对记者道:“公司在发展过程中得到了秦创原创新驱动平台在场地上、人才政策上、税收政策上的大力支持和帮助。西咸新区和秦创原发布了一系列的氢能产业政策,这些相关氢能产业的政策落实,为我们西咸新区氢能行业的发展指明了方向,坚定了我们在西咸新区发展氢能产业的信心。”"}]},{title:"【50强诞生!】氢易能源入围第八届“创客中国”中小企业创新创业大赛前50强",outerImg:A("86e8"),publishTime:{year:"2023",month:"11",day:"23",time:"10:30"},theme:[{type:"p",text:"近日,第八届“创客中国”中小企业创新创业大赛50强公示名单完成公示,陕西氢易能源科技有限公司参赛项目——基于有机液体储氢技术的新型氢气供应体系,成功跻身大赛前50强。"},{type:"img",text:A("86e8")},{type:"p",text:"此项目将氢气与有机液态储氢载体在加氢催化剂的作用下通过加氢反应装置进行加氢,生成富氢氮杂环有机载体。富氢载体结构稳定,不易燃、不易爆,适用于常温常压条件下氢的大规模、远距离、低成本、高安全性存储和运输。在用氢端,富氢载体借助脱氢催化剂通过脱氢反应装置进行脱氢,释放出满足质子交换膜燃料电池用氢标准的高纯度氢气,同时脱氢完成后生成的贫氢载体又可以运回氢源地重新加氢使用,从而构成了本项目所述的新型氢气供应体系。"},{type:"p",text:"其中采用的新型有机液态储氢载体以氮杂环芳香烃为主要成分,借助其分子中的碳碳不饱和键实现氢气的可逆储存与释放,可实现氢气在常温常压条件下的大规模稳定储存与运输,具有储氢密度高、综合能效高、使用成本低且绿色环保等优点。此外,本方案与现有的石油化工、大宗化学品储运基础设施兼容度较高,商业化实现难度更小。"},{type:"p",text:"比赛中,评委们高度赞扬了氢易能源为推动有机液体储氢技术发展所作出的贡献,并对其创新性的研发成果给予了充分肯定。未来,氢易能源将继续秉承“创新驱动、科技引领”的发展理念,不断拓展新的应用领域和市场,为全球绿色能源事业贡献更多的智慧与力量。"}]},{title:"氢易能源荣登「WISE2023 未来商业之王 绿色能源领域年度企业」榜单",outerImg:A("02af"),publishTime:{year:"2023",month:"11",day:"28",time:"10:30"},theme:[{type:"p",text:"近日,在最新一期的WISE2023未来商业之王评选中,陕西氢易能源科技有限公司凭借在绿色能源领域的卓越表现,成功荣登「绿色能源领域年度企业」榜单。"},{type:"img",text:A("02af")},{type:"p",text:"此次获得「WISE2023 未来商业之王 绿色能源领域年度企业」的荣誉,无疑是对氢易能源在绿色能源领域所取得成就的认可,不仅彰显了公司在行业内的领先地位,也预示着公司将迎来更加广阔的发展空间和更加壮阔的光明前程。"},{type:"p",text:"公司将以此荣誉为契机,继续致力于推动有机液态储氢技术的发展,为实现双碳目标、构建可持续发展的未来作出新的贡献。"}]},{title:"2023中国能源研究会氢能专委会学术年会在北京召开 氢易能源CEO王斌受邀参会并做主题演讲",outerImg:A("6e9d"),publishTime:{year:"2023",month:"11",day:"29",time:"22:30"},theme:[{type:"p",text:"2023年11月29日,由中国能源研究会氢能专委会主办的【新型氢储运技术发展论坛暨2023中国能源研究会氢能专委会学术年会】在北京顺利召开。"},{type:"img",text:A("6e9d")},{type:"p",text:"本次论坛聚焦新型氢储运技术领域,多方面、多角度探讨氢能产业高质量发展路径。氢易能源创始人、董事长兼CEO王斌出席会议并作了题为《有机液态储氢技术工程放大及产业应用》的演讲,就有机液态储氢技术的发展与氢能行业各位专家学者进行了深入交流。"},{type:"img",text:A("8129")},{type:"p",text:"未来,氢易能源将与行业内仁人志士勠力同心、团结奋进,擘画能源行业绿色转型新蓝图,谱写氢能发展新篇章。"}]}],12:[{title:"【重磅发布 全球首台】2023年中国国际海事会展 有机液态储氢FPSO正式发布",outerImg:A("26a6"),publishTime:{year:"2023",month:"12",day:"07",time:"22:30"},theme:[{type:"p",text:"在2023年中国国际海事会展(Marintec China)上,中国海洋工程装备集团与氢易能源联合开发的海上风电有机液态储氢FPSO正式发布。"},{type:"img",text:A("26a6")},{type:"img",text:A("8867")},{type:"p",text:"本次发布的是全球首个海上风电有机液态储氢FPSO,标志着中国在海洋清洁能源领域已处于全球领先地位。长期以来,海上风电制氢一直缺乏合适的储运方案,产出的氢气无法低成本储运到岸进行利用,而氢易能源自主研发的有机液态储氢技术不仅能实现氢气在常温常压条件下的大规模稳定储存与运输,还具有储氢密度高、综合能效高且绿色环保等诸多优势。此外,FPSO在海上石油和液化天然气领域已形成相对成熟的解决方案,氢易能源研发的有机液态储氢技术与现有方案的兼容度较高,可以大大降低其耦合落地的难度。"},{type:"img",text:A("9d95")},{type:"img",text:A("de35")},{type:"p",text:"作为全球首台海上风电有机液态储氢FPSO的发布方,中国海洋工程装备集团与氢易能源共同表示,将继续深化合作,推动该项目的实际建设,为全球清洁能源技术的发展和推广做出贡献。"}]},{title:"陕西省市场监督管理局党组书记、局长张小平一行莅临氢易能源指导交流",outerImg:A("400e"),publishTime:{year:"2023",month:"12",day:"08",time:"22:30"},theme:[{type:"p",text:"近日,陕西省市场监督管理局党组书记、局长张小平,盘古智库副秘书长、长安研究院秘书长陈智慧一行莅临氢易能源考察调研,氢易能源董事长兼CEO王斌、总经理张健铮陪同。"},{type:"img",text:A("400e")},{type:"p",text:"在调研过程中,张小平详细询问了氢易能源在技术研发和产业应用方面的进展,同时就当前氢能行业的技术趋势和发展前景与两位创始人进行了深入探讨,为进一步加强政府与企业之间的合作提出了具体建议和意见。"},{type:"img",text:A("c58c")},{type:"p",text:"张小平对氢易能源在技术创新方面的专业性和前瞻性表示赞赏,并鼓励企业加强氢能产业协同创新、推动制-储-运-用全产业链融合,进一步巩固西部地区发展氢能产业的优势地位。双方还围绕推动氢能产业价值链延伸、打造氢能产业新业态、建设氢能产业标准体系等方面进行了交流。"},{type:"img",text:A("5639")},{type:"p",text:"结束调研时,张小平表示,市场监督管理局将一如既往地支持氢易能源等新能源企业的发展,期待共同深化氢能全产业链合作,引领氢能行业高质量发展。"}]},{title:"美国能源部投入3800万美元支持液体燃料储能技术研发",outerImg:A("6576"),publishTime:{year:"2023",month:"12",day:"13",time:"10:30"},theme:[{type:"img",text:A("6576")},{type:"p",text:"2023年12月12日,美国能源部(DOE)先进能源研究计划署(ARPA-E)宣布投入3800万美元,启动”利用液体实现离网可再生能源长期低成本存储”(GREENWELLS)计划,旨在开发化学反应器系统,将间歇性的可再生能源转化为低碳燃料或化学品,以最大限度发挥分布式可再生能源资源的优势。"},{type:"p",text:"该计划将支持开发化学反应器系统,将CO2和可再生能源电力以及氢气转化为含碳液体燃料。化学反应器系统及其辅助系统将被设计为动态响应间歇性可再生能源发电,用于开发未来可动态运行的可再生能源合成液体燃料工厂,目标是将至少30%的间歇性可再生能源电力经济地存储在液体燃料中,关注的技术包括动态反应器设计、催化剂开发和优化、制造方法、建模和工艺优化等。"},{type:"p",text:"来源:ARPA·E、中国科学院武汉文献情报中心先进能源科技战略情报研究团队"}]},{title:"高质量发展一线行·人物故事 | 王斌:我与陕西“深度绑定”",outerImg:A("3e51"),publishTime:{year:"2023",month:"12",day:"15",time:"22:30"},theme:[{type:"img",text:A("3e51")},{type:"p",text:"自2009年高考从山东老家考入西安交通大学化工学院,到2019年博士后出站留校工作,再到2021年成立科创企业陕西氢易能源科技有限公司,90后山东小伙王斌说,他与陕西“深度绑定”,成了一名“新陕西人”。"},{type:"p",text:"大学时期,王斌师从西安交通大学化工学院教授方涛。“我们是全球范围内首批开展有机液态储氢技术研发的团队之一。作为团队早期成员,我见证了技术发展的过程,也深度参与了关键难点的攻克。”王斌说。"},{type:"p",text:"10余年的技术积累,团队拥有有机液态储氢技术各项专利34项,建立了一套拥有完全自主知识产权的有机液态储氢—供氢整体解决方案,各项技术性能指标处于国际领先地位。"},{type:"p",text:"随着“双碳”目标提出,2021年开始,氢能产业发展的风口来了。“那一年,学校在职务科技成果转化、专利授权、职称评定等方面出台了一系列政策,让我们能够轻装前行。再加上秦创原出台的一系列促进科技成果转化的优惠政策,我们感觉天时地利人和都齐了,于是在年底注册成立了氢易能源,入驻秦创原。”王斌说。"},{type:"p",text:"一年时间,氢易能源在研发、融资等方面发展迅速,仅研发、运营人员就达到了100人左右。“秦创原创新促进中心根据企业实际情况,为我们协调了新的办公场地,4层楼近5000平方米,并且完全满足大型实验设备安装需求。”王斌说。"},{type:"p",text:"今年6月,由于氢易能源新建厂房需要符合化工用地要求,秦创原创新促进中心又帮助企业联系对接了秦创原总窗口咸阳协同创新基地(彬州市新民高端能源化工园区)。“我们去了一次,当场就敲定了入驻事宜。”王斌说,“咸阳协同创新基地的工作人员在手续办理、厂房建设等方面提供了极大帮助。”"},{type:"p",text:"好环境会“说话”。氢易能源的快速发展,吸引了省内外顶级投资机构和企业的关注。“投资人对项目进度是有推进要求的,去年还有疫情影响的情况下,我们在相关部门帮助下,项目审批、厂房建设基本没有受到影响,这让投资人很感慨,直言要积极拥抱陕西、‘重仓’陕西。”王斌说。"},{type:"p",text:"今年,氢易能源又完成了2轮融资,融资金额超1亿元。“事实上,除了良好的创新生态,陕西完整的氢能产业链也给了投资人巨大的信心。”王斌说,“产业链上游,榆林氢能产量巨大,下游西咸新区有氢能汽车、加氢站、燃料电池等企业布局。像我们一样的中游储运企业,通过技术创新把成本降了下来。因此,陕西在氢能产业发展上有得天独厚的优势。”"},{type:"p",text:"氢能产业是战略性新兴产业和未来产业的重点发展方向。“下一步,我们将继续做好产品研发和市场拓展,抓住陕西打造氢能产业链机遇和上中下游协同发展优势,实现高质量发展。”王斌说。(记者 霍强)"},{type:"p",text:"来源:陕西日报"},{type:"p",text:"责编 |  王   皓"},{type:"p",text:"编辑 |  崔睿娜"},{type:"p",text:"报道链接:https://esb.sxdaily.com.cn/pc/content/202312/15/content_851969.html"}]},{title:"【颁奖】氢易能源参加第八届“创客中国”高校成果转化中小企业创新创业大赛颁奖仪式",outerImg:A("8275"),publishTime:{year:"2023",month:"12",day:"20",time:"10:30"},theme:[{type:"p",text:"2023年12月19日,第八届“创客中国”高校成果转化中小企业创新创业大赛颁奖仪式于秦创原总窗口——西咸新区举行。"},{type:"img",text:A("8275")},{type:"p",text:"氢易能源参赛项目“基于有机液体储氢技术的新型氢气供应体系”从全国数万参赛项目中脱颖而出,荣获第八届“创客中国”高校成果转化中小企业创新创业大赛企业组一等奖,并入围第八届“创客中国”中小企业创新创业大赛全国50强总决赛,最终获得企业组全国三等奖。"},{type:"img",text:A("7d85")},{type:"img",text:A("1f76")},{type:"p",text:"在颁奖现场,氢易能源技术委员会主任方涛教授作为企业代表发表了获奖感言,随后与国中资本西安负责人高博共同参与了A轮融资签约仪式。签约仪式后,方涛教授接受了陕西日报记者的专题采访。"},{type:"p",text:"采访中,方涛教授表示获此殊荣是行业专家及权威机构对氢易能源技术水平以及综合能力的高度认可,更是对公司未来发展前景的充分肯定,未来我们将继续加强企业科技创新及研发投入,履行制氢端到应用端的氢能供应链建设使命,实现行业价值链、产业链和生态链的协同创新,努力为”双碳“目标的实现注入强劲新动能。"}]},{title:"【手执薪火 引领未来!】氢易能源获年度技术力奖",outerImg:A("9e3b"),publishTime:{year:"2023",month:"12",day:"22",time:"10:30"},theme:[{type:"p",text:"12月21日晚,“2023势银氢燃年会闭幕式·找寻下一个合作伙伴暨势银未来奖颁奖晚宴”在宁波泛太平洋大酒店隆重举行。"},{type:"img",text:A("9e3b")},{type:"p",text:"会上,氢易能源被授予“年度技术力奖”,大会主办方通过研究分析,一致认定氢易能源自主研发的有机液态储氢技术破解了氢能领域的“阿喀琉斯之踵“,对助推氢能产业高质量发展具有重要意义。"},{type:"img",text:A("c681")},{type:"img",text:A("869d")},{type:"p",text:"技术力是氢能领域高质量发展的前提,氢易能源始终致力于有机液态储氢技术的进步与商业化,从而为加快实现氢能大规模、长距离、低成本安全储运提供坚实的技术保障。"}]},{title:"山西鹏飞集团到访氢易能源并签署战略合作协议",outerImg:A("15ef"),publishTime:{year:"2023",month:"12",day:"23",time:"22:30"},theme:[{type:"p",text:"近日,山西鹏飞集团副总裁郑梓豪一行来到陕西氢易能源科技有限公司参观交流。"},{type:"img",text:A("15ef")},{type:"p",text:"氢易能源董事长兼CEO王斌、总经理张健铮带领鹏飞集团一行先后参观了公司展厅和研发实验室,对公司发展现状以及科研成果进行了集中展示。"},{type:"img",text:A("5f62")},{type:"p",text:"随后,双方在氢易能源会议室召开座谈会,就有机液态储氢技术的供氢方案、有机液态储氢载体的运输、氢源保障等方面进行了深入的探讨并达成合作意向。"},{type:"img",text:A("69db")},{type:"p",text:"会后,双方现场签署了战略合作协议。王斌与郑梓豪共同表示:希望双方以此次签约为契机,在氢能领域开展深度合作,推动氢能产业项目精准对接,实现互利共赢。氢易能源与山西鹏飞集团将建立长效交流机制,相互赋能、协同发展,共同逐梦氢能“蓝海”。"}]},{title:"氢易能源联合创始人张健铮入选福布斯中国2023年度30 Under 30榜单",outerImg:A("dda7"),publishTime:{year:"2023",month:"12",day:"28",time:"22:30"},theme:[{type:"p",text:"2023福布斯中国30 Under 30榜单发布于2023年12月28日正式发布。"},{type:"p",text:"福布斯一贯以前瞻性的目光,寻找那些30岁以下,在业内崭露头角,或者展现出成为未来行业及社会翘楚的潜在力量。自2012年首届U30发布以来,福布斯贯彻了一种特殊的观察角度——年龄、成功与时代的三角关系;但对于U30的年轻人们来说,这仅仅是他们经历的一系列不确定性或是可能性中寻找到自己人生意义的过程,无论是创造了商业上的庞然巨物,还是卖掉公司转型做了投资人、自媒体或是如今仍然小心谨慎地照看着自己在巨头夹缝中艰难拼下的领地。"},{type:"p",text:"今年,有关中国年轻人与世界的故事似乎在经历一个轮回后又重新站到了起点。从上榜人数看,今年仅有95位年轻人被福布斯收录在册,其中包含体育明星、创业者、科学家和投资人等。如果仅从今年收录的创业者数量看,几乎回到了2012年首届30 Under 30时期的水平。"},{type:"p",text:"氢易能源联合创始人、总经理张健铮入选本年度的榜单。"},{type:"img",text:A("dda7")},{type:"img",text:A("fd67")},{type:"img",text:A("99f3")},{type:"img",text:A("d63f")},{type:"img_desc",text:"(氢易能源联合创始人、总经理张健铮)"},{type:"p",text:"About HydroTransformer"},{type:"p",text:"关于氢易能源"},{type:"p",text:"氢易能源科技有限公司设立于 2021 年,是在西安交通大学和陕西省秦创原创新驱动平台联合推动下成立的储运氢技术公司,总部位于陕西省西咸新区。"},{type:"p",text:"氢易能源长期致力于有机液态储氢技术(LOHC)的进步与商业化。公司以西安交通大学化工学院科研团队十余年研发积累为基础,现已搭建起涵盖储放氢催化剂、有机氢载体、储放氢装置等领域的全链条研发平台,形成了特有的 LOHC 技术体系。日前,占地 34 亩的氢易能源彬州工厂已开工建设,预计将于 2024 年二季度正式投产,经过逐步的产能释放,公司将具备万吨/年的有机氢载体及配套催化剂生产能力,为有机液态储氢技术的广泛商用提供强力支撑。"},{type:"p",text:"作为国内有机液态储氢技术商业化的践行者,氢易能源现已获得来自红杉中国、重塑集团、国中资本等机构的数亿元投资。未来,公司将携手产业界、学术界的合作伙伴,共同助力实现安全、高效、低成本的新型氢供应体系。"},{type:"img",text:A("c88c")},{type:"img",text:A("95d6")},{type:"img",text:A("31f2")}]}]},2024:{1:[{title:"【再获殊荣!】氢易能源荣登“2024西安未来之星TOP100”企业榜单",outerImg:A("7ad7"),publishTime:{year:"2024",month:"01",day:"11",time:"10:00"},theme:[{type:"p",text:"1月10日,以“向实、向新、向强”为主题的2024创投大会在西安高新国际会议中心隆重开幕。大会由中共西安市委、西安市人民政府、陕西省金融监督管理局、陕西证监局主办,西安市金融工作局、西安高新区管理委员会、清科创业共同承办。"},{type:"p",text:"大会现场举办了2024未来之星(西安)企业家年会,并隆重揭晓了 “2024西安未来之星TOP100”榜单,氢易能源荣誉上榜,这无疑是对公司科创成果、商业价值及综合实力的高度认可。"},{type:"img",text:A("7ad7")},{type:"img_desc",text:"▲「西安未来之星TOP100」"},{type:"p",text:"作为国内有机液态储氢技术的领跑者和商业化的践行者,氢易能源自成立之初便聚焦于有机液态储氢技术的全产业链创新、研发与商业化推进,致力于为氢的大规模、长距离、低成本及高安全性储存和运输提供系统性解决方案与服务。现已构建起涵盖储放氢催化剂设计、有机液态储氢材料开发、储放氢装备制造等业务板块的全链条贯通研发平台,着重打造万吨/年的有机氢液态储氢载体及配套催化剂生产,满足客户在氢储-运-供环节的实际需求,为有机液态储氢技术的商业化应用提供强力支撑。"},{type:"p",text:"作为科技型企业,氢易能源未来将继续携手产业界、学术界的合作伙伴,共建更加安全、高效、经济的新型氢能源供应体系,助推西安建设创新驱动示范区和高质量发展先行区,为西安打造“硬科技之都”贡献力量。"}]},{title:"宁东能源化工基地管委会副主任杨玉龙一行到氢易能源调研",outerImg:A("79e6"),publishTime:{year:"2024",month:"01",day:"11",time:"10:00"},theme:[{type:"p",text:"2024年1月10日,宁东能源化工基地管委会副主任、银川高新技术产业开发区党工委书记、灵武市委副书记、政府市长杨玉龙一行到氢易能源调研交流,氢易能源董事长兼CEO王斌及相关部门负责人对杨玉龙一行的到来表示热烈欢迎。"},{type:"img",text:A("79e6")},{type:"p",text:"调研过程中,杨玉龙一行参观了展厅、研发实验室,详细了解了企业的发展现状、产业布局、核心团队和研发创新能力,重点关注了储放氢催化剂开发、有机氢载体合成、储放氢装备制造等板块中的技术细节,并对氢易能源在实际储氢密度、气源纯度要求、系统综合能效等核心工艺指标方面展现出的明显优势表达了高度认可。"},{type:"img",text:A("46be")},{type:"p",text:"杨玉龙强调,氢易能源作为氢能行业头部企业,要加大全链条技术开发应用,努力推动氢能先进技术、关键设备示范应用,并勉励企业持续加大技术攻关、成果转化力度。最后,双方还就氢能产业现阶段发展关键问题进行了深入讨论。"},{type:"img",text:A("d13e")}]}],2:[{title:"氢装上阵 易路同行 | 氢易能源2024年迎新年会暨2023年度总结表彰大会隆重举办",outerImg:A("3602"),publishTime:{year:"2024",month:"02",day:"02",time:"10:00"},theme:[{type:"img",text:A("3602")},{type:"p",text:"潜龙腾跃而起,便是人间春色万里。辞旧迎新之际,氢易能源于2024年2月1日举办2024年年会暨2023年度总结表彰大会,氢易能源百名员工齐聚一堂,共飨盛典!"},{type:"item_center",text:"龙年新春庆丰功 喜气盈盈挤满堂"},{type:"p",text:"年会伊始,氢易能源董事长王斌回顾了过去一年公司取得的成绩和进步,并表示势必要在氢储运短板变长板上按下“快进键“,在长板变跳板上跑出“加速度”。氢易能源总经理张健铮表示,将做好全体员工的“添薪人”,鼓励大家增强责任意识、发挥担当精神,在人有我优上“深一步”下实功。氢易能源技术委员会主任方涛教授勉励大家永葆“求知上进”之心,唯实求是,并送上美好的新春祝福。"},{type:"img",text:A("6e4f")},{type:"img",text:A("4577")},{type:"img",text:A("d244")},{type:"item_center",text:"星光不问赶路人 时光不负奋斗者 荣光属于实干家"},{type:"p",text:"经过严格的评选,年会现场共表彰优秀员工奖17名、杰出贡献奖2名。董事长及总经理为获奖员工颁发荣誉证书和奖金的同时,高度认可了他们的辛勤付出和卓越成绩,并对他们的未来工作寄予厚望。"},{type:"img",text:A("1026")},{type:"img",text:A("f7a9")},{type:"item_center",text:"歌声袅袅辞旧岁 舞姿翩翩贺新春"},{type:"p",text:"来自氢易能源各个部门、不同岗位的员工现场演出的舞蹈、歌曲、秦腔等众多节目每到精彩处,台下观众拍手叫好声便此起彼伏,不仅给大家带来了视觉与听觉上的盛宴,现场氛围也被烘托到了高潮。"},{type:"img",text:A("e219")},{type:"p",text:"1.《科研disco》"},{type:"img",text:A("78c8")},{type:"p",text:"2.《稻香》"},{type:"img",text:A("2f2a")},{type:"p",text:"3.《天天向上》"},{type:"img",text:A("9ce5")},{type:"p",text:"4.《辕门二帐-见贤爷》"},{type:"img",text:A("18a7")},{type:"p",text:"5.《龙舞飞扬》"},{type:"img",text:A("798b")},{type:"p",text:"6.《鸿雁》"},{type:"img",text:A("954c")},{type:"item_center",text:"时来运转美满日 节令安暖乐无忧"},{type:"p",text:"进行到最激动人心的游戏抽奖环节时,紧张欢乐的气氛将年会现场一度推向高潮,随着三等奖、二等奖、一等奖的逐步揭晓,山呼海啸声让现场气氛瞬间达到了顶峰。最后,每位幸运的中奖者都收到了一份丰厚的礼品,小游戏的参与者也通过拆盲盒的形式各自获得了精美的小礼物。"},{type:"img",text:A("f8d8")},{type:"img",text:A("efd6")},{type:"img",text:A("8792")},{type:"img",text:A("611b")},{type:"img",text:A("2251")},{type:"item_center",text:"瑞龙献瑞贯碧波 白兔退归阙下沙"},{type:"p",text:"金岁纷纷落后,留下2023年的丰碑;铜钟悠扬欢歌,期待2024年的辉煌篇章。此刻,氢易能源向您致以最诚挚的祝福,愿:春风得意驭龙舞,龙年吉星照福祺!"}]},{title:"《氢能更氢易》氢易能源2024官方宣传片重磅发布!",outerImg:A("8e48"),publishTime:{year:"2024",month:"02",day:"04",time:"10:00"},theme:[{type:"p",text:"氢能"},{type:"p",text:"被誉为“21世纪终极能源”"},{type:"p",text:"既是缓解能源危机、引领绿色革命的关键"},{type:"p",text:"也是达成双碳愿景,赋能未来科技的基石"},{type:"p",text:"……"},{type:"p",text:"氢能还将迸发出怎样的力量"},{type:"p",text:"4分24秒"},{type:"p",text:"氢易能源科技有限公司主题宣传片《氢能更轻易》"},{type:"p",text:"刷新你对氢能的印象"},{type:"img",text:A("4edc")},{type:"p",text:"能源“顶流”"},{type:"p",text:"氢易能源研发中心内"},{type:"p",text:"孜孜矻矻 夙夜不懈"},{type:"p",text:"只为解锁氢储运密码"},{type:"p",text:"他们从科研深处走来"},{type:"p",text:"向可持续发展未来迈出坚定的步伐"},{type:"img",text:A("8e48")},{type:"p",text:"氢能“栖息地”"},{type:"p",text:"氢易能源产品制造工厂"},{type:"p",text:"为高楼大厦的崛起"},{type:"p",text:"扎入坚实有力的深根"},{type:"p",text:"精准发力 攻克“技术关”"},{type:"p",text:"释放强劲产能"},{type:"p",text:"为有机液态储氢技术的规模化商业推广"},{type:"p",text:"提供强力支撑"},{type:"img",text:A("8dc8")},{type:"img",text:A("7614")},{type:"p",text:"在思维碰撞中凝聚共识"},{type:"p",text:"在周密部署中铆劲推进"},{type:"p",text:"作为联通氢能产业链上下游的桥梁"},{type:"p",text:"氢易能源服务于不同行业、不同领域"},{type:"p",text:"积极打造系统性、客制化、一站式的储氢-运氢-供氢方案"},{type:"p",text:"满足不同终端客户的实际需求"},{type:"p",text:"取得了看得见、摸得着的一体化成效"},{type:"img",text:A("4836")},{type:"img",text:A("0fcf")},{type:"p",text:"引领有机液态储氢技术发展"},{type:"p",text:"助力世界向可持续能源转变"},{type:"p",text:"氢易能源将继续携手产业界、学术界的合作伙伴"},{type:"p",text:"共同构建更加高效、更加安全、更加经济的"},{type:"p",text:"新型氢能源供应体系"},{type:"p",text:"推动我国氢能产业的蓬勃发展"},{type:"p",text:"如引力催生的潮水"},{type:"p",text:"在氢能蓝海中奔涌向前"},{type:"img",text:A("d975")},{type:"img",text:A("8758")},{type:"p",text:"让氢传播更远 交流更易"},{type:"p",text:"氢易能源正不断用实干拓宽认知的边界"},{type:"p",text:"我们在这里 改变世界的朝向"}]},{title:"欧盟再度豪掷535亿元补贴氢能基础设施建设",outerImg:A("ae0d"),publishTime:{year:"2024",month:"02",day:"16",time:"10:00"},theme:[{type:"img",text:A("ee3c")},{type:"p",text:"欧盟委员会15日宣布,已批准一项高达69亿欧元(约合535亿元人民币)的新补贴计划,以支持氢能基础设施建设,减少对天然气的依赖,从而推动实现碳中和目标。"},{type:"p",text:"欧盟委员会在其官网发布的公告中表示,在欧洲共同利益重要项目(IPCEI)框架下,法国、德国、意大利、荷兰、波兰、葡萄牙和斯洛伐克7个欧盟国家将为该计划提供69亿欧元的公共资金,该计划预计还将带动超过54亿欧元的民间投资。"},{type:"p",text:"有意思的是,公告发布前一天,英国《金融时报》文章预测,以德国电解槽制造商蒂森克虏伯纽塞拉为代表的氢能企业,在金融市场将开始进入炒作周期。该项补贴计划被命名为“IPCEI Hy2Infra”。"},{type:"p",text:"欧盟委员会说,在IPCEI Hy2Infra补贴计划推动下,32家公司将参与33个与氢能相关的项目,主要支持下列项目的建设:"},{type:"p",text:"1、部署3.2GW大型电解槽来生产可再生氢气;"},{type:"p",text:"2、新建或改建约2700公里氢气运输管网;"},{type:"p",text:"3、开发容量至少370GWh的大型储氢设施;"},{type:"p",text:"4、为液态有机氢运输船(LOHC)建设装卸码头和相关港口基础设施,每年处理 6000 吨氢气。"},{type:"img",text:A("ae0d")},{type:"p",text:"根据公告中的时间表,大型电解槽项目预计将于2026年至2028年间投入运营,管道项目将在2027年至2029年间投入使用。"},{type:"p",text:"2022年7月15日,欧盟委员会批准了IPCEI Hy2Tech补贴计划,重点是推动产业研发氢能技术。2022年9月21日,委员会又批准了IPCEI Hy2Use补贴计划,重点关注工业领域的氢应用。"},{type:"p",text:"此次批准的IPCEI Hy2Infra涉及基础设施投资,前两个IPCEI未涵盖这些投资。"},{type:"img",text:A("fa9d")},{type:"p",text:"来源:European Commission、https://caifuhao.eastmoney.com/news/20240217081222232910160"}]},{title:"Hydrogenious LOHC正式纳入欧盟IPCEI氢能框架",outerImg:A("c6cc"),publishTime:{year:"2024",month:"02",day:"17",time:"10:00"},theme:[{type:"img",text:A("c6cc")},{type:"img",text:A("9f8e")},{type:"p",text:"近日,德国HT公司的“绿氢@蓝色多瑙河”项目正式纳入欧盟IPCEI氢能框架。该项目旨在利用LOHC苄基甲苯作为载体,实现绿氢的安全高效运输,为多瑙河地区的工业用户稳定供应氢能源。为确保项目的顺利实施,HT公司将在多瑙河附近建设一座年产能约1000至2000吨的绿氢释放工厂,从而在巴伐利亚州打造一个早期的绿氢供应枢纽中心,以满足当地的工业需求。此举将在未来几年对欧洲氢市场的发展起到关键性的推动作用,从而帮助欧盟内部建立起安全、高效的绿氢供应链。"},{type:"p",text:"该项目作为欧盟IPCEI“Hy2Infra”计划的一部分,由法国、德国、意大利、荷兰、波兰、葡萄牙和斯洛伐克七个成员国共同制定和推进。德国政府及其各州计划投资约46亿欧元,同时吸引约34亿欧元的私人资金,总计约80亿欧元全部投入德国IPCEI氢基础设施项目,以推动德国氢能源领域的发展,实现能源转型和脱碳目标。"},{type:"p",text:"来源:Hydrogenious LOHC Technologies"}]},{title:"ENEOS利用霍尼韦尔技术开发商业规模的LOHC项目",outerImg:A("b259"),publishTime:{year:"2024",month:"02",day:"17",time:"10:00"},theme:[{type:"img",text:A("b259")},{type:"p",text:"近日,霍尼韦尔公司宣布,新日本石油公司(以下称:ENEOS)将在多个地方使用公司研发的世界首个商业规模的液态有机储氢LOHC解决方案。LOHC解决方案通过利用现有的炼油资产和基础设施,实现了清洁氢的远距离运输。"},{type:"p",text:"这是霍尼韦尔和ENEOS合作的多个氢能运输项目之一。霍尼韦尔的LOHC解决方案,氢气通过霍尼韦尔甲苯加氢工艺化学结合成甲基环己烷(MCH),这种液体载体可与现有基础设施兼容。这些工厂的氢气将以MCH的形式出口到日本的ENEOS,与石化产品一样。到达目的地后,氢气将通过霍尼韦尔MCH脱氢工艺回收并释放使用,而甲苯可以被送回进行额外的循环。"},{type:"p",text:"霍尼韦尔能源和可持续发展解决方案总裁兼首席执行官Ken West表示,LOHC是更具成本效益的长途运输方式,更能紧密匹配国际氢能供需,发挥出氢能在向低碳经济发展过程中的关键作用。"},{type:"p",text:"来源:www.fuelcellchina.com"}]}],3:[{title:"奋晋者说 | 氢气变身液体 撬动万亿市场",outerImg:A("ec5d"),publishTime:{year:"2024",month:"03",day:"06",time:"22:30"},jumpUrl:"https://mp.weixin.qq.com/s/HDXOvFZko3fvqPxVgVc_1A"},{title:"渭南市委常委马中威一行赴氢易能源参观考察",outerImg:A("fde8"),publishTime:{year:"2024",month:"03",day:"07",time:"22:30"},theme:[{type:"p",text:"2024年3月7日,渭南市委常委、副市长马中威一行莅临氢易能源参观考察。氢易能源技术委员会主任方涛教授陪同介绍。"},{type:"img",text:A("fde8")},{type:"p",text:"考察期间,马中威一行深入氢易能源研发实验室,详细询问有机液态储氢技术的各项指标,对该技术的经济性和环保性给予高度评价。"},{type:"img",text:A("8921")},{type:"p",text:"座谈会上,马中威表示:身为西安交大校友,为氢易能源取得的成绩感到由衷的高兴。渭南市非常重视氢能,同时也具有成熟的能源化工基础条件,诚挚欢迎公司来渭实地调研,一起打造渭南氢能源产业链。"},{type:"p",text:"渭南市科技局局长陈改萍同样表示:当前渭南正在积极培育包括氢能在内的多元新能源产业,氢易能源的储运氢技术独到,能够解决不少氢能产业的痛点问题,非常欢迎公司来渭发展。"},{type:"p",text:'韩城市委常委、市政府党组副书记、副市长宏健介绍道:目前"韩城—渭南—西安城际氢能廊道"项目已启动,欢迎像氢易能源这样优秀的氢能企业能够把韩城作为科技成果转化的试验场,源源不断为我省的氢廊道发展注入“ 氢”动力。'},{type:"img",text:A("af1d")}]},{title:"旭氢时代董事长王海峰一行到公司参观交流",outerImg:A("9335"),publishTime:{year:"2024",month:"03",day:"15",time:"22:30"},theme:[{type:"p",text:"2024年3月15日,旭氢时代董事长王海峰一行来到氢易能源公司,详细了解氢易能源自研有机液态储氢技术研发进展,并针对未来双方的商业合作展开深入交流。氢易能源董事长兼CEO王斌、总经理张健铮参与交流。"},{type:"p",text:'王斌、张健铮首先带领王海峰一行参观了氢易能源研发中心,就公司有机液态储氢技术的研发和产业化进展进行了介绍。王海峰在听取介绍后表示:旭氢时代专注于氢燃料电池系统的研发与生产,而母公司旭强瑞则拥有大量优质氢气资源,同时正在运营多个加氢站项目,希望未来能够与氢易能源加强合作,提升公司高品质氢气运输及供应辐射范围,缓解西安等地氢能下游企业的用氢压力,一起为"渭南—西安城际氢能廊道”的建设助力。'},{type:"img",text:A("9335")},{type:"p",text:"王斌、张健铮对王海峰一行的到访表示欢迎,随后表示:旭强瑞集团是陕西省著名的民营企业之一,实力雄厚,近几年设立子公司旭氢时代切入氢能赛道,已经取得了突出的成绩。氢易能源与旭强瑞集团及旭氢时代公司业务互补,合作的空间广阔,期待能在未来早日携手共建氢储运-加注示范项目,助力陕西氢能产业发展。"}]},{title:"陕西省长赵刚在氢易能源公司调研",outerImg:A("5515"),publishTime:{year:"2024",month:"03",day:"21",time:"22:30"},theme:[{type:"p",text:"3月21日,省长赵刚在西安调研氢能产业创新发展工作。他强调,要深入学习贯彻习近平总书记关于新质生产力的重要论述和来陕考察重要讲话重要指示精神,按照省委省政府工作部署,把握全球能源变革发展大势和机遇,聚焦氢能制、储、运、用各环节,加快关键核心技术攻关和成果转化运用,不断提升我省氢能产业发展水平。"},{type:"img",text:A("5515")},{type:"p",text:"上午10点,省长赵刚一行来到位于沣东新城云检科创园的氢易能源西安总部进行调研。氢易能源董事长兼CEO王斌、总经理张健铮、技术委员会主任方涛教授参加。"},{type:"img",text:A("123c")},{type:"img",text:A("7581")},{type:"p",text:"王斌首先就公司新型有机液态储氢技术研发及产业化情况进行了介绍。王斌表示,氢易能源公司孵化于西安交通大学,在各级党委、政府与秦创原创新驱动平台的大力支持下快速发展,现已成为全国范围内较有影响力的氢储运技术公司。公司产品技术特别适用于大规模、长距离的氢气储运,可助力解决目前氢能产业发展的“卡脖子”难题。近期,位于咸阳彬州市的氢易能源工厂已接近完工,即将投料试产,相关氢储运示范项目也正在按计划推进。今年,团队的技术成果将全面实现规模商用,转化为现实生产力。同时公司积极布局有机液态储氢前沿和颠覆性技术,瞄准未来用氢场景,破解关键工程化难题,保持技术水平持续领先。"},{type:"img",text:A("48d3")},{type:"p",text:"赵刚省长认真听取了相关汇报,并不时提出问题,王斌结合沙盘和现场的研发装置,一一进行了解答。赵刚对氢易能源目前取得的发展成绩表示赞赏,随后表示:陕西省目前正深入实施“三项改革”,氢易能源即是“三项改革”的产物。技术创新是公司发展的根基,要持之以恒加大研发投入,同时注重知识产权体系的搭建。赵刚勉励公司再接再厉,不断推动技术迭代和多元化场景应用,以市场需求牵引企业发展,同时表示省政府也将积极发挥引领、聚合作用,助力陕西氢能产业快速发展。"},{type:"img",text:A("374c")},{type:"p",text:"最后,赵刚表示,新质生产力,本质上就是创新驱动发展、科技引领未来。要强化企业创新主体地位,推进教育、科技、人才协调融合发展,以科技创新引领现代化产业体系建设,推动高质量发展。"},{type:"img",text:A("c950")},{type:"p",text:"西安市市长叶牛平,省直有关部门负责同志,西咸新区党工委书记杨仁华、沣东新城党委书记、管委会主任刘宇斌参加调研。"}]}],4:[{title:"风起“原”上:浪潮里的三年……",outerImg:A("4cfa"),publishTime:{year:"2024",month:"04",day:"01",time:"22:30"},theme:["2021年,两位90后年轻人选择在陕西进行第一次创业。","在西咸新区沣东新城,他们成立了一家储运氢技术公司——陕西氢易能源科技有限公司(下称“氢易能源”)。","半年后,这家初出茅庐的公司迅速获得了红杉资本的“青睐”,成功拿到红杉中国种子基金在西北地区的首次投资。","也就在这时,不少人才突然意识到,一匹“黑马”从“原”上冲出。",{type:"item_center",text:"Ⅰ"},"同样在2021年的西咸新区,一个具有关键意义的历史时刻不容忽视。","3月30日,秦创原创新驱动平台建设大会在西咸新区举行,这场大会宣告秦创原创新驱动平台正式启动。","秦创原是“陕西省创新驱动发展总平台和创新驱动发展总源头”,是“打破科技优势与经济发展转化‘堵点’的关键之举”,也是“陕西省最大的孵化器和科技成果转化特区”。","用最通俗的话解释秦创原的使命——创新,创新,还是创新。",{imgUrl:A("4cfa")},"随着秦创原启动,“命运的齿轮”开始转动,以氢易能源为代表的企业迎来了机遇。","彼时,氢易能源的创始人之一王斌,在西安交通大学实验室打磨了十年技术后,深切感受到时机已至。","他在采访中说,“那一年,学校在职务科技成果转化、专利授权、职称评定等方面出台了一系列政策,让我们能够轻装前行。再加上秦创原出台的一系列促进科技成果转化的优惠政策,我们感觉天时地利人和都齐了,于是在年底注册成立了氢易能源,入驻秦创原。”","入驻秦创原总窗口后,氢易能源在研发、融资等方面发展迅速,三年时间,氢易能源的市场估值已经翻了120倍。","而伴随着氢易能源这匹“黑马”一路狂奔的,还有西咸新区氢能产业的不断发展。目前,总窗口氢能企业数量约占西安市的2/3,已成为西安市乃至全省氢能产业的新名片,全产业链雏形初显。","对于氢易能源与西咸新区来说,这趟发展之旅无疑是一场双向奔赴与相互成就。","同时,以氢易能源为代表的企业,更是验证了一个朴素却本质的道理——在肥沃的土壤上,必然会长出“参天大树”。",{type:"item_center",text:"Ⅱ"},"在西咸新区,这样的案例还有很多。","三年来,总窗口共培育创新型中小企业 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液态制、储氢装置”,还对交大与公司之间的平台建设、成果转化及发展规划等情况作详细说明。",{imgUrl:A("4feb")},"赵俊强、田福元对氢易能源和西安交大在产教融合、三项改革方面取得的成绩表示肯定,并希望氢易能源能够充分发挥好校企联合模式的产业优势和人才优势,继续为国家氢能大战略创新科技、培养人才,尽快推动有机液态储氢技术融入我国经济社会发展,为交通、电力、工业等行业注入新活力。"]}],6:[{title:"中国国际经济交流中心张晓强一行莅临氢易能源考察调研",outerImg:A("b4ee"),publishTime:{year:"2024",month:"06",day:"15",time:"10:30"},theme:["6月14日下午,中国国际经济交流中心咨询委主任、国家发改委原副主任张晓强一行围绕“双中心”、秦创原建设,以及强化国家战略科技力量支撑等有关工作莅临氢易能源考察调研。省决咨委戴征社等西安市相关单位领导陪同考察。",{imgUrl:A("b4ee")},"氢易能源展厅内,张晓强一行详细了解了有机液态储氢技术,并对该技术高效的储氢能力、安全性和可循环性给予充分肯定。张晓强强调,氢易能源作为国家新能源发展过程中的先行者和“样板企业”,在抓好科技创新赋能的同时,要促进创新链、产业链等深度融合发展,全力推动科技成果转化和产业化水平再上新台阶。",{imgUrl:A("d50e")},"氢易能源对调研组来访表示热烈欢迎,承诺将继续做好科研创新工作,加速推进有机液态储氢技术应用,坚决扛起助力国家高水平科技自立自强的责任担当,抢抓“双中心”建设重大机遇,抢占制高点、制胜“氢”赛道。"]},{title:"氢易能源荣登2023年“科创中国”新锐企业榜",outerImg:A("5c57"),publishTime:{year:"2024",month:"06",day:"18",time:"10:30"},theme:["2024年6月17日,2023年“科创中国”系列榜单正式发布。陕西氢易能源科技有限公司凭借自身优势脱颖而出,成为全国只有50家成功入选“新锐企业榜”的企业之一。",{imgUrl:A("5c57")},"随着技术的迭代和资本的赋能,氢易能源积极拥抱氢能时代的到来,全面推动有机液态储氢技术融入我国经济社会发展工作,为交通、电力、工业等行业注入新活力。目前,氢易能源已在氢能行业取得一系列创新性成果,有机液态储氢技术领域的研发进展和示范项目建设规划也初见成效。",{imgUrl:A("4f08")},"瞄准未来,革故鼎新。氢易能源将以此次获奖为契机,进一步发挥作为氢能领域头部企业的科研实力,促进氢能产业链联动发展,加强产业协同和技术合作攻关,推动有机液态储氢技术商业化发展,向世界展现中国科技的卓越风采。"]}],7:[{title:"济南市委常委孙斌一行莅临氢易能源参观考察",outerImg:A("c975"),publishTime:{year:"2024",month:"07",day:"05",time:"22:30"},theme:["2024年7月5日,济南市委常委、济南新旧动能转换起步区党工委副书记兼管委会主任孙斌一行莅临氢易能源参观考察。氢易能源相关负责人陪同介绍。",{imgUrl:A("c975")},"企业负责人对孙斌一行的到来表示热烈欢迎,并详细介绍了氢易能源科技创新和建设发展情况,以及“三项改革”科技转化成果。负责人指出,氢易能源在氢储运领域的科研创新实践取得了显著成效,公司的有机液态储氢技术将为氢能的规模化商用提供强有力的支撑。",{imgUrl:A("c86f")},"孙斌表示,氢易能源的有机液态储氢技术极具突破性和创新性,能够进一步拓展氢能的民用和商用市场。同时也非常高兴看到新一代山东青年扎根西部、求学创业,希望王斌董事长继续带领氢易能源稳步前进、发展壮大,未来能与山东的氢能企业建立合作,把这么优秀的技术带回家乡。"]},{title:"中国科协专职副主席孟庆海一行莅临氢易能源参观调研",outerImg:A("126f"),publishTime:{year:"2024",month:"07",day:"15",time:"22:30"},theme:["2024年7月15日,为深入推进“科创中国”建设,中国科学技术协会专职副主席、书记处书记孟庆海一行携调研组莅临氢易能源参观调研,氢易能源董事长兼CEO王斌、总经理张健铮陪同介绍。",{imgUrl:A("126f")},"调研期间,王斌向孟庆海一行详细汇报了氢易能源发展历程、核心团队构建、产业布局策略以及项目建设进展等情况,并重点介绍了公司在有机液态储氢技术领域的突破性工作和研发成果。","孟庆海对氢易能源的发展潜力和科研成果给予了高度评价,并鼓励氢易能源聚焦氢能产业前沿、持续加强技术研发、凝聚科研创新人才,同时发挥有机液态储氢技术在商业化进程中的引领作用,期待为早日实现“双碳”目标作出新的贡献。"]},{title:"重磅进展!德国LOHC技术公司获得5.7亿元政府资金支持",outerImg:A("8bc3"),publishTime:{year:"2024",month:"07",day:"16",time:"22:30"},theme:["2024年7月15日,德国/柏林,埃尔朗根。","德国联邦经济部长Robert Habeck博士和巴伐利亚州经济、区域发展和能源部部长Markus Wittmann博士正式向Hydrogenious LOHC Technologies的子公司Hydrogenious LOHC Infra Bavaria颁发了7250万欧元(折合人民币5.7亿元)的拨款通知,用于绿色氢能@蓝色多瑙河项目。联邦政府提供70%的资金,巴伐利亚州提供30%。该项目已于2024年2月被欧盟委员会列为氢能“Hy2Infra”计划的“欧洲共同利益重要项目”(IPCEI),为保障中欧地区工业获得持续和稳定的氢气供应做出重要贡献。",{imgUrl:A("8bc3")},{type:"img_desc",text:"图1 Hydrogenious获得7250万欧元的绿色氢能@蓝色多瑙河项目资助"},"从2028年开始,作为绿色氢能@蓝色多瑙河项目的一部分而建造的LOHC Release PLANT已向多瑙河流域巴伐利亚工业区的承购商供应超过1,800吨的绿氢。得益于Hydrogenious LOHC Technologies公司的创新型“有机液态氢载体(LOHC)”技术,这些工业区所需的绿氢可以利用现有的液体燃料基础设施运输到德国南部。除了可以供应给当地的工业承购商外,还可以注入HyPipe Bavaria等管道网络。该管网可以通过管道连接到德国氢能主管网并向欧洲氢能主管网进一步扩展,大幅提高已建成的能源输送系统利用率。",{imgUrl:A("9a9d")},{type:"img_desc",text:"图2 绿色氢能@蓝色多瑙河项目整个跨欧洲氢价值链示意图©VERBUND AG"},"Hydrogenious LOHC Technologies公司的LOHC技术将氢气能够安全地储存与几乎不可燃的工业导热油-苄基甲苯中,这一过程称为加氢。这种富氢导热油可以使用卡车、火车、驳船和油轮等传统基础设施运输,不会损失氢气。与其他运输技术相比,LOHC更加安全和便捷,非常适用于氢气在内陆的规模化运输。在目的地,高纯度氢气通过化学脱氢反应中从富氢导热油中释放出来,提供给工业、发电或交通运输部门。而有机氢载体不会被消耗,可以再次用于氢气储存和运输。",{imgUrl:A("a40e")},{type:"img_desc",text:"图3 LOHC在成本效益和实施难度之间实现了最佳平衡©VERBUND AG"},"消息来自Hydrogenious LOHC Technologies","公司官方网站:https://hydrogenious.net/ipcei-hydrogenious-lohc-receives-multi-million-grant-for-green-hydrogen-blue-danube/"]},{title:"赵一德在省委科技委员会会议上强调 构建支持全面创新体制机制 加快塑造高质量发展新动能新优势 赵刚讲话 邢善萍出席",outerImg:A("9fb7"),publishTime:{year:"2024",month:"07",day:"22",time:"22:30"},theme:["7月22日,省委科技委员会召开会议,认真学习贯彻党的二十届三中全会精神、习近平总书记关于科技创新的重要论述,落实全国科技大会要求,审议相关文件,安排部署重点任务。","省委书记、省委科技委员会主任赵一德主持会议并讲话。省长、省委科技委员会主任赵刚讲话。省委副书记邢善萍出席。",{imgUrl:A("9fb7")},"赵一德指出,习近平总书记在全国科技大会、国家科学技术奖励大会、两院院士大会上的重要讲话,系统阐明了新形势下加快建设科技强国的基本内涵和主要任务,为新时代新征程推动科技事业发展提供了根本遵循和行动指南。要结合学习贯彻党的二十届三中全会精神,进一步学懂弄通做实习近平总书记重要讲话精神,构建支持全面创新体制机制,加快塑造高质量发展新动能新优势,为谱写陕西新篇、争做西部示范提供有力支撑。","赵一德强调,要完善区域科技创新布局,以西安“双中心”建设为牵引加强战略科技力量建设,打好关键核心技术攻坚战,全力服务国家高水平科技自立自强。要推动科技创新和产业创新深度融合,更好发挥秦创原平台和“三项改革”点火器作用,打造全领域全链条全要素协同创新生态圈,打通科技成果向新质生产力转化“最后一公里”。要深化科技体制改革,完善科教协同育人机制,改进科技计划管理,不断释放创新活力。要加强党对科技工作的全面领导,省委科技委员会要解决好全省科技领域的战略性、方向性、全局性重大问题,省委科技委员会办公室要做好服务保障工作,各成员单位要加强协同配合,形成全面创新强大合力。","赵刚强调,要立足国家所需、陕西所能,加强战略科技力量建设,统筹推进西安综合性国家科学中心和科技创新中心、秦创原平台建设,不断增强原始创新能力。要力促科技创新和产业创新深度融合,加快发展新质生产力。要统筹推进教育科技人才体制机制一体改革,进一步激发创新创造活力。要强化创新的区域协同,形成推动高质量发展的倍增效应。","省领导方红卫、郭永红、王海鹏、李钧,省委科技委员会成员单位负责同志等参加会议。","素材来源:官方媒体/网络新闻"]},{title:"西安市委书记方红卫莅临氢易能源考察调研",outerImg:A("dceb"),publishTime:{year:"2024",month:"07",day:"23",time:"22:30"},theme:["7月23日,为调研储氢企业运营情况,陕西省委常委、西安市委书记方红卫一行莅临氢易能源公司,并在调研后于氢易能源五楼第一会议室主持召开座谈会。氢易能源董事长兼CEO王斌陪同介绍并参加座谈会。",{imgUrl:A("dceb")},{imgUrl:A("cee7")},{imgUrl:A("125d")},"方红卫首先参观了氢易能源数字展厅和研发实验室,王斌针对有机液态储氢技术研发与商业应用作了详细讲解和汇报。方红卫对氢易能源的科技创新和产业贡献给予高度评价,希望企业聚力核心技术攻关,不断提高产品性能、降低生产成本,加快有机液态储氢技术产业化、商业化进程。",{imgUrl:A("ce31")},{imgUrl:A("763e")},{imgUrl:A("ca25")},{imgUrl:A("8606")},"在随后的座谈会上,方红卫与王斌进行了深入交流,听取企业对全市氢能产业发展建议。他强调,要立足现有产业基础,坚持以应用为导向,支持龙头企业与高校院所组建创新联合体,促进大中小企业融通创新,以科技创新引领产业高质量发展;要大力引进链主企业和中小配套企业,积极培育“专精特新”企业,推动企业向产业链、价值链和市场链的高端攀升,抢占氢能发展制高点。各级各有关部门要进一步加大支持力度,完善配套服务,丰富拓展应用场景,快速打通束缚产业发展的堵点卡点,营造可持续发展的良好生态。","西安市委常委和文全、吕来升,西咸新区党工委书记杨仁华参加调研。"]},{title:"“氢”风劲吹 陕西竞逐万亿新赛道",outerImg:A("dcb3"),publishTime:{year:"2024",month:"07",day:"24",time:"22:30"},theme:[{imgUrl:A("dcb3")},"在榆林,年产绿氢约3000吨的零碳产业园氢能(制氢)示范项目一期正在紧锣密鼓地施工;","在咸阳,陕西氢易能源科技有限公司(以下简称“氢易能源”)建设的年产2000吨有机氢载体工厂,预计今年9月投产;","在西咸新区,陕西旭氢时代科技有限公司(以下简称“旭氢时代”)建设的我省首条全自动化氢燃料电池堆生产线已经投产;","从西安至韩城,氢能重卡已经完成运输测试。","从制氢、储氢到运氢、用氢,陕西相关部门、企业、科技工作者在产业链上中下游“全线出击”,每一个人都有一种等不起、慢不得、坐不住的紧迫感。","“习近平总书记强调,要科学规划建设新型能源体系,促进水风光氢天然气等多能互补发展。这为我国氢能产业指明了方向,明确了氢能在新型能源体系里的独特价值。”省发展改革委副主任、省能源局局长何钟说。","2024年,氢能首次被写入国务院《政府工作报告》,20多个省份已发布200余份氢能规划和指导意见。行业预测,2025年氢能行业市场规模将突破1万亿元。氢能,在实现“双碳”目标的背景下,已经成为各省激烈竞逐的新赛道。","省发展改革委作为陕西氢能产业链链长单位,制定印发了《陕西省“十四五”氢能产业发展规划》等政策文件,牵头成立省级氢能产业链工作专班。目前,陕西氢能产业在基础设施建设、装备研发制造和应用场景示范等方面取得了一系列重大进展,已经驶入了发展快车道。",{type:"item_center",text:"上游制氢 把成本降下来"},"“最近,我们投资建设的榆林零碳产业园氢能(制氢)示范项目已开工建设,依托榆林丰富的光伏风电和矿井疏干水资源,建设碱性电解水制氢、固体氧化物制氢、质子交换膜电解池制氢、碟式光裂解制氢等多种制氢工艺综合应用示范项目。”陕西氢能产业发展有限公司(以下简称“陕西氢能”)党委书记、董事长黄晔说。","陕西氢能是省委、省政府贯彻落实“双碳”目标,着眼全省产业格局成立的氢能产业平台。自2022年12月成立以来,黄晔和同事们争分夺秒投入工作。上述制氢工艺的选择就是黄晔团队调研行程超十万公里、专项讨论超百次后的结果。","“氢气按环境友好程度分为灰氢、蓝氢、绿氢。其中,绿氢由可再生资源电解水制成,无二氧化碳产生,符合绿色理念,是真正的‘零碳’能源。”黄晔说,“像内蒙古、新疆等光伏风电资源丰富的地区,已开工建设了一批风光制氢一体化项目。”","经过充分论证,陕西氢能确定项目一期采用以碱性电解水制氢为主,固体氧化物电解、质子交换膜电解池制氢为辅的工艺技术,投产后年产绿氢约3000吨,年减排二氧化碳约6万吨。","目前,从市场价格看,绿氢远高于灰氢、蓝氢,缺乏经济性。黄晔希望通过项目一期多种工艺路线的示范、测试、对比,为二期10万标方制氢项目进行工艺路线优选、设备在线测试与选型等做好准备,最终把绿氢制备成本降下来。","与此同时,陕西作为能源大省,工业副产氢资源丰富,规模化制氢成本优势明显。全省化工副产氢超200万吨/年,其中高品质副产氢约20万吨/年。陕西氢能对于这部分资源也有规划,正在推进神木市工业副产氢“制储输加用”一体化示范项目建设。","“项目以兰炭尾气为原料,经净化、压缩、变换、脱硫、变压吸附等步骤,得到高纯氢。在配套建设储氢设施和加氢站,为氢燃料电池重卡提供满足国标的氢气之余,利用长管拖车向周边加氢站运输氢气。同时建设输氢管道,将氢气通过管道输送到下游用氢企业,为企业生产提供原料氢气。”黄晔说。",{type:"item_center",text:"中游储运 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t=this,A=t.params.mousewheel;if(e.direction<0){if(t.isEnd&&!t.params.loop&&A.releaseOnEdges)return!0}else if(t.isBeginning&&!t.params.loop&&A.releaseOnEdges)return!0;return!1},enable(){const e=this,t=Ut.event();if(e.params.cssMode)return e.wrapperEl.removeEventListener(t,e.mousewheel.handle),!0;if(!t)return!1;if(e.mousewheel.enabled)return!1;let A=e.$el;return"container"!==e.params.mousewheel.eventsTarged&&(A=p(e.params.mousewheel.eventsTarged)),A.on("mouseenter",e.mousewheel.handleMouseEnter),A.on("mouseleave",e.mousewheel.handleMouseLeave),A.on(t,e.mousewheel.handle),e.mousewheel.enabled=!0,!0},disable(){const e=this,t=Ut.event();if(e.params.cssMode)return e.wrapperEl.addEventListener(t,e.mousewheel.handle),!0;if(!t)return!1;if(!e.mousewheel.enabled)return!1;let A=e.$el;return"container"!==e.params.mousewheel.eventsTarged&&(A=p(e.params.mousewheel.eventsTarged)),A.off(t,e.mousewheel.handle),e.mousewheel.enabled=!1,!0}};var Ct={name:"mousewheel",params:{mousewheel:{enabled:!1,releaseOnEdges:!1,invert:!1,forceToAxis:!1,sensitivity:1,eventsTarged:"container"}},create(){const e=this;Y.extend(e,{mousewheel:{enabled:!1,enable:Ut.enable.bind(e),disable:Ut.disable.bind(e),handle:Ut.handle.bind(e),handleMouseEnter:Ut.handleMouseEnter.bind(e),handleMouseLeave:Ut.handleMouseLeave.bind(e),animateSlider:Ut.animateSlider.bind(e),releaseScroll:Ut.releaseScroll.bind(e),lastScrollTime:Y.now(),lastEventBeforeSnap:void 0,recentWheelEvents:[]}})},on:{init(){const e=this;!e.params.mousewheel.enabled&&e.params.cssMode&&e.mousewheel.disable(),e.params.mousewheel.enabled&&e.mousewheel.enable()},destroy(){const e=this;e.params.cssMode&&e.mousewheel.enable(),e.mousewheel.enabled&&e.mousewheel.disable()}}};const wt={update(){const e=this,t=e.params.navigation;if(e.params.loop)return;const{$nextEl:A,$prevEl:i}=e.navigation;i&&i.length>0&&(e.isBeginning?i.addClass(t.disabledClass):i.removeClass(t.disabledClass),i[e.params.watchOverflow&&e.isLocked?"addClass":"removeClass"](t.lockClass)),A&&A.length>0&&(e.isEnd?A.addClass(t.disabledClass):A.removeClass(t.disabledClass),A[e.params.watchOverflow&&e.isLocked?"addClass":"removeClass"](t.lockClass))},onPrevClick(e){const t=this;e.preventDefault(),t.isBeginning&&!t.params.loop||t.slidePrev()},onNextClick(e){const t=this;e.preventDefault(),t.isEnd&&!t.params.loop||t.slideNext()},init(){const e=this,t=e.params.navigation;if(!t.nextEl&&!t.prevEl)return;let A,i;t.nextEl&&(A=p(t.nextEl),e.params.uniqueNavElements&&"string"===typeof t.nextEl&&A.length>1&&1===e.$el.find(t.nextEl).length&&(A=e.$el.find(t.nextEl))),t.prevEl&&(i=p(t.prevEl),e.params.uniqueNavElements&&"string"===typeof t.prevEl&&i.length>1&&1===e.$el.find(t.prevEl).length&&(i=e.$el.find(t.prevEl))),A&&A.length>0&&A.on("click",e.navigation.onNextClick),i&&i.length>0&&i.on("click",e.navigation.onPrevClick),Y.extend(e.navigation,{$nextEl:A,nextEl:A&&A[0],$prevEl:i,prevEl:i&&i[0]})},destroy(){const e=this,{$nextEl:t,$prevEl:A}=e.navigation;t&&t.length&&(t.off("click",e.navigation.onNextClick),t.removeClass(e.params.navigation.disabledClass)),A&&A.length&&(A.off("click",e.navigation.onPrevClick),A.removeClass(e.params.navigation.disabledClass))}};var Vt={name:"navigation",params:{navigation:{nextEl:null,prevEl:null,hideOnClick:!1,disabledClass:"swiper-button-disabled",hiddenClass:"swiper-button-hidden",lockClass:"swiper-button-lock"}},create(){const e=this;Y.extend(e,{navigation:{init:wt.init.bind(e),update:wt.update.bind(e),destroy:wt.destroy.bind(e),onNextClick:wt.onNextClick.bind(e),onPrevClick:wt.onPrevClick.bind(e)}})},on:{init(){const e=this;e.navigation.init(),e.navigation.update()},toEdge(){const e=this;e.navigation.update()},fromEdge(){const e=this;e.navigation.update()},destroy(){const e=this;e.navigation.destroy()},click(e){const t=this,{$nextEl:A,$prevEl:i}=t.navigation;if(t.params.navigation.hideOnClick&&!p(e.target).is(i)&&!p(e.target).is(A)){let e;A?e=A.hasClass(t.params.navigation.hiddenClass):i&&(e=i.hasClass(t.params.navigation.hiddenClass)),!0===e?t.emit("navigationShow",t):t.emit("navigationHide",t),A&&A.toggleClass(t.params.navigation.hiddenClass),i&&i.toggleClass(t.params.navigation.hiddenClass)}}}};const It={update(){const e=this,t=e.rtl,A=e.params.pagination;if(!A.el||!e.pagination.el||!e.pagination.$el||0===e.pagination.$el.length)return;const i=e.virtual&&e.params.virtual.enabled?e.virtual.slides.length:e.slides.length,a=e.pagination.$el;let s;const n=e.params.loop?Math.ceil((i-2*e.loopedSlides)/e.params.slidesPerGroup):e.snapGrid.length;if(e.params.loop?(s=Math.ceil((e.activeIndex-e.loopedSlides)/e.params.slidesPerGroup),s>i-1-2*e.loopedSlides&&(s-=i-2*e.loopedSlides),s>n-1&&(s-=n),s<0&&"bullets"!==e.params.paginationType&&(s=n+s)):s="undefined"!==typeof e.snapIndex?e.snapIndex:e.activeIndex||0,"bullets"===A.type&&e.pagination.bullets&&e.pagination.bullets.length>0){const i=e.pagination.bullets;let n,o,r;if(A.dynamicBullets&&(e.pagination.bulletSize=i.eq(0)[e.isHorizontal()?"outerWidth":"outerHeight"](!0),a.css(e.isHorizontal()?"width":"height",e.pagination.bulletSize*(A.dynamicMainBullets+4)+"px"),A.dynamicMainBullets>1&&void 0!==e.previousIndex&&(e.pagination.dynamicBulletIndex+=s-e.previousIndex,e.pagination.dynamicBulletIndex>A.dynamicMainBullets-1?e.pagination.dynamicBulletIndex=A.dynamicMainBullets-1:e.pagination.dynamicBulletIndex<0&&(e.pagination.dynamicBulletIndex=0)),n=s-e.pagination.dynamicBulletIndex,o=n+(Math.min(i.length,A.dynamicMainBullets)-1),r=(o+n)/2),i.removeClass(`${A.bulletActiveClass} ${A.bulletActiveClass}-next ${A.bulletActiveClass}-next-next ${A.bulletActiveClass}-prev ${A.bulletActiveClass}-prev-prev ${A.bulletActiveClass}-main`),a.length>1)i.each((e,t)=>{const i=p(t),a=i.index();a===s&&i.addClass(A.bulletActiveClass),A.dynamicBullets&&(a>=n&&a<=o&&i.addClass(A.bulletActiveClass+"-main"),a===n&&i.prev().addClass(A.bulletActiveClass+"-prev").prev().addClass(A.bulletActiveClass+"-prev-prev"),a===o&&i.next().addClass(A.bulletActiveClass+"-next").next().addClass(A.bulletActiveClass+"-next-next"))});else{const t=i.eq(s),a=t.index();if(t.addClass(A.bulletActiveClass),A.dynamicBullets){const t=i.eq(n),s=i.eq(o);for(let e=n;e<=o;e+=1)i.eq(e).addClass(A.bulletActiveClass+"-main");if(e.params.loop)if(a>=i.length-A.dynamicMainBullets){for(let e=A.dynamicMainBullets;e>=0;e-=1)i.eq(i.length-e).addClass(A.bulletActiveClass+"-main");i.eq(i.length-A.dynamicMainBullets-1).addClass(A.bulletActiveClass+"-prev")}else t.prev().addClass(A.bulletActiveClass+"-prev").prev().addClass(A.bulletActiveClass+"-prev-prev"),s.next().addClass(A.bulletActiveClass+"-next").next().addClass(A.bulletActiveClass+"-next-next");else t.prev().addClass(A.bulletActiveClass+"-prev").prev().addClass(A.bulletActiveClass+"-prev-prev"),s.next().addClass(A.bulletActiveClass+"-next").next().addClass(A.bulletActiveClass+"-next-next")}}if(A.dynamicBullets){const a=Math.min(i.length,A.dynamicMainBullets+4),s=(e.pagination.bulletSize*a-e.pagination.bulletSize)/2-r*e.pagination.bulletSize,n=t?"right":"left";i.css(e.isHorizontal()?n:"top",s+"px")}}if("fraction"===A.type&&(a.find("."+A.currentClass).text(A.formatFractionCurrent(s+1)),a.find("."+A.totalClass).text(A.formatFractionTotal(n))),"progressbar"===A.type){let t;t=A.progressbarOpposite?e.isHorizontal()?"vertical":"horizontal":e.isHorizontal()?"horizontal":"vertical";const i=(s+1)/n;let o=1,r=1;"horizontal"===t?o=i:r=i,a.find("."+A.progressbarFillClass).transform(`translate3d(0,0,0) scaleX(${o}) scaleY(${r})`).transition(e.params.speed)}"custom"===A.type&&A.renderCustom?(a.html(A.renderCustom(e,s+1,n)),e.emit("paginationRender",e,a[0])):e.emit("paginationUpdate",e,a[0]),a[e.params.watchOverflow&&e.isLocked?"addClass":"removeClass"](A.lockClass)},render(){const e=this,t=e.params.pagination;if(!t.el||!e.pagination.el||!e.pagination.$el||0===e.pagination.$el.length)return;const A=e.virtual&&e.params.virtual.enabled?e.virtual.slides.length:e.slides.length,i=e.pagination.$el;let a="";if("bullets"===t.type){const s=e.params.loop?Math.ceil((A-2*e.loopedSlides)/e.params.slidesPerGroup):e.snapGrid.length;for(let A=0;A`;i.html(a),e.pagination.bullets=i.find("."+t.bulletClass)}"fraction"===t.type&&(a=t.renderFraction?t.renderFraction.call(e,t.currentClass,t.totalClass):` / `,i.html(a)),"progressbar"===t.type&&(a=t.renderProgressbar?t.renderProgressbar.call(e,t.progressbarFillClass):``,i.html(a)),"custom"!==t.type&&e.emit("paginationRender",e.pagination.$el[0])},init(){const e=this,t=e.params.pagination;if(!t.el)return;let A=p(t.el);0!==A.length&&(e.params.uniqueNavElements&&"string"===typeof t.el&&A.length>1&&(A=e.$el.find(t.el)),"bullets"===t.type&&t.clickable&&A.addClass(t.clickableClass),A.addClass(t.modifierClass+t.type),"bullets"===t.type&&t.dynamicBullets&&(A.addClass(`${t.modifierClass}${t.type}-dynamic`),e.pagination.dynamicBulletIndex=0,t.dynamicMainBullets<1&&(t.dynamicMainBullets=1)),"progressbar"===t.type&&t.progressbarOpposite&&A.addClass(t.progressbarOppositeClass),t.clickable&&A.on("click","."+t.bulletClass,(function(t){t.preventDefault();let A=p(this).index()*e.params.slidesPerGroup;e.params.loop&&(A+=e.loopedSlides),e.slideTo(A)})),Y.extend(e.pagination,{$el:A,el:A[0]}))},destroy(){const e=this,t=e.params.pagination;if(!t.el||!e.pagination.el||!e.pagination.$el||0===e.pagination.$el.length)return;const A=e.pagination.$el;A.removeClass(t.hiddenClass),A.removeClass(t.modifierClass+t.type),e.pagination.bullets&&e.pagination.bullets.removeClass(t.bulletActiveClass),t.clickable&&A.off("click","."+t.bulletClass)}};var kt={name:"pagination",params:{pagination:{el:null,bulletElement:"span",clickable:!1,hideOnClick:!1,renderBullet:null,renderProgressbar:null,renderFraction:null,renderCustom:null,progressbarOpposite:!1,type:"bullets",dynamicBullets:!1,dynamicMainBullets:1,formatFractionCurrent:e=>e,formatFractionTotal:e=>e,bulletClass:"swiper-pagination-bullet",bulletActiveClass:"swiper-pagination-bullet-active",modifierClass:"swiper-pagination-",currentClass:"swiper-pagination-current",totalClass:"swiper-pagination-total",hiddenClass:"swiper-pagination-hidden",progressbarFillClass:"swiper-pagination-progressbar-fill",progressbarOppositeClass:"swiper-pagination-progressbar-opposite",clickableClass:"swiper-pagination-clickable",lockClass:"swiper-pagination-lock"}},create(){const e=this;Y.extend(e,{pagination:{init:It.init.bind(e),render:It.render.bind(e),update:It.update.bind(e),destroy:It.destroy.bind(e),dynamicBulletIndex:0}})},on:{init(){const e=this;e.pagination.init(),e.pagination.render(),e.pagination.update()},activeIndexChange(){const e=this;(e.params.loop||"undefined"===typeof e.snapIndex)&&e.pagination.update()},snapIndexChange(){const e=this;e.params.loop||e.pagination.update()},slidesLengthChange(){const e=this;e.params.loop&&(e.pagination.render(),e.pagination.update())},snapGridLengthChange(){const e=this;e.params.loop||(e.pagination.render(),e.pagination.update())},destroy(){const e=this;e.pagination.destroy()},click(e){const t=this;if(t.params.pagination.el&&t.params.pagination.hideOnClick&&t.pagination.$el.length>0&&!p(e.target).hasClass(t.params.pagination.bulletClass)){const e=t.pagination.$el.hasClass(t.params.pagination.hiddenClass);!0===e?t.emit("paginationShow",t):t.emit("paginationHide",t),t.pagination.$el.toggleClass(t.params.pagination.hiddenClass)}}}};const Rt={setTranslate(){const e=this;if(!e.params.scrollbar.el||!e.scrollbar.el)return;const{scrollbar:t,rtlTranslate:A,progress:i}=e,{dragSize:a,trackSize:s,$dragEl:n,$el:o}=t,r=e.params.scrollbar;let l=a,p=(s-a)*i;A?(p=-p,p>0?(l=a-p,p=0):-p+a>s&&(l=s+p)):p<0?(l=a+p,p=0):p+a>s&&(l=s-p),e.isHorizontal()?(n.transform(`translate3d(${p}px, 0, 0)`),n[0].style.width=l+"px"):(n.transform(`translate3d(0px, ${p}px, 0)`),n[0].style.height=l+"px"),r.hide&&(clearTimeout(e.scrollbar.timeout),o[0].style.opacity=1,e.scrollbar.timeout=setTimeout(()=>{o[0].style.opacity=0,o.transition(400)},1e3))},setTransition(e){const t=this;t.params.scrollbar.el&&t.scrollbar.el&&t.scrollbar.$dragEl.transition(e)},updateSize(){const e=this;if(!e.params.scrollbar.el||!e.scrollbar.el)return;const{scrollbar:t}=e,{$dragEl:A,$el:i}=t;A[0].style.width="",A[0].style.height="";const a=e.isHorizontal()?i[0].offsetWidth:i[0].offsetHeight,s=e.size/e.virtualSize,n=s*(a/e.size);let o;o="auto"===e.params.scrollbar.dragSize?a*s:parseInt(e.params.scrollbar.dragSize,10),e.isHorizontal()?A[0].style.width=o+"px":A[0].style.height=o+"px",i[0].style.display=s>=1?"none":"",e.params.scrollbar.hide&&(i[0].style.opacity=0),Y.extend(t,{trackSize:a,divider:s,moveDivider:n,dragSize:o}),t.$el[e.params.watchOverflow&&e.isLocked?"addClass":"removeClass"](e.params.scrollbar.lockClass)},getPointerPosition(e){const t=this;return t.isHorizontal()?"touchstart"===e.type||"touchmove"===e.type?e.targetTouches[0].clientX:e.clientX:"touchstart"===e.type||"touchmove"===e.type?e.targetTouches[0].clientY:e.clientY},setDragPosition(e){const t=this,{scrollbar:A,rtlTranslate:i}=t,{$el:a,dragSize:s,trackSize:n,dragStartPos:o}=A;let r;r=(A.getPointerPosition(e)-a.offset()[t.isHorizontal()?"left":"top"]-(null!==o?o:s/2))/(n-s),r=Math.max(Math.min(r,1),0),i&&(r=1-r);const l=t.minTranslate()+(t.maxTranslate()-t.minTranslate())*r;t.updateProgress(l),t.setTranslate(l),t.updateActiveIndex(),t.updateSlidesClasses()},onDragStart(e){const t=this,A=t.params.scrollbar,{scrollbar:i,$wrapperEl:a}=t,{$el:s,$dragEl:n}=i;t.scrollbar.isTouched=!0,t.scrollbar.dragStartPos=e.target===n[0]||e.target===n?i.getPointerPosition(e)-e.target.getBoundingClientRect()[t.isHorizontal()?"left":"top"]:null,e.preventDefault(),e.stopPropagation(),a.transition(100),n.transition(100),i.setDragPosition(e),clearTimeout(t.scrollbar.dragTimeout),s.transition(0),A.hide&&s.css("opacity",1),t.params.cssMode&&t.$wrapperEl.css("scroll-snap-type","none"),t.emit("scrollbarDragStart",e)},onDragMove(e){const t=this,{scrollbar:A,$wrapperEl:i}=t,{$el:a,$dragEl:s}=A;t.scrollbar.isTouched&&(e.preventDefault?e.preventDefault():e.returnValue=!1,A.setDragPosition(e),i.transition(0),a.transition(0),s.transition(0),t.emit("scrollbarDragMove",e))},onDragEnd(e){const t=this,A=t.params.scrollbar,{scrollbar:i,$wrapperEl:a}=t,{$el:s}=i;t.scrollbar.isTouched&&(t.scrollbar.isTouched=!1,t.params.cssMode&&(t.$wrapperEl.css("scroll-snap-type",""),a.transition("")),A.hide&&(clearTimeout(t.scrollbar.dragTimeout),t.scrollbar.dragTimeout=Y.nextTick(()=>{s.css("opacity",0),s.transition(400)},1e3)),t.emit("scrollbarDragEnd",e),A.snapOnRelease&&t.slideToClosest())},enableDraggable(){const e=this;if(!e.params.scrollbar.el)return;const{scrollbar:t,touchEventsTouch:A,touchEventsDesktop:i,params:a}=e,n=t.$el,o=n[0],r=!(!$.passiveListener||!a.passiveListeners)&&{passive:!1,capture:!1},l=!(!$.passiveListener||!a.passiveListeners)&&{passive:!0,capture:!1};$.touch?(o.addEventListener(A.start,e.scrollbar.onDragStart,r),o.addEventListener(A.move,e.scrollbar.onDragMove,r),o.addEventListener(A.end,e.scrollbar.onDragEnd,l)):(o.addEventListener(i.start,e.scrollbar.onDragStart,r),s.addEventListener(i.move,e.scrollbar.onDragMove,r),s.addEventListener(i.end,e.scrollbar.onDragEnd,l))},disableDraggable(){const e=this;if(!e.params.scrollbar.el)return;const{scrollbar:t,touchEventsTouch:A,touchEventsDesktop:i,params:a}=e,n=t.$el,o=n[0],r=!(!$.passiveListener||!a.passiveListeners)&&{passive:!1,capture:!1},l=!(!$.passiveListener||!a.passiveListeners)&&{passive:!0,capture:!1};$.touch?(o.removeEventListener(A.start,e.scrollbar.onDragStart,r),o.removeEventListener(A.move,e.scrollbar.onDragMove,r),o.removeEventListener(A.end,e.scrollbar.onDragEnd,l)):(o.removeEventListener(i.start,e.scrollbar.onDragStart,r),s.removeEventListener(i.move,e.scrollbar.onDragMove,r),s.removeEventListener(i.end,e.scrollbar.onDragEnd,l))},init(){const e=this;if(!e.params.scrollbar.el)return;const{scrollbar:t,$el:A}=e,i=e.params.scrollbar;let a=p(i.el);e.params.uniqueNavElements&&"string"===typeof i.el&&a.length>1&&1===A.find(i.el).length&&(a=A.find(i.el));let s=a.find("."+e.params.scrollbar.dragClass);0===s.length&&(s=p(`
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e=this;e.scrollbar.updateSize()},resize(){const e=this;e.scrollbar.updateSize()},observerUpdate(){const e=this;e.scrollbar.updateSize()},setTranslate(){const e=this;e.scrollbar.setTranslate()},setTransition(e){const t=this;t.scrollbar.setTransition(e)},destroy(){const e=this;e.scrollbar.destroy()}}};const Ft={setTransform(e,t){const A=this,{rtl:i}=A,a=p(e),s=i?-1:1,n=a.attr("data-swiper-parallax")||"0";let o=a.attr("data-swiper-parallax-x"),r=a.attr("data-swiper-parallax-y");const l=a.attr("data-swiper-parallax-scale"),d=a.attr("data-swiper-parallax-opacity");if(o||r?(o=o||"0",r=r||"0"):A.isHorizontal()?(o=n,r="0"):(r=n,o="0"),o=o.indexOf("%")>=0?parseInt(o,10)*t*s+"%":o*t*s+"px",r=r.indexOf("%")>=0?parseInt(r,10)*t+"%":r*t+"px","undefined"!==typeof d&&null!==d){const e=d-(d-1)*(1-Math.abs(t));a[0].style.opacity=e}if("undefined"===typeof l||null===l)a.transform(`translate3d(${o}, ${r}, 0px)`);else{const e=l-(l-1)*(1-Math.abs(t));a.transform(`translate3d(${o}, ${r}, 0px) 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e=this,t=e.zoom,{gesture:A,image:i,velocity:a}=t;if(!A.$imageEl||0===A.$imageEl.length)return;if(!i.isTouched||!i.isMoved)return i.isTouched=!1,void(i.isMoved=!1);i.isTouched=!1,i.isMoved=!1;let s=300,n=300;const o=a.x*s,r=i.currentX+o,l=a.y*n,p=i.currentY+l;0!==a.x&&(s=Math.abs((r-i.currentX)/a.x)),0!==a.y&&(n=Math.abs((p-i.currentY)/a.y));const d=Math.max(s,n);i.currentX=r,i.currentY=p;const c=i.width*t.scale,m=i.height*t.scale;i.minX=Math.min(A.slideWidth/2-c/2,0),i.maxX=-i.minX,i.minY=Math.min(A.slideHeight/2-m/2,0),i.maxY=-i.minY,i.currentX=Math.max(Math.min(i.currentX,i.maxX),i.minX),i.currentY=Math.max(Math.min(i.currentY,i.maxY),i.minY),A.$imageWrapEl.transition(d).transform(`translate3d(${i.currentX}px, ${i.currentY}px,0)`)},onTransitionEnd(){const e=this,t=e.zoom,{gesture:A}=t;A.$slideEl&&e.previousIndex!==e.activeIndex&&(A.$imageEl&&A.$imageEl.transform("translate3d(0,0,0) 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t=this;t.zoom.enabled&&t.zoom.onTouchStart(e)},touchEnd(e){const t=this;t.zoom.enabled&&t.zoom.onTouchEnd(e)},doubleTap(e){const t=this;t.params.zoom.enabled&&t.zoom.enabled&&t.params.zoom.toggle&&t.zoom.toggle(e)},transitionEnd(){const e=this;e.zoom.enabled&&e.params.zoom.enabled&&e.zoom.onTransitionEnd()},slideChange(){const e=this;e.zoom.enabled&&e.params.zoom.enabled&&e.params.cssMode&&e.zoom.onTransitionEnd()}}};const Ot={loadInSlide(e,t=!0){const A=this,i=A.params.lazy;if("undefined"===typeof e)return;if(0===A.slides.length)return;const a=A.virtual&&A.params.virtual.enabled,s=a?A.$wrapperEl.children(`.${A.params.slideClass}[data-swiper-slide-index="${e}"]`):A.slides.eq(e);let n=s.find(`.${i.elementClass}:not(.${i.loadedClass}):not(.${i.loadingClass})`);!s.hasClass(i.elementClass)||s.hasClass(i.loadedClass)||s.hasClass(i.loadingClass)||(n=n.add(s[0])),0!==n.length&&n.each((e,a)=>{const n=p(a);n.addClass(i.loadingClass);const 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"},c9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"},d03f:function(e,t){e.exports="data:image/png;base64,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"}}]);