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hydrogeneurope:2024年清洁制氢途径报告(英文版)(99页).pdf

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1、CLEAN HYDROGENPRODUCTIONPATHWAYSREPORT 2024hydrogeneurope.euThisreporthasbeenpreparedbytheHydrogenEuropeSecretariat;thestatements contained herein reflect the views of the Hydrogen Europe Secretariatand not of Hydrogen Europe members.It is being provided for general informationonly.The information c

2、ontained in this report is derived from selected public andprivate sources.Hydrogen Europe,in providing the information,believes that theinformation it uses comes from reliable sources but does not guarantee theaccuracy or completeness of this information.Hydrogen Europe assumes noobligation to upda

3、te any information contained herein.That information issubject to change without notice,and nothing in this document shall beconstrued as such a guarantee.This report does not constitute technical,investment,legal,tax,or any otheradvice.Hydrogen Europe will not be held liable for any direct or indir

4、ect damageincurred using the information provided and will not give any indemnities.Thispublication and any map included herein are without prejudice to the status of orsovereignty over any territory,to the delimitation of international frontiers andboundaries and the name of any territory,city,or a

5、rea.Hydrogen Europe would like to thank all members of Hydrogen Europe who havecontributed their time and expertise to making of this report.Main authors:Matus Muron,Grzegorz Pawelec,Daniel FrailePictures copyright:Hydrogen Europe(pgs.1,19),Canva(pgs.37,47,58)and JustinJin for Hydrogen Europe(pg.68)

6、.DISCLAIMER AND ACKNOWLEDGEMENT3Table of contentsExecutive SummaryExecutive summary 4Introduction and Methodology151.Water electrolysis 192.Reforming with carbon capture 373.Methane splitting 474.Biowaste-to-hydrogen 585.Non-biological waste-to-hydrogen 686.Other production pathways 777.Policy recom

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本文主要讨论了2024年欧洲清洁氢生产路径报告,包括以下关键点: 1. 报告由Hydrogen Europe秘书处准备,旨在提供清洁氢生产技术的概览,包括水解、碳捕集重整、甲烷分裂、生物废物制氢、非生物废物制氢等。 2. 预计到2050年,欧洲实现净零排放需要约6200万吨的清洁氢,而目前的水电解产能仅为约0.05亿吨。 3. 不同生产路径具有独特的优势,如水解可促进能源系统集成,碳捕集重整依赖天然气供应和二氧化碳基础设施,甲烷分裂依赖固体碳收入和天然气基础设施。 4. 所有评估的生产技术目前都已可用或接近商业化,技术准备水平为TRL 6至TRL 8。 5. 清洁氢生产成本在1.7至10.2欧元/公斤之间,水解是最昂贵的路径,但具有最大的成本降低潜力。 6. 所有分析的生产路径对气候变化减缓都有显著正面贡献,但需要设计强有力的监管框架以促进可持续解决方案。 7. 目前,基于天然气的氢生产路径具有最低的脱碳成本。 8. 报告还讨论了其他清洁氢生产路径,如太阳能热化学循环和自然氢,这些技术具有潜在的低成本和低排放优势。
哪种氢生产技术成本最低? 电解水制氢的挑战是什么? 高温电解水制氢的优势是什么?
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