Chapter 10. Economics and Perspectives of Hydrogen Electroproduction Techniques

G. Saur, Daniel Desantis, B. James, C. Houchins, E. Miller
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Abstract

Techno-economic analysis (TEA) plays a critical role in assessing the cost of a technology relative to the current market, in identifying high impact areas for research and development investment, and in informing relevant stakeholders. In this chapter we discuss three main topics: (1) an overview of TEA, its processes, methods, and considerations for developing a good TEA framework; (2) description of the U.S. Department of Energy's H2A Production Model which is used for evaluating their portfolio of hydrogen production research; and (3) a synopsis of currently published H2A case studies illustrating the application of techno-economic analysis to hydrogen production technologies. These technologies include polymer membrane and solid oxide electrolysis, photo-electrochemical, methane steam reforming, coal gasification and use of biomass (via gasification or bio-derived liquids) and solar thermal routes to hydrogen. From the analyses comparisons between various technological approaches can be made in terms of costs, implementation, investment and versatility.
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第十章。氢电生产技术的经济学和前景
技术经济分析(TEA)在评估一项技术相对于当前市场的成本、确定研究和开发投资的高影响领域以及向相关利益攸关方提供信息方面发挥着关键作用。在本章中,我们将讨论三个主要主题:(1)TEA的概述,其过程,方法和开发一个良好的TEA框架的考虑因素;(2)美国能源部用于评估其制氢研究组合的H2A生产模型的描述;(3)目前发表的H2A案例研究摘要,说明技术经济分析在制氢技术中的应用。这些技术包括聚合物膜和固体氧化物电解、光电化学、甲烷蒸汽重整、煤气化和生物质利用(通过气化或生物衍生液体)以及太阳能热制氢途径。通过分析,可以在成本、实施、投资和通用性方面对各种技术方法进行比较。
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Chapter 10. Economics and Perspectives of Hydrogen Electroproduction Techniques Chapter 2. Alkaline Electrolysers Chapter 4. Electrochemical Reforming of Alcohols Chapter 7. Intermediate Temperature Electrolysers Chapter 11. Conclusions: Electrolytic Hydrogen Production and Sustainable Routes
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