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首页> 外文期刊>International journal of hydrogen energy >Economic and environmental competitiveness of high temperature electrolysis for hydrogen production
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Economic and environmental competitiveness of high temperature electrolysis for hydrogen production

机译:高温电解氢气生产的经济环境竞争力

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Alternative hydrogen production technologies are sought in part to reduce the greenhouse gas (GHG) emissions intensity compared with Steam Methane Reforming (SMR), currently the most commonly employed hydrogen production technology globally. This study investigates hydrogen production via High Temperature Steam Electrolysis (HTSE) in terms of GHG emissions and cost of hydrogen production using a combination of Aspen HYSYS (R) modelling and life cycle assessment. Results show that HTSE yields life cycle GHG emissions from 3 to 20 kg CO2e/kg H2 and costs from $2.5 to 5/kg H2, depending on the system parameters (e.g., energy source). A carbon price of $360/tonne CO2e is estimated to be required to make HTSE economically competitive with SMR. This is estimated to potentially decrease to $50/tonne CO2e with future technology advancements (e.g., fuel cell lifetime). The study offers insights for technology developers seeking to improve HTSE, and policy makers for decisions such as considering support for development of hydrogen production technologies. (c) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.commentSuperscript/Subscript Available/comment
机译:替代的氢气生产技术是为了减少与蒸汽甲烷重整(SMR)相比的温室气体(GHG)排放强度,目前最常用的氢生产技术。本研究通过高温蒸汽电解(HTSE)在温室气体排放和使用Aspen Hysys(R)建模和生命周期评估的组合方面来研究通过高温蒸汽电解(HTSE)。结果表明,根据系统参数(例如,能源),HTSE从3至20公斤CO2E / kg H2的生命周期GHG排放量产生3至20公斤CO2E / kg H2,费用为2.5至5 / kg H2。估计碳价格为360美元/吨CO2E,以使HTSE与SMR具有经济竞争力。据估计,由于未来的技术进步(例如,燃料电池寿命)可能降至50美元/吨CO2E。该研究提供了寻求改善HTSE的技术开发人员的见解,并考虑对氢气生产技术的开发支持等决策等决策者。 (c)2021氢能出版物LLC。由elestvier有限公司出版。保留所有权利。&评论&上标/下标可用& /评论

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