可再生能源
稀缺
制氢
间歇性
环境科学
生产(经济)
电解水
电力转天然气
环境经济学
工艺工程
计算机科学
电解
氢
工程类
经济
化学
物理
湍流
电极
物理化学
电解质
热力学
宏观经济学
有机化学
电气工程
微观经济学
作者
Emma Nguyen,Pierre Olivier,Marie‐Cécile Péra,Elodie Pahon,Robin Roche
标识
DOI:10.1016/j.ijhydene.2024.05.217
摘要
By offering promising solutions to two critical issues – the integration of renewable energies into energy systems and the decarbonization of existing hydrogen applications – green hydrogen production through water electrolysis is set to play a crucial role in addressing the major challenges of the energy transition. However, the successful integration of renewable energy sources relies on gaining accurate insights into the impacts that intermittent electrical supply conditions induce on electrolyzers. Despite the rising importance of addressing intermittency issues to accelerate the widespread adoption of renewable energy sources, the state-of-the-art lacks research providing an in-depth understanding of these concerns. This paper endeavors to offer a comprehensive review of existing research, focusing on proton exchange membrane (PEM) and alkaline electrolysis technologies operating under intermittent operation. Despite growing interest over the last ten years, the review underscores the scarcity of industrial-scale databases for quantifying these impacts.
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