废物管理
氢经济
环境科学
背景(考古学)
制氢
废水
化石燃料
电解
化学
氢
工程类
电解质
生物
物理化学
古生物学
有机化学
电极
作者
Ahmed M. Elgarahy,M.G. Eloffy,Ahmed Hammad,Ayman N. Saber,Dina M. El‐Sherif,Ahmed Mohsen,Mohamed Abouzid,Khalid Z. Elwakeel
标识
DOI:10.1007/s10311-022-01480-3
摘要
In the context of climate change, most of the actual dihydrogen production is not sustainable with about 96% of the 60 million tons of dihydrogen produced annually generated by reforming of fossil fuels, calling for cleaner methods of dihydrogen production. Here we review dihydrogen production from wastewater with focus on biological methods, electrochemical methods, dihydrogen storage, techno-economic aspects, governance and applications. Methods include fermentation, photolysis, photocatalysis, electrolysis and supercritical water gasification. Applications comprise refining crude oil, ammonia production, the food industry, metal extraction, pharmaceuticals, fuel cells, combustion engines, power generation and energy carrier.
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