聚合物电解质膜电解
生命周期评估
环境科学
电解
电解水
制氢
海上风力发电
电力转天然气
环境工程
全球变暖
风力发电
电解法
废物管理
电解质
生产(经济)
气候变化
工程类
氢
化学
海洋学
电极
有机化学
经济
物理化学
宏观经济学
地质学
电气工程
作者
Jinxu Zhang,Zhihua Wang,Yong He,Mingyang Li,Xiaoding Wang,Bo Wang,Yanqun Zhu,Kefa Cen
标识
DOI:10.1016/j.seta.2023.103515
摘要
A comprehensive life cycle assessment (LCA) was conducted to evaluate three prominent water electrolysis technologies: alkaline electrolysis technology (AEL), polymer electrolyte membrane electrolysis technology (PEM), and solid oxide electrolysis technology (SOEC). These technologies were analyzed in conjunction with both onshore and offshore wind power sources. The assessment encompassed four environmental factors: global warming potential, acidification potential, ozone depletion potential, and eutrophication potential. By quantitatively comparing all six methods while considering their environmental impacts, it has been concluded that the combination of onshore wind power and polymer electrolyte membrane electrolysis technology for hydrogen production demonstrates the lowest global warming potential with a value of 0.0936 kg CO2-eq. This method offers significant advantages in terms of its environmental impact on the entire ecosystem.
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