海水淡化
盐水
电解
制氢
可再生能源
电解水
电解质
废物管理
高温电解
饮用水
环境工程
环境科学
氢
化学
工程类
电极
盐度
物理化学
有机化学
电气工程
生物
生物化学
膜
生态学
作者
Wenming Tong,Mark Forster,Fabio Dionigi,Sören Dresp,Roghayeh Sadeghi Erami,Peter Strasser,J.S. Roberts,Pau Farràs
出处
期刊:Nature Energy
[Springer Nature]
日期:2020-02-17
卷期号:5 (5): 367-377
被引量:743
标识
DOI:10.1038/s41560-020-0550-8
摘要
Powered by renewable energy sources such as solar, marine, geothermal and wind, generation of storable hydrogen fuel through water electrolysis provides a promising path towards energy sustainability. However, state-of-the-art electrolysis requires support from associated processes such as desalination of water sources, further purification of desalinated water, and transportation of water, which often contribute financial and energy costs. One strategy to avoid these operations is to develop electrolysers that are capable of operating with impure water feeds directly. Here we review recent developments in electrode materials/catalysts for water electrolysis using low-grade and saline water, a significantly more abundant resource worldwide compared to potable water. We address the associated challenges in design of electrolysers, and discuss future potential approaches that may yield highly active and selective materials for water electrolysis in the presence of common impurities such as metal ions, chloride and bio-organisms. Production of hydrogen fuel by electrolysis of low-grade or saline water, as opposed to pure water, could have benefits in terms of resource availability and cost. This Review examines the challenges of this approach and how they can be addressed through catalyst and electrolyser design.
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