海水
电解
正渗透
分解水
阳极
阴极
电化学
电解水
环境科学
可再生能源
化学
材料科学
化学工程
催化作用
反渗透
膜
电极
工程类
电气工程
海洋学
地质学
物理化学
电解质
光催化
生物化学
作者
Samuel S. Veroneau,Alaina C. Hartnett,Agnes E. Thorarinsdottir,Daniel G. Nocera
标识
DOI:10.1021/acsaem.1c03998
摘要
Scalable, accessible, and affordable renewable energy demands commensurately scalable, accessible, and affordable energy storage. Foremost in this pursuit is hydrogen gas, which may be generated through electrochemical water splitting. Whereas conventional electrochemical water splitting relies upon molecularly pure water, recent efforts have shifted toward integrating natural water sources, the most abundant of which is seawater. Herein we report a means by which forward osmosis may be exploited to enable electrochemical seawater splitting with no loss in efficiency while using earth-abundant metal catalysts. By coupling these processes, we demonstrate an essential design element wherein both the anode and cathode are protected from the seawater source.
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