分解水
电解水
电解
制氢
析氧
可再生能源
电化学
电力转天然气
氢
工艺工程
可持续能源
材料科学
电解质
纳米技术
电极
化学
催化作用
电气工程
工程类
物理化学
有机化学
光催化
生物化学
作者
Patrick J. McHugh,Α. Στέργιου,Mark D. Symes
标识
DOI:10.1002/aenm.202002453
摘要
Abstract Electrolytic water splitting to generate hydrogen and oxygen is one of the most promising ways in which to harness intermittent renewable power sources and store the energy these provide as a clean‐burning and sustainable fuel. In recent years, this has led to an explosion in reports on electrochemical water splitting, most of them focused on improving the efficiency of the electrochemical reactions themselves. However, efficient generation of hydrogen and oxygen is of little use if these products cannot be kept separate and the community is now coming to realize that there are considerable challenges associated with maintaining adequate separation between H 2 and O 2 during electrolysis driven by intermittent renewable sources. Decoupled electrolysis (whereby oxygen production occurs with reduction of a suitable mediator and hydrogen production is then paired with the reoxidation of this mediator) offers a solution to many of these challenges by allowing O 2 and H 2 to be produced at different times, at different rates, and even in completely different electrochemical cells. In this review, an overview of recent progress in the field of decoupled electrolysis for water splitting is given and the potential that this approach has for enabling a range of other sustainable chemical processes is explored.
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