制氢
可再生能源
环境科学
氢
电解水
能量载体
电解
电解质
分解水
氢经济
相对湿度
材料科学
工艺工程
气象学
化学
生态学
物理
催化作用
物理化学
有机化学
工程类
生物
光催化
生物化学
电极
作者
Jining Guo,Yuecheng Zhang,Ali Zavabeti,Kaifei Chen,Yalou Guo,Guoping Hu,Xiaolei Fan,Gang Kevin Li
标识
DOI:10.1038/s41467-022-32652-y
摘要
Green hydrogen produced by water splitting using renewable energy is the most promising energy carrier of the low-carbon economy. However, the geographic mismatch between renewables distribution and freshwater availability poses a significant challenge to its production. Here, we demonstrate a method of direct hydrogen production from the air, namely, in situ capture of freshwater from the atmosphere using hygroscopic electrolyte and electrolysis powered by solar or wind with a current density up to 574 mA cm-2. A prototype of such has been established and operated for 12 consecutive days with a stable performance at a Faradaic efficiency around 95%. This so-called direct air electrolysis (DAE) module can work under a bone-dry environment with a relative humidity of 4%, overcoming water supply issues and producing green hydrogen sustainably with minimal impact to the environment. The DAE modules can be easily scaled to provide hydrogen to remote, (semi-) arid, and scattered areas.
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