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一种用于提高碱性水电解槽性能和能源效率的催化剂涂层隔膜组件。

A catalyst-coated diaphragm assembly to improve the performance and energy efficiency of alkaline water electrolysers.

作者信息

Xu Zhuang, Liu Yanying, Cheng Xiaobo, Shang Yunshan, Wang Yongtao, Wang Jing, Li Wenshi, He Guangli

机构信息

Hydrogen and Ammonium Energy R&D Center, National Institute of Clean-and-Low-Carbon Energy, Beijing, China.

出版信息

Commun Eng. 2025 Jan 25;4(1):9. doi: 10.1038/s44172-025-00344-2.

Abstract

Alkaline water electrolysers are ideal for gigawatt-scale hydrogen production due to the usage of non-precious metal and low-cost raw materials. However, their performances are modest with the separated electrode and diaphragm structure which can date back to more than 100 years ago. Here we report a catalyst-coated diaphragm assembly to improve the performance of alkaline water electrolysers. The transport resistance of OH ions is reduced and the electrochemical surface area of catalysts is enlarged by more than forty fold, representing more than 40% increase in hydrogen production rate or as much as 16% reduction in energy consumption. The electrolyser with our catalyst-coated diaphragm assembly delivers current densities as high as 1 A cm at 1.8 V or 2 A cm at 2 V and shows good stability after more than 1000 hours of operation. Therefore, the catalyst-coated diaphragm assembly route is promising for the development of high-performance and efficient alkaline water electrolysers.

摘要

碱性水电解槽由于使用非贵金属和低成本原材料,是千兆瓦规模制氢的理想选择。然而,其性能因分离电极和隔膜结构而较为一般,这种结构可追溯到100多年前。在此,我们报道一种涂覆催化剂的隔膜组件,以提高碱性水电解槽的性能。OH离子的传输阻力降低,催化剂的电化学表面积扩大了40多倍,这意味着产氢率提高了40%以上或能耗降低了多达16%。带有我们涂覆催化剂隔膜组件的电解槽在1.8V时可提供高达1A/cm²的电流密度,在2V时可提供2A/cm²的电流密度,并且在运行超过1000小时后显示出良好的稳定性。因此,涂覆催化剂的隔膜组件路线对于高性能、高效碱性水电解槽的开发具有广阔前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5999/11759708/86cb21467543/44172_2025_344_Fig1_HTML.jpg

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