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高效无贵金属基膜电极组件用于阴离子交换膜水电解。

Highly efficient platinum group metal free based membrane-electrode assembly for anion exchange membrane water electrolysis.

机构信息

R&D Department, Acta SpA, Via di Lavoria 56G, 56040, Crespina (PI) (Italy) http://www.actaspa.com.

出版信息

Angew Chem Int Ed Engl. 2014 Jan 27;53(5):1378-81. doi: 10.1002/anie.201308099. Epub 2013 Dec 13.

Abstract

Low-temperature electricity-driven water splitting is an established technology for hydrogen production. However, the two main types, namely proton exchange membrane (PEM) and liquid alkaline electrolysis, have limitations. For instance, PEM electrolysis requires a high amount of costly platinum-group-metal (PGM) catalysts, and liquid alkaline electrolysis is not well suited for intermittent operation. Herein we report a highly efficient alkaline polymer electrolysis design, which uses a membrane-electrode assembly (MEA) based on low-cost transition-metal catalysts and an anion exchange membrane (AEM). This system exhibited similar performance to the one achievable with PGM catalysts. Moreover, it is very suitable for intermittent power operation, durable, and able to efficiently operate at differential pressure up to 3 MPa. This system combines the benefits of PEM and liquid alkaline technologies allowing the scalable production of low-cost hydrogen from renewable sources.

摘要

低温电力驱动水分解是一种成熟的制氢技术。然而,主要的两种类型,即质子交换膜(PEM)和碱性液体电解,都存在局限性。例如,PEM 电解需要大量昂贵的贵金属(PGM)催化剂,而碱性液体电解不适用于间歇操作。在此,我们报告了一种高效的碱性聚合物电解设计,该设计使用基于低成本过渡金属催化剂和阴离子交换膜(AEM)的膜电极组件(MEA)。该系统表现出与使用 PGM 催化剂相当的性能。此外,它非常适合间歇动力操作,耐用,并且能够在高达 3 MPa 的压差下高效运行。该系统结合了 PEM 和碱性液体技术的优点,允许从可再生能源大规模生产低成本氢气。

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