
Anion exchange membrane water electrolysis for sustainable …
The Acta 3030 (CuCoO x) and Acta 4030 (Ni/(CeO 2-La2O 3)/C) were adjusted as anode and cathode catalysts, respectively. The performance was carried out at 60°C in 1% K 2 CO 3 …
Increasing the performance of an anion-exchange ... - ScienceDirect
2021年7月21日 · Electrochemical characterization of the AEMWE based on the cell configuration with nonprecious-metal-based catalysts. Different PTLs (PTL/PTL and NiMPL-PTL/NiMPL …
Hydrogen Production by water Electrolysis with an Ultrathin Anion ...
2018年12月1日 · The ultrathin A-901 membrane exhibited slightly higher performance compared to the A-201 for a given catalyst, catalyst loading, and electrolyte concentration. Acta 3030® …
Ionomer content optimization in nickel-iron-based anodes with …
2021年12月1日 · Vincent et al. [31] tested ionomer amounts in their electrolyser anode ranging from ∼9 to 33% in their 5 cm2 active area cell. They used a CuCoOx (Acta 3030®) and a Ni/ …
Anion exchange membrane (AEM) electrolysis eradicates platinum group metal electrocatalysts and diaphragms and is used in conventional proton exchange membrane (PEM) electrolysis …
Acta 3030® (CuCoO x) and Acta 4030 ® (Ni/(CeO 2-La 2 O 3)/C) were employed as the oxygen evolution reaction (OER) and hydrogen evolution reaction (HER) catalysts, respectively. The …
水电解制氢用商业化阴离子交换膜发展现状 - cip
2023年12月9日 · Vincent等人 基于A201商业阴离子交换膜探索了AEM膜电极CCS制备工艺,分别以Acta 4030[Ni/(CeO 2-La 2 O 3)/C]和Acta 3030(CuCoO x)作为阴、阳极催化剂,以碳纸和 …
Hydrogen Production by water Electrolysis with an Ultrathin Anion ...
Acta 3030®(CuCoOx)和Acta 4030®. A new ultrathin anion exchange membrane (AEM) is proposed for low cost AEM electrolysis. The advantages that thin membranes offer include …
超薄阴离子交换膜(AEM)通过水电解制氢,International Journal …
Acta 3030 ® (CuCoOx) and Acta 4030 ®. 提出了一种新型的超薄阴离子交换膜(AEM),用于低成本的AEM电解。 薄膜所提供的优点包括降低的传质阻力和欧姆电阻。 具有更薄膜的膜电极 …
Hydrogen Production by water Electrolysis with an Ultrathin Anion ...
2018年12月1日 · Acta 3030® (CuCoOx) and Acta 4030® (Ni/(CeO2-La2O3)/C) were employed as the oxygen evolution reaction and hydrogen evolution reaction catalysts, respectively.
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