Alkaline water electrolysis method, and anode for alkaline water electrolysis

The present invention realizes industrially excellent effects such that when electric power having a large output fluctuation, such as renewable energy, is used as a power source, electrolysis performance is unlikely to be deteriorated and excellent catalytic activity is retained stably over a longe...

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Hauptverfasser: Nakai, Takaaki, Takatsu, Shohei, Nagai, Ayaka, Kato, Akihiro, Mitsushima, Shigenori, Nishiki, Yoshinori, Nagashima, Ikuo, Taniguchi, Tatsuya, Inomata, Akihiko, Kuroda, Yoshiyuki, Zaenal, Awaludin
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creator Nakai, Takaaki
Takatsu, Shohei
Nagai, Ayaka
Kato, Akihiro
Mitsushima, Shigenori
Nishiki, Yoshinori
Nagashima, Ikuo
Taniguchi, Tatsuya
Inomata, Akihiko
Kuroda, Yoshiyuki
Zaenal, Awaludin
description The present invention realizes industrially excellent effects such that when electric power having a large output fluctuation, such as renewable energy, is used as a power source, electrolysis performance is unlikely to be deteriorated and excellent catalytic activity is retained stably over a longer period of time, and in addition, the present invention provides a technique that enables forming a catalyst layer of an oxygen generation anode, which gives such excellent effects, with a more versatile materials and by a simple electrolysis method. Provided are an alkaline water electrolysis method including supplying an electrolyte obtained by dispersing a catalyst containing a hybrid nickel-iron hydroxide nanosheet (NiFe-ns) being a composite of a metal hydroxide and an organic substance to an anode chamber and a cathode chamber, and using the electrolyte for electrolysis in each chamber in common, an alkaline water electrolysis method including supplying an electrolyte obtained by dispersing a catalyst containing the NiFe-ns to an anode chamber and a cathode chamber, and performing electrolytic deposition of the NiFe-ns in the electrolytic cell during operation to electrolytically deposit the NiFe-ns on a surface of an electrically conductive substrate having a catalyst layer formed on a surface of an oxygen generation anode, thereby recovering and improving electrolysis performance, and an alkaline water electrolysis anode.
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subjects APPARATUS THEREFOR
CHEMISTRY
ELECTROLYTIC OR ELECTROPHORETIC PROCESSES
ELECTROLYTIC OR ELECTROPHORETIC PROCESSES FOR THE PRODUCTIONOF COMPOUNDS OR NON-METALS
METALLURGY
title Alkaline water electrolysis method, and anode for alkaline water electrolysis
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