PROCESS FOR PRODUCING TRANSPORT AND STORAGE-STABLE OXYGEN-CONSUMING ELECTRODE
A process for producing oxygen-consuming electrodes, in particular for use in chloralkali electrolysis, which display good transport capability and storage capability. In the process, a silver oxide-containing sheet-like structure as intermediate is electrochemically reduced. Also disclosed are methods of using these electrodes in chloralkali electrolysis or fuel cell technology or in metal-air batteries, and the fuel cells and metal-air batteries produced.
1 . A process for producing a sheet-like oxygen-consuming electrode comprising at least a support, a gas diffusion layer and a layer containing a silver-based catalyst, said process comprising (a) coating the support with a silver oxide-containing mixture of electrocatalyst and a hydrophobic material to form a silver oxide-containing sheet-like structure as an intermediate, (b) electrochemically reducing the silver oxide-containing sheet-like structure in an aqueous electrolyte at a pH of at least 10 to yield said electrode, and (c) freeing the electrode of the aqueous electrolyte.
2 . Process according to claim 1 , wherein the support is electrically conductive.
3 . Process according to claim 1 , wherein the electrolyte additionally comprises at least one of salts of an element of the alkali metal or alkaline earth metal group.
4 . Process according to claim 3 , wherein the electrolyte additionally comprises at least one of alkali metal sulphates, alkali metal nitrates, or mixtures of alkali metal sulphates and alkali metal nitrates.
5 . Process according to claim 1 , which further comprises carrying out the electrochemically reducing at a current density of at least 0.01 kA/m 2 .
6 . Process according to claim 1 , wherein the electrolyte comprises not more than 1000 mg/l of chloride.
7 . Process according to claim 1 , which further comprises carrying out the electrochemically reducing at a temperature in the range from 10 to 90° C.
8 . Process according to claim 1 , which further comprises reducing the silver oxide in the silver oxide-containing sheet-like structure to an extent of more than 50%.
9 . Process according to claim 1 , wherein the silver oxide-containing sheet-like structure as intermediate for the electrode comprises at least silver oxide powder pressed together with polytetrafluoroethylene (PTFE) powder.
10 . Process according to claim 1 , which further comprises arranging the silver oxide-containing sheet-like structure as intermediate for the electrode between two anodes during the electrochemically reducing.
11 . Process according to claim 1 , which further comprises pretreating the silver oxide-based sheet-like structure by placing the silver oxide-based sheet-like structure in water or in the electrolyte used later during the electrochemically reducing, before introducing into an apparatus for carrying out the electrochemically reducing.
12 . Process according to claim 5 , which further comprises carrying out the electrochemically reducing at a current density of 0.01 to 6 kA/m 2 .
13 . Process according to claim 1 , which further comprises freeing the electrode of the electrolyte after the electrochemically reducing by rinsing and treating with deionized water and subsequently drying.
14 . Process according to claim 1 , wherein the gas diffusion layer and the layer containing electrocatalyst are formed by a single layer.
15 . Process according to claim 1 , wherein the gas diffusion layer and the layer containing electrocatalyst are formed by at least two different layers.
16 . Oxygen-consuming electrode obtained by a process according to claim 1 .
17 . A fuel cell or a metal-air battery comprising an oxygen-consuming electrode according to claim 16 .
18 . A process comprising conducting an electrolysis process in the presence of an oxygen-consuming electrode according to claim 16 .
19 . Process according to claim 18 , which is a chloralkali electrolysis.