IP Library Patent Application 13322492
Patent Application
App. No. 13/322,492

GAS DIFFUSION ELECTRODE EQUIPPED ION EXCHANGE MEMBRANE ELECTROLYZER

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Patent No.
US None
App. No.
13/322,492
Abstract

Provided is a gas diffusion electrode equipped ion exchange membrane electrolyzer including an anode, an ion-exchange membrane, and a cathode chamber in which a gas diffusion electrode is disposed, wherein in a cathode gas chamber formed between a back plate of the cathode chamber and one side of the gas diffusion electrode opposite to the electrolytic surface, a gas-permeable elastic member is disposed between the gas diffusion electrode and the back plate, and the elastic member forms a conductive connection between the gas diffusion electrode and the back plate by making contact with corrosion-resistant conductive layers formed on the surfaces of a plurality of conductive members which are joined to the back plate.

Claims (16)

1 . A gas diffusion electrode equipped ion exchange membrane electrolyzer having an anode, an ion exchange membrane, and a cathode chamber in which a gas diffusion electrode is disposed, characterized in that

in a cathode gas chamber formed between a back plate of the cathode chamber and one side of the gas diffusion electrode opposite to the electrolytic surface, a gas-permeable elastic member is disposed between the gas diffusion electrode and the back plate, and the elastic member forms a conductive connection between the gas diffusion electrode and the back plate by making contact with corrosion-resistant conductive layers formed on the surfaces of a plurality of conductive members which are joined to the back plate.

2 . The gas diffusion electrode equipped ion exchange membrane electrolyzer according to claim 1 , characterized in that

the conductive member has a silver or platinum group metal-containing corrosion-resistant conductive layer on a foil or plate made of nickel or a nickel alloy.

3 . The gas diffusion electrode equipped ion exchange membrane electrolyzer according to claim 1 , characterized in that

the conductive member is obtained by integrating the silver or platinum group metal-containing corrosion-resistant conductive layer by means of plating, cladding or baking coating.

4 . The gas diffusion electrode equipped ion exchange membrane electrolyzer according to claim 1 , characterized in that

a part of or the entire conductive member is joined to the back plate.

5 . The gas diffusion electrode equipped ion exchange membrane electrolyzer according to claim 1 , characterized in that

the elastic member forms a corrosion-resistant conductive layer on a conductive contacting surface or the entire surface thereof.

6 . A manufacturing method of an alkali metal hydroxide aqueous solution, comprising:

providing a gas diffusion electrode equipped ion exchange membrane electrolyzer having an anode, an ion exchange membrane, and a cathode chamber in which a gas diffusion electrode is disposed, characterized in that, in a cathode gas chamber formed between a back plate of the cathode chamber and one side of the gas diffusion electrode opposite to the electrolytic surface, a gas-permeable elastic member is disposed between the gas diffusion electrode and the back plate, and the elastic member forms a conductive connection between the gas diffusion electrode and the back plate by making contact with corrosion-resistant conductive layers formed on the surfaces of a plurality of conductive members which are joined to the back plate; and

using the gas diffusion electrode to manufacture an alkali metal hydroxide aqueous solution.

7 . a manufacturing method of chlorine, comprising:

providing a gas diffusion electrode equipped ion exchange membrane electrolyzer having an anode, an ion exchange membrane, and a cathode chamber in which a gas diffusion electrode is disposed, characterized in that, in a cathode gas chamber formed between a back plate of the cathode chamber and one side of the gas diffusion electrode opposite to the electrolytic surface, a gas-permeable elastic member is disposed between the gas diffusion electrode and the back plate, and the elastic member forms a conductive connection between the gas diffusion electrode and the back plate by making contact with corrosion-resistant conductive layers formed on the surfaces of a plurality of conductive members which are joined to the back plate; and

using the gas diffusion electrode to manufacture chlorine.

Assignments (2)
CHANGE OF ADDRESS Recorded Sep 12, 2013
From: KANEKA CORPORATION
To: KANEKA CORPORATION
Reel/Frame 031207/0283 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 20, 2012
From: ASAUMI, KIYOHITO; IGUCHI, YUKINORI; HAMAMORI, MITSUHARU
To: CHLORINE ENGINEERS CORP., LTD.; TOAGOSEI CO., LTD.; KANEKA CORPORATION
Reel/Frame 027570/0492 →