IP Library Patent Application 17595958
Patent Application
App. No. 17/595,958

METHOD FOR PRODUCING FLUORINE GAS AND DEVICE FOR PRODUCING FLUORINE GAS

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Quick Facts
Patent No.
US None
App. No.
17/595,958
Abstract

Provided is a method for producing fluorine gas, capable of suppressing clogging of pipes and valves with mist. Fluorine gas is produced by a method including electrolyzing an electrolyte in an electrolytic cell, measuring the water concentration in a fluid generated in a cathode chamber in the electrolyzing, and sending a fluid generated in the inside of the electrolytic cell in the electrolyzing the electrolyte, from the inside to the outside of the electrolytic cell through a flow path. In the sending, the flow path in which the fluid flows is switched in accordance with the water concentration measured in the measuring the water concentration.

Claims (19)

1 . A method for producing fluorine gas, the fluorine gas being produced by electrolyzing an electrolyte containing hydrogen fluoride and a metal fluoride, the method comprising:

electrolyzing the electrolyte in an electrolytic cell including an anode chamber having an anode and a cathode chamber having a cathode in an inside of the electrolytic cell;

measuring a water concentration in a fluid generated in the cathode chamber in the electrolyzing; and

sending a fluid generated in the inside of the electrolytic cell in the electrolyzing the electrolyte, from the inside to an outside of the electrolytic cell through a flow path, wherein

in the sending, the flow path in which the fluid flows is switched in accordance with the water concentration measured in the measuring a water concentration, such that the fluid is sent to a first flow path that sends the fluid from the inside of the electrolytic cell to a first outside when the water concentration measured in the measuring a water concentration is not more than a predetermined reference value, or the fluid is sent to a second flow path that sends the fluid from the inside of the electrolytic cell to a second outside when the water concentration is more than the predetermined reference value, and

the predetermined reference value is a numerical value of 0.01% by volume or more and 0.09% by volume or less.

2 . The method for producing fluorine gas according to claim 1 , wherein the metal fluoride is a fluoride of at least one metal selected from the group consisting of potassium, cesium, rubidium, and lithium.

3 . The method for producing fluorine gas according to claim 1 , wherein the anode used in the electrolyzing is a carbonaceous electrode formed from at least one carbon material selected from the group consisting of diamond, diamond-like carbon, amorphous carbon, graphite, and glassy carbon.

4 . The method for producing fluorine gas according to claim 1 , wherein the electrolytic cell has a structure in which bubbles generated on the anode or the cathode used in the electrolyzing are capable of rising vertically in the electrolyte to reach a surface of the electrolyte.

5 . A device for producing fluorine gas, the fluorine gas being produced by electrolysis of an electrolyte containing hydrogen fluoride and a metal fluoride, the device comprising:

an electrolytic cell including an anode chamber having an anode and a cathode chamber having a cathode in an inside of the electrolytic cell, storing the electrolyte, and configured to perform the electrolysis;

a water concentration measurement unit configured to measure a water concentration in a fluid generated in the cathode chamber during the electrolysis; and

a flow path configured to send a fluid generated in the inside of the electrolytic cell during the electrolysis of the electrolyte, from the inside to an outside of the electrolytic cell, wherein

the flow path includes a first flow path configured to send the fluid from the inside of the electrolytic cell to a first outside and a second flow path configured to send the fluid from the inside of the electrolytic cell to a second outside and includes a flow path switching unit configured to switch the flow path in which the fluid flows, to the first flow path or the second flow path in accordance with the water concentration measured by the water concentration measurement unit,

the flow path switching unit is configured to send the fluid from the inside of the electrolytic cell to the first flow path when the water concentration measured by the water concentration measurement unit is not more than a predetermined reference value, or to send the fluid from the inside of the electrolytic cell to the second flow path when the water concentration is more than the predetermined reference value, and

the predetermined reference value is a numerical value of 0.01% by volume or more and 0.09% by volume or less.

6 . The method for producing fluorine gas according to claim 2 , wherein the anode used in the electrolyzing is a carbonaceous electrode formed from at least one carbon material selected from the group consisting of diamond, diamond-like carbon, amorphous carbon, graphite, and glassy carbon.

7 . The method for producing fluorine gas according to claim 2 , wherein the electrolytic cell has a structure in which bubbles generated on the anode or the cathode used in the electrolyzing are capable of rising vertically in the electrolyte to reach a surface of the electrolyte.

8 . The method for producing fluorine gas according to claim 3 , wherein the electrolytic cell has a structure in which bubbles generated on the anode or the cathode used in the electrolyzing are capable of rising vertically in the electrolyte to reach a surface of the electrolyte.

Assignments (3)
CHANGE OF ADDRESS Recorded Feb 9, 2024
From: RESONAC CORPORATION
To: RESONAC CORPORATION
Reel/Frame 066547/0677 →
CHANGE OF NAME Recorded Jun 23, 2023
From: SHOWA DENKO K.K.
To: RESONAC CORPORATION
Reel/Frame 064082/0513 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 30, 2021
From: OGURO, SHINYA; FUKUCHI, YOHSUKE; KOBAYASHI, HIROSHI
To: SHOWA DENKO K.K.
Reel/Frame 058245/0338 →