IP Library Granted Patent US 10,619,257
Granted Patent B2
US 10,619,257 · App. 15/562,013 · Granted Apr 14, 2020

Method of treating liquid electrolyte solution

Inventor: Andrew Smeltz (Glastonbury, CT)
Assignee: United Technologies Corporation
C25B15/08C01G31/00C01G31/02C25B1/00H01M8/188Y02E60/366Y02E60/528Y02P20/133
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Quick Facts
Patent No.
US 10,619,257
App. No.
15/562,013
Granted
Apr 14, 2020
Kind
B2
Abstract

A method for treating a liquid redox electrolyte solution for use in a flow battery includes feeding a liquid redox electrolyte solution into a first half-cell of an electrochemical cell and feeding a gaseous reductant into a second half-cell of the electrochemical cell, and electrochemically reducing at least a portion of the liquid redox electrolyte solution in the electrochemical cell using the gaseous reductant.

Claims (17)

1. A method for treating a liquid electrolyte solution for use in a flow battery, comprising:

(a) feeding a liquid redox electrolyte solution into a first half-cell of an electrochemical cell and feeding a gaseous reductant into a second half-cell of the electrochemical cell;

(b) electrochemically reducing at least a portion of the liquid redox electrolyte solution in the electrochemical cell using the gaseous reductant, wherein said step (b) includes using the gaseous reductant to electrochemically reduce a portion the liquid redox electrolyte solution such that upon completion of said step (b) there is a mixture of ionic species in the liquid redox electrolyte solution; and

(c) feeding approximately half of the volume of the mixture to a negative side of a flow battery and feeding the remaining half of the volume of the mixture to a positive side of the flow battery.

2. The method as recited in claim 1 , wherein the liquid redox electrolyte solution initially is vanadium(IV) electrolyte solution, and the reduced portion of the liquid redox electrolyte solution is vanadium(III) electrolyte solution.

3. The method as recited in claim 1 , wherein the gaseous reductant in said step (b) is a hydrogen-containing gas.

4. The method as recited in claim 1 , wherein the mixture has approximately equimolar amounts of the ionic species.

5. The method as recited in claim 1 , further comprising electrolyzing water in-line with the electrochemical cell to feed hydrogen (H 2 ) as the gaseous reductant.

6. The method as recited in claim 1 , further comprising accelerating the electrochemical reduction by applying an electric current to the electrochemical cell during said step (b).

7. A method for treating a liquid electrolyte solution for use in a flow battery, comprising:

(a) feeding a liquid redox electrolyte solution into a first half-cell of an electrochemical cell and feeding a gaseous reductant into a second half-cell of the electrochemical cell;

(b) electrochemically reducing at least a portion of the liquid redox electrolyte solution in the electrochemical cell using the gaseous reductant, wherein said step (b) includes using the gaseous reductant to electrochemically reduce a portion the liquid redox electrolyte solution such that upon completion of said step (b) there is a mixture of ionic species in the liquid redox electrolyte solution, wherein the mixture has approximately equimolar amounts of the ionic species.

8. The method of 7 , further comprising feeding approximately half of the volume of the mixture to a negative side of a flow battery and feeding the remaining half of the volume of the mixture to a positive side of the flow battery.

9. The method as recited in claim 7 , wherein the liquid redox electrolyte solution initially is vanadium(IV) electrolyte solution, and the reduced portion of the liquid redox electrolyte solution is vanadium(III) electrolyte solution.

10. The method as recited in claim 7 , wherein the gaseous reductant in said step (b) is a hydrogen-containing gas.

11. The method as recited in claim 7 , further comprising electrolyzing water in-line with the electrochemical cell to feed hydrogen (H 2 ) as the gaseous reductant.

12. The method as recited in claim 7 , further comprising accelerating the electrochemical reduction by applying an electric current to the electrochemical cell during said step (b).

Assignments (4)
CHANGE OF NAME Recorded Sep 30, 2024
From: RAYTHEON TECHNOLOGIES CORPORATION
To: RTX CORPORATION
Reel/Frame 069073/0814 →
CORRECTIVE ASSIGNMENT TO CORRECT THE AND REMOVE PATENT APPLICATION NUMBER 11886281 AND ADD PATENT APPLICATION NUMBER 14846874. TO CORRECT THE RECEIVING PARTY ADDRESS PREVIOUSLY RECORDED AT REEL: 054062 FRAME: 0001. ASSIGNOR(S) HEREBY CONFIRMS THE CHANGE OF ADDRESS. Recorded Mar 4, 2021
From: UNITED TECHNOLOGIES CORPORATION
To: RAYTHEON TECHNOLOGIES CORPORATION
Reel/Frame 055659/0001 →
CHANGE OF NAME Recorded Sep 4, 2020
From: UNITED TECHNOLOGIES CORPORATION
To: RAYTHEON TECHNOLOGIES CORPORATION
Reel/Frame 054062/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 27, 2017
From: SMELTZ, ANDREW
To: UNITED TECHNOLOGIES CORPORATION
Reel/Frame 043709/0960 →