Electrolyte balancing strategies for flow batteries
The present invention is directed to a redox flow battery comprising at least one electrochemical cell in fluid communication with a balancing cell, said balancing cell comprising: a first and second half-cell chamber, wherein the first half-cell chamber comprises a first electrode in contact with a first aqueous electrolyte of the redox flow battery; and wherein the second half-cell chamber comprises a second electrode comprising a catalyst for the generation of O 2 ; and wherein the second half-cell chamber does not contain an aqueous electrolyte.
1. A redox flow battery comprising at least one electrochemical cell in fluid communication with a balancing cell, said balancing cell comprising:
a first half-cell chamber and a second half-cell chamber separated by a membrane,
wherein the first half-cell chamber comprises a first electrode in contact with a first aqueous electrolyte of the redox flow battery; and
wherein the second half-cell chamber comprises a second electrode in contact with a second aqueous electrolyte, said second aqueous electrolyte having a pH of from 9 to 14, said second aqueous electrolyte being in fluid isolation from the redox flow battery, said second electrode abutting the membrane and said second electrode comprising a catalyst for the generation of O 2 ; said first aqueous electrolyte and said second aqueous electrolyte differing from one another in pH by from 1 to 8; wherein the balancing cell is configured to balance a state of charge of the first aqueous electrolyte and the second aqueous electrolyte, and wherein the membrane comprises:
(1) a negatively charged ionomer;
(2) a positively charged ionomer;
(3) a bipolar membrane; or
(4) a combination of (1) to (3).