Distribution of electrolytes in a flow battery
US-9853310-B2 · Dec 26, 2017 · US
US11664518B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11664518-B2 |
| Application number | US-202117326518-A |
| Country | US |
| Kind code | B2 |
| Filing date | May 21, 2021 |
| Priority date | May 21, 2021 |
| Publication date | May 30, 2023 |
| Grant date | May 30, 2023 |
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A redox flow battery includes a redox flow cell and a supply and storage system external of the redox flow cell. The supply and storage system includes first and second electrolytes for circulation through the redox flow cell. The first electrolyte is a liquid electrolyte having electrochemically active manganese species with multiple, reversible oxidation states in the redox flow cell. The electrochemically active manganese species may undergo reactions that cause precipitation of manganese oxide solids. The first electrolyte includes an inhibitor that limits the self-discharge reactions. The inhibitor includes an oxoanion compound.
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What is claimed is: 1. A redox flow battery comprising: a redox flow cell; a supply and storage system external of the redox flow cell, the supply and storage system including first and second electrolytes for circulation through the redox flow cell, the first electrolyte is a liquid electrolyte solution of a pH of 14 or greater, the liquid electrolyte solution having dissolved electrochemically active manganese species with multiple, reversible oxidation states in the redox flow cell, wherein the electrochemically active manganese species can undergo reactions that cause precipitation of manganese oxide solids; and the first electrolyte solution further including an inhibitor limiting the reactions, the inhibitor including an oxoanion compound, wherein the inhibitor is selected from the group consisting of phosphates (PO 4 − ), nitrates (NO 3 − ), sulfates (SO 4 − ) and mixtures thereof. 2. The electrolyte as recited in claim 1 , wherein the inhibitor is selected from the group consisting of phosphates. 3. The electrolyte as recited in claim 1 , wherein the inhibitor is selected from the group consisting of nitrates. 4. The electrolyte as recited in claim 1 , wherein the inhibitor is selected from the group consisting of sulfates. 5. The electrolyte as recited in claim 1 , having a composition in which there is from 0.0001 mol to 0.1 mol of inhibitor per 1 mol of manganate. 6. The redox flow battery as recited in claim 5 , wherein the first electrolyte solution has a composition in which there is from 0.001 mol to 0.01 mol of inhibitor per 1 mol of manganate. 7. The redox flow battery as recited in claim 1 , wherein the electrochemically active manganese species are MnO 4 − and MnO 4 2− . 8. An electrolyte for a redox flow battery, comprising: a supporting electrolyte including a solvent and a supporting salt, the supporting electrolyte having a pH of 14 or greater; electrochemically active manganese species dissolved in the supporting electrolyte, the electrochemically active manganese species having multiple, reversible oxidation states in the supporting electrolyte; and an inhibitor dissolved in the supporting electrolyte and limiting reactions of the electrochemically active manganese species that cause precipitation of manganese oxide solids, the inhibitor including an oxoanion compound, wherein the inhibitor is selected from the group consisting of phosphates (PO 4 − ), nitrates (NO 3 − ), sulfates (SO 4 − ) and mixtures thereof. 9. The electrolyte as recited in claim 8 , wherein the inhibitor is selected from the group consisting of phosphates. 10. The electrolyte as recited in claim 8 , wherein the inhibitor is selected from the group consisting of nitrates. 11. The electrolyte as recited in claim 8 , wherein the inhibitor is selected from the group consisting of sulfates. 12. The electrolyte as recited in claim 8 , having a composition in which there is from 0.0001 mol to 0.1 mol of inhibitor per 1 mol of manganate. 13. The electrolyte as recited in claim 10 , wherein the electrochemically active manganese species are MnO 4 − and MnO 4 2− . 14. The redox flow battery as recited in claim 1 , wherein the inhibitor is selected from the group consisting of phosphates (PO 4 3− ), nitrates (NO 3 − ), sulfates (SO 4 2− ), and mixtures thereof, the first electrolyte solution has a composition in which there is from 0.0001 mol to 0.1 mol of inhibitor per 1 mol of manganese ions, and the electrochemically active manganese species are MnO 4 − and MnO 4 2− .
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