Claims
- 1. An array of electrochemical cells forming an electrochemical apparatus for energy storage and power delivery which comprises
- a) an end +.sup.ve electrode and an end -.sup.ve electrode separated by one or more of bipolar mid-electrodes each of which has a +.sup.ve side and a -.sup.ve side which each face a respective +.sup.ve chamber and -.sup.ve chamber, the +.sup.ve side of each bipolar electrode comprising an electrically conductive substrate having a porous conductive surface, the bipolar electrodes being separated from one another by cation exchange membranes,
- b) means to form an intimate mixture of air/oxygen with an electrolyte to produce a dispersion of bubbles in the electrolyte, and
- c) means to circulate the electrolyte produced in step b) through the +.sup.ve chambers of the cell array.
- 2. An array of cells as defined in claim 1 wherein the porous conductive surface on each of the +.sup.ve sides of the bipolar electrodes is selected from the group consisting of carbon particles, carbon fibres and hollow carbon rods in intimate contact with one another and with the substrate surface.
- 3. An array of cells as defined in claim 2, wherein the porous conductive surface has a thickness greater than 2.5 mm.
- 4. An array of cells as defined in claim 2, wherein each of said bipolar electrodes further comprises a non-woven screen provided between said porous conductive surface and an adjacent cation exchange membrane so as to restrain said porous conductive surface.
- 5. An array of cells as defined in claim 1 wherein the means to form the intimate mixture of air/oxygen with an electrolyte is external to the +.sup.ve chambers of the cell.
- 6. An array of cells as defined in claim 1 wherein the means to form the intimate mixture of air/oxygen with an electrolyte is within each of the +.sup.ve chambers of the cell.
- 7. An array of cells as defined in claim 1 wherein the electrolyte circulating in the +.sup.ve chambers is a dilute alkaline solution.
- 8. An array of cells as defined in claim 7 wherein the electrolyte is selected from the group consisting of sodium hydroxide, potassium hydroxide, lithium hydroxide and ammonium hydroxide.
- 9. An array of cells as defined in claim 1 wherein the electrolyte circulating in the +.sup.ve chambers is a dilute acid solution.
- 10. An array of cells as defined in claim 9 wherein the electrolyte is selected from the group consisting of hydrochloric acid and sulfuric acid.
- 11. An array of cells as defined in claim 1 wherein the the electrolyte circulating through the -.sup.ve chambers during power delivery is selected from a sulfide, a vanadium (V.sup.2+) salt and a chromium (Cr.sup.2+) salt.
- 12. An array of cells as defined in claim 1 which is electrically restorable or chemically replenishable.
- 13. An array of cells as defined in claim 12 wherein the electrical restoration comprises means to reverse the polarity on the +.sup.ve and -.sup.ve electrodes and means to provide sufficient voltage to drive the chemical reactions in the reverse direction.
- 14. An array of cells as defined in claim 12 wherein the chemical replenishment comprises means to circulate one or both of the electrolytes from the +.sup.ve and/or -.sup.ve chambers to storage means comprising a volume of electrolyte greater than the volume of the respective +.sup.ve and/or -.sup.ve chambers for extended delivery of power over a longer discharge cycle than the volume of the +.sup.ve and/or -.sup.ve chambers alone would permit.
- 15. An array of electrochemical cells as defined in claim 1 which are connected in electrical series.
- 16. An array of cells as defined in claim 1, wherein said porous conductive surface has a porosity in the range of from 0.7 to 0.85.
- 17. An array of cells as defined in claim 1, wherein the porous conductive surface on each of the +.sup.ve sides of the bipolar electrodes comprises a material selected from the group consisting of carbon particles, carbon fibers, and hollow carbon rods bonded to the +.sup.ve side of the electrically conductive substrate.
- 18. An array of cells as defined in claim 17, wherein the porous conductive surface has a thickness greater than 2.5 mm.
- 19. An array of cells as defined in claim 17, wherein each of said bipolar electrodes further comprises a non-woven screen provided between said porous conductive surface and an adjacent cation exchange membrane so as to restrain said porous conductive surface.
- 20. An array of cells as defined in claim 1, wherein said end +.sup.ve electrode comprises a porous conductive surface.
- 21. An array of cells as defined in claim 1, wherein said end -.sup.ve electrode and the -.sup.ve side of each bipolar electrode comprises a porous conductive surface.
CROSS REFERENCE TO RELATED APPLICATIONS
This application is a Continuation-in-Part of my United States patent application Ser. No. 07/961,009 filed 14th Oct. 1992 now abandoned.
US Referenced Citations (27)
Foreign Referenced Citations (1)
Number |
Date |
Country |
0039222 |
Nov 1981 |
EPX |
Continuation in Parts (1)
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Number |
Date |
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Parent |
961009 |
Oct 1992 |
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