Claims
- 1. A method of recovering chloride salts including at least one of calcium chloride, iron chloride and magnesium chloride from spent potliner material from aluminum reduction cells, which spent potliner material includes a material selected from the group consisting of fluoride compositions, cyanide compositions, iron compositions, calcium compositions, magnesium compositions, alumina, carbon, silica and sodium sulfate, the method comprising the steps of:(a) contacting the spent potliner with acid in an acid digester to produce a gas component containing at least one gas selected from the group consisting of HF and HCN and a slurry component comprised of solids and an acid solution containing soluble salts of at least one of Ca, Fe and Mg, the solids comprised of alumina, carbon and silica; (b) removing said gases from said digester; (c) separating said acid solution from said solids; (d) mixing said acid solution with an alcohol to precipitate soluble salts contained therein to provide a salt precipitate and alcohol solution; (e) filtering said salt precipitate from said alcohol solution to provide a filtered salt precipitate; (f) adding water to said filtered salt precipitate to dissolve said filtered salt precipitate to provide a dissolved salts liquid; (g) adjusting the pH of said dissolved salts liquid by adding sodium hydroxide thereto to form soluble sodium aluminate, and an insoluble material comprised of Ca(OH)2, Fe(OH)2, and Mg(OH)2; (h) separating soluble sodium aluminate from said insoluble material to provide a sodium aluminate solution; and (i) treating said insoluble material with hydrochloric acid to recover CaCl2, FeCl2 and MgCl2 from said spent potliner.
- 2. The method in accordance with claim 1 including adding sulfuric acid to said soluble sodium aluminate solution to form sodium sulfate in solution and precipitate aluminum hydroxide.
- 3. The method in accordance with claim 2 including separating said aluminum hydroxide from said sodium sulfate to provide a sodium sulfate solution.
- 4. The method in accordance with claim 3 including forming a sodium sulfate precipitate in said solution by addition of alcohol and recovering said sodium sulfate precipitate.
- 5. The method in accordance with claim 1 wherein said acid is selected from the group consisting of H2SO4, HNO3, HClO4, HCl, oleum and H3(PO4).
- 6. The method in accordance with claim 1 wherein said acid is H2SO4.
- 7. The method in accordance with claim 1 including maintaining said digester at less than atmospheric pressure.
- 8. The method in accordance with claim 1 including maintaining said slurry in said digester at a temperature in the range of 135° to 300° C.
- 9. The method in accordance with claim 1 including maintaining said slurry in said digester at a temperature in the range of 135° to 160° C.
- 10. A method of recovering chloride salts including at least one of calcium chloride, iron chloride, magnesium chloride and sodium sulfate from spent potliner material from aluminum reduction cells, which spent potliner material includes a material selected from the group consisting of fluoride compositions, cyanide compositions, iron compositions, calcium compositions, magnesium compositions, alumina, carbon, silica and sodium sulfate, the method comprising the steps of:(a) contacting the spent potliner with sulfuric acid in an acid digester to produce a gas component containing at least one gas selected from the group consisting of HF and HCN and a slurry component comprised of solids and an acid solution containing soluble salts of at least one of Ca, Fe and Mg, the solids comprised of alumina, carbon and silica; (b) maintaining said digester at less than atmospheric pressure and removing said gases from said digester; (c) separating said acid solution from said solids; (d) mixing said acid solution with an alcohol to precipitate soluble salts contained therein to provide a salt precipitate and alcohol solution; (e) filtering said salt precipitate from said alcohol solution to provide a filtered salt precipitate; (f) adding water, to said filtered salt precipitate to dissolve said; filtered salt precipitate to provide a dissolved salts liquid; (g) adjusting the pH of said dissolved salts liquid by adding sodium hydroxide thereto to form soluble sodium aluminate, and an insoluble material comprised of Ca(OH)2, Fe(OH)2, and Mg(OH)2; (h) separating soluble sodium aluminate from said insoluble material to provide a sodium aluminate solution; (i) treating said insoluble material with sulfuric acid to recover CaSO4; (j) adding sulfuric acid to said sodium aluminate solution to form sodium sulfate in solution and precipitated aluminum hydroxide; (k) separating said aluminum hydroxide from sodium sulfate solution; and (l) adding alcohol to said sodium sulfate solution to precipitate sodium sulfate therefrom and recovering said sodium sulfate.
- 11. The method in accordance with claim 10 including treating said insoluble material with sodium hydroxide to recover at least one of iron hydroxide and magnesium hydroxide.
CROSS REFERENCE TO RELATED APPLICATIONS
This application is a division of U.S. Ser. No. 08/977,435, filed Nov. 24, 1997. Which is a continuation-in-part of U.S. Ser. No. 08/569,271, filed Dec. 8, 1995, now U.S. Pat. No. 5,723,097, entitled “Method of Treating Spent Potliner Material from Aluminum Reduction Cells”.
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4113831 |
Orth, Jr. et al. |
Sep 1978 |
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5558847 |
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Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
08/569271 |
Dec 1995 |
US |
Child |
08/977435 |
|
US |