Claims
- 1. A process for the removal of chromium from a first, aqueous liquid or sludge, said process comprising:
- A) adding to said first, aqueous liquid or sludge a reducing agent selected from the group consisting of an inorganic sulfur containing compound in which sulfur is present in the 4+ oxidation state, said inorganic sulfur containing compound being added in an amount to react with said chromium in said first, aqueous liquid or sludge,
- B) reacting at a temperature of about 30.degree. to about 55.degree. C. and a pH of about 5 to about 7 in order to precipitate a chromium compound comprising substantially chromium oxide, and
- C) separating said chromium oxide from said first aqueous liquid or sludge to obtain a second, aqueous liquid characterized as essentially chromium ion free.
- 2. The process of claim 1 wherein said first aqueous liquid comprises an alkaline earth metal chlorate or an alkali metal chlorate, an alkali metal or an alkaline earth metal chloride, and chromium in the divalent, trivalent, or hexavalent state,
- wherein said reducing agent is a sulfur containing compound selected from the group consisting of an alkali metal or an alkaline earth metal sulfite, bisulfite, metalbisulfite, sulfur dioxide, and mixtures thereof, and
- wherein said chromium oxide is separated from said aqueous solution by filtration;
- wherein said process is conducted at a reaction temperature of about 30.degree. C. to about 90.degree. C.
- 3. The process of claim 2 wherein said aqueous, alkali metal chlorate is present in the amount of up to about 600 grams per liter, said chromium is present as chromium ions, and said process is conducted at a reaction temperature of about 35.degree. C. to about 55.degree. C. and a pH of about 5.7-6.5.
- 4. The process of claim 2 wherein said aqueous alkali metal chlorate is sodium chlorate.
- 5. The process of claim 3 wherein said reducing agent is sodium sulfite which is present in a molar ratio of sulfite ions to said chromium ions, present as bichromate ions, of 2:1 to 15:1.
- 6. The process of claim 3 wherein said reducing agent is a mixture of sodium sulfite and sodium bisulfite.
- 7. The process of claim 3 wherein said reducing agent is sulfur dioxide which is present in an aqueous solution of sodium hydroxide.
- 8. The process of claim 3 including a subsequent reaction at a pH of 7-12.
- 9. A process for the recycling of chromate values which are present as chromium ions in a first, aqueous, solution comprising an alkaline earth metal or alkali metal chlorate for use as a feed for a chlorine dioxide generator
- wherein said chromium ions are removed from said first, aqueous, alkaline earth metal or alkali metal chlorate solution to produce a second, aqueous, alkali or alkaline metal chlorate solution characterized as essentially chromium ion free prior to feeding said second chlorate solution to said chlorine dioxide generator and
- wherein compounds comprising substantially chromium oxide are separated from said first, aqueous solution and recycled to an electrolytic cell for the production of an alkali or alkaline earth metal chlorate, said process comprising:
- A) adding to said first, aqueous, alkali metal or alkaline earth metal chlorate solution a reducing agent selected from the group consisting of a sulfur containing compound in which sulfur is present in the 4+ oxidation state, said sulfur containing compound being present in an amount required to react with said chromium ions present in said first, aqueous, chlorate solution,
- B) reacting said first aqueous chlorate solution with said reducing agent at a pH of about 5 to about 7 to form a chromium compound comprising substantially chromium oxide,
- C) separating said chromium oxide from said first, aqueous, chlorate solution to obtain a second, aqueous, chlorate solution,
- D) recycling said chromium oxide to said electrolytic cell for the production of an alkali metal or alkaline earth metal chlorate, and
- E) feeding said second, aqueous, chlorate solution to a reactor for the generation of chlorine dioxide.
- 10. The process of claim 9 wherein said first, aqueous, chlorate solution comprises an alkali metal chlorate, an alkali metal chloride, and chromium in the divalent, trivalent, or hexavalent state
- wherein said alkali metal chlorate is present in an amount of up to about 600 grams per liter,
- wherein said first, aqueous, chlorate solution contains chromium ions in the amount of about 10-10,000 parts per million, and
- wherein said process is conducted at a reaction temperature of about 30.degree. C. to about 90.degree. C.
- 11. The process of claim 10 wherein said reducing agent is a sulfur containing compound selected from the group consisting of and alkali metal or alkaline earth metal sulfite, bisulfite, sulfur dioxide, and mixtures thereof and said reaction temperature is about 35.degree. C. to about 90.degree. C.
- 12. The process of claim 11 wherein said reducing agent is sodium sulfite which is present in a molar ratio of sulfite ions to chromium ions, present as bichromate ions, of 2:1 to 15:1.
- 13. The process of claim 11 wherein said reducing agent is a mixture of sodium sulfite and sodium bisulfite.
- 14. The process of claim 11 wherein said reducing agent is sulfur dioxide which is present in an aqueous solution of sodium hydroxide.
- 15. The process of claim 11 including a subsequent reaction at a pH of 7-12.
REFERENCE TO RELATED APPLICATIONS
The present invention is a continuation-in-part of U.S. patent application Ser. No. 07/759,656 filed Sep. 13, 1991 now abandoned which is a continuation of U.S. patent application Ser. No. 611,796 filed Nov. 13, 1990, now abandoned, both of which are relied on and incorporated by reference.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
4259297 |
Kaczur et al. |
Mar 1981 |
|
4376099 |
Yamamoto et al. |
Mar 1983 |
|
Foreign Referenced Citations (2)
Number |
Date |
Country |
49-27057 |
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JPX |
55-119493 |
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JPX |
Continuations (1)
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Number |
Date |
Country |
Parent |
611796 |
Nov 1990 |
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Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
759656 |
Sep 1991 |
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