Claims
- 1. In a process for the conversion of soluble thiosulphate to sulphates, said thiosulphates being present in an aqueous redox solution comprising at least one salt of an anthraquinone di-sulphonic acid and at least one water soluble vanadium compound, which process comprises introducing sulfuric acid, as such or as oleum, into a deep vessel containing a deep body of said thiosulphate-containing redox solution, the improvement wherein:
- the sulfuric acid introduced has a concentration of from 10-98% w/w H.sub.2 SO.sub.4 ;
- the amount of sulfuric acid introduced into said deep vessel is such that the gram molecular weight ratio of sulfuric acid to thiosulphate is from 1:2 to 1:3;
- introducing the sulfuric acid into the base of said vessel and into the bottom of the deep body of said redox solution therein;
- maintaining the contents of said vessel at a temperature of from 70.degree. C. up to the boiling point of the redox solution;
- maintaining said vessel at ambient pressure; and
- thereafter separating the sulphate formed, whereby the generation of SO.sub.2 is not more than 10 grams per mole of thiosulphate present in said aqueous redox solution, and whereby not more than 20% of said thiosulphate remains in said aqueous redox solution after not more than 31/2 hours.
- 2. A process as claimed in claim 1 wherein the said conversion is carried out at a temperature in excess of 90.degree. C. and the molar ratio of sulphuric acid to thiosulphate is about 1:3.
- 3. A process as claimed in claim 1 wherein the molar ratio of sulphuric acid to thiosulphate is 1:2.
- 4. A process as claimed in claim 1, wherein the sulpuric acid is 98% w/w.
- 5. A process as claimed in claim 1 wherein the aqueous redox solution is introduced into said vessel from a main process stream, wherein the redox solution, after treatment with said sulfuric acid, is returned to said main process stream, and wherein said sulphate is removed from said solution prior to returning said solution to said main process stream.
- 6. A process as claimed in claim 1, wherein the sulphate is separated by a solubility lowering technique.
- 7. A process as claimed in claim 6, wherein said solubility lowering technique is selected from the group consisting of evaporation crystallisation, refrigerative crystallisation insoluble salt precipitation, organic solvent precipitation.
- 8. A process as claimed in claim 6 wherein the aqueous redox solution is introduced into said vessel from a main process stream, wherein the redox solution, after treatment with said sulfuric acid, is returned to said main process stream prior to carrying out said solubility lowering technique, wherein a sidestream of said main process stream is provided, and wherein said solubility lowering technique is carried out on said sidestream.
Priority Claims (1)
Number |
Date |
Country |
Kind |
42647/77 |
Oct 1977 |
GBX |
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Parent Case Info
This is a continuation of application Ser. No. 136,988, filed Apr. 3, 1980, which is a continuation of Ser. No. 949,568, filed Oct. 10, 1978.
US Referenced Citations (3)
Number |
Name |
Date |
Kind |
1102911 |
Hansen |
Jul 1914 |
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2046880 |
Miller |
Jul 1936 |
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3959452 |
Espenscheid et al. |
May 1976 |
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Foreign Referenced Citations (2)
Number |
Date |
Country |
256638 |
Nov 1927 |
GBX |
394646 |
Sep 1931 |
GBX |
Continuations (2)
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Number |
Date |
Country |
Parent |
136988 |
Apr 1980 |
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Parent |
949568 |
Oct 1978 |
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