Claims
- 1. In a carbonylation process which includes reacting an organic compound, said organic compound selected from the group consisting of an olefin, an alcohol, an acid and an ester, with carbon monoxide in the presence of a dissolved rhodium-containing catalyst in a reaction zone maintained at a pressure in the range of between about 100 psia and about 750 psia and at a temperature in the range of between about 75.degree. C. and about 275.degree. C., wherein a liquid carbonylation product solution is obtained; conveying said liquid carbonylation solution to a separation zone, said separation zone maintained at a total pressure of between about 15 psia and about 45 psia and at a temperature of between about 100.degree. C. and about 150.degree. C., with the proviso that the total pressure and temperature in said separation zone is lower than in said reaction zone, whereby a fraction of said liquid carbonylation product flashed off from said carbonylation product solution; and recycling the unflashed off liquid carbonylation product solution into said reaction zone, the improvement which comprises feeding carbon monoxide gas, at a pressure of between about 2 psia and about 30 psia and a temperature of between about 100.degree. C. and about 150.degree. C., into said separation zone simultaneously with said carbonylation product solution whereby said rhodium-containing catalyst is not precipitated from said carbonylation product solution in said separation zone.
- 2. A process in accordance with claim 1 wherein said organic compound is a C.sub.2 -C.sub.4 olefin.
- 3. A process in accordance with claim 2 wherein said C.sub.2 -C.sub.4 olefin is ethylene.
- 4. A process in accordance with claim 1 wherein said organic compound is a C.sub.1 -C.sub.4 alkanol.
- 5. A process in accordance with claim 4 wherein said C.sub.1 -C.sub.4 alkanol is methanol.
- 6. A process in accordance with claim 1 wherein said organic compound is C.sub.1 -C.sub.4 alkyl C.sub.2 -C.sub.6 alkanoate.
- 7. A process in accordance with claim 7 wherein said C.sub.1 -C.sub.4 alkyl C.sub.2 -C.sub.6 alkanoate is methyl acetate.
- 8. A process in accordance with claim 1 wherein said reaction zone is maintained at a pressure in the range of between about 300 psia and about 500 psia and at a temperature in the range of between about 160.degree. C. and about 200.degree. C.
- 9. A process in accordance with claim 8 wherein said reaction zone is maintained at a pressure in the range of between about 380 psia and about 420 psia and at a temperature in the range of between about 180.degree. C. and about 190.degree. C.
- 10. A process in accordance with claim 1 wherein said separation zone is maintained at a pressure in the range of between about 20 psia and about 40 psia and at a temperature in the range of between about 120.degree. C. and about 140.degree. C.
- 11. A process in accordance with claim 10 wherein said separation zone is maintained at a pressure in the range of between about 20 psia and about 25 psia and at a temperature in the range of between of between about 125.degree. C. and about 135.degree. C.
- 12. A process in accordance with claim 1 wherein said carbon monoxide gas introduced into said separation zone contributes a partial pressure of between about 4 psia and about 28 psia.
- 13. A process in accordance with claim 12 wherein said carbon monoxide gas introduced into said separation zone contributes a partial pressure of between about 10 psia and about 26 psia.
- 14. A process in accordance with claim 1 wherein said carbon monoxide gas is introduced into said separation zone by being bubbled through the liquid carbonylation product solution.
- 15. A process in accordance with claim 1 wherein said rhodium-containing catalyst is selected from the group consisting of rhodium metal, rhodium oxide, an organorhodium compound, a rhodium carbonyl complex, a rhodium carbonyl halide, rhodium nitrate and a rhodium halide.
- 16. A process in accordance with claim 15 wherein said rhodium-containing catalyst is selected from the group consisting of rhodium metal, rhodium oxide, a rhodium halide and a rhodium carbonyl complex.
- 17. A process in accordance with claim 16 wherein said rhodium-containing catalyst is selected from the group consisting of rhodium chloride, rhodium bromide and rhodium iodide.
- 18. A process in accordance with claim 17 wherein said rhodium-containing catalyst is rhodium iodide.
- 19. In a carbonylation process which includes reacting an alcohol with carbon monoxide in the presence of dissolved rhodium halide in a reaction zone maintained at a pressure in the range of between about 100 psia and about 750 psia and at a temperature in the range of between about 75.degree. C. and about 275.degree. C., wherein a liquid carbonylation product solution is obtained; conveying said liquid carbonylation product solution to a separation zone, said separation zone maintained at a total pressure of between about 15 psia and about 45 psia and a temperature of between about 100.degree. C. and about 150.degree. C., with the proviso that the total pressure and temperature in said separation zone is lower than in said reaction zone, whereby a fraction of said liquid carbonylation product is flashed off from said carbonylation product solution; and recycling said unflashed off liquid carbonylation product solution into said reaction zone, the improvement which comprises feeding carbon monoxide gas, at a pressure of between about 2 psia and about 30 psia and a temperature of between about 100.degree. C. and about 150.degree. C., into said separation zone simultaneously with said carbonylation product solution whereby said rhodium halide is not precipitated from said carbonylation product solution in said separation zone.
- 20. A process in accordance with claim 19 wherein said reaction zone is maintained at a pressure in the range of between about 300 psia and about 500 psia and at a temperature in the range of between about 160.degree. C. and about 200.degree. C.; said separation zone is maintained at a total pressure in the range of between about 20 psia and about 40 psia and at a temperature in the range of between about 120.degree. C. and about 140.degree. C.; and said carbon monoxide gas introduced into said separation zone contributes a partial pressure of between about 4 psia and about 28 psia.
- 21. A process in accordance with claim 20 wherein said reaction zone is maintained at a pressure in the range of between about 380 psia and about 420 psia and at a temperature in the range of between about 180.degree. C. and about 190.degree. C.; said separation zone is maintained at a total pressure in the range of between about 20 psia and about 25 psia and a temperature in the range of between about 125.degree. C. and about 135.degree. C.; and said carbon monoxide gas introduced into said separation zone contributes a partial pressure of between about 10 psia and about 26 psia.
- 22. A process in accordance with claim 21 wherein said rhodium halide is rhodium iodide.
- 23. A process in accordance with claim 22 wherein said alcohol is methanol.
CROSS-REFERENCE TO RELATED APPLICATION
The present application is a continuation of U.S. patent application Ser. No. 477,701 filed Feb. 9, 1990.
US Referenced Citations (13)
Continuations (1)
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Number |
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477701 |
Feb 1990 |
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