Claims
- 1. In the process for converting a nitrile to the corresponding amide, the improvement comprising: reacting by contacting an .[.aliphatic nitrile.]. .Iadd.olefinic nitrile of 3 to 6 carbon atoms .Iaddend.in the presence of water with a heterogeneous, cupreous catalyst consisting essentially of copper prepared by reducing copper oxide, copper oxide, copper-chromium oxide, copper-molybdenum oxide or mixtures thereof.
- 2. The process of claim 1 wherein the catalyst is copper prepared by reducing copper oxide, copper oxide or copper-chromium oxide.
- 3. The process of claim 1 wherein the catalyst is essentially 10 to 90% by weight of copper oxide and 10 to 90% of chromium oxide or molybdenum oxide.
- 4. The process of claim 1 wherein the copper oxide, copper-chromium oxide or copper-molybdenum oxide catalyst is reduced by contact with a reducing agent prior to the conversion of the nitrile to the corresponding amide.
- 5. The process defined in claim 4 wherein the reducing agent is elemental hydrogen.
- 6. The process of claim 4 wherein the catalyst is reduced at a temperature of about 50.degree. to about 500.degree. C.
- 7. The process of claim 6 wherein the catalyst is reduced at a temperature of about 100.degree. to about 300.degree. C.
- 8. The process of claim 1 wherein at least 50% of the copper content of the catalyst is cuprous oxide.
- 9. The process of claim 1 wherein the copper content of the catalyst is essentially cuprous oxide containing a minor amount of copper metal. .[.10. The process of claim 1 wherein the nitrile is an aliphatic hydrocarbon nitrile of up to 20 carbon atoms..]. .[.11. The process of claim 10 wherein the nitrile is an olefinic nitrile of 3 to 6 carbon
- atoms..]. 12. The process of claim .[.11.]. .Iadd.1 .Iaddend.wherein the
- nitrile is acrylonitrile. 13. The process of claim 1 wherein the
- temperature is about 0.degree. to about 400.degree. C. 14. The process of claim 13 wherein the temperature is about 25.degree. to about 200.degree.
- C. 15. The process of claim 1 wherein the reaction is run in the liquid
- phase. 16. In the process for converting a nitrile to the corresponding amide by contacting .[.the nitrile.]. .Iadd.an olefinic nitrile of 3 to 6 carbon atoms .Iaddend.in the presence of water with a heterogeneous catalyst, the improvement comprising using a cupreous catalyst consisting essentially of reduced copper oxide, reduced copper-chromium oxide, reduced copper-molybdenum oxide, unreduced copper-molybdenum oxide or
- mixtures thereof. 17. The process of claim 16 wherein the catalyst is
- reduced copper oxide or reduced copper-chromium oxide. 18. The process of claim 17 wherein the catalyst is a reduced copper-chromium oxide which contained 10 to 90% copper oxide and 10 to 90% chromium oxide before
- reduction. 19. The process of claim 17 wherein the catalyst was reduced by
- elemental hydrogen. 20. The process of claim 17 wherein the catalyst was
- reduced at a temperature of about 50.degree. to about 500.degree. C. 21. The process of claim 17 wherein the catalyst was reduced at a
- temperature of about 100.degree. to about 300.degree. C. 22. The process of claim 17 wherein at least 50% of the copper content of the catalyst is
- cuprous oxide. 23. The process of claim 17 wherein the copper content of the catalyst is cuprous oxide containing a minor amount of copper metal. .[.24. The process of claim 16 wherein the nitrile is an aliphatic or aromatic hydrocarbon nitrile of up to about 20 carbon atoms..]. .[.25. The process of claim 24 wherein the nitrile is an olefinic nitrile of 3 to 6
- carbon atoms..]. 26. The process of claim .[.25.]. .Iadd.16
- .Iaddend.wherein the nitrile is acrylonitrile. 27. The process of claim 16
- wherein the temperature is about 0.degree. to about 400.degree. C. 28. The process of claim 27 wherein the temperature is about 25.degree. to about
- 200.degree. C. 29. The process of claim 16 wherein the reaction is conducted in the liquid phase.
CROSS-REFERENCE TO RELATED APPLICATIONS
This is a continuation-in-part of our corresponding application Ser. No. 791,807 filed Jan. 16, 1969 .Iadd.now U.S. Pat. No. 3,597,481.Iaddend..
US Referenced Citations (4)
Foreign Referenced Citations (5)
Number |
Date |
Country |
552987 |
Jun 1932 |
DE2 |
551869 |
Jul 1932 |
DE2 |
43-22851 |
Oct 1968 |
JPX |
44-5205 |
Mar 1969 |
JPX |
45-21295 |
Jul 1970 |
JPX |
Non-Patent Literature Citations (4)
Entry |
Watanabe et al., Bull. Chem. Soc. Japan 40 (1967) pp. 1660-1665. |
Watanabe, Bull. Chem. Soc. Japan 32 (1959), pp. 1280-1282. |
Watanabe, Bull. Chem. Soc. Japan 37 (1964) p. 1327. |
Watanabe, Bull. Chem. Soc. Japan 39 (1966) pp. 8-14. |
Continuation in Parts (1)
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Number |
Date |
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Parent |
791807 |
Jan 1969 |
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Reissues (1)
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Date |
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835765 |
Jun 1969 |
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