Process for preparing a chlorinated alkene
Disclosed is a process for preparing a chlorinated alkene, comprising contacting a chlorinated alkane with a catalyst in a dehydrochlorination zone to produce a liquid reaction mixture comprising the chlorinated alkane and the chlorinated alkene, and extracting chlorinated alkene from the reaction mixture, wherein the concentration of the chlorinated alkene in the reaction mixture present in the dehydrochlorination zone is controlled such that the molar ratio of chlorinated alkene:chlorinated alkane is from 1:99 to 50:50.
1. A process for preparing a chlorinated alkene comprising contacting a chlorinated alkane with a catalyst in a dehydrochlorination zone to produce a liquid reaction mixture comprising the chlorinated alkane and the chlorinated alkene, wherein the chlorinated alkane starting material contains less than 2000 ppm chlorinated alkane impurities or chlorinated alkene impurities, and wherein the impurities have a boiling point that is equal to or greater than the boiling point of the chlorinated alkane, the chlorinated alkene, or both the chlorinated alkane and the chlorinated alkene, and extracting chlorinated alkene from the reaction mixture, wherein the concentration of the chlorinated alkene in the reaction mixture present in the dehydrochlorination zone is controlled such that the molar ratio of chlorinated alkene:chlorinated alkane is from 1:99 to 50:50.
2. The process of claim 1 , wherein the molar ratio of chlorinated alkene:chlorinated alkane in the reaction mixture is from 5:95 to 50:50.
3. The process of claim 1 , wherein the molar ratio of chlorinated alkene:chlorinated alkane in the reaction mixture is from 5:95 to 30:70.
4. The process of claim 1 , wherein the chlorinated alkane contacted with the catalyst in the dehydrochlorination zone has a purity of about 98.5% or higher.
5. The process of claim 1 , wherein the chlorinated alkene is extracted from the reaction mixture on a continuous basis.
6. The process of claim 1 , wherein extraction of the chlorinated alkene from the reaction mixture is achieved by distillation.
7. The process of claim 6 , wherein the distillation is performed in distillation apparatus in fluid communication with the dehydrochlorination zone.
8. The process of claim 7 , wherein the distillation apparatus is coupled to the dehydrochlorination zone.
9. The process of claim 1 where liquid reaction mixture is extracted from the dehydrochlorination zone and subjected to distillation using apparatus remote from the dehydrochlorination zone.
10. The process of claim 6 , wherein the distillate comprises gaseous hydrochloric acid as an impurity which is extracted therefrom.
11. The process of claim 1 , wherein the operating temperature in the dehydrochlorination zone is about 70° C. to about 250° C.
12. The process of claim 1 , wherein the operating temperature in the dehydrochlorination zone is about 120° C. to about 170° C.
13. The process of claim 1 , further comprising contacting a mixture comprising chlorinated alkene, catalyst and chlorinated alkane starting material with an aqueous medium in an aqueous treatment zone.
14. The process of claim 13 , wherein the pH of the mixture in the aqueous treatment zone, following the addition of acid, is about 4 or lower.
15. The process of claim 13 , wherein the mixture is contacted with a haloalkane extraction agent.
16. The process according to claim 13 , wherein a biphasic mixture is formed in the aqueous treatment zone and an organic phase comprising chlorinated alkane and chlorinated alkene is extracted from the biphasic mixture.
17. The process according to claim 16 , wherein chlorinated alkene is extracted from the organic phase.
18. The process according to claim 1 , wherein the catalyst comprises metallic iron, ferrous chloride and/or ferric chloride.
19. The process according to claim 1 , wherein the chlorinated alkene is 1,1,3-trichloropropene.
20. The process according to claim 1 , wherein the chlorinated alkane is 1,1,1,3-tetrachloropropane.
21. The process of claim 1 , wherein all surfaces of the apparatus in which the process is carried out with which any chlorinated alkene-containing mixture will contact during use of that apparatus have an iron content of about 20% or less, and/or are formed from non-metallic materials.
22. The process of claim 1 , wherein the chlorinated alkene produced is 1,1,2,3-tetrachloropropene.
23. The process of claim 1 , wherein the chlorinated alkene produced is 1,1,3,3-tetrachloropropene.
24. The process according to claim 21 , wherein the non-metallic materials are selected from enamel, glass, impregnated graphite, silicium carbide and/or plastics materials.
25. The process according to claim 24 , wherein the impregnated graphite is impregnated with phenolic resin.
26. The process according to claim 24 , wherein plastic materials are selected from polytetrafluoroethylene, perfluoroalkoxy, polyvinylidene fluoride or any combination thereof.