Claims
- 1. A method of purifying dichloropentafluoropropane comprising the steps of:
- (a) contacting a mixture of dichloropentafluoropropane and chloroform with an effective amount of a fluorinating agent at a temperature less than about the boiling point of dichloropentafluoropropane, and for a time sufficient to selectively convert at least a portion of said chloroform to a product containing at least one fluorine substituent;
- (b) separating said product from the dichloropentafluoropropane and;
- (c) recovering purified dichloropentafluoropropane.
- 2. A method of claim 1 wherein said contacting is in the liquid phase and said separating is by distillation.
- 3. A method of claim 1 wherein said fluorinating agent is selected from the group consisting of:
- antimony trifluoride in the presence of
- antimony pentachloride;
- antimony pentafluoride;
- antimony chlorofluorides of the general formula SbCl.sub.5-x F.sub.x where X is 1 or more;
- metal fluorides KF, NaF, AgF, HgF.sub.2, TaF.sub.5, or NbF.sub.5 ; and
- hydrogen fluoride alone or in the presence of catalytic amounts of SbCl.sub.5, a mixture of SbCl.sub.3 and SbCl.sub.5, AlF.sub.3, CrF.sub.3, FeCl.sub.3, SnCl.sub.4, MoCl.sub.5, WCl.sub.6, TiCl.sub.4, ZrCl.sub.4, HfCl.sub.4, TaF.sub.5, or NbF.sub.5.
- 4. A method of claim 2 wherein said fluorinating agent is selected from the group consisting of:
- antimony trifluoride in the presence of antimony pentachloride;
- antimony pentafluoride;
- antimony chlorofluorides of the general formula SbCl.sub.5-x F.sub.x where X is 1 or more;
- metal fluorides KF, NaF, AgF, HgF.sub.2, TaF.sub.5, or NbF.sub.5 ; and
- hydrogen fluoride alone or in the presence of catalytic amounts of SbCl.sub.5, a mixture of SbCl.sub.3 and SbCl.sub.5, AlF.sub.3, CrF.sub.3, FeCl.sub.3, SnCl.sub.4, MoCl.sub.5, WCl.sub.6, TICl.sub.4, ZrCl.sub.4, HfCl.sub.4, TaF.sub.5, or NbF.sub.5.
- 5. A method of claim 1 wherein said contacting is performed in the presence of a catalyst.
- 6. A method of claim 5 wherein said fluorinating agent comprises antimony trifluoride and said catalyst comprises antimony pentachloride.
- 7. A method of claim 1 wherein said separating comprises a process selected from the group consisting of distilling, evaporating, refluxing, vaporizing, and flashing.
- 8. A method of claim 1 wherein said mixture comprises an azeotrope of dichloropentafluoropropane and chloroform, and said separating comprises a process selected from the group consisting of distilling, evaporation, and refluxing.
- 9. A method for purifying dichloropentafluoropropane comprising the steps of:
- (a) contacting an azeotrope mixture comprising dichloropentafluoropropane and chloroform with an effective amount of a fluorinating agent at a temperature less than about the boiling point of said dichloropentafluoropane, and for a time sufficient to convert at least a portion of said chloroform to a product having a lower boiling point than said dichloropentafluoropropane,
- (b) separating said product from the mixture and;
- (c) recovering said dichloropentafluoropropane.
- 10. A method for isolating dichloropentafluoropropane comprising the steps of:
- (a) contacting a mixture comprising dichloropentafluoropropane and chloroform with an effective amount of a fluorinating agent, at a temperature less than about the boiling point of said dichloropentafluoropropane, for a time sufficient to convert at least a portion of said chloroform to a product comprising at least one fluorine substituent, without significantly fluorinating the dichloropropane and;
- (b) recovering said dichloropentafluoropropane.
- 11. The method of claim 9 wherein said contacting is performed while in the presence of a catalyst.
- 12. The method of claim 10 wherein said contacting is performed while in the presence of a catalyst.
- 13. The method of claim 11 wherein said recovering comprises a process selected from the group consisting of distilling, evaporating, refluxing, vaporizing, and flashing.
- 14. The method of claim 10 wherein said mixture comprises an azeotrope.
- 15. A method of claim 9 wherein said fluorinating agent comprises a member selected from the group consisting of:
- antimony trifluoride in the presence of
- antimony pentachloride;
- antimony pentafluoride;
- antimony chlorofluorides of the general formula SbCl.sub.5-x F.sub.x where X is 1 or mixture of SbCl.sub.3 and SbCl.sub.5, AlF.sub.3, CrF.sub.3, FeCl.sub.3, SnCl.sub.4, MoCl.sub.5, WCl.sub.6, more; metal fluorides KF, NaF, AgF, HgF.sub.2, TaF.sub.5, or NbF.sub.5 ; and
- hydrogen fluoride along or in the presence of catalytic amounts of SbCl.sub.5, a TICl.sub.4, ZrCl.sub.4, HfCl.sub.4, TaF.sub.5, or NbF.sub.5.
- 16. A method of claim 10 wherein said fluorinating agent comprises a member selected from the group consisting of:
- antimony trifluoride in the presence of antimony pentachloride;
- antimony pentafluoride;
- antimony chlorofluorides of the general formula SbCl.sub.5-x F.sub.x where X is 1 or mixture of SbCl.sub.3 and SbCl.sub.5, AlF.sub.3, CrF.sub.3, FeCl.sub.3, SnCl.sub.4, MoCl.sub.5, WCl.sub.6, more; metal fluorides KF, NaF, AgF, HgF.sub.2, TaF.sub.5, or NbF.sub.5 ; and
- hydrogen fluoride along or in the presence of catalytic amounts of SbCl.sub.5, a TICl.sub.4, ZrCl.sub.4, HfCl.sub.4, TaF.sub.5, or NbF.sub.5.
Parent Case Info
This application is a continuation of application Ser. No. 07/615,911 filed Nov. 20, 1990, now abandoned.
US Referenced Citations (2)
Foreign Referenced Citations (1)
Number |
Date |
Country |
616096 |
Mar 1961 |
CAX |
Non-Patent Literature Citations (3)
Entry |
Coffman et al., J. Amer. Chem. Soc., vol. 71, pp. 979-990 (1949) "Synthesis of Chlorofluoropropanes". |
Siegel et al., J. Org. Chem., 53 pp. 2629-2630 (1988) "Dichlorofluoromethane-d: A Versatile Solvent for VT-NMR Experiments". |
Boothe et al., Ind. and Eng. Chem. vol. 24 pp. 637-641 (Jun. 1932) "Fluorine Derivatives of Chloroform". |
Continuations (1)
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Number |
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615911 |
Nov 1990 |
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