Method for producing fluorinated organic compounds
View Patent ↗Disclosed are processes for the production of fluorinated olefins, preferably adapted to commercialization of CF 3 CF═CH 2 (1234yf). In certain preferred embodiments the processes comprise first exposing a compound of Formula (IA) C(X) 2 ═CClC(X) 3 (IA) where each X is independently F, Cl or H, preferably CCl 2 ═CClCH 2 Cl, to one or more sets of reaction conditions, but preferably a substantially single set of reaction conditions, effective to produce at least one chlorofluoropropane, preferably in accordance with Formula (IB): CF 3 CClX′C(X′) 3 Formula (IB) where each X′ is independently F, Cl or H, and then exposing the compound of Formula (IB) to one or more sets of reaction conditions, but preferably a substantially single set of reaction conditions, effective to produce a compound of Formula (II) CF 3 CF═CHZ (II) where Z is H, F, Cl, I or Br.
1. A method for producing fluorinated organic compounds comprising:
(a) fluorinating in a liquid phase, in the presence of at least a first catalyst, and at a temperature of about 30° C. to about 200° C., a compound of Formula (I):
C(X) m CCl(Y) n C(X) m (I)
where each Y is independently H, F, Cl, I or Br, each X is independently H or Cl, and each m is independently 2 or 3, and n is 0 or 1, to produce at least one compound of Formula (IB):
CF 3 CClX′C(X′) 3 Formula (IB)
where each X′ is independently F, Cl or H.
2. The method of claim 1 wherein m is 3 and n is 1.
3. The method of claim 1 wherein the compound of Formula (I) is at least one of CCl 3 —CClH—CClH 2 , CCl 2 H—CCl═CClH, and CCl 3 —CCl═CH 2 .
4. The method of claim 1 further comprising (b) reacting said compound of Formula (IB) under conditions effective to produce a compound of Formula (II):
CF 3 CF═CHZ (II)
where each Z is H or Cl.
5. The method of claim 4 wherein the compound of Formula II is 2,3,3,3-tetrafluoro-1-propene (HFO-1234yf).
6. The method of claim 1 wherein said compound of Formula I is a tetrachloropropene.
7. The method of claim 1 wherein said compound of Formula I is CCl 3 —CClH—CClH 2 .
8. The method of claim 1 wherein said compound of Formula I is CCl 2 H—CCl═CClH.
9. The method of claim 1 wherein said compound of Formula I is CCl 3 —CCl═CH 2 .
10. The method of claim 1 wherein the fluorinating step is conducting in the presence of a fluorinating agent.
11. The method of claim 10 wherein the fluorinating agent comprises hydrogen fluoride.
12. The method of claim 1 wherein the first catalyst comprises a fluorination catalyst.
13. The method of claim 12 , wherein the catalyst is selected from the group consisting of a Lewis acid catalyst, a metal-halide catalyst, a transition metal oxide, or combinations thereof.
14. The method of claim 12 , wherein the catalyst is selected from the group consisting of antimony halide, tin halide, tantalum halide, titanium halide, iron halide, niobium halide, molybdenum halide, Group IVb metal halides, Group Vb metal halides, fluorinated chrome halide, a fluorinated chrome oxide and combinations of two or more of these.
15. The method of claim 12 , wherein the catalyst is selected from the group consisting of SbCl 5 , SbCl 3 , SbF 5 , SnCl 4 , TaCl 5 , NbCl 5 , MoCl 6 , TiCl 4 , FeCl 3 , a fluorinated species of SbCl 5 , a fluorinated species of SbCl 3 , a fluorinated species of SnCl 4 , a fluorinated species of TaCl 5 , a fluorinated species of TiCl 4 , a fluorinated species of NbCl 5 , a fluorinated species of MoCl 6 , a fluorinated species of FeCl 3 , and combinations of two or more of these.