Claims
- 1. A process for the preparation of oxidation catalysts containing the mixed oxides of vanadium and phosphorus which comprises
- (a) introducing a pentavalent vanadium-containing compound into an olefinic, halogenated organic liquid-containing liquid medium,
- (b) effecting reduction of at least a portion of said vanadium to a valence state of about +4 by heating the vanadium and olefinic, halogenated organic liquid-containing liquid medium;
- (c) adding a phosphorus-containing compound to said medium before or after effecting said reduction to form a catalyst precursor;
- (d) recovering the catalyst precursor;
- (e) drying the catalyst precursor;
- (f) calcining the catalyst precursor.
- 2. A process for the preparation of an oxidation catalyst containing the mixed oxides of vanadium and phosphorus from at least one pentavalent vanadium-containing compound and at least one phosphorus containing compound, wherein the pentavalent vanadium is reduced to an average valence state of about +3.5 to about +4.6, including the step of effecting reduction of at least a portion of the pentavalent vanadium to a valence state of +4 in an olefinic, halogenated organic liquid-containing liquid medium by heating the vanadium and olefinic, halogenated organic liquid-containing medium.
- 3. A process as recited in claims 1 or 2 wherein said reduction of vanadium is effected in the presence of the phosphorus-containing compound.
- 4. A process as recited in claims 1 or 2 wherein said organic liquid medium is essentially anhydrous.
- 5. A process as recited in claims 1 or 2 wherein said organic liquid is selected from hexachlorobutadiene, perchloropropene, hexachlorocyclopentadiene, tetrabromoethylene and mixtures thereof.
- 6. A process as recited in claims 1 or 2, wherein said organic liquid contains a chlorinated olefinic organic liquid.
- 7. A process as recited in claims 1 or 2, wherein said organic liquid contains a brominated olefinic organic liquid.
- 8. A process as recited in claims 1 or 2 wherein said vanadium-containing compound is vanadium pentoxide.
- 9. A process as recited in claims 1 or 2 wherein said phosphorus-containing compound is a phosphoric acid.
- 10. A process as recited in claims 1 or 2 wherein said oxidation catalyst is represented by the empirical formula:
- V.sub.l P.sub.a M.sub.b O.sub.x
- wherein M=U, Co, Mo, Fe, Zn, Hf, Zr and mixtures thereof
- wherein a=0.5 to 2.0, b=0 to 1, and x is the number of oxygens required to satisfy the valence requirements of the other elements.
- 11. A process as recited in claim 1 or 2 wherein said organic liquid has a boiling point greater than about 150.degree. C.
- 12. A process as recited in claim 1 or 2 wherein said olefinic, halogenated organic liquid does not contain an oxygen functionality.
- 13. An oxidation catalyst containing the mixed oxides of vanadium and phosphorus prepared by
- (a) introducing a pentavalent vanadium-containing compound into an olefinic, halogenated organic liquid-containing liquid medium,
- (b) effecting reduction of at least a portion of said vanadium to a valence state of about +4 by heating the vanadium and olefinic, halogenated organic liquid-containing liquid medium;
- (c) adding a phosphorus-containing compound to said medium before or after effecting said reduction to form a catalyst precursor;
- (d) recovering the catalyst precursor;
- (e) drying the catalyst precursor;
- (f) calcining the catalyst precursor.
- 14. An oxidation catalyst containing the mixed oxides of vanadium and phosphorus, prepared from at least one pentavalent vanadium-containing compound and at least one phosphorus containing compound, wherein the pentavalent vanadium is reduced to an average valence state of about +3.5 to about +4.6, including the step of effecting reduction of at least a portion of the pentavalent vanadium to a valence state of +4 in an olefinic, halogenated organic liquid-containing liquid medium by heating the vanadium and olefinic, halogenated organic liquid-containing medium.
- 15. A catalyst as recited in claim 13 or 14 wherein said reduction of vanadium is effected in the presence of the phosphorus-containing compound.
- 16. A catalyst as recited in claim 13 or 14 wherein said organic liquid medium is essentially anhydrous.
- 17. A catalyst as recited in claim 13 or 14, wherein said organic liquid is selected from hexachlorobutadiene, perchloropropene, hexachlorocyclopentadiene, tetrabromoethylene and mixtures thereof.
- 18. A catalyst as recited in claim 13 or 14, wherein said organic liquid contains a chlorinated olefinic organic liquid.
- 19. A catalyst as recited in claim 13 or 14, wherein said organic liquid contains a brominated olefinic organic liquid.
- 20. A catalyst as recited in claim 13 or 14 wherein said vanadium-containing compound is vanadium pentoxide.
- 21. A catalyst as recited in claim 13 or 14 wherein said phosphorus-containing compound is a phosphoric acid.
- 22. A catalyst as recited in claim 13 or 14 wherein said oxidation catalyst is represented by the empirical formula:
- V.sub.1 P.sub.a M.sub.b O.sub.x
- wherein M=U, Co, Mo, Fe, Zn, HF, Zr and mixtures thereof
- wherein a=0.5 to 2, b=0 to 1, and x is the number of oxygens required to satisfy the valence requirements of the other elements.
- 23. A catalyst as recited in claim 13 or 14 wherein said organic liquid has a boiling point greater than about 150.degree. C.
- 24. A catalyst as recited in claim 13 or 14 wherein said olefinic, halogenated organic liquid does not contain an oxygen functionality.
Parent Case Info
This is a division of application Ser. No. 199,148 filed Oct. 22, 1980, and issued as U.S. Pat. No. 4,293,498 on Oct. 6, 1981.
US Referenced Citations (6)
Divisions (1)
|
Number |
Date |
Country |
Parent |
199148 |
Oct 1980 |
|