Claims
- 1. A process for the oxidation of olefinically unsaturated hydrocarbons to the corresponding olefinically unsaturated aldehydes which comprises reacting in the vapor phase an olefinically unsaturated hydrocarbon with molecular oxygen in the presence of an oxidation catalyst which corresponds to the formula:
- Mo.sub.12 Ni.sub.5-7 Bi.sub.1-3 Co.sub.1-3 Fe.sub.1-3 Sb.sub.1-3 Zn.sub.0.3-0.8 M.sub.0.4-2 O.sub.x
- wherein Mo, Ni, Bi, Co, Fe, Sb, Zn and O are respectively the elements of molybdenum, nickel, bismuth, cobalt, iron, antimony, zinc and oxygen; M is at least one element selected from potassium and rubidium; and x represents the number of oxygen atoms between about 35 and 75 sufficient to satisfy the valence requirements of the other elements; wherein the said oxidation catalyst is prepared by a process which comprises the steps of (1) admixing and slurrying in an aqueous medium respectively compounds of Mo, Ni, Bi, Co, Fe, Sb, Zn and M which are at least partially water-soluble, (2) adjusting the final pH of the aqueous slurry admixture within the range between about 1-5, (3) concentrating the aqueous slurry admixture by water removal to yield a catalyst coprecipitate, (4) heating the catalyst coprecipitate at a temperature in the range between about 200.degree.-250.degree. C. in the presence of molecular oxygen, and (5) calcining the catalyst composition at a temperature between about 400.degree.-600.degree. C. in the presence of molecular oxygen.
- 2. A process for producing acrolein or methacrolein which comprises reacting propylene or isobutylene in vapor phase with molecular oxygen at a temperature between about 200.degree.-525.degree. C. in the presence of a catalyst which corresponds to the formula:
- Mo.sub.12 Ni.sub.6 Bi.sub.1.5-2.5 Co.sub.2 Fe.sub.2 Sb.sub.2 Zn.sub.0.3-0.8 K.sub.0.4-2 O.sub.x
- wherein Mo, Ni, Bi, Co, Fe, Sb, Zn, K and O are respectively the elements of molybdenum, nickel, bismuth, cobalt, iron, antimony, zinc, potassium and oxygen; and x represents the number of oxygen atoms between about 35 and 75 sufficient to satisfy the valence requirements of the other elements; wherein the said oxidation catalyst is prepared by a process which comprises the steps of (1) admixing and slurrying in an aqueous medium respectively compounds of Mo, Ni, Bi, Co, Fe, Sb, Zn and K which are at least partially water-soluble, (2) adjusting the final pH of the aqueous slurry admixture within the range between about 1-5, (3) concentrating the aqueous slurry admixture by water removal to yield a catalyst coprecipitate, (4) heating the catalyst coprecipitate at a temperature in the range between about 200.degree.-250.degree. C. in the presence of molecular oxygen, and (5) calcining the catalyst composition at a temperature between about 400.degree.-600.degree. C. in the presence of molecular oxygen.
- 3. A process in accordance with claim 2 wherein the isobutylene is introduced into the vapor phase reaction zone in the form of tertiary-butanol or alkyl tertiary-butyl ether.
- 4. A process in accordance with claim 2 wherein the molecular oxygen is contained in an air stream.
- 5. A process in accordance with claim 2 wherein said molecular oxygen is contained in an air stream diluted with a gas selected from steam, nitrogen and carbon dioxide.
- 6. A process in accordance with claim 2 wherein said molecular oxygen is provided in a mole ratio between about 1.0 and 7 moles per mole of propylene or isobutylene.
- 7. A process in accordance with claim 2 wherein the temperature in the vapor phase reaction zone is in the range between about 300.degree.-500.degree. C.
- 8. A process in accordance with claim 2 wherein the contact time between said propylene or isobutylene and molecular oxygen in the vapor phase reaction zone is in the range between about 0.1-40 seconds.
- 9. A process in accordance with claim 2 wherein the single pass conversion of propylene or isobutylene is at least 95 percent.
- 10. A process in accordance with claim 2 wherein the single pass conversion efficiency of propylene or isobutylene to acrolein or methacrolein is at least 70 percent.
- 11. A process in accordance with claim 2 wherein the single pass yield of acrolein/acrylic acid or methacrolein/methacrylic acid is at least 70 percent at a space time yield (STY) of at least 250-350 grams per liter per hour.
Parent Case Info
This is a division of application Ser. No. 960,202, filed Nov. 13, 1978.
US Referenced Citations (8)
Divisions (1)
|
Number |
Date |
Country |
Parent |
960202 |
Nov 1978 |
|