Claims
- 1. A method of preparing ethers from a feed stream comprising C.sub.4 -C.sub.5 isoalkane hydrocarbons which comprises:
- (a) dehydrogenating said feed stream in a dehydrogenation zone at dehydrogenation conditions including a temperature in the range of 500.degree. C. (930.degree. F.) to 700.degree. C. (1290.degree. F.), a pressure of from 0.1 to 3 bars and in the presence of a dehydrogenation catalyst to produce a dehydrogenation effluent comprising C.sub.4 -C.sub.5 isoolefins and isoalkanes, and light gases, said light gases including hydrocarbons having at least as few as 3 carbon atoms per molecule:
- (b) passing at least all C.sub.3 and higher hydrocarbons in said dehydrogenation effluent to an etherification zone;
- (c) combining at least all C.sub.3 and higher hydrocarbons and a C.sub.1 -C.sub.5 alcohol in said etherification zone at etherification conditions to obtain essentially complete conversion of said isoolefins and an etherification effluent comprising isoalkanes, alcohol, light gases, and ether;
- (d) separating said etherification effluent into at least a product stream comprising ether, a recycle stream comprising isoalkanes and a light gas stream comprising said light gases in a single fractionation column and recovering said product stream, recycle stream, and light gas stream from said column as a bottoms stream, sidecut stream, and an overhead stream, respectively; and
- (e) returning at least a portion of said recycle stream to said dehydrogenation zone.
- 2. The method of claim 1 wherein said dehydrogenation zone effluent includes hydrogen, hydrogen is recovered from said dehydrogenation zone effluent and at least a portion of said hydrogen is admixed with said feed stream.
- 3. The method of claim 1 wherein said dehydrogenation zone effluent includes hydrogen, methane and C.sub.2 hydrocarbons, hydrogen and methane are separated from said dehydrogenation effluent and essentially all C.sub.2 and higher hydrocarbons from said dehydrogenation effluent are passed to said etherification zone.
- 4. The process of claim 1 wherein said sidecut stream contains unreacted alcohol from said etherification effluent and at least a portion of said unreacted alcohol from said sidecut stream is recovered and recycled to said etherification zone.
- 5. A method of preparing ethers from a feed stream comprising C.sub.4 -C.sub.5 isoalkane hydrocarbons which comprises:
- (a) dehydrogenating said feed stream in a dehydrogenation zone at dehydrogenation conditions including a temperature in the range of 500.degree. C. (930.degree. F.) to 700.degree. C. (1290.degree. F.), a pressure of from 0.1 to 3 bars and in the presence of a dehydrogenation catalyst to produce a dehydrogenation effluent comprising C.sub.4 -C.sub.5 isoolefins and isoalkanes and light gases, said light gases including hydrocarbons having at least as few as 2 carbon atoms per molecule;
- (b) passing C.sub.2 hydrocarbons and essentially all C.sub.3 and higher hydrocarbons in said dehydrogenation effluent to an etherification zone;
- (c) combining C.sub.2 hydrocarbons and essentially all C.sub.3 and higher hydrocarbons and a C.sub.1 -C.sub.5 alcohol in said etherification zone at etherification conditions to obtain essentially complete conversion of said isoolefin and an etherification effluent comprising isoalkanes, alcohol, light gases, and ether;
- (d) separating said etherification effluent into at least a product stream comprising ether, a recycle stream comprising isoalkanes and a light gas stream comprising said light gases in a single fractionation column and recovering said product stream, recycle stream, and light gas stream from said column as a bottoms stream, sidecut stream, and overhead stream, respectively; and
- (e) returning at least a portion of said recycle stream to said dehydrogenation unit.
- 6. The process of claim 5 wherein said dehydrogenation zone effluent includes hydrogen, hydrogen is recovered from said dehydrogenation effluent at least a portion of hydrogen is admixed with said feed.
- 7. The process of claim 5 wherein essentially all C.sub.2 and higher hydrocarbons from said dehydrogenation effluent are passed to said etherification zone.
- 8. A method for preparing ethers from a feed stream comprising isobutane which comprises:
- (a) combining said feed stream with a hydrogen stream and an isobutane recycle stream to obtain a combined feed stream;
- (b) passing said combined feed stream to a dehydrogenation zone and dehydrogenating said combined feed stream in said dehydrogenation zone at dehydrogenation conditions including a temperature in the range of 500.degree. C. (930.degree. F.) to 700.degree. C. (1290.degree. F.), a pressure of from 0.1 to 3 bars and in the presence of a dehydrogenation catalyst to obtain a dehydrogenation effluent comprising isobutene, isobutane, and light gases, said light gases including hydrocarbons having at least as few as 2 carbon atoms per molecule;
- (c) removing hydrogen from said dehydrogenation zone effluent and recovering at least a portion of said hydrogen in said hydrogen stream;
- (d) passing essentially all C.sub.2 and higher hydrocarbons in said dehydrogenation effluent to an etherification zone;
- (e) combining said essentially all C.sub.2 and higher hydrocarbons and a C.sub.1 -C.sub.5 alcohol in said etherification zone at etherification conditions including a temperature of 50.degree. C. (120.degree. F.) to 80.degree. C. (175.degree. F.), a pressure of 10 bars to 15 bars and in the presence of an etherification catalyst to obtain essentialy complete conversion of isobutene and produce an etherification effluent stream comprising a tertiary butyl ether, isobutane, alcohol, and light gases having less than 4 carbon atoms per molecule; and
- (f) separating said etherification effluent into at least a product stream comprising ether, said isobutane recycle stream, and a light gas stream comprising said light gases in a single fractionation column and recovering said product stream, recycle stream, and light gas stream from said column as a bottoms stream, sidecut stream, and overhead stream, respectively.
- 9. The method of claim 8 wherein said dehydrogenation catalyst comprises Pt on alumina and said etherification catalyst is a sulfonic acid resin.
- 10. The process of claim 9 wherein said C.sub.1 -C.sub.5 alcohol consists of methanol and said etherification zone produces MTBE.
- 11. The process of claim 10 wherein said sidecut stream contains unreacted methanol, said sidecut stream is further processed to recover unreacted methanol, and at least a portion of said methanol is returned to said etherification zone.
CROSS-REFERENCE TO RELATED APPLICATIONS
This application is a continuation-in-part of pending application Ser. No. 068,502, filed July 1, 1987, and now abandoned, the contents of which are incorporated herein by reference.
US Referenced Citations (3)
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
68502 |
Jul 1987 |
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