Claims
- 1. An improvement in the process of the exothermic, liquid phase reaction of:
- C.sub.4 or C.sub.5 isoolefins with C.sub.1 to C.sub.6 alcohol to form ethers thereof by contacting a downflow stream containing up to 60 weight percent of said isoolefins and alcohol with an acid cation exchange resin in a vertical fixed bed at a temperature in the range of 120.degree. F. to 300.degree. F. in a reactor to form a reaction mixture containing ether wherein the improvement is the operation of said reactor at a pressure to maintain said reaction mixture in said reactor at its boiling point within the temperature range of 120.degree. F. to 300.degree. F. whereby at least a portion but less than all of said reaction mixture is vaporized and recovered as a single stream exiting through the lower end of the reactor.
- 2. The process according to claim 1 wherein a predominantly C.sub.4 hydrocarbon stream containing 1 to 60 weight percent isobutene is contacted with said fixed bed catalyst.
- 3. The process according to claim 2 wherein the alcohol is methanol.
- 4. The process according to claim 2 wherein the pressure in the reactor is in the range of 0 to 400 psig and the LHSV of said stream is in the range of 10 to 20.
- 5. The process according to claim 4 wherein said stream is preheated by indirect heat exchange contact with the reaction mixture from said reactor.
- 6. The process according to claim 1 wherein a predominantly C.sub.5 hydrocarbon stream containing 1 to 60 weight isoamylene is contacted with said fixed bed catalyst.
- 7. The process according to claim 6 wherein the pressure in the reactor is in the range of 0 to 400 psig and the LHSV of said stream is in the range of 10 to 20.
- 8. The process according to claim 7 wherein said stream is preheated by indirect heat exchange contact with the reaction mixture from said reactor.
- 9. The process according to claim 1 wherein said stream is preheated prior to contact with said catalyst.
- 10. The process according to claim 1 wherein said reaction mixture is recovered and fractionated to recover a bottom product of ether.
- 11. The process according to claim 1 wherein from slightly less to up to 10% excess of the stoichiometric amount of methanol is present.
- 12. The process according to claim 3 wherein from slightly less to up to 10% excess of the stoichiometric amount of methanol is present.
- 13. The process according to claim 12 wherein said reaction mixture is passed to a distillation column reactor containing acid cation exchange resin in a plurality of pockets in a cloth belt, supported in said distillation column reactor by open mesh knitted stainless steel wire to react residual isobutene and methanol therein.
- 14. The process according to claim 11 wherein the isoolefin comprise over 30% of said stream and the reaction mixture is passed to a second reactor containing a fixed bed cation exchange resin operated at a pressure to maintain said reaction mixture therein at its boiling point in the temperature range of 120.degree. F. to 300.degree. F. whereby at least a portion but less than all of the said reaction mixture is vaporized.
Parent Case Info
This application is a continuation of application Ser. No. 442,359, filed Nov. 17, 1982.
Government Interests
The Government of the United States of America has certain rights in this invention pursuant to Contract No. DOE-FC07-800CS40454 awarded by the U.S. Department of Energy.
US Referenced Citations (15)
Foreign Referenced Citations (1)
Number |
Date |
Country |
929537 |
Jul 1973 |
CAX |
Non-Patent Literature Citations (2)
Entry |
Derrien et al., The IFP Selective Hydrogenation Process, "Chemical Engineering Progress", vol. 70, No. 1, June, 1974, pp. 74-80. |
Schieline et al., Process Economics Review, Methyl Tertiary-Butyl Ether, SRI International. |
Continuations (1)
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Number |
Date |
Country |
Parent |
442359 |
Nov 1982 |
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