Claims
- 1. A continuous multi-stage catalytic system for converting oxygenated feedstock to liquid hydrocarbons comprising
- primary stage fluidized bed catalytic reactor means containing acidic zeolite catalyst for converting oxygenate to olefinic hydrocarbons rich in C.sub.2 -C.sub.4 lower alkenes;
- means for charging feedstock at a bottom portion of said primary stage reactor means;
- secondary stage catalytic oligomerization reactor means containing medium pore shape selective acidic zeolite oligomerization catalyst for converting the lower alkenes from the primary stage to heavier liquid hydrocarbons;
- fractionation means for separating secondary stage effluent into a light hydrocarbon stream containing C.sub.2 -C.sub.4 aliphatic hydrocarbons, a C.sub.5.spsb.+ gasoline stream and distillate range stream;
- means for recovering and recycling at least a portion of the C.sub.5.spsb.+ gasoline stream to the primary stage for conversion in the fluidized bed reactor by injecting the recycled gasoline stream into the fluidized bed reactor at a midpoint thereof, thereby preventing substantial reaction with oxygenate.
- 2. The continuous system of claim 1 further comprising means for recovering as product at least a portion of the C.sub.5.spsb.+ gasoline stream from the primary and secondary stages.
- 3. A fluidized catalyst reactor system for converting oxygenated feedstock to liquid hydrocarbons comprising:
- primary stage reactor means for contacting feedstock vapor with a fluidized bed of catalyst at elevated temperature and moderate pressure to convert feedstock to hydrocarbons comprising C.sub.2 -C.sub.4 alkenes and C.sub.5.spsb.+ hydrocarbons;
- means for charging feedstock at a bottom portion of said primary stage reactor means;
- interstage phase separator means for cooling and separating primary stage effluent to recover a liquid hydrocarbon stream and a light hydrocarbon stream rich in C.sub.2 -C.sub.4 alkenes;
- compressor means for pressurizing the light hydrocarbon stream to condense a liquid olefinic hydrocarbon stream rich in C.sub.3.spsb.+ alkenes and recovering an ethene-rich gaseous stream;
- pump means for further pressurizing the condensed liquid olefinic hydrocarbon stream; secondary stage reactor means for contacting the condensed liquid olefinic stream with oligomerization catalyst comprising medium-pore shape selective acidic zeolite at high pressure and moderate temperature to convert at least a portion of the C.sub.3.spsb.+ alkenes to a heavier liquid hydrocarbon product stream comprising olefinic gasoline and distillate range liquids;
- means for recycling a portion of the olefinic gasoline to the primary stage reactor means; and
- means for injecting the olefinic gasoline recycle stream into the fluidized catalyst bed of the primary stage reactor at a point above the oxygenate feedstock charge means and above a bed stratum corresponding to substantially complete oxygenate conversion.
- 4. The system of claim 3 comprising means for recovering at least a portion of the olefinic gasoline from the primary and secondary stage reactors.
- 5. The system of claim 3 wherein the recycle injection point is located above a bed stratum corresponding to at least 99% oxygenate conversion.
- 6. A continuous reactor system for converting oxygenate feedstock to predominantly distillate range liquid hydrocarbons comprising:
- primary fluidized bed catalytic reactor means for contacting the feedstock with conversion catalyst at elevated temperature and moderate pressure to convert feedstock to hydrocarbons comprising C.sub.2 -C.sub.4 olefins and C.sub.5.spsb.+ hydrocarbons;
- means for charging feedstock at a bottom portion of said primary stage reactor means;
- means for cooling and separating effluent from the primary stage to recover a liquid hydrocarbon stream and a light hydrocarbon vapor stream rich in C.sub.2 -C.sub.4 lower olefins;
- secondary catalytic reactor means for contacting the light olefinic hydrocarbon stream with oligomerization catalyst comprising medium-pore shape selective acidic zeolite at substantially increased pressure and moderate temperature to convert at least a portion of olefins to a heavier liquid hydrocarbon stream comprising olefinic gasoline and distillate range liquids;
- fractionation means for recovering a distillate product stream and an olefinic gasoline recycle stream from secondary stage effluent; and
- means for injecting at least a portion of the olefinic gasoline recycle stream into the fluidized catalyst bed of the primary stage reactor at a separate point above the oxygenate feedstock means and above a bed stratum corresponding to substantially complete oxygenate conversion.
- 7. The system of claim 6 further comprising means for fractionating the vapor effluent separated from primary stage effluent to recover a recycle gas stream containing at least 90% of ethene from the primary catalytic stage and an olefinic stream rich in C.sub.3.spsb.+ olefins.
- 8. The system of claim 7 including means for recycling olefinic gasoline to the primary stage at a rate of about 1 to 30 parts gasoline per 100 parts by weight of hydrocarbon equivalent in the feedstock.
REFERENCE TO COPENDING APPLICATION
This is a division of copending application Ser. No. 733,994, filed on May 14, 1985, now, U.S. Pat. No. 4,579,999; which application is a continuation-in-part of copending U.S. patent application Ser. No. 692,261, filed Jan. 17, 1985, now U.S. Pat. No. 4,543,435, incorporated herein by reference.
US Referenced Citations (5)
Foreign Referenced Citations (1)
Number |
Date |
Country |
0096996 |
Dec 1983 |
EPX |
Divisions (1)
|
Number |
Date |
Country |
Parent |
733994 |
May 1985 |
|
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
692261 |
Jan 1985 |
|