Claims
- 1. An improved reactor system for fluidized bed catalytic cracking comprising:
- a primary vertical riser cracking reactor operatively connected to receive hot regenerated catalyst at a bottom riser portion for upward passage through said vertical riser;
- regenerator means connected in a regeneration loop for receiving catalyst from said primary cracking reactor;
- first conduit means for feeding liquid oil under pressure to the bottom riser portion of the primary reactor;
- second conduit means for feeding lift gas to the primary reactor below said first conduit means;
- mixing means adapted for receiving and combining catalyst form the regeneration loop with the liquid oil and the lift gas;
- fractionation means for recovering liquid cracking products and olefinic light crackate gas form the primary reactor;
- secondary catalytic reactor means for contacting at least a portion of the olefinic light crackage gas with olefin upgrading catalyst to produce gasoline range liquid product and byproduct light hydrocarbon gas; and
- means for recovering and recycling at least a portion of the byproduct light gas to the primary reactor as lift gas.
- 2. A continuous fluid catalytic cracking reactor system comprising in combination:
- a vertical riser-type main fluid cracking reactor adapted to receive a heavy liquid feedstock at a bottom riser portion for cracking therein;
- means for admixing the feedstock with hot regenerated solid catalyst in the bottom portion of the reactor riser;
- means for flowing lift gas below said means for admixing to facilitate fluidization of solid catalyst particles and mixing with the feedstock;
- means for passing the mixture of feedstock, catalyst and lift gas vertically through the riser, thereby volatilizing the feedstock and effecting cracking thereof and thereby deactivating the catalyst by deposition of carbonaceous deposits thereon;
- means for separating deactivated catalyst from crackate product;
- regenerator means including a regenerator vessel and means for passing deactivated catalyst to the regenerator vessel wherein the carbonaceous deposits are removed from the deactivated catalyst under exothermic process conditions by a regenerating medium introduced into the regenerator vessel;
- means for passing regenerated hot catalyst substantially above process cracking temperature to the bottom portion of the reactor riser;
- first separation means for recovering cracked liquid hydrocarbons in a main fractionator to separate effluent from catalytic cracking of hydrocarbon feedstock to provide liquid cracked product and a light crackate gas stream comprising C.sub.2 -C.sub.4 olefinic and paraffinic gases;
- second reactor means for contacting the olefin-containing crackate gas in an olefin upgrading zone in contact with a fluidized bed of medium pore zeolite oligomerization catalyst particles under oligomerization reaction conditions to convert said olefins to gasoline range hydrocarbons and C.sub.4.sup.- byproduct gas rich in paraffinic hydrocarbons;
- second separation means for recovering gasoline product and the byproduct paraffinic gas stream from the second reactor effluent; and
- fluid handling means for passing at least a portion of said byproduct paraffinic gas stream to the bottom of the cracking reactor riser as a lift gas.
REFERENCE TO COPENDING APPLICATION
This application is a continuation-in-part of U.S. patent application Ser. No. 200,109, filed 31 May 1988, now U.S. Pat. No. 4,966,680 incorporated herein by reference.
US Referenced Citations (3)
Number |
Name |
Date |
Kind |
4090949 |
Owen et al. |
May 1978 |
|
4788366 |
Harandi et al. |
Nov 1988 |
|
4859308 |
Harandi et al. |
Aug 1989 |
|
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
200109 |
May 1988 |
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