Claims
- 1. An apparatus for producing distillates or lubes from paraffins, which comprise:
- (a) a dehydrogenation reactor including means for passing a paraffinic feedstock stream into a dehydrogenation zone at conditions of pressure and temperature selected to convert the paraffins to an olefin rich effluent stream comprising at least one of the group consisting of propylene and butylene;
- (b) a low pressure oligomerization catalytic reactor including means for contacting said olefin rich effluent stream in a low pressure oligomerization catalytic reactor zone with a crystalline zeolite oligomerization catalyst at conditions of pressure and temperature selected to convert olefins to a first reactor effluent stream rich in liquid olefinic gasoline range hydrocarbons;
- (c) a first means for separating the first reactor effluent stream to form a substantially liquid C.sub.5.sup.+ rich stream and a C.sub.4.sup.- rich stream;
- (d) means for passing said C.sub.5.sup.+ rich stream to a high pressure oligomerization catalytic reactor zone;
- (e) a high pressure oligomerization catalytic reactor including means for contacting the substantially liquid C.sub.5.sup.+ rich stream in said high pressure oligomerization catalytic reactor zone with a crystalline zeolite oligomerization catalyst at conditions of temperature and pressure selected to produce a second reactor effluent stream whic his rich in distillate;
- (f) second means for separating the second reactor effluent stream to recover an olefinic gasoline stream and a distillate stream; and
- (g) a hydrotreating reactor including means for contacting said distillate stream with hydrogen in a hydrotreating unit to produce a hydrotreated distillate stream comprising lube range hydrocarbons.
- 2. The apparatus of claim 1, further comprising a product separation means for recovering a lube stream from said hydrotreated distillate stream.
- 3. The apparatus of claim 1, comprising a means for recycling a portion of a C.sub.4.sup.- stream as a recycle C.sub.4.sup.- stream to the dehydrogenation means.
- 4. The apparatus of claim 1, wherein the oligomerization catalyst reactor comprises a fixed bed downflow pressurized reactor having a porous bed of zeolite catalyst.
- 5. The apparatus of claim 1, wherein said low pressure and said high pressure oligomerization catalytic reactor zones contain at least one catalyst from the group consisting of ZSM-5, ZSM-11, ZSM-12, ZSM-23, ZSM-35 and ZSM-38.
- 6. The apparatus of claim 1, wherein said dehydrogenation zone is a catalytic dehydrogenation zone.
- 7. The apparatus of claim 1, wherein said dehydrogenation zone is a thermal dehydrogenation zone.
- 8. The apparatus of claim 1, wherein the low pressure oligomerization catalytic reactor includes means for maintaining a pressure of 10-1000 psia and a temperature of 400.degree.-800.degree. F., and a weight hourly space velocity of 0.2-4 WHSV.
- 9. The apparatus of claim 8, wherein the low pressure oligomerization catalytic reactor includes means for maintaining a pressure of 10-40 psia and a temperature of 450.degree.-600.degree. F., and a weight hourly space velocity of 0.5-1.5 WHSV.
- 10. The apparatus of claim 1, wherein the high pressure oligomerization catalytic reactor includes means for maintaining a pressure of 100-3000 psig and a temperature of 350.degree.-600.degree. F., and a weight hourly space velocity of 0.1-5 WHSV.
- 11. The apparatus of claim 10, wherein the high pressure oligomerization catalytic reactor includes means for maintaining a pressure of 800-2000 psig.
- 12. An integrated reactor system for converting light paraffins to heavier hydrocarbons comprising distillate range product comprising, in combination:
- dehydrogenation reactor means for converting paraffinic feedstock to an olefin-rich first effluent stream rich in C.sub.3 -C.sub.4 olefins;
- low pressure oligomerization reactor means operatively connected to receive the first olefinic effluent stream for contact with an acid medium pore zeolite oligomerization catalyst to convert olefins from the first olefinic effluent stream to a second olefinic effluent stream rich in C.sub.5.sup.30 gasoline range hydrocarbons;
- first separator means for recovering a substantially liquid fraction C.sub.5.sup.+ gasoline-rich stream from the second effluent stream;
- pump means for passing the C.sub.5.sup.+ liquid stream at high pressure to a high pressure oligomerization reactor means;
- high pressure oligomerization reactor means for contacting the C.sub.5.sup.+ gasoline fraction stream at elevated oligomeriation temperature and pressure with acidic medium pore zeolite oligomerization catalyst to produce a high pressure oligomerization reactor-effluent stream rich in distillate range hydrocarbons;
- second separator means for recovering a gasoline-rich stream and distillate product stream from the high pressure oligomerization reactor effluent stream; and
- hydrotreating reactor means for contacting the distillate product stream with hydrogen in the presence of a hydrogenation catalyst.
CROSS REFERENCE TO RELATED APPLICATION
This application is a division of application Ser. No. 650,473, filed Sept 14, 1984, now U.S. Pat. No. 4,542,247.
US Referenced Citations (7)
Non-Patent Literature Citations (2)
Entry |
"UOP Oleflex Process for LPG--Paraffin Dehydrogenation", UOP Process Division Technology Conference, (1982). |
"Production of Mono-- and Diolefins by Catalytic Dehydrogenation of LPG", Air Products, 100.2. |
Divisions (1)
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Number |
Date |
Country |
Parent |
650473 |
Sep 1984 |
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