Claims
- 1. A process for the conversion of a hydrocarbon feedstream containing hydrogen sulfide and/or ammonia in a reaction zone suitable for said conversion to produce a hydrocarbon product, said conversion being deleteriously affected by the presence of said hydrogen sulfide and/or ammonia, and said process being conducted under conditions suitable for the conversion including temperatures and pressures sufficient to maintain the hydrocarbon and hydrocarbon product essentially in the vapor phase comprising:
- (a) passing the hydrocarbon feedstream containing hydrogen sulfide and/or ammonia to at least one but not all of at least two adsorption zones at a temperature at least sufficient to maintain the hydrocarbon feedstream containing hydrogen sulfide and/or ammonia essentially in the vapor phase, said adsorption zones containing a solid adsorbent having a pore diameter less than or equal to 5 Angstroms and having selectivity for the adsorption of hydrogen sulfide and ammonia as compared to the hydrocarbon;
- (b) withdrawing a hydrocarbon stream having reduced hydrogen sulfide and ammonia content from said at least one adsorption zone receiving the hydrocarbon feedstream and passing the hydrocarbon stream having reduced hydrogen sulfide and ammonia content to the reaction zone to produce hydrocarbon product-containing effluent;
- (c) passing at least a portion of the hydrocarbon product-containing effluent to at least one other of said adsorption zones not receiving the hydrocarbon feedstream but having previously adsorbed hydrogen sulfide and/or ammonia as set forth in step (a) at a temperature at least sufficient to maintain the hydrocarbon product-containing effluent essentially in the vapor phase, whereby hydrogen sulfide and ammonia is desorbed from the at least one other of said adsorptive zones to regenerate the at least one other of said adsorptive zones;
- (d) withdrawing a hydrogen sulfide and/or ammonia-containing, hydrocarbon product-containing effluent from the at least one other of said adsorptive zones; and
- (e) ceasing to pass the hydrocarbon feedstream containing hydrogen sulfide to the at least one adsorption zone and regenerating said at least one adsorption zone pursuant to step (c) and using at least one regenerated adsorption zone as the at least one adsorption zone for step (a) after a period of from 0.5 to 6.0 hours.
- 2. The process of claim 1, wherein at least a portion of the hydrogen sulfide and/or ammonia contained in the hydrocarbon was obtained by catalytically converting sulfur and/or nitrogen components in the hydrocarbon in the presence of excess molecular hydrogen.
- 3. The process of claim 2, wherein the hydrogen sulfide and/or ammonia-containing product effluent is condensed to form an overhead of excess molecular hydrogen and a condensate of liquid hydrogen sulfide and/or ammonia-containing product.
- 4. The process of claim 3, wherein the overhead of excess molecular hydrogen is recycled to be used for the catalytic conversion of the sulfur and/or nitrogen components in the hydrocarbon to hydrogen sulfide and ammonia, respectively.
- 5. The process of claim 3, wherein a portion of the overhead of excess molecular hydrogen is combined with hydrocarbon product-containing effluent prior to desorption of one of the adsorption zones.
- 6. The process of claim 1, wherein the temperature of the adsorbent during adsorption is in the range of from about 250.degree. to 500.degree. F.
- 7. The process of claim 6, wherein the temperature of the adsorbent during adsorption is in the range of from about 300.degree. F. to 450.degree. F.
- 8. The process of claim 1, wherein the adsorption zones contain 4A zeolite molecular sieve as an adsorbent.
- 9. The process of claim 1, wherein the adsorption zones contain clinoptilolite as an adsorbent.
- 10. The process of claim 1, wherein the adsorption zones contain zeolite 5A as an adsorbent.
- 11. The process of claim 1, wherein the adsorption zone must be regenerated after a period of from 1.0 to 2.0 hours.
- 12. A process for the hydrotreating and isomerization of hydrocarbon feed containing at least four carbon atoms which feed contains at least sulfur and/or nitrogen components comprising:
- (a) providing said hydrocarbon feed at a temperature and with sufficient molecular hydrogen to convert catalytically substantially all of the contained sulfur components to hydrogen sulfide and substantially all of the nitrogen components to ammonia, said temperature being at least sufficient to provide the hydrocarbon feed essentially in the vapor phase;
- (b) passing the hydrocarbon feed mixture of step (a) to a catalytic reaction zone containing a catalytically effective amount of catalyst, under hydrogen sulfide and ammonia forming conditions to provide substantially all of the contained sulfur components in the hydrocarbon feed mixture in the form of hydrogen sulfide and substantially all of the nitrogen components in the hydrocarbon feed in the form of ammonia and thereby produce a hydrogen sulfide and/or ammonia containing vaporous hydrocarbon stream;
- (c) maintaining the hydrogen sulfide and/or ammonia containing hydrocarbon stream at a temperature at least sufficient to maintain the hydrogen sulfide and/or ammonia containing hydrocarbon stream essentially in the vapor phase and passing the hydrogen sulfide and/or ammonia containing hydrocarbon stream to at least one adsorption zone of a group of at least two adsorption zones wherein each adsorption zone is alternately subjected to adsorption and then desorption, wherein each adsorption zone contains solid adsorbent selective for the adsorption of hydrogen sulfide and ammonia as compared to the hydrocarbon stream, whereby a hydrocarbon stream having reduced hydrogen sulfide and/or ammonia content is provided;
- (d) withdrawing the hydrocarbon stream having reduced hydrogen sulfide and/or ammonia from the at least one adsorption zone and passing it to an isomerization reaction zone containing a catalytically effective amount of isomerization catalyst which is deleteriously affected by the presence of hydrogen sulfide and/or ammonia under isomerization conditions to provide an isomerate-containing effluent;
- (e) withdrawing the isomerate-containing effluent from the isomerization reaction zone and passing at least a portion of the effluent, while at a temperature at least sufficient to maintain the isomerate-containing effluent essentially in the vapor phase, to at least another one of said adsorption zones to desorb hydrogen sulfide and/or ammonia and provide a hydrogen sulfide and/or ammonia containing isomerate-containing effluent; and
- (f) withdrawing the hydrogen sulfide and/or ammonia containing isomerate-containing effluent from the at least another one of said adsorptive zones of step (e).
- 13. The process of claim 12, wherein the hydrocarbon feed contains a stoichiometric excess of molecular hydrogen for the hydrogen sulfide and ammonia forming reactions and the isomerization and thus the hydrogen sulfide and/or ammonia containing isomerization effluent also contains molecular hydrogen, wherein the hydrogen sulfide and/or ammonia containing isomerate-containing effluent from step (f) is subjected to conditions whereby substantially all of the hydrocarbon is condensed and an overhead containing the excess molecular hydrogen is provided, wherein at least a portion of the overhead is recycled for combination with the hydrocarbon feed in step (a).
- 14. The process of claim 13, wherein at least a portion of the overhead is combined with the isomerate-containing effluent and used to desorb an adsorption zone.
- 15. The process of claim 13, wherein the condensed hydrogen sulfide and/or ammonia containing isomerate-containing effluent is subjected to conditions which remove hydrogen sulfide and/or ammonia.
- 16. The process of claim 12, wherein the temperature of the adsorbent during adsorption is in the range of from about 250.degree. F. to 500.degree. F.
- 17. The process of claim 16, wherein the temperature of the adsorbent during adsorption is in the range of from about 300.degree. F. to 450.degree. F.
- 18. The process of claim 12, wherein the adsorption zones contain 4A zeolite molecular sieve as an adsorbent.
- 19. The process of claim 12, wherein the adsorption zones contain clinoptilolite as an adsorbent.
- 20. The process of claim 12, wherein the adsorption zones contain zeolite 5A as an adsorbent.
- 21. The process of claim 12, wherein the adsorption zone must be regenerated after a period of from 0.5 to 6.0 hours.
- 22. The process of claim 10, wherein the adsorption zone must be regenerated after a period of from 1.0 to 2.0 hours.
CROSS-REFERENCE TO RELATED APPLICATIONS
This application is a continuation-in-part of application Ser. No. 022,136, filed Mar. 5, 1987 now abandoned, the contents of which is hereby incorporated by reference.
US Referenced Citations (33)
Foreign Referenced Citations (3)
Number |
Date |
Country |
926332 |
May 1973 |
CAX |
2506336 |
Oct 1975 |
DEX |
1254185 |
Nov 1971 |
GBX |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
22136 |
Mar 1987 |
|