Claims
- 1. A naphthene ring opening catalyst system comprising:
(a) a naphthene ring isomerizing catalyst containing a catalytically active naphthene ring isomerization metal supported on a first catalyst support in an amount effective to isomerize a C6 naphthene ring-containing compound to a C5 naphthene ring-containing compound; and (b) a naphthene ring opening catalyst containing a catalytically active naphthene ring opening metal supported on a second catalyst support in an amount effective to ring open a naphthene ring-containing compound.
- 2. The naphthene ring opening catalyst system of claim 1, wherein the isomerizing catalyst and the ring opening catalyst are mixed together.
- 3. The naphthene ring opening catalyst system of claim 1, wherein the isomerizing catalyst and the ring opening catalyst are in a stacked bed arrangement.
- 4. The naphthene ring opening catalyst system of claim 1, wherein catalytically active isomerization metal is at least one of Pt, Pd present in an amount from about 0.1 to about 2.0 wt. %, and wherein the catalytically active ring opening metal is Ir present in an amount from about 0.1 to about 2.0 wt. %, based on the weight of the catalyst.
- 5. The naphthene ring opening catalyst system of claim 4 wherein the naphthene ring opening catalyst contains at least one other Group VIII metal selected from Pt, Rh, Ru present in a range from about 0.001 to about 2.0 wt. %, based on the weight of the catalyst.
- 6. The naphthene ring opening catalyst system of claim 5, wherein catalytically active isomerization metal and the catalytically active ring opening metal are present at a weight ratio of about 50 to about 99 parts of catalytically active isomerization metal to about 50 to about 1 parts catalytically active ring opening metal, based on the total weight of the catalyst system.
- 7. The naphthene ring opening catalyst system of claim 1, wherein the first and second supports independently contain at least one refractory inorganic oxide selected from alumina, silica, zirconia, titania, chromia, zinc oxide, magnesia, thoria, boria, silica-alumina, silica-magnesia, chromia-alumina, alumina-boria, silica-zirconia.
- 8. The naphthene ring opening catalyst system of claim 7, wherein the first and second supports contain alumina.
- 9. The naphthene ring opening catalyst system of claim 1, wherein at least one of the naphthene ring isomerizing catalyst and the naphthene ring opening catalyst further contains at least one hydrogenolysis suppressor selected from Cu, Ag, Au, Zn, and Sn.
- 10. The naphthene ring opening catalyst system of claim 9, wherein the hydrogenolysis suppressor is Sn.
- 11. The naphthene ring opening catalyst system of claim 1, wherein the ring opening catalyst is supported on a modified refractory support having an effective amount of at least one modifier selected from Cs, Mg, Ca, and Ca.
- 12. The naphthene ring opening catalyst system of claim 11, wherein the modifier is Mg.
- 13. The naphthene ring opening catalyst system of claim 1, wherein the naphthene ring opening catalyst further contains at least one other Group VIII metal selected from Pt, Ru, and Rh in an amount effective for opening a naphthene ring-containing compound at a tertiary site.
- 14. The naphthene ring opening catalyst system of claim 13, wherein the other Group VIII metal is Pt and is present at a range from about 0.001 to about 2.0 wt. %, based on the weight of the catalyst.
- 15. A process for opening naphthene rings of naphthene ring-containing compounds in a feed stream, comprising:
providing a naphthene ring-containing feed stream; and contacting the naphthene ring-containing feed stream with a naphthene ring opening catalyst system comprising: (a) a naphthene ring isomerizing catalyst containing a catalytically active naphthene ring isomerization metal supported on a first catalyst support in an amount effective to isomerize a C6 naphthene ring-containing compound to a C5 naphthene ring-containing compound; and (b) a naphthene ring opening catalyst containing a catalytically active naphthene ring opening metal supported on a second catalyst support in an amount effective to ring open a naphthene ring-containing compound.
- 16. The process of claim 15, wherein the isomerizing catalyst and the ring opening catalyst are mixed together.
- 17. The process of claim 15, wherein the isomerizing catalyst and the ring opening catalyst are in a stacked bed arrangement.
- 18. The process of claim 17, wherein catalytically active isomerization metal is at least one of Pt, Pd present in an amount from about 0.1 to about 2.0 wt. %, and wherein the catalytically active ring opening metal is Ir present in an amount from about 0.1 to about 2.0 wt. %, based on the weight of the catalyst.
- 19. The process of claim 18 wherein the naphthene ring opening catalyst contains at least one other Group VIII metal selected from Pt, Rh, Ru present in a range of about 0.001 to about 2.0 wt. %, based on the weight of the catalyst.
- 20. The process of claim 19, wherein catalytically active isomerization metal and the catalytically active ring opening metal are present at a weight ratio of about 50 to about 99 parts of catalytically active isomerization metal to about 50 to about 1 parts catalytically active ring opening metal, based on the total weight of the catalyst system.
- 21. The process of claim 15, wherein the first and second supports independently contain at least one refractory inorganic oxide selected from alumina, silica, zirconia, titania, chromia, zinc oxide, magnesia, thoria, boria, silica-alumina, silica-magnesia, chromia-alumina, alumina-boria, silica-zirconia.
- 22. The process of claim 21, wherein the first and second supports contain alumina.
- 23. The process of claim 15, wherein at least one of the naphthene ring isomerizing catalyst and the naphthene ring opening catalyst further contains at least hydrogenolysis suppressor selected from Cu, Ag, Au, Zn, and Sn.
- 24. The process of claim 23, wherein the hydrogenolysis suppressor is Sn.
- 25. The process of claim 15, wherein the ring opening catalyst is supported on a modified refractory support having an effective amount of at least one modifier selected from Cs, Mg, Ca, and Ca.
- 26. The process of claim 25, wherein the modifier is Mg.
- 27. The process of claim 15, wherein the naphthene ring opening catalyst further contains at least one other Group VIII metal selected from Pt, Ru, Rh in an amount effective for opening a naphthene ring-containing compound at a tertiary site.
- 28. The process of claim 27, wherein the other Group VIII metal is Pt and is present at a range of about 0.001 to about 2.0 wt. %, based on the weight of the catalyst.
- 29. The process of claim 15, wherein ring opening is carried out at a temperature of from about 150° C. to about 400° C., a total pressure from about 100 to about 3,000 psig, a liquid hourly space velocity of about 0.1 to about 10 V/V/Hr, a hydrogen treat gas rate from about 200 to about 10,000 SCF/B, and wherein the feed stream is a petroleum feed stream which has a boiling point of from about 175° C. to about 600° C.
- 30. The process of claim 29, further comprising ring opening at the tertiary carbon site, thereby forming a ring opened product having increased linear paraffin functionality relative to that of the feed stream.
- 31. The process of claim 30, further comprising recovering the ring opened product.
- 32. The process of claim 31, further comprising blending the ring opened product with a petroleum stream having a boiling point from about 175° C. to about 600° C., wherein the blend has a cetane number of at least 40.
- 33. The product of claim 32.
- 34. The product of claim 31.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This case claims benefit of U.S. Provisional Patent Application Ser. No. 60/219,933 filed Jul. 21, 2000.
Provisional Applications (1)
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Number |
Date |
Country |
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60219933 |
Jul 2000 |
US |