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Supported bimetallic catalyst with a strong interaction between a group VIII metal and tin, and its use in a catalytic reforming process

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • B01J-023/00
  • B01J-023/58
  • C07C-013/00
  • C07C-002/52
  • C10G-035/00
출원번호 US-0934656 (2001-08-23)
우선권정보 FR-0010878 (2000-08-23)
발명자 / 주소
  • Le Peltier, Fabienne
  • Didillon, Blaise
  • Jumas, Jean-Claude
  • Olivier-Fourcade, Josette
출원인 / 주소
  • Institut Francais du Petrole
대리인 / 주소
    Millen, White, Zelano, Branigan , P.C.
인용정보 피인용 횟수 : 71  인용 특허 : 6

초록

A novel supported bimetallic catalyst comprises a group VIII metal such as platinum, and tin, at least a portion of which interacts strongly with the group VIII metal in the catalyst in the reduced state. In the partially oxidized state, the catalyst of the invention contains at least 10% of tin in

대표청구항

A novel supported bimetallic catalyst comprises a group VIII metal such as platinum, and tin, at least a portion of which interacts strongly with the group VIII metal in the catalyst in the reduced state. In the partially oxidized state, the catalyst of the invention contains at least 10% of tin in

이 특허에 인용된 특허 (6)

  1. Wilhelm Frederick C. (Arlington Heights IL), Dehydrogenation of hydrocarbons with a multimetallic catalytic composite.
  2. Rausch ; Richard E., Hydrodesulfurization of hydrocarbon distillate with a catalyst composite of carrier, Pt/Pd, Rh and Sn.
  3. Miura Tadashi (Saitama JA) Nomura Tomio (Higashi-matsuyama JA) Kubota Kohei (Kasukabe JA), Method for preparing hydrocarbon conversion catalyst.
  4. Chao Tai-Hsiang (Mt. Prospect IL) Targos William M. (Palatine IL) Moser Mark D. (Elk Grove Village IL), Reforming catalyst with homogeneous metals dispersion.
  5. Bogdan Paula L. (Mount Prospect IL), Selective bifunctional multimetallic reforming catalyst.
  6. Bogdan Paula L. ; Imai Tamotsu, Selective multimetallic-multigradient reforming catalyst.

이 특허를 인용한 특허 (71)

  1. Stone, Jr., Francis Marion; Goodwin, Charles R.; Richard, Jr., James E., Alternate energy source usage methods for in situ heat treatment processes.
  2. Khare, Gyanesh P., Aromatization catalysts with high surface area and pore volume.
  3. Khare, Gyanesh P., Aromatization catalysts with high surface area and pore volume.
  4. Vinegar, Harold J.; Fowler, Thomas David; Karanikas, John Michael, Cogeneration systems and processes for treating hydrocarbon containing formations.
  5. Roes, Augustinus Wilhelmus Maria; Nair, Vijay; Munsterman, Erwin Henh; Van Bergen, Petrus Franciscus; Van Den Berg, Franciscus Gondulfus Antonius, Compositions produced using an in situ heat treatment process.
  6. Zhang, Etuan; Beer, Gary Lee, Controlling and assessing pressure conditions during treatment of tar sands formations.
  7. Vinegar, Harold J.; Karanikas, John Michael; Dinkoruk, Deniz Sumnu; Wellington, Scott Lee, Creating and maintaining a gas cap in tar sands formations.
  8. Stegemeier, George Leo; Beer, Gary Lee; Zhang, Etuan, Creating fluid injectivity in tar sands formations.
  9. Stegemeier, George Leo; Beer, Gary Lee; Zhang, Etuan, Creating fluid injectivity in tar sands formations.
  10. Bravo, Jose Luis; Harvey, III, Albert Destrehan; Vinegar, Harold J., Cryogenic treatment of gas.
  11. MacDonald, Duncan Charles, Dual motor systems and non-rotating sensors for use in developing wellbores in subsurface formations.
  12. MacDonald, Duncan Charles, Dual motor systems and non-rotating sensors for use in developing wellbores in subsurface formations.
  13. Burns, David Booth; Hwang, Horng Jye (Jay); Marwede, Jochen; MacDonald, Duncan Charles; Prince-Wright, Robert George, Electrical current flow between tunnels for use in heating subsurface hydrocarbon containing formations.
  14. Burns, David; Goodwin, Charles R., Floating insulated conductors for heating subsurface formations.
  15. Kuhlman, Myron Ira; Vinegar, Harold J.; Baker, Ralph Sterman; Heron, Goren, Gas injection to inhibit migration during an in situ heat treatment process.
  16. Burns, David Booth; Hwang, Horng Jye (Jay); Marwede, Jochen; MacDonald, Duncan Charles; Prince-Wright, Robert George, Heated fluid flow in mines and tunnels used in heating subsurface hydrocarbon containing formations.
  17. Burns, David Booth; Hwang, Horng Jye (Jay); Marwede, Jochen; MacDonald, Duncan Charles; Prince-Wright, Robert George, Heater connections in mines and tunnels for use in treating subsurface hydrocarbon containing formations.
  18. de Rouffignac, Eric Pierre; Pingo Almada, Monica M.; Miller, David Scott, Heating hydrocarbon containing formations in a checkerboard pattern staged process.
  19. Miller, David Scott, Heating hydrocarbon containing formations in a line drive staged process.
  20. Vinegar, Harold J.; Miller, David Scott, Heating hydrocarbon containing formations in a spiral startup staged sequence.
  21. Costello, Michael; Vinegar, Harold J., Heating subsurface formations by oxidizing fuel on a fuel carrier.
  22. Karanikas, John Michael; Colmenares, Tulio Rafael; Zhang, Etuan; Marino, Marian; Roes, Augustinus Wilhelmus Maria; Ryan, Robert Charles; Beer, Gary Lee; Dombrowski, Robert James; Jaiswal, Namit, Heating tar sands formations to visbreaking temperatures.
  23. Stegemeier, George Leo; Beer, Gary Lee; Zhang, Etuan, Heating tar sands formations while controlling pressure.
  24. Bravo, Jose Luis, High temperature methods for forming oxidizer fuel.
  25. Burns, David Booth; Hwang, Horng Jye (Jay); Marwede, Jochen; MacDonald, Duncan Charles; Prince-Wright, Robert George, Hydrocarbon production from mines and tunnels used in treating subsurface hydrocarbon containing formations.
  26. Vinegar, Harold J.; Hsu, Chia-Fu, In situ conversion process systems utilizing wellbores in at least two regions of a formation.
  27. Vinegar, Harold J., In situ heat treatment from multiple layers of a tar sands formation.
  28. Vinegar, Harold J.; Stanecki, John, In situ heat treatment of a tar sands formation after drive process treatment.
  29. Vinegar, Harold J.; Nguyen, Scott Vinh, In situ heat treatment process utilizing a closed loop heating system.
  30. Beer, Gary Lee; Mo, Weijian; Li, Busheng; Shen, Chonghui, In situ oxidation of subsurface formations.
  31. Vinegar, Harold J.; Sumnu-Dindoruk, Meliha Deniz; Wellington, Scott Lee; Maher, Kevin Albert; Karanikas, John Michael; de Rouffignac, Eric Pierre; Messier, Margaret Ann; Roberts, Bruce Edmunds; Crane, Steven Dexter, In situ recovery from a hydrocarbon containing formation.
  32. Vinegar, Harold J.; Wellington, Scott Lee; de Rouffignac, Eric Pierre; Karanikas, John Michael; Berchenko, Ilya Emil; Stegemeier, George Leo; Maher, Kevin Albert; Zhang, Etuan; Shahin, Gordon Thomas; Menotti, James Louis; Coles, John Matthew; Fowler, Thomas David; Keedy, Charles Robert; Madgavkar, Ajay Madhav; Van Hardeveld, Robert Martijn; Ryan, Robert Charles; Schoeling, Lanny Gene; Carl, Frederick Gordon, In situ recovery from a hydrocarbon containing formation.
  33. Vinegar, Harold J.; Karanikas, John Michael; Ryan, Robert Charles, In situ recovery from residually heated sections in a hydrocarbon containing formation.
  34. Nguyen, Scott Vinh; Bass, Ronald M., Induction heaters used to heat subsurface formations.
  35. Miller, David Scott; Uwechue, Uzo Philip, Irregular spacing of heat sources for treating hydrocarbon containing formations.
  36. Hsu, Chia-Fu, Method of condensing vaporized water in situ to treat tar sands formations.
  37. Mudunuri, Ramesh Raju; Jaiswal, Namit; Vinegar, Harold J.; Karanikas, John Michael, Method of producing drive fluid in situ in tar sands formations.
  38. Kim, Dong Sub, Methods for forming long subsurface heaters.
  39. Guimerans, Rosalvina Ramona; Mansure, Arthur James, Methods for forming wellbores in heated formations.
  40. Mo, Weijian; Roes, Augustinus Wilhelmus Maria; Nair, Vijay, Methods of cracking a crude product to produce additional crude products.
  41. Minderhoud, Johannes Kornelis; Nelson, Richard Gene; Roes, Augustinus Wilhelmus Maria; Ryan, Robert Charles; Nair, Vijay, Methods of hydrotreating a liquid stream to remove clogging compounds.
  42. Roes, Augustinus Wilhelmus Maria; Mo, Weijian; Muylle, Michel Serge Marie; Mandema, Remco Hugo; Nair, Vijay, Methods of making transportation fuel.
  43. Wu, An-Hsiang, Methods of preparing an aromatization catalyst.
  44. Roes, Augustinus Wilhelmus Maria; Mo, Weijian; Muylle, Michel Serge Marie; Mandema, Remco Hugo; Nair, Vijay, Methods of producing alkylated hydrocarbons from an in situ heat treatment process liquid.
  45. Wu, An-Hsiang, Methods of reactivating an aromatization catalyst.
  46. Wu, An-Hsiang, Methods of reactivating an aromatization catalyst.
  47. Wu, An-Hsiang, Methods of regenerating aromatization catalysts.
  48. Wu, An-Hsiang, Methods of regenerating aromatization catalysts.
  49. Wu, An-Hsiang, Methods of regenerating aromatization catalysts.
  50. Wu, An-Hsiang, Methods of regenerating aromatization catalysts.
  51. Wu, An-Hsiang, Methods of regenerating aromatization catalysts.
  52. Prince-Wright, Robert George; Marwede, Jochen; Hwang, Horng Jye (Jay); MacDonald, Duncan Charles; Burns, David Booth, Mines and tunnels for use in treating subsurface hydrocarbon containing formations.
  53. Nguyen, Scott Vinh; Vinegar, Harold J., Molten salt as a heat transfer fluid for heating a subsurface formation.
  54. Stegemeier, George Leo; Mudunuri, Ramesh Raju; Vinegar, Harold J.; Karanikas, John Michael; Jaiswal, Namit; Mo, Weijian, Moving hydrocarbons through portions of tar sands formations with a fluid.
  55. Mason, Stanley Leroy, Multi-step heater deployment in a subsurface formation.
  56. Harris, Christopher Kelvin; Karanikas, John Michael; Nguyen, Scott Vinh, Parallel heater system for subsurface formations.
  57. Lambirth, Gene Richard, Power systems utilizing the heat of produced formation fluid.
  58. Karanikas, John Michael; Vinegar, Harold J., Production from multiple zones of a tar sands formation.
  59. MacDonald, Duncan, Ranging methods for developing wellbores in subsurface formations.
  60. Vinegar, Harold J., Solution mining and in situ treatment of nahcolite beds.
  61. Vinegar, Harold J., Solution mining dawsonite from hydrocarbon containing formations with a chelating agent.
  62. Fowler, Thomas David, Sour gas injection for use with in situ heat treatment.
  63. Schwarzer, Hans-Christoph; Tissler, Arno; Hutt, Markus, Supported platinum catalyst.
  64. Vinegar, Harold J., Three-phase heaters with common overburden sections for heating subsurface formations.
  65. Vinegar, Harold J.; Karanikas, John Michael, Treating tar sands formations with dolomite.
  66. Vinegar, Harold J.; Karanikas, John Michael, Treating tar sands formations with dolomite.
  67. Vinegar, Harold J.; Karanikas, John Michael, Treating tar sands formations with karsted zones.
  68. Pieterson, Roelof; Boyles, Joseph Michael; Diebold, Peter Ulrich, Using geothermal energy to heat a portion of a formation for an in situ heat treatment process.
  69. Burns, David Booth; Hwang, Horng Jye (Jay); Marwede, Jochen; MacDonald, Duncan Charles; Prince-Wright, Robert George, Using tunnels for treating subsurface hydrocarbon containing formations.
  70. Vinegar, Harold J.; Xie, Xueying; Miller, David Scott, Varying heating in dawsonite zones in hydrocarbon containing formations.
  71. Karanikas, John Michael; Vinegar, Harold J., Varying properties of in situ heat treatment of a tar sands formation based on assessed viscosities.
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