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Ceramic membrane for hydrocarbon conversion 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • B01J-021/10
  • B01J-023/34
  • B01J-035/00
출원번호 US-0871746 (1986-06-09)
발명자 / 주소
  • Hazbun Edward A. (Media PA)
출원인 / 주소
  • Arco Chemical Company (Newtown Square PA 02)
인용정보 피인용 횟수 : 66  인용 특허 : 3

초록

The invention relates to a novel mixed ion and electron conducting catalytic ceramic membrane and to its use in hydrocarbon oxidation and or dehydrogenation processes, the membrane consists of two layers, layer 1 which is an impervious mixed ion and electron conducting ceramic layer and layer 2 whic

대표청구항

A ceramic membrane structure comprised of a first layer which is a mixed oxygen ion and electron conducting impervious ceramic layer and a second layer which is associated with said first layer and which is a catalyst-containing porous ion conducting ceramic layer.

이 특허에 인용된 특허 (3)

  1. Jones C. Andrew (Newtown Square PA) Sofranko John A. (Malvern PA), Alkali promoted manganese oxide compositions containing zirconium.
  2. Acres Gary James Keith (London EN) Cooper Barry John (London EN), Catalyst.
  3. Blanchard Gilbert (Le Plessis-Belleville FRX) Brunelle Jean-Pierre (Saint-Brice sous Foret FRX) Prigent Michel (Rueil Malmaison FRX), Catalyst for treatment of exhaust gases from internal combustion engines.

이 특허를 인용한 특허 (66)

  1. Habib, Mohamed Abdel-Aziz; Nemitallah, Medhat Ahmed, Carbon-free low-NOx liquid fuel oxygen transport reactor for industrial water tube boilers.
  2. Lane, Jonathan A.; Wilson, Jamie R.; Christie, Gervase Maxwell; Petigny, Nathalie; Sarantopoulos, Christos, Catalyst containing oxygen transport membrane.
  3. Prasad Ravi ; Gottzmann Christian Friedrich, Ceramic membrane for endothermic reactions.
  4. Schirrmeister, Steffen; Langanke, Bernd; Hoting, Bjoern, Ceramic membrane having a catalytic membrane-material coating.
  5. Balachandran Uthamalingam ; Mieville Rodney L., Ceramic membrane reactor with two reactant gases at different pressures.
  6. Prasad Ravi ; Gottzmann Christian Friedrich ; Schwartz Joseph Michael, Ceramic membrane reformer.
  7. Mackay Richard ; Sammells Anthony F., Ceramic membranes for catalytic membrane reactors with high ionic conductivities and low expansion properties.
  8. Kelly, Sean M.; Christie, Gervase Maxwell; Robinson, Charles; Wilson, Jamie R.; Gonzalez, Javier E.; Doraswami, Uttam R., Ceramic oxygen transport membrane array reactor and reforming method.
  9. Kelly, Sean M.; Christie, Gervase Maxwell; Robinson, Charles; Wilson, Jamie R.; Gonzalez, Javier E.; Doraswami, Uttam R., Ceramic oxygen transport membrane array reactor and reforming method.
  10. Kelly, Sean M.; Christie, Gervase Maxwell; Rosen, Lee J.; Robinson, Charles; Wilson, Jamie R.; Gonzalez, Javier E.; Doraswami, Uttam R., Ceramic oxygen transport membrane array reactor and reforming method.
  11. Webb Steven P. ; McIntyre James A., Composite membrane and use thereof for synthesis of hydrogen peroxide.
  12. Lane, Jonathan A.; Lu, Zigui; Plonczak, Pawel J., Composite oxygen ion transport membrane.
  13. Christie, Gervase Maxwell; Lane, Jonathan A., Composite oxygen transport membrane.
  14. Lu, Zigui; Plonczak, Pawel J.; Lane, Jonathan A., Composite oxygen transport membrane.
  15. Carolan, Michael Francis; Minford, Eric; Waldron, William Emil, Feed gas contaminant control in ion transport membrane systems.
  16. Hishinuma, Masakazu; Matsuzaki, Yoshio, Fuel electrode of solid oxide fuel cell and process for the production of the same.
  17. Lin, Jiefeng; Kelly, Sean M., High aspect ratio catalytic reactor and catalyst inserts therefor.
  18. Wang Weitung ; Chen Jack C. ; Apte Prasad ; Mazanec Terry Joseph, Ion conducting ceramic membrane and surface treatment.
  19. Haase, Richard Alan; Smaardyk, John, Manufacture of water chemistries.
  20. MacKay, Richard; Schwartz, Michael; Sammells, Anthony F., Materials and methods for the separation of oxygen from air.
  21. Besecker,Charles J.; Mazanec,Terry J.; Xu,Sherman J.; Rytter,Erling, Membrane systems containing an oxygen transport membrane and catalyst.
  22. Chakravarti, Shrikar; Drnevich, Raymond Francis; Shah, Minish M.; Stuckert, Ines C., Method and system for adjusting synthesis gas module in an oxygen transport membrane based reforming system.
  23. Chakravarti, Shrikar; Drnevich, Raymond Francis; Burgers, Kenneth L., Method and system for producing a synthesis gas in an oxygen transport membrane based reforming system that is free of metal dusting corrosion.
  24. Chakravarti, Shrikar; Drnevich, Raymond F.; Stuckert, Ines C.; Shah, Minish M., Method and system for producing a synthesis gas using an oxygen transport membrane based reforming system with secondary reforming and auxiliary heat source.
  25. Chakravarti, Shrikar; Drnevich, Raymond F.; Stuckert, Ines C.; Shah, Minish M., Method and system for producing hydrogen using an oxygen transport membrane based reforming system with secondary reforming.
  26. Stuckert, Ines C.; Chakravarti, Shrikar; Drnevich, Raymond F., Method and system for producing methanol using an integrated oxygen transport membrane based reforming system.
  27. Gonzalez, Javier E.; Grant, Arthur F., Method for sealing an oxygen transport membrane assembly.
  28. Kelly, Sean M.; Swami, Sadashiv M.; Peck, John D., Method of thermally-stabilizing an oxygen transport membrane-based reforming system.
  29. Mackay Richard ; Schwartz Michael ; Sammells Anthony F., Methods for separating oxygen from oxygen-containing gases.
  30. Cable Thomas L. ; Petrik Michael A. ; Lee Benson P., Microspheres for combined oxygen separation, storage and delivery.
  31. Sammells, Anthony F., Mixed conducting membrane for carbon dioxide separation and partial oxidation reactions.
  32. Pamela Van Calcar ; Richard Mackay ; Anthony F. Sammells, Mixed ionic and electronic conducting ceramic membranes for hydrocarbon processing.
  33. Van Calcar, Pamela; Mackay, Richard; Sammells, Anthony F., Mixed ionic and electronic conducting ceramic membranes for hydrocarbon processing.
  34. Chen Chieh-Cheng ; Prasad Ravi, Multi-phase solid electrolyte ionic transport membrane and method for fabricating same.
  35. Bitterlich, Stefan; Voss, Hartwig; Hibst, Hartmut; Tenten, Andreas; Voigt, Ingolf; Pippardt, Ute, Oxidative reactions using membranes that selectively conduct oxygen.
  36. Farrusseng, David; Mirodatos, Claude; Rebeilleau, Michael; Van Veen, André ; Rushworth, Simon; Rousset, Jean-Luc, Oxygen conducting membranes, preparation method thereof, and reactor and method using same.
  37. Mazanec Terry J. (Solon OH) Cable Thomas L. (Newbury OH), Oxygen permeable mixed conductor membranes.
  38. Mazanec Terry J. ; Cable Thomas L., Oxygen permeable mixed conductor membranes.
  39. Terry J. Mazanec ; Thomas L. Cable, Oxygen production process.
  40. Mazanec, Terry J.; Cable, Thomas L., Oxygen separation process.
  41. Kromer, Brian R.; Litwin, Michael M.; Kelly, Sean M., Oxygen transport membrane based advanced power cycle with low pressure synthesis gas slip stream.
  42. Kelly, Sean M.; Chakravarti, Shrikar; Li, Juan, Oxygen transport membrane reactor based method and system for generating electric power.
  43. Carolan, Michael Francis; Dyer, legal representative, Kathryn Beverly; Wilson, Merrill Anderson; Ohrn, Ted R.; Kneidel, Kurt E.; Peterson, David; Chen, Christopher M.; Rackers, Keith Gerard; Dyer, Paul Nigel, Planar ceramic membrane assembly and oxidation reactor system.
  44. Carolan,Michael Francis; Dyer, legal representative,Kathryn Beverly; Wilson,Merrill Anderson; Ohm,Ted R.; Kneidel,Kurt E.; Peterson,David; Chen,Christopher M.; Rackers,Keith Gerard; Dyer, deceased,Paul Nigel, Planar ceramic membrane assembly and oxidation reactor system.
  45. Lee, Kew-Ho; Lee, Dong-Wook; Lee, Yoon-Kyu; Sea, Bong-Kuk; Nam, Seung-Eun, Preparation of composite silica membranes with thermal stability by a soaking-rolling method.
  46. Steynberg, Andre; Lipski, Roy, Process for operating an integrated gas-to-liquids facility.
  47. Steynberg, Andre; Lipski, Roy, Process for operating an integrated gas-to-liquids facility.
  48. Keskar Nitin Ramesh ; Prasad Ravi, Process for reducing carbon production in solid electrolyte ionic conductor systems.
  49. Keskar Nitin Ramesh ; Prasad Ravi ; Gottzmann Christian Friedrich, Process for reducing carbon production in solid electrolyte ionic conductor systems.
  50. Nataraj Shankar ; Moore Robert Byron ; Russek Steven Lee, Production of synthesis gas by mixed conducting membranes.
  51. Chen Chieh Cheng ; Prasad Ravi ; Gottzmann Christian Friedrich, Solid electrolyte membrane with porous catalytically-enhancing constituents.
  52. Mazanec Terry J. (Solon OH) Cable Thomas L. (Newbury OH) Frye ; Jr. John G. (Solon OH) Kliewer Wayne R. (Solon OH), Solid multi-component membranes, electrochemical reactor components, electrochemical reactors and use of membranes, reac.
  53. Schwartz Michael ; White James H. ; Sammells Anthony F., Solid state oxygen anion and electron mediating membrane and catalytic membrane reactors containing them.
  54. Schwartz Michael ; White James H. ; Sammels Anthony F., Solid state oxygen anion and electron mediating membrane and catalytic membrane reactors containing them.
  55. Schwartz, Michael; White, James H.; Sammells, Anthony F., Solid state oxygen anion and electron mediating membrane and catalytic membrane reactors containing them.
  56. White James H. ; Schwartz Michael ; Sammells Anthony F., Solid state proton and electron mediating membrane and use in catalytic membrane reactors.
  57. Mazanec Terry J. (Solon OH) Cable Thomas L. (Newbury OH) Frye ; Jr. John G. (Solon OH) Kliewer Wayne R. (Solon OH), Solid-component membranes electrochemical reactor components electrochemical reactors use of membranes reactor component.
  58. Nataraj Shankar ; Russek Steven Lee, Synthesis gas production by ion transport membranes.
  59. Nataraj Shankar ; Russek Steven Lee, Synthesis gas production by ion transport membranes.
  60. Nataraj Shankar ; Russek Steven Lee ; Dyer Paul Nigel, Synthesis gas production by mixed conducting membranes with integrated conversion into liquid products.
  61. Kelly, Sean M., System and method for air temperature control in an oxygen transport membrane based reactor.
  62. Kelly, Sean M., System and method for temperature control in an oxygen transport membrane based reactor.
  63. Keskar Nitin Ramesh ; Prasad Ravi ; Gottzmann Christian Friedrich, Temperature control in a ceramic membrane reactor.
  64. Dyer Paul N. (Allentown PA) Bright Jeffrey D. (Salt Lake City UT) Carolan Michael F. (Allentown PA) Minford Eric (Laurys Station PA) Richards Robin E. (Lansdale PA) Russek Steven L. (Allentown PA) Ta, Tubular solid-state membrane module.
  65. Michael Schwartz ; James H. White ; Anthony F. Sammells, Two component-three dimensional catalysis.
  66. Nataraj Shankar ; Russek Steven Lee, Utilization of synthesis gas produced by mixed conducting membranes.
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