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Ceramic composite electrolytic device and method for manufacture thereof 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H01M-008/10
출원번호 US-0020204 (1998-02-06)
발명자 / 주소
  • Cubukcu Esin
  • Dahar Steve
  • Dodeja Ravi
  • Gordon Arnold Z.
  • Kalynchuk Daniel
  • Prince Troy Shannon
  • Soltesz Justin
  • Waite Mike
  • Chawla Sandeep
출원인 / 주소
  • IGR Enterprises, Inc.
대리인 / 주소
    Calfee, Halter & Griswold LLP
인용정보 피인용 횟수 : 56  인용 특허 : 58

초록

An electrical power generating device having a plurality of ceramic composite cells, each cell having a cathode and an anode. A thermal shell in which the ceramic composite cells are stacked or arranged in electrical series and gas parallel surrounded by shock absorbing and insulating materials, res

대표청구항

[ We claim:] [1.] A ceramic composite electrolytic device for generating electrical power comprising:a plurality of electrically connected solid state electrolytic electrical power generating cells, each of said cells including a ceramic composite body with first and second electrically conductive p

이 특허에 인용된 특허 (58)

  1. Kawasaki Shinji (Nagoya JPX) Yoshioka Katsuki (Himeji JPX), Air electrode bodies for solid oxide fuel cells, a process for the production thereof, and a production of solid oxide f.
  2. Soma Takao (Nishikamo JPX) Kawasaki Shinji (Nagoya JPX) Yoshioka Katsuki (Nagoya JPX), Cell units for solid oxide fuel cells and power generators using such cell units.
  3. Adlhart Otto (Fair Lawn NJ), Demand responsive hydrogen generator based on hydride water reaction.
  4. Arai Toshio (Toyama JPX) Sato Masaki (Ichikawa JPX) Yoshimura Takayoshi (Kurobe JPX) Tamura Minoru (Uozu JPX), Dense substrate for solid oxide fuel cell.
  5. Kobayashi Shozo (Nagaokakyo JPX) Shiratori Akira (Nagaokakyo JPX) Takagi Hiroshi (Nagaokakyo JPX) Sakabe Yukio (Nagaokakyo JPX), Distributor for a solid oxide fuel cell and manufacturing process thereof.
  6. Shen Yousheng (Salt Lake City UT) Joshi Ashok V. (Salt Lake City UT) Taylor Dale M. (Salt Lake City UT) Boettcher Michael J. (West Jordan UT) Krist Kevin (Palatine IL) Virkar Anil V. (Salt Lake City , Enhancement of mechanical properties of ceramic membranes and solid electrolytes.
  7. Ippommatsu Masamichi (Hyogo JPX) Suzuki Minoru (Osaka JPX) Sasaki Horikazu (Osaka JPX) Otoshi Shoji (Osaka JPX) Ohnishi Hisao (Osaka JPX), Fuel electrode for solid electrolyte fuel cells and a method for manufacture of the electrode.
  8. Gordon Arnold Z. (Beachwood OH), Gas separation system.
  9. Hsu Michael S. (Lincoln MA) Wei Irvine W. (Lexington MA), High efficiency energy conversion and treatment of organic waste.
  10. Saito Makoto (Hyogo JPX) Mizoguchi Takao (Hyogo JPX), High toughness ceramic composites consisting of ceramic body reinforced with metal fiber.
  11. Khandkar Ashok C. (Salt Lake City UT) Milliken Christopher E. (Salt Lake City UT) Elangovan S. (Sandy UT), High-performance ceramic interconnect for SOFC applications.
  12. Micheli Paul L. (Sacramento CA) Williams Mark C. (Morgantown WV) Sudhoff Frederick A. (Morgantown WV), Indirect-fired gas turbine dual fuel cell power cycle.
  13. Domeracki William F. (Lake Mary FL) Lundberg Wayne L. (Pittsburgh PA) Dowdy Thomas E. (Orlando FL) Linder JoAnn M. (Clifton Park NY), Integrated gas turbine solid oxide fuel cell system.
  14. Yoshimura Takayoshi (Kurobe JPX) Sato Masaki (Ichikawa JPX) Arai Toshio (Toyama JPX), Interconnection material for solid oxide fuel cell.
  15. Towe, Carey A., Method for forming a solid oxide fuel cell.
  16. Kawasaki Shinji (Nagoya JPX) Ito Shigenori (Kasugai JPX) Okumura Kiyoshi (Nagoya JPX), Method for manufacturing solid oxide film and method for manufacturing solid oxide fuel cell using the solid oxide film.
  17. Soma Takao (Nishikamo JPX) Takahashi Tomonori (Chita JPX) Kawasaki Shinji (Nagoya JPX) Yoshioka Katsuki (Himeji JPX), Method for operating a power generator.
  18. Matsuzaki Yoshio (Tokyo JPX), Method for preparing anode for solid oxide fuel cells.
  19. Minh Nguyen Q. (Fountain Valley CA) Horne Craig R. (Redondo Beach CA), Method of fabricating a monolithic solid oxide fuel cell.
  20. Arai Toshio (Toyama JPX) Sato Masaki (Ichikawa JPX) Yoshimura Takayoshi (Kurobe JPX) Tamura Minoru (Uozu JPX), Method of manufacturing solid oxide fuel cell.
  21. Chikagawa Osamu (Nagaokakyo JPX) Takagi Hiroshi (Nagaokakyo JPX) Iha Michiaki (Nagaokakyo JPX), Method of producing a solid oxide fuel cell.
  22. Kawasaki Shinji (Nagoya JPX) Okumura Kiyoshi (Nagoya JPX) Yoshioka Katsuki (Nagoya JPX), Method of producing electrically conductive ceramic film for interconnectors of solid oxide fuel cells.
  23. Russell Donald H. (Cherry Hill NJ), Microencapsulated oxygen generators.
  24. Minh Nguyen Q. (Fountain Valley CA) Stillwagon Thomas L. (Long Beach CA), Monolithic solid oxide fuel cells with integral manifolds.
  25. Lockhart Thomas P. (Lodi ITX) Piro Giampietro (Milan ITX) Gagliardi Federica (Castellanza ITX) Zanibelli Laura (Milan ITX), Nickel cermet, and process for preparing it.
  26. Misawa Hidenobu (Toyoake JPX) Seike Shoji (Nagoya JPX), Power generating equipment.
  27. Minh Nguyen Q. (Fountain Valley CA), Preparation of a solid oxide fuel cell having thin electrolyte and interconnect layers.
  28. Nishioka Masao (Tokoname JPX) Yamada Hirotake (Nagoya JPX), Process for producing solid oxide fuel cells.
  29. Zafred Paolo R. (Pittsburgh PA) Dederer Jeffrey T. (Valencia PA) Gillett James E. (Greensburg PA) Basel Richard A. (Plub Borough PA) Antenucci Annette B. (Pittsburgh PA), Purge gas protected transportable pressurized fuel cell modules and their operation in a power plant.
  30. Worrell Wayne (Narberth PA) Han Ping (Monroeville PA) Uchimoto Yoshiharu (Drexel Hill PA), Single-component solid oxide bodies.
  31. Ito Shigenori (Kasugai JPX) Okumura Kiyoshi (Tajimi JPX) Yoshioka Katsuki (Nagoya JPX), Solid electrolyte film, solid oxide fuel cell comprising such a solid electrolyte film, and processes for producing such.
  32. Aitken Bruce G. (Corning NY) Faber Margaret K. (Corning NY) Ketcham Thomas D. (Big Flats NY) St. Julien Dell J. (Watkins Glen NY), Solid electrolyte fuel cells.
  33. Kawasaki Shinji (Nagoya JPX) Ito Shigenori (Kasugai JPX) Yoshioka Katsuki (Nagoya JPX), Solid electrolyte type fuel cell and method for producing the same.
  34. 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.
  35. Anzai Iwao (Yokohama JPX) Matsuoka Shigeki (Yokohama JPX) Uehara Jun (Yokohama JPX), Solid oxide fuel cell.
  36. Bagger Carsten (Roskilde DKX) Kindl Bruno (Roskilde DKX) Mogensen Mogens (Lynge DKX), Solid oxide fuel cell.
  37. Ishihara Takeshi (Toyoake JPX) Misawa Hidenobu (Toyoake JPX) Yamada Satoru (Nagoya JPX), Solid oxide fuel cell.
  38. Shiratori Akira (Nagaokakyo JPX) Takagi Hiroshi (Nagaokakyo JPX), Solid oxide fuel cell.
  39. Shiratori Akira (Nagaokakyo JPX) Takagi Hiroshi (Nagaokakyo JPX) Kobayashi Shozo (Nagaokakyo JPX), Solid oxide fuel cell.
  40. Taira Hiroaki (Nagaokakyo JPX) Iha Michiaki (Nagaokakyo JPX) Takagi Hiroshi (Nagaokakyo JPX), Solid oxide fuel cell and manufacturing method thereof.
  41. Taira Hiroaki (Nagaokakyo JPX) Iha Michiaki (Nagaokakyo JPX) Takagi Hiroshi (Nagaokakyo JPX), Solid oxide fuel cell and manufacturing method thereof.
  42. Sato Masaki (Ichikawa JPX) Arai Toshio (Toyama JPX) Yoshimura Takayoshi (Kurobe JPX), Solid oxide fuel cell and method for manufacturing the same.
  43. Ishida Yoshihiko (Nagoya JPX), Solid oxide fuel cell and method for producing the same.
  44. Gordon Arnold Z. (Beachwood OH), Solid oxide fuel cell assembly.
  45. Di Croce A. Michael (Murrysville PA) Draper Robert (Churchill Boro PA), Solid oxide fuel cell generator.
  46. Draper Robert (Churchill Boro) George Raymond A. (Pittsburgh) Shockling Larry A. (Plum Borough PA), Solid oxide fuel cell generator.
  47. Yoshimura Takayoshi (Kurobe JPX) Sato Masaki (Funabashi JPX) Arai Toshio (Toyama JPX), Solid oxide fuel cell generator.
  48. Gardner Frederick J. (Derby GB2) Day Michael J. (Derby GB2) Brandon Nigel P. (Leicestershire GB2) Brownell John B. (Derbyshire GB2), Solid oxide fuel cell stack.
  49. Gardner Frederick J. (Derby GB2) Day Michael J. (Derby GB2) Brandon Nigel P. (Leicestershire GB2) Brownell John B. (Derbyshire GB2), Solid oxide fuel cell stack.
  50. Gardner Frederick J. (Derby GB2) Day Michael J. (Derby GB2) Brandon Nigel P. (Leicestershire GB2) Brownell John B. (Derbyshire GB2), Solid oxide fuel cell stack.
  51. Gibson Richard (Torrance CA) MacKnight Allen (Lakewood CA), Solid oxide fuel cell stacking assembly.
  52. Yasuo Takashi (Osaka JPX) Akiyama Yukinori (Osaka JPX) Ishida Noboru (Osaka JPX) Murakami Shuzo (Osaka JPX) Saitoh Toshihiko (Kyoto JPX), Solid oxide fuel cell system.
  53. McPheeters Charles C. (Naperville IL) Nelson Paul A. (Wheaton IL) Dees Dennis W. (Downers Grove IL), Solid oxide fuel cell with single material for electrodes and interconnect.
  54. Kawasaki Shinji (Nagoya JPX) Ito Shigenori (Kasugai JPX), Solid oxide fuel cells and process for the production of the same.
  55. Kawasaki Shinji (Nagoya JPX) Ito Shigenori (Kasugai JPX) Yoshioka Katsuki (Himeji JPX), Solid oxide fuel cells, a process for producing solid electrolyte films and a process for producing solid oxide fuel cel.
  56. Ishida Yoshihiko (Nagoya JPX), Solid oxide fuel electrodes and process for producing.
  57. Ishida Yoshihiko (Nagoya JPX), Solid oxide fuel electrodes and process for producing the same.
  58. Gordon Arnold Z. (Lyndhurst OH), Solid state electrochemical pollution control device.

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  4. Warrier, Sunil G.; Yamanis, Jean; Tulyani, Sonia; Benn, Raymond C., Compliant seals for solid oxide fuel cell stack.
  5. Agace, Stephen J., Container for radioactive waste.
  6. Poschmann, Thomas; Zur Megede, Detlef, Container for receiving an operating means for the operation of fuel cells.
  7. Gore, Makarand P., Electrochemical device.
  8. Pan, Alfred I-Tsung, Flex based fuel cell.
  9. Keegan, Kevin R., Fluid distribution surface for solid oxide fuel cells.
  10. Mogi, Satoshi; Shibata, Masaaki, Fuel cell and method of operating fuel cell.
  11. Fuglevand, William A.; Bayyuk, Shiblihanna I.; Lloyd, Greg; Devries, Peter D.; Lott, David R.; Scartozzi, John P., Fuel cell power systems and methods of controlling a fuel cell power system.
  12. England, Diane M.; Kelly, Sean M.; Mukerjee, Subhasish, Fuel cell stack having foil interconnects and laminated spacers.
  13. Sarkar, Partho; Richardson, Mark; Yamarte, Luis, Fuel cell support structure.
  14. Mardilovich,Peter; Thirukkovalur,Niranjan; Champion,David; Herman,Gregory; O'Neil,James, Fuel cell with embedded current collector.
  15. England,Diane M., Gasket material for a fuel cell.
  16. Gilman,John; Kearl,Daniel A, High temperature seal.
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  20. Sarkar, Partho; Johanson, Lorne; Rho, Hongsang, Metal-supported tubular micro-fuel cell.
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  22. Berkowitz, Fred; Ghantous, Dania; Maluf, Nadim; Peabody, Christina, Method and circuitry to adaptively charge a battery/cell.
  23. Berkowitz, Fred; Ghantous, Dania; Maluf, Nadim; Peabody, Christina, Method and circuitry to adaptively charge a battery/cell.
  24. Berkowitz, Fred; Maluf, Nadim; Ghantous, Dania, Method and circuitry to adaptively charge a battery/cell.
  25. Berkowitz, Fred; Maluf, Nadim; Ghantous, Dania, Method and circuitry to adaptively charge a battery/cell.
  26. Ghantous, Dania; Berkowitz, Fred; Maluf, Nadim, Method and circuitry to adaptively charge a battery/cell.
  27. Maluf, Nadim; Ghantous, Dania; Berkowitz, Fred, Method and circuitry to adaptively charge a battery/cell.
  28. Berkowitz, Fred; Ghantous, Dania; Peabody, Christina, Method and circuitry to adaptively charge a battery/cell using a charge-time parameter.
  29. Maluf, Nadim; Ghantous, Dania; Berkowitz, Fred; Peabody, Christina, Method and circuitry to adaptively charge a battery/cell using the state of health thereof.
  30. Maluf, Nadim; Ghantous, Dania; Berkowitz, Fred; Peabody, Christina, Method and circuitry to adaptively charge a battery/cell using the state of health thereof.
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  32. Berkowitz, Fred; Ghantous, Dania; Maluf, Nadim; Peabody, Christina, Method and circuitry to calculate the state of charge of a battery/cell.
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  34. Ghantous, Dania; Berkowitz, Fred; Maluf, Nadim, Method and circuitry to calculate the state of charge of a battery/cell.
  35. Ghantous, Dania; Berkowitz, Fred; Maluf, Nadim, Method and circuitry to calculate the state of charge of a battery/cell.
  36. Maluf, Nadim; Ghantous, Dania; Berkowitz, Fred; Peabody, Christina, Method and circuitry to calculate the state of charge of a battery/cell.
  37. Ghantous, Dania; Berkowitz, Fred; Peabody, Christina; Maluf, Nadim, Method and circuitry to determine temperature and/or state of health of a battery/cell.
  38. Ghantous, Dania; Berkowitz, Fred; Peabody, Christina; Maluf, Nadim, Method and circuitry to determine temperature and/or state of health of a battery/cell.
  39. Ghantous, Dania; Maluf, Nadim; Berkowitz, Fred, Method and circuitry to determine the relaxation time of a battery/cell.
  40. Ghantous, Dania; Maluf, Nadim; Berkowitz, Fred, Method and circuitry to determine the relaxation time of a battery/cell.
  41. Singh, Krishna P.; Springman, Richard M., Method for controlling temperature of a portion of a radioactive waste storage system and for implementing the same.
  42. Pham, Ai Quoc; Glass, Robert S., Method for making thick and/or thin film.
  43. Ishikawa, Yosuke, Method of controlling battery charging.
  44. Singh, Krishna P., Method of storing high level radioactive waste.
  45. Singh, Krishna P, Method of storing high level waste.
  46. Cubukcu, Esin; Dahar, Steve; Dodeja, Ravi; Gordon, Arnold Z.; Kalynchuk, Daniel; Prince, Troy Shannon; Soltesz, Justin; Waite, Michael D., Process for making a ceramic composite device.
  47. Singh, Krishna P.; Griffiths, John D.; Mitra-Majumdar, Debabrata, System and method for reclaiming energy from heat emanating from spent nuclear fuel.
  48. Singh, Krishna P.; Griffiths, John D., System for storing high level radioactive waste.
  49. Singh, Krishna P., Systems and methods for storing spent nuclear fuel.
  50. Singh, Krishna P., Systems and methods for storing spent nuclear fuel.
  51. Singh, Krishna P., Systems and methods for storing spent nuclear fuel.
  52. Chen,Xin; Wu,Naijuan; Ignatiev,Alex, Thin film solid oxide fuel cell and method for forming.
  53. Chen,Xin; Wu,Naijuan; Ignatiev,Alex; Zhou,Yuxiang, Thin film solid oxide fuel cell with lithographically patterned electrolyte and anode layers.
  54. Sarkar, Partho; Rho, Hongsang, Tubular solid oxide fuel cell stack.
  55. Singh, Krishna P.; Griffiths, John D., Ventilated system for storing high level radioactive waste.
  56. Singh, Krishna P.; Griffiths, John D., Ventilated system for storing high level radioactive waste.
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