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Low temperature bitumen recovery process 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • C02F-001/40
출원번호 US-0328420 (1989-03-24)
발명자 / 주소
  • Sury Kohur N. (Calgary CAX)
출원인 / 주소
  • Esso Resources Canada Limited (Calgary CAX 03)
인용정보 피인용 횟수 : 90  인용 특허 : 1

초록

A low temperature process for separating bitumen from tarsands comprises slurrying tarsands in water at a temperature in the range of above about freezing to 35°C., preferably in the range of 2°to 15°C., mixing said aqueous slurry with a conditioning agent for a time sufficient to release bitumen fr

대표청구항

A process for separating and recovering bitumen from tarsands which comprise the steps of slurrying 15 to 70% by weight tarsands in water at a temperature in the range of from above about freezing to about 35°C. to form an aqueous slurry and mixing said slurry in the presence of a conditioning agent

이 특허에 인용된 특허 (1)

  1. Smith Scott L. (Salt Lake City UT), Ambient froth flotation process for the recovery of bitumen from tar sand.

이 특허를 인용한 특허 (90)

  1. Manchikanti, Maruthi Prasad; Black, Kenneth Damon; Floyd, II, Donald Earl; Crum, Gregory Allan, Bearing housing.
  2. Strand, William L., Bitumen recovery process for oil sand.
  3. Allcock Geoff,CAX ; Siy Robert,CAX ; Spence Jonathan,CAX ; Sury Ken,CAX, Cold dense slurrying process for extracting bitumen from oil sand.
  4. Sites, O. Angus; Bohra, Lalit K., Enhanced coal-bed methane production.
  5. Della-Fera, Gabriel; Denman, Todd F.; Ellis, Scott E., Erosion suppression system and method in an exhaust gas recirculation gas turbine system.
  6. Huntington, Richard A., Fuel combusting method.
  7. Minto, Karl Dean, Gas turbine combustor control system for stoichiometric combustion in the presence of a diluent.
  8. White, Eugene Delano, Gas turbine combustor diagnostic system and method.
  9. Minto, Karl Dean; Thatcher, Jonathan Carl; Rittenhouse, Brian Allen; Vorel, Aaron, Gas turbine load control system.
  10. Muthaiah, Veerappan; Anand, Ashok Kumar; Ganti, Sanyaswara Rao, Gas turbine oxidant separation system.
  11. Schwoebel Jeffrey J. ; Smith Carl W. ; Peters William J., Horizontal remote mining system, and method.
  12. Wilmoth Daryl, Jet agitation dredging system.
  13. Bacon Cochrane Diana L.,CAX ; Cochrane Patrick J.,CAX ; Bozak Wade R.,CAX ; Facey Roderick M.,CAX, Jet pump treatment of heavy oil production sand.
  14. Minta, Moses; Mittricker, Franklin F.; Rasmussen, Peter C.; Starcher, Loren K.; Rasmussen, Chad C.; Wilkins, James T.; Meidel, Jr., Richard W., Low emission power generation and hydrocarbon recovery systems and methods.
  15. Nelson, Eric D; Minta, Moses; Starcher, Loren K; Mittricker, Franklin; Sites, Omar Angus; Dickson, Jasper L, Low emission power generation and hydrocarbon recovery systems and methods.
  16. Oelfke, Russell H.; Minta, Moses, Low emission power generation systems and methods.
  17. Oelkfe, Russell H.; Huntington, Richard A.; Mittricker, Franklin F., Low emission power generation systems and methods incorporating carbon dioxide separation.
  18. Oelfke, Russell H.; Minta, Moses, Low emission triple-cycle power generation and CO2 separation systems and methods.
  19. Duma, Thomas, Mechanical processing of oil sands.
  20. Rendall John S. ; Lane Stephen J., Method and apparatus for removing bituminous oil from oil sands without solvent.
  21. Rendall John S. ; Lane Stephen J., Method and apparatus for removing bituminous oil from oil sands without solvent.
  22. Atkinson, David, Method and kit for monitoring catalyst fines in heavy fuel oil.
  23. Drake,Ronald D.; Kobler,Michael Helmut; Watson,John David, Method and means for processing oil sands while excavating.
  24. Drake,Ronald D.; Kobler,Michael Helmut; Watson,John David, Method and means for processing oil sands while excavating.
  25. Drake,Ronald D.; Kobler,Michael Helmut; Watson,John David, Method and means for processing oil sands while excavating.
  26. Watson,John David, Method and means for recovering hydrocarbons from oil sands by underground mining.
  27. Watson,John David, Method and means for recovering hydrocarbons from oil sands by underground mining.
  28. Minto, Karl Dean; Denman, Todd Franklin; Mittricker, Franklin F.; Huntington, Richard Alan, Method and system for combustion control for gas turbine system with exhaust gas recirculation.
  29. Drake, Ronald D.; Kobler, Michael Helmut; Watson, John David, Method and system for mining hydrocarbon-containing materials.
  30. Favero, Cedrick; Tizzotti, Morgan; Gaillard, Nicolas, Method for recovering bitumen from tar sands.
  31. Kobler, Michael H.; Brock, Dana, Method of collecting hydrocarbons using a barrier tunnel.
  32. Gil, Henry; Squires, Andrew, Method of controlling a recovery and upgrading operation in a reservoir.
  33. Watson, John David; Kobler, Michael Helmut; Brock, Dana, Method of drilling from a shaft for underground recovery of hydrocarbons.
  34. Watson, John David; Kobler, Michael Helmut; Brock, Dana, Method of increasing reservoir permeability.
  35. Gil, Henry; Squires, Andrew, Method of managing carbon reduction for hydrocarbon producers.
  36. Gil, Henry, Method of removing carbon dioxide emissions from in-situ recovery of bitumen and heavy oil.
  37. Mittricker, Franklin F.; Starcher, Loren K.; Rasmussen, Chad C.; Huntington, Richard A.; Hershkowitz, Frank, Methods and systems for controlling the products of combustion.
  38. Mittricker, Franklin F.; Starcher, Loren K.; Rasmussen, Chad; Huntington, Richard A.; Hershkowitz, Frank, Methods and systems for controlling the products of combustion.
  39. Kuznetsov, Oleksandr V.; Khabashesku, Valery N.; Mazyar, Oleg A.; Agrawal, Devesh Kumar, Methods of recovering bitumen from oil sands.
  40. Mittricker, Franklin F.; Huntington, Richard A.; Starcher, Loren K.; Sites, Omar Angus, Methods of varying low emission turbine gas recycle circuits and systems and apparatus related thereto.
  41. Wichmann, Lisa Anne; Simpson, Stanley Frank, Methods, systems and apparatus relating to combustion turbine power plants with exhaust gas recirculation.
  42. Strand, William L., Oil sand processing apparatus and control system.
  43. Strand, William L., Oil sand processing apparatus control system and method.
  44. Fournier, Joseph; Cuthbert, Barclay; Lavalley, Tyler; Lavalley, Trevor Grant, Oilsands processing using inline agitation and an inclined plate separator.
  45. Huntington, Richard A.; Uptigrove, Stanley O.; Oelfke, Russell H.; Sites, O. Angus, Power generation and LNG production.
  46. Dhanuka, Sulabh K.; Eaton, Michael W.; Huntington, Richard A., Power generation and methane recovery from methane hydrates.
  47. Senior,Geoffrey; Thomas,Scott; Judd,Brian, Process for sulphide concentration.
  48. Huntington, Richard A.; Denton, Robert D.; McMahon, Patrick D.; Bohra, Lalit K.; Dickson, Jasper L., Processing exhaust for use in enhanced oil recovery.
  49. Brock, Dana; Squires, Andrew; Watson, John David, Recovery of bitumen by hydraulic excavation.
  50. Beutel, Tilman W.; Dhanuka, Sulabh K., Reducing oxygen in a gas turbine exhaust.
  51. Beutel, Tilman W; Dhanuka, Sulabh K, Reducing oxygen in a gas turbine exhaust.
  52. Ophus, Kevin, Removal of hydrocarbons from particulate solids.
  53. Gupta, Himanshu; Huntington, Richard; Minta, Moses K.; Mittricker, Franklin F.; Starcher, Loren K., Stoichiometric combustion of enriched air with exhaust gas recirculation.
  54. Denton, Robert D.; Gupta, Himanshu; Huntington, Richard; Minta, Moses; Mittricker, Franklin F.; Starcher, Loren K., Stoichiometric combustion with exhaust gas recirculation and direct contact cooler.
  55. Zuo, Baifang; Ziminsky, Willy Steve; Stevenson, Christian Xavier; Slobodyanskiy, Ilya Aleksandrovich, System and method for a fuel nozzle.
  56. Huntington, Richard A.; Dhanuka, Sulabh K., System and method for a gas turbine engine.
  57. White, Eugene Delano; Beadie, Douglas Frank; Krull, Anthony Wayne; Floyd, II, Donald Earl, System and method for a gas turbine engine sensor.
  58. Stoia, Lucas John; DiCintio, Richard Martin; Melton, Patrick Benedict; Romig, Bryan Wesley; Slobodyanskiy, Ilya Aleksandrovich, System and method for a multi-wall turbine combustor.
  59. Huntington, Richard A.; Minto, Karl Dean; Xu, Bin; Thatcher, Jonathan Carl; Vorel, Aaron Lavene, System and method for a stoichiometric exhaust gas recirculation gas turbine system.
  60. Antoniono, Carolyn Ashley; Byrne, William Lawrence; Fadde, Elizabeth Angelyn, System and method for a turbine combustor.
  61. Antoniono, Carolyn Ashley; Byrne, William Lawrence; Fadde, Elizabeth Angelyn, System and method for a turbine combustor.
  62. Fadde, Elizabeth Angelyn; Byrne, William Lawrence; Antoniono, Carolyn Ashley, System and method for a turbine combustor.
  63. Valeev, Almaz Kamilevich; Ginesin, Leonid Yul'evich; Shershnyov, Borys Borysovich; Sidko, Igor Petrovich; Meshkov, Sergey Anatolievich, System and method for a turbine combustor.
  64. Vaezi, Vahid; Mittricker, Franklin F.; Huntington, Richard A., System and method for an oxidant heating system.
  65. Slobodyanskiy, Ilya Aleksandrovich; Davis, Jr., Lewis Berkley; Minto, Karl Dean, System and method for barrier in passage of combustor of gas turbine engine with exhaust gas recirculation.
  66. Muthaiah, Veerappan; Mundra, Kamlesh, System and method for catalyst heat utilization for gas turbine with exhaust gas recirculation.
  67. Minto, Karl Dean; Slobodyanskiy, Ilya Aleksandrovich; Davis, Jr., Lewis Berkley; Lipinski, John Joseph, System and method for controlling the combustion process in a gas turbine operating with exhaust gas recirculation.
  68. Kolvick, Sandra Beverly, System and method for cooling a gas turbine with an exhaust gas provided by the gas turbine.
  69. Pakkala, Srinivas, System and method for cooling discharge flow.
  70. Huntington, Richard A.; Dhanuka, Sulabh K.; Slobodyanskiy, Ilya Aleksandrovich, System and method for diffusion combustion in a stoichiometric exhaust gas recirculation gas turbine system.
  71. Huntington, Richard A.; Dhanuka, Sulabh K.; Slobodyanskiy, Ilya Aleksandrovich, System and method for diffusion combustion with fuel-diluent mixing in a stoichiometric exhaust gas recirculation gas turbine system.
  72. Huntington, Richard A.; Dhanuka, Sulabh K.; Slobodyanskiy, Ilya Aleksandrovich, System and method for diffusion combustion with oxidant-diluent mixing in a stoichiometric exhaust gas recirculation gas turbine system.
  73. Subramaniyan, Moorthi; Hansen, Christian Michael; Huntington, Richard A.; Denman, Todd Franklin, System and method for exhausting combustion gases from gas turbine engines.
  74. Huntington, Richard A.; Dhanuka, Sulabh K.; Slobodyanskiy, Ilya Aleksandrovich, System and method for load control with diffusion combustion in a stoichiometric exhaust gas recirculation gas turbine system.
  75. Huntington, Richard A.; Mittricker, Franklin F.; Starcher, Loren K.; Dhanuka, Sulabh K.; O'Dea, Dennis M.; Draper, Samuel D.; Hansen, Christian M.; Denman, Todd; West, James A., System and method for oxidant compression in a stoichiometric exhaust gas recirculation gas turbine system.
  76. Biyani, Pramod K.; Leyers, Scott Walter; Miranda, Carlos Miguel, System and method for protecting components in a gas turbine engine with exhaust gas recirculation.
  77. Biyani, Pramod K.; Saha, Rajarshi; Dasoji, Anil Kumar; Huntington, Richard A.; Mittricker, Franklin F., System and method for protecting components in a gas turbine engine with exhaust gas recirculation.
  78. Woodall, John Farrior; Evulet, Andrei Tristan; Draper, Samuel David, System and method for reheat in gas turbine with exhaust gas recirculation.
  79. O'Dea, Dennis M.; Minto, Karl Dean; Huntington, Richard A.; Dhanuka, Sulabh K.; Mittricker, Franklin F., System and method of control for a gas turbine engine.
  80. Oelfke, Russell H.; Huntington, Richard A.; Dhanuka, Sulabh K.; O'Dea, Dennis M.; Denton, Robert D.; Sites, O. Angus; Mittricker, Franklin F., Systems and methods for carbon dioxide capture in low emission combined turbine systems.
  81. Thatcher, Jonathan Carl; West, James A.; Vorel, Aaron Lavene, Systems and methods for controlling exhaust gas flow in exhaust gas recirculation gas turbine systems.
  82. Mittricker, Franklin F.; Huntington, Richard A.; Dhanuka, Sulabh K.; Sites, Omar Angus, Systems and methods for controlling stoichiometric combustion in low emission turbine systems.
  83. Troshko, Andrey A.; Leonardi, Sergio A.; Yale, David P., Systems and methods for dual reinjection.
  84. Borchert, Bradford David; Trout, Jesse Edwin; Simmons, Scott Robert; Valeev, Almaz; Slobodyanskiy, Ilya Aleksandrovich; Sidko, Igor Petrovich; Ginesin, Leonid Yul'evich, Systems and methods for high volumetric oxidant flow in gas turbine engine with exhaust gas recirculation.
  85. Yale, David P.; Troshko, Andrey A.; Leonardi, Sergio A.; Adair, Neal L., Systems and methods for injecting a particulate mixture.
  86. Minto, Karl Dean; Beadie, Douglas Frank, Systems and methods for monitoring gas turbine systems having exhaust gas recirculation.
  87. Stokes, Kristoffer K.; Soane, David, Systems and methods for oil sands processing.
  88. Vorel, Aaron Lavene; Thatcher, Jonathan Carl, Systems and methods of estimating a combustion equivalence ratio in a gas turbine with exhaust gas recirculation.
  89. Thatcher, Jonathan Carl; Slobodyanskiy, Ilya Aleksandrovich; Vorel, Aaron Lavene, Systems and methods to respond to grid overfrequency events for a stoichiometric exhaust recirculation gas turbine.
  90. Allen, Jonathan Kay; Borchert, Bradford David; Trout, Jesse Edwin; Slobodyanskiy, Ilya Aleksandrovich; Valeev, Almaz; Sidko, Igor Petrovich; Subbota, Andrey Pavlovich, Turbine system with exhaust gas recirculation, separation and extraction.
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