Patents by Inventor Dennis W. Coolidge
Dennis W. Coolidge has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Patent number: 9523039Abstract: A method for upgrading coal and other carbonaceous fuels includes subjecting the carbonaceous fuel to a pyrolyzing process, thereby forming upgraded carbonaceous fuel and a flow of lean fuel gases. Auxiliary fuel is combusted in an auxiliary fuel combustor to produce auxiliary fuel combustion gases, and the lean fuel gases are heated with the auxiliary fuel combustion gases. The heated lean fuel gases are combusted in a lean fuel combustor, thereby producing a gas stream of products of combustion, and at least a portion of the gas stream of products of combustion are directed to the pyrolyzer.Type: GrantFiled: January 29, 2015Date of Patent: December 20, 2016Assignees: Shenhua Group Corporation Limited, National Institute Of Clean-And-Low Carbon EnergyInventors: Dennis W. Coolidge, Deane A. Horne, Ronn G. Smith, Leslie C. White
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Patent number: 9327320Abstract: An apparatus and a method for dedusting coal or other material are described. The apparatus and method involve the coal or other material moving down a declined sliding bed composed of slats through which air or gas is blown to provide an air or gas cushion. Dust particles are lofted so as to separate dust from the material. Either or both of the dust and the resulting dedusted material can be collected.Type: GrantFiled: January 29, 2015Date of Patent: May 3, 2016Assignee: Green Search, LLCInventors: Dennis W. Coolidge, Richard A. Kindt, Kerry B. Tausch
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Publication number: 20150136579Abstract: A method for upgrading coal and other carbonaceous fuels includes subjecting the carbonaceous fuel to a pyrolyzing process, thereby forming upgraded carbonaceous fuel and a flow of lean fuel gases. Auxiliary fuel is combusted in an auxiliary fuel combustor to produce auxiliary fuel combustion gases, and the lean fuel gases are heated with the auxiliary fuel combustion gases. The heated lean fuel gases are combusted in a lean fuel combustor, thereby producing a gas stream of products of combustion, and at least a portion of the gas stream of products of combustion are directed to the pyrolyzer.Type: ApplicationFiled: January 29, 2015Publication date: May 21, 2015Applicant: NATIONAL INSTITUTE OF CLEAN-AND-LOW-CARBON ENERGYInventors: Dennis W. Coolidge, Deane A. Horne, Ronn G. Smith, Leslie C. White
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Patent number: 9005322Abstract: A method and apparatus for upgrading coal and other carbonaceous fuels includes subjecting the carbonaceous fuel to a pyrolyzing process, thereby forming upgraded carbonaceous fuel and a flow of lean fuel gases. Auxiliary fuel is combusted in an auxiliary fuel combustor to produce auxiliary fuel combustion gases, and the lean fuel gases are heated with the auxiliary fuel combustion gases. The heated lean fuel gases are combusted in a lean fuel combustor, thereby producing a gas stream of products of combustion, and at least a portion of the gas stream of products of combustion are directed to the pyrolyzer.Type: GrantFiled: July 12, 2011Date of Patent: April 14, 2015Assignee: National Institute of Clean and Low-Carbon Energy (NICE)Inventors: Dennis W. Coolidge, Deane A. Horne, Ronn G. Smith, Leslie C. White
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Patent number: 8968520Abstract: A method of treating untreated low calorific coal containing moisture and organic volatiles includes feeding untreated coal to a dryer, and drying the coal. The dried coal is subjected to a pyrolyzing step where oxygen-deficient gases are brought into contact with the coal, thereby lowering the volatile content of the coal and producing a stream of pyrolysis effluent gases. The pyrolysis effluent gases are subjected to a separation process to separate lean fuel gases from liquids and tars, wherein the separation process removes less than about 20 percent of the pyrolysis effluent gases as the liquids and tars, with the remainder being the lean fuel gases. The lean fuel gases are returned to the dryer combustor, the pyrolyzer combustor, or the pyrolyzer.Type: GrantFiled: June 3, 2011Date of Patent: March 3, 2015Assignee: National Institute of Clean and Low-Carbon Energy (NICE)Inventors: Dennis W. Coolidge, Deane A. Horne, Ronn G. Smith
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Publication number: 20130014441Abstract: A method and apparatus for upgrading coal and other carbonaceous fuels includes subjecting the carbonaceous fuel to a pyrolyzing process, thereby forming upgraded carbonaceous fuel and a flow of lean fuel gases. Auxiliary fuel is combusted in an auxiliary fuel combustor to produce auxiliary fuel combustion gases, and the lean fuel gases are heated with the auxiliary fuel combustion gases. The heated lean fuel gases are combusted in a lean fuel combustor, thereby producing a gas stream of products of combustion, and at least a portion of the gas stream of products of combustion are to directed to the pyrolyzer.Type: ApplicationFiled: July 12, 2011Publication date: January 17, 2013Applicant: MR & E, LTD.Inventors: Dennis W. Coolidge, Deane A. Horne, Ronn G. Smith, Leslie C. White
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Publication number: 20120305379Abstract: A method of treating untreated low calorific coal containing moisture and organic volatiles includes feeding untreated coal to a dryer, and drying the coal. The dried coal is subjected to a pyrolyzing step where oxygen-deficient gases are brought into contact with the coal, thereby lowering the volatile content of the coal and producing a stream of pyrolysis effluent gases. The pyrolysis effluent gases are subjected to a separation process to separate lean fuel gases from liquids and tars, wherein the separation process removes less than about 20 percent of the pyrolysis effluent gases as the liquids and tars, with the remainder being the lean fuel gases. The lean fuel gases are returned to the dryer combustor, the pyrolyzer combustor, or the pyrolyzer.Type: ApplicationFiled: June 3, 2011Publication date: December 6, 2012Applicant: MR&E, Ltd.Inventors: Dennis W. Coolidge, Deane A. Horne, Ronn G. Smith
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Patent number: 6464753Abstract: A method of processing flue dust that contains one or more compounds from a first group of zinc, lead and cadmium compounds, and contains iron compounds, involves heating the flue dust to cause a substantial portion of one or more of the compounds of the first group to become gas-borne. A carbonaceous material is introduced to the remaining flue dust, and the flue dust/carbonaceous material mixture is heated to cause a substantial portion of the remaining compounds from the first group to become gas-borne while retaining a substantial portion of the iron in a non-gas-borne condition. The gas-borne compounds are separated from the non-gas-borne compounds.Type: GrantFiled: June 19, 2001Date of Patent: October 15, 2002Assignee: Maumee Research & Engineering, IncorporatedInventors: Deane A. Horne, Dennis W. Coolidge
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Publication number: 20020011133Abstract: A method of processing flue dust that contains one or more compounds from a first group of zinc, lead and cadmium compounds, and contains iron compounds, involves heating the flue dust to cause a substantial portion of one or more of the compounds of the first group to become gas-borne. A carbonaceous material is introduced to the remaining flue dust, and the flue dust/carbonaceous material mixture is heated to cause a substantial portion of the remaining compounds from the first group to become gas-borne while retaining a substantial portion of the iron in a non-gas-borne condition. The gas-borne compounds are separated from the non-gas-borne compounds.Type: ApplicationFiled: June 19, 2001Publication date: January 31, 2002Inventors: Deane A. Horne, Dennis W. Coolidge
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Patent number: 5730069Abstract: A method and apparatus are provided to control the burning of a lean hydrocarbon containing gas stream under stable conditions using a combination of control logic and hardware. Temperature within the combustor is controlled by using a plurality of staging valves that adjust the amount of oxygen and auxiliary fuel supplied to the combustor burner. Oxygen level is controlled by using actuated butterfly valves that control the flow of primary air to the combustor. The system has pressure control valves for anticipating and compensating for pressure changes and resulting air flow changes as well as temperature monitors and transmitters for anticipating and correcting temperature drops.Type: GrantFiled: October 30, 1995Date of Patent: March 24, 1998Assignee: Tek-KolInventors: Dennis W. Coolidge, Timothy J. Kuhn, Franklin G. Rinker, James G. Powers
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Patent number: 5601692Abstract: A continuous process for treating a noncaking coal to form stable char. The process includes the sequential steps of drying the coal to remove moisture therefrom and form a dry coal; pyrolyzing the dry coal by progressively heating substantially all of the coal to a temperature sufficient to vaporize and remove low end volatile materials from the coal to form char and sufficient to mobilize at least a portion of high end volatile materials within the char and at least partially collapse micropores within the char. The char is then cooled to a temperature sufficient to demobilize the volatile materials within the at least partially collapsed micropores of the char to pyrolytically passivate the char. The char is then conveyed to a reaction vessel wherein a process gas having about 3%-21% by volume oxygen flows through the reaction vessel to oxidatively passivate the coal by chemisorption of oxygen.Type: GrantFiled: December 1, 1995Date of Patent: February 11, 1997Assignee: Tek-Kol PartnershipInventors: Franklin G. Rinker, Deane A. Horne, Dennis W. Coolidge, Ernest P. Esztergar
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Patent number: 5372497Abstract: According to this invention there is provided a process and apparatus for the ignition of a pilot burner in an inert atmosphere without substantially contaminating the inert atmosphere. The process includes the steps of providing a controlled amount of combustion air for a predetermined interval of time to the combustor then substantially simultaneously providing a controlled mixture of fuel and air to the pilot burner and to a flame generator. The controlled mixture of fuel and air to the flame generator is then periodically energized to produce a secondary flame. With the secondary flame the controlled mixture of fuel and air to the pilot burner and the combustion air is ignited to produce a pilot burner flame. The pilot burner flame is then used to ignited a mixture of main fuel and combustion air to produce a main burner flame.Type: GrantFiled: May 24, 1993Date of Patent: December 13, 1994Assignee: SGI InternationalInventors: Dennis W. Coolidge, Franklin G. Rinker