Patents Assigned to Johnson Matthey
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Patent number: 11980871Abstract: The present invention relates to a catalyst article for the exhaust system of a natural gas engine with improved sulphur and/or water tolerance. The catalyst article comprises a doped palladium-on-alumina catalyst, wherein the palladium-on-alumina catalyst is doped with manganese and/or zinc. The invention further relates to an exhaust gas treatment system, a natural gas combustion engine and to a method for the treatment of an exhaust gas from a natural gas combustion engine.Type: GrantFiled: October 6, 2022Date of Patent: May 14, 2024Assignee: Johnson Matthey Public Limited CompanyInventors: Moyahabo Hellen Chuma, Glenn Jones, Jane Ngima Mugo, Agnes Raj
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Patent number: 11975908Abstract: The use of a palladium-doped zeolite for the adsorption of volatile organic compounds is described wherein the zeolite has a CHA framework type and is polymer-bound. Such zeolites have been found to have particular utility as packaging materials for the adsorption of volatile organic compounds, such as those originating from organic matter.Type: GrantFiled: October 31, 2022Date of Patent: May 7, 2024Assignee: Johnson Matthey Public Limited CompanyInventors: Andrew William John Smith, Andrew Cornish, Han Xu, Jhonny Rodrigues Ramos
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Patent number: 11958040Abstract: A method is described for preparing an eggshell catalyst comprising the steps of: (i) preparing a calcined shaped alkaline earth metal aluminate catalyst support, (ii) treating the calcined shaped alkaline earth metal aluminate support with a gas containing water vapour to form a hydrated support, (iii) with or without an intervening drying step, impregnating the hydrated support with an acidic solution containing one or more catalytic metal compounds and drying the impregnated support, (iv) calcining the dried impregnated support, to form a calcined catalyst having a catalytic metal oxide concentrated at the surface of the support and (v) optionally repeating steps (ii), (iii) and (iv).Type: GrantFiled: April 30, 2020Date of Patent: April 16, 2024Assignee: Johnson Matthey Public Limited CompanyInventors: Mikael Carlsson, Mark Alexander Kent, Stefano Martinuzzi, Shanneal Readman, John West
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Patent number: 11926527Abstract: A method is described for controlling a furnace containing a plurality of catalyst-containing tubes heated by a combustion gas generated by a plurality of burners, said method comprising the steps of: (i) measuring path-averaged combustion gas temperatures on multiple paths through the furnace using tunable diode laser absorption spectroscopy, (ii) periodically measuring temperatures of surfaces within the furnace to obtain periodic surface temperature information, (iii) entering the path-averaged combustion gas temperatures and periodic surface temperature information into a computer model of the furnace, said model comprising parameters for controlling the furnace; and (iv) using the computer model and the temperature information to obtain optimised parameters for controlling the furnace. A system for performing the method is also described.Type: GrantFiled: August 30, 2019Date of Patent: March 12, 2024Assignee: Johnson Matthey Public Limited CompanyInventors: Matthew John Cousins, Michael Davies, John David Pach
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Patent number: 11904305Abstract: A catalytic composition for treating a NOx-containing exhaust gas, wherein the composition comprises a copper-substituted zeolite comprising: i) Ce in a total amount of about 0.1 to about 200 g/ft3; and ii) Mn in a total amount of about 0.1 to about 200 g/ft3.Type: GrantFiled: May 6, 2022Date of Patent: February 20, 2024Assignee: Johnson Matthey Public Limited CompanyInventors: Daniel Avis, Alexander Nicholas Michael Green, Matthew Eben Harris, Carmelo Iacono, Caitlin Jenkins, Alanna Murphy
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Patent number: 11892336Abstract: An apparatus for determining a vertical level or density of a material column including one or more of a granular solid, a wet granular solid, a slurry, and a suspension, the apparatus having a support member; and at least one measurement module, wherein the measurement module includes a support arm mounted to the support member and extending outwardly from the support member; a displacer mounted to the support arm, and a force measurement device configured to measure a force attributable to a mass of the displacer mediated by a buoyancy of the displacer in the material column, wherein the measurement module has a data connection to a data processing unit for transmitting measurement data from the measurement module to the data processing unit to generate level or density information about the material column.Type: GrantFiled: August 18, 2020Date of Patent: February 6, 2024Assignee: Johnson Matthey Public LimitedInventor: Oliver John Beckett
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Patent number: 11883805Abstract: A catalytic composition for treating a NOx-containing exhaust gas, wherein the composition comprises a copper-substituted small-pore zeolite comprising: i) Ce and/or La in a total amount of about 5 to about 400 g/ft3; and ii) Nd and/or Nb in a total amount of about 5 to about 400 g/ft3.Type: GrantFiled: May 12, 2022Date of Patent: January 30, 2024Assignee: Johnson Matthey Public Limited CompanyInventors: Daniel Avis, Yannick Bidal, Alexander Nicholas Michael Green, Neil Greenham, Matthew Eben Harris
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Patent number: 11873994Abstract: The present disclosure is directed to a system comprising a recuperated gas turbine engine with a catalytic combustor, and methods of operating the same, the catalytic combustor comprising: (a) an upstream section comprising an electrical heater and (b) a downstream catalyst section, wherein the upstream section and the downstream catalyst section are disposed adjacent to and in fluid communication with one another.Type: GrantFiled: November 13, 2019Date of Patent: January 16, 2024Assignees: Johnson Matthey Public Limited Company, Delta Motorsport LimitedInventors: Nick Carpenter, Guy Chandler, Jeremy Gidney, Scott Herring, Chris Morgan, Timothy O'Connell, Mark Wilksch
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Patent number: 11857925Abstract: A catalyst article including a substrate with an inlet side and an outlet side, a first zone and a second zone, where the first zone includes a passive NOx adsorber (PNA), and an ammonia slip catalyst (ASC) comprising a platinum group metal on a support and a first SCR catalyst; where the second zone includes a catalyst selected from the group consisting of a diesel oxidation catalyst (DOC) and a diesel exotherm catalyst (DEC); and where the first zone is located upstream of the second zone. The first zone may include a bottom layer with a blend of: (1) the platinum group metal on a support and (2) the first SCR catalyst; and a top layer with a second SCR catalyst, the top layer located over the bottom layer.Type: GrantFiled: February 9, 2021Date of Patent: January 2, 2024Assignee: Johnson Matthey Public Limited CompanyInventors: Hai-Ying Chen, Joseph Fedeyko, Dongxia Liu, Jing Lu
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Patent number: 11851394Abstract: A process for synthesising methanol comprising the steps of (i) forming a synthesis gas containing hydrogen, carbon monoxide and carbon dioxide from a hydrocarbon feedstock in a reforming unit; (ii) cooling the synthesis gas in one or more stages of heat exchange, and recovering process condensate from the cooled synthesis gas; (iii) passing a feed gas comprising the make-up gas to a methanol synthesis loop comprising one or more methanol synthesis reactors; (iv) recovering a product gas mixture containing methanol from the methanol synthesis loop, cooling the product gas mixture to below the dew point to condense crude methanol, and separating the crude methanol from an unreacted gas mixture; and (v) recycling a portion of the unreacted gas mixture to the methanol synthesis loop and recovering a portion of the unreacted gas mixture as a purge gas stream.Type: GrantFiled: May 11, 2020Date of Patent: December 26, 2023Assignee: Johnson Matthey Davy Technologies LimitedInventor: Simon Robert Early
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Patent number: 11851393Abstract: A process for synthesising methanol is described comprising the steps of (i) forming a synthesis gas containing hydrogen, carbon monoxide and carbon dioxide from a hydrocarbon feedstock in a reforming unit comprising a heat exchange reformer and autothermal reformer in series; (ii) cooling the synthesis gas in the heat exchange reformer and one or more further stages of heat exchange, and recovering process condensate from the cooled synthesis gas to form a make-up gas; (iii) passing a feed gas comprising the make-up gas to a methanol synthesis loop comprising one or more methanol synthesis reactors; (iv) recovering a product gas mixture containing methanol from the methanol synthesis loop, and separating the crude methanol from an unreacted gas mixture; and (v) recycling a portion of the unreacted gas mixture to the methanol synthesis loop and recovering a portion of the unreacted gas mixture as a purge gas stream.Type: GrantFiled: May 11, 2020Date of Patent: December 26, 2023Assignee: Johnson Matthey Davy Technologies LimitedInventor: Simon Robert Early
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Patent number: 11845063Abstract: A method of manufacturing a catalyst article, the method comprising: providing a complex of a polyphenol and a PGM, the PGM comprising rhodium and/or platinum, the polyphenol comprising an ester functional group; providing a support material; applying the complex to the support material to form a loaded support material; disposing the loaded support material on a substrate; and heating the loaded support material to form nanoparticles of the PGM on the support material.Type: GrantFiled: June 8, 2022Date of Patent: December 19, 2023Assignee: Johnson Matthey Public Limited CompanyInventors: Qinghe Zheng, Jing Lu, Michael Howard
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Patent number: 11845065Abstract: A method of manufacturing a catalyst article, the method comprising: providing a complex of a polyphenol and a PGM, the polyphenol comprising an ester functional group, the PGM comprising palladium; providing a support material; applying the complex to the support material to form a loaded support material; disposing the loaded support material on a substrate; and heating the loaded support material to form nanoparticles of the PGM on the support material.Type: GrantFiled: June 8, 2022Date of Patent: December 19, 2023Assignee: Johnson Matthey Public Limited CompanyInventors: Qinghe Zheng, Jing Lu, Michael Howard
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Patent number: 11833500Abstract: An addition system for introducing particulate material into an industrial process is disclosed. The addition system comprises a vessel for holding the particulate material, wherein the vessel has a top and a bottom; one or more weighing devices; a controller for controlling operation of the addition system; a base plate to support the vessel and optionally the controller; and three or more legs, each leg having an uppermost section that connects to the vessel and a foot that is connected to the base plate. The widest diameter of the vessel is less than the diameter of a circle drawn through the feet of the legs. The one or more weighing device are mounted on the base plate and support the legs of the vessel.Type: GrantFiled: July 8, 2020Date of Patent: December 5, 2023Assignee: Johnson Matthey Process Technologies, IncInventors: Martin Evans, Ashim Mukerjee, Gary Pauley, Rahul Prasad
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Patent number: 11833498Abstract: A withdrawal system for withdrawing particulate matter from a high-temperature unit of a high-temperature industrial process is disclosed. The withdrawal system comprises a material storage silo that comprises a vent line containing a first vent valve, one or more temperature sensors to measure temperature of the particulate matter in the material transfer line, and a controller that receives output measurements from the one or more temperature sensors to monitor and control flow of the particulate matter. The system does not contain a receiving vessel located in the material transfer line between the high-temperature unit and the material storage silo.Type: GrantFiled: July 6, 2018Date of Patent: December 5, 2023Assignee: Johnson Matthey Process Technologies, IncInventors: Martin Evans, Rick Fisher
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Patent number: 11811073Abstract: The use of an electrocatalyst material in an anode catalyst layer, wherein the electrocatalyst material comprises a support material, the support material comprising a plurality of individual support particles or aggregates wherein each individual support particle or aggregate has dispersed thereon (i) first particles and (ii) second particles, wherein: (i) the first particles comprise Pt optionally alloyed with an alloying metal X1; wherein the optional alloying metal X1 is selected from the group consisting of Rh, Ti, Os, V, Co, Ni, Ga, Hf, Sn, Ir, Pd, Mo, Zn, W, Zr and Re; (ii) the second particles consist essentially of a second metal or a second metal compound wherein the second metal is selected from the group consisting of Ir and Ru and the second metal compound comprises IrX2 wherein X2 is selected from the group consisting of Ta, Nb, Ru, Ni and Co; and wherein if the first particles consist of Pt then the second particles do not comprise IrTa; and wherein if the first particles consist of Pt withoutType: GrantFiled: November 22, 2018Date of Patent: November 7, 2023Assignee: Johnson Matthey Hydrogen Technologies LimitedInventors: Alejandro Martinez Bonastre, Jonathan Sharman, Geoffrey Spikes
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Patent number: 11794170Abstract: A three-way catalyst article, and its use in an exhaust system for internal combustion engines, is disclosed. The catalyst article for treating exhaust gas comprising: a substrate; and a first catalytic region on the substrate; wherein the first catalytic region comprises a first PGM component and a first inorganic oxide, wherein the IR intensity ratio of bridge CO to atop CO on the PGM component is less than 3:1 under standard CO adsorption procedure.Type: GrantFiled: November 18, 2021Date of Patent: October 24, 2023Assignee: Johnson Matthey Public Limited CompanyInventors: Yuan Jing, Shuhei Nagaoka, Ken-ichi Shimizu, Takashi Toyao
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Patent number: 11786885Abstract: A method of manufacturing a catalyst article, the method comprising: providing a slurry comprising a support material, palladium ions, alkaline-earth-metal ions and an organic compound, wherein the organic compound comprises a functional group selected from a sulfo group (—SO3H), a sulfonyl group (—S(?O)2—) and a sulfinyl group (—S(?O)—); disposing the slurry on a substrate; and heating the slurry to form nanoparticles of the palladium and nanoparticles of a sulfate of the alkaline earth metal on the support material.Type: GrantFiled: August 10, 2022Date of Patent: October 17, 2023Assignee: Johnson Matthey Public Limited CompanyInventors: Daniel Peter DePuccio, Kevin Charles Kistler, Dongxia Liu
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Patent number: 11788450Abstract: A three-way catalyst article, and its use in an exhaust system for internal combustion engines, is disclosed. The catalyst article for treating exhaust gas comprising: a substrate comprising an inlet end and an outlet end with an axial length L; a first catalytic region comprising a first platinum group metal (PGM) component supported on a first PGM support material, wherein the first PGM component comprises rhodium (Rh) and platinum (Pt); and wherein Pt and Rh has a weight ratio of at least 1:10.Type: GrantFiled: October 19, 2021Date of Patent: October 17, 2023Assignee: Johnson Matthey Public Limited CompanyInventors: Paul Millington, Maria C. Vlachou
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Patent number: 11764367Abstract: A catalyst layer comprising: (i) a platinum-containing electrocatalyst; (ii) oxygen evolution reaction electrocatalyst; (iii) one or more carbonaceous materials selected from the group consisting of graphite, nanofibres, nanotubes, nanographene platelets and low surface area, heat-treated carbon blacks wherein the one or more carbonaceous materials do not support the platinum-containing electrocatalyst; and (iv) proton-conducting polymer and its use in an electrochemical device is disclosed.Type: GrantFiled: September 27, 2021Date of Patent: September 19, 2023Assignee: Johnson Matthey Hydrogen Technologies LimitedInventors: Sarah Louise Burton, Angus John Dickinson, Julie O'Sullivan