Carbon-oxide And Hydrogen Containing Patents (Class 252/373)
  • Patent number: 9669353
    Abstract: An alkalinity control agent is sprayed upstream of a compressor in a first impurity separator to discharge impurities containing at least sulfur oxides in exhaust gas together with drain from an aftercooler in the first impurity separator.
    Type: Grant
    Filed: September 3, 2015
    Date of Patent: June 6, 2017
    Assignee: IHI Corporation
    Inventor: Toshiyuki Naito
  • Patent number: 9650246
    Abstract: In various aspects, systems and methods are provided for integration of molten carbonate fuel cells with a Fischer-Tropsch synthesis process. The molten carbonate fuel cells can be integrated with a Fischer-Tropsch synthesis process in various manners, including providing synthesis gas for use in producing hydrocarbonaceous carbons. Additionally, integration of molten carbonate fuel cells with a Fischer-Tropsch synthesis process can facilitate further processing of vent streams or secondary product streams generated during the synthesis process.
    Type: Grant
    Filed: June 16, 2016
    Date of Patent: May 16, 2017
    Assignee: EXXONMOBIL RESEARCH AND ENGINEERING COMPANY
    Inventors: Paul J. Berlowitz, Timothy A. Barckholtz, Frank Hershkowitz
  • Patent number: 9651245
    Abstract: The present invention discloses a method of applying electric arc furnace dust in chemical looping combustion process, and particularly a method of applying electric arc furnace dust in chemical looping combustion process without releasing of zinc vapor. The method of applying electric arc furnace dust in chemical looping combustion process comprises following steps: (1) providing an electric arc furnace dust and an inert support (Al2O3) and mixing the electric arc furnace dust and the inert support (Al2O3) to obtain a mixture of the electric arc furnace dust and the inert support (Al2O3); (2) calcining the mixture of the electric arc furnace dust and the inert support (Al2O3) with high temperature to obtain another mixture of Fe2O3, ZnAl2O4, and Al2O3; (3) applying the mixture of Fe2O3, ZnAl2O4, and Al2O3 as oxygen carrier and inert support in a chemical looping combustion process.
    Type: Grant
    Filed: June 17, 2014
    Date of Patent: May 16, 2017
    Assignee: NATIONAL TSING HUA UNIVERSITY
    Inventors: Yu-Lin Kuo, Wei-Chen Huang, Young Ku, Yao-Hsuan Tseng, Chung-Sung Tan
  • Patent number: 9643906
    Abstract: A unique design for a mobile system that reforms flare gas or natural gas, using air without steam, to directly produce dimethyl ether (DME), a diesel substitute, is disclosed. The system first reforms the air-methane mixture at ambient atmospheric pressures, and then compresses the resulting CO-hydrogen-nitrogen gas mixture to up to 600 psi, and feeds it through a combined reactor which reacts the gas mixture directly into dimethyl ether. The nitrogen is returned by the system back to the atmosphere. DME is an excellent diesel fuel, and can be used to displace significantly costlier and dirtier petroleum-based diesel fuel, while solving a critical problem with flaring. For example, the over 120 billion cubic feet per year that is currently flared in North Dakota could be converted into over 3 million tons of DME.
    Type: Grant
    Filed: November 27, 2015
    Date of Patent: May 9, 2017
    Assignee: Pioneer Energy Inc.
    Inventors: Robert M Zubrin, Boris Nizamov, Thomas L Henshaw, Adam M Kortan, James Siebarth, Colin Apke, Mark Berggren
  • Patent number: 9645065
    Abstract: A flow analyzer includes a flow container, a fluid-introducing section that introduces an introduction target fluid into the flow container, a fluid control section that performs a control process that cyclically changes the flow rate or the fluid pressure of the introduction target fluid that is introduced into the flow container from the fluid-introducing section, a discharged fluid analysis section that performs a component analysis process on a discharged fluid that has been discharged from the flow container, and a frequency analysis section that performs a frequency analysis process on a discharge profile, the discharge profile being obtained from control information about the introduction target fluid and analysis results for the discharged fluid, and representing the relationship between the component ratio in the discharged fluid and time.
    Type: Grant
    Filed: May 26, 2015
    Date of Patent: May 9, 2017
    Assignees: The University of Tokyo, JEOL Ltd.
    Inventors: Shu Kobayashi, Kenji Takasugi
  • Patent number: 9630168
    Abstract: The present invention relates to a catalytic system comprising at least two catalytic zones of which at least one zone exclusively contains one or more noble metals selected from the group consisting of Rhodium, Ruthenium, Iridium, Palladium and Platinum and at least another zone contains Nickel, said catalytic system characterized in that at least one zone exclusively containing noble metals selected from the group consisting of Rhodium, Ruthenium, Iridium, Palladium and Platinum is always distinct but in contact with at least one zone containing Nickel. One or more metals selected from the group consisting of Rhodium, Ruthenium, Iridium, Palladium and Platinum are possibly added to the catalytic zone or zones comprising Nickel.
    Type: Grant
    Filed: May 31, 2011
    Date of Patent: April 25, 2017
    Assignee: ENI S.p.A.
    Inventors: Luca Eugenio Basini, Alessandra Guarinoni, Luciano Cosimo Carluccio
  • Patent number: 9623400
    Abstract: The present invention provides a catalyst for producing hydrogen and a preparing method thereof. The method includes the steps of adding a first metal source, a second metal source, a third metal source and a cerium source into a first organic solvent containing a surfactant to form a colloidal mixture, wherein a metal of the first metal source is a Group IIIB metal; a metal of the second metal source is selected from the group consisting of alkali metals, alkaline earth metals and Group IIIB metals, and a metal of the third metal source is a transition metal; calcining the colloidal mixture to form a metal solid solution; and allowing the metal solid solution to be carried on a carrier to obtain the catalyst. When the catalyst of the present invention is used for an ethanol oxidation reformation, the reaction temperature of the ethanol oxidation reformation can be significantly decreased.
    Type: Grant
    Filed: September 11, 2015
    Date of Patent: April 18, 2017
    Assignee: National Chiao Tung University
    Inventors: Chi-Shen Lee, Ping-Wen Tsai, Ho-Chen Hsieh, Yun-Sheng Chen, Yuan-Chia Chang, Sheng-Feng Weng
  • Patent number: 9616402
    Abstract: There is provided a loading tray for loading particulate material into a catalytic reactor comprising an upper tubesheet and an array of reaction tubes extending downward from the tubesheet; wherein the loading tray comprises: a loading template comprising one or more loading openings; one or more supports for spacing the loading template above the tube-sheet to form a volume between the loading template and the upper tube-sheet; and a vacuum outlet for application of suction to the volume between the loading template and the upper tubesheet.
    Type: Grant
    Filed: April 23, 2013
    Date of Patent: April 11, 2017
    Assignee: MOURIK INTERNATIONAL B.V.
    Inventor: Petrus Paulus Gerardus Marie Knubben
  • Patent number: 9598653
    Abstract: Efficient coal pre-processing systems (69) integrated with gasification, oxy-combustion, and power plant systems include a drying chamber (28), a volatile metal removal chamber (30), recirculated gases, including recycled carbon dioxide (21), nitrogen (6), and gaseous exhaust (60) for increasing the efficiencies and lowering emissions in various coal processing systems.
    Type: Grant
    Filed: November 6, 2015
    Date of Patent: March 21, 2017
    Assignee: The University of Wyoming Research Corporation
    Inventors: Alan E. Bland, Kumar Muthusami Sellakumar, Jesse D. Newcomer
  • Patent number: 9593286
    Abstract: A method for cogenerating gas-steam based on gasification and methanation of biomass. The method includes: 1) mixing oxygen and water vapor with biomass, transporting the resulting mixture via a nozzle to a gasifier, gasifying the biomass to yield crude gasified gas, and transporting superheated steam having a pressure of 5-6 MPa resulting from sensible heat recovery to a steam turbine; 2) adjusting the hydrogen/carbon ratio of the crude gasified gas generated from step 1) to 3:1, and eluting the crude gasified gas whereby yield purified syngas; 3) introducing the purified syngas from step 2) to a methanation unit and transporting intermediate pressure superheated steam generated in the methanation unit to the steam turbine; and 4) concentrating methane of synthetic natural gas containing trace nitrogen and water vapor obtained from step 3) through pressure swing adsorption.
    Type: Grant
    Filed: October 24, 2014
    Date of Patent: March 14, 2017
    Assignee: SUNSHINE KAIDI NEW ENERGY GROUP CO., LTD.
    Inventors: Weiguang Yang, Yan Gong, Xiaodong Zhan, Dechen Song
  • Patent number: 9595726
    Abstract: Fuel reforming processes and systems are disclosed. The fuel reforming process includes providing a fuel reformer, the fuel reformer comprising a reaction zone configured for exothermic partial oxidation to generate reformates and a heat exchanger extending from the reaction zone, the heat exchanger configured to expel the reformates through a reformate path and receive fuel-rich reactants through a fuel path, generating the reformates by the exothermic partial oxidation of the fuel-rich reactants within the reaction zone, heating the fuel-rich reactants in reaction zone with the heat exchanger by heat from the reformates in the reformate path. The process is energetically self-sustained and operates without a catalyst. The fuel reforming system includes the fuel reformer with a spiral heat exchanger and a component capable of operation with the reformates and incompatible with combustion products, such as a fuel cell.
    Type: Grant
    Filed: January 7, 2014
    Date of Patent: March 14, 2017
    Assignee: Advanced Cooling Technologies, Inc.
    Inventors: Chien-Hua Chen, Howard Pearlman
  • Patent number: 9581082
    Abstract: The present disclosure relates to a power production system that is adapted to achieve high efficiency power production with complete carbon capture when using a solid or liquid hydrocarbon or carbonaceous fuel. More particularly, the solid or liquid fuel first is partially oxidized in a partial oxidation reactor. The resulting partially oxidized stream that comprises a fuel gas is quenched, filtered, cooled, and then directed to a combustor of a power production system as the combustion fuel. The partially oxidized stream is combined with a compressed recycle CO2 stream and oxygen. The combustion stream is expanded across a turbine to produce power and passed through a recuperator heat exchanger. The expanded and cooled exhaust stream is scrubbed to provide the recycle CO2 stream, which is compressed and passed through the recuperator heat exchanger and the POX heat exchanger in a manner useful to provide increased efficiency to the combined systems.
    Type: Grant
    Filed: June 12, 2014
    Date of Patent: February 28, 2017
    Assignees: 8 Rivers Capital, LLC, Palmer Labs, LLC
    Inventors: Rodney John Allam, Jeremy Eron Fetvedt, Miles R. Palmer
  • Patent number: 9580314
    Abstract: A method for producing hydrogen by reforming hydrocarbons using steam, combined with carbon dioxide capture and steam production, which involves mixing the hydrocarbons to be reformed with steam in order to produce a feedstock for reforming, generating a syngas; the syngas produced is cooled, enriched with H2 and CO2, and then cooled; the condensates of the method are separated from the syngas in order to be used in the method, the saturated syngas being treated by adsorption with pressure modulation so as to produce hydrogen and a gaseous effluent containing CO2 that is captured in a CPU unit. The condensates from the cooling of the syngas at the outlet of the shift reactor are used in the method for producing impure steam supplying the mixing point; the CPU unit also produces CPU condensates that are recycled to be treated jointly with the condensates of the method.
    Type: Grant
    Filed: October 31, 2013
    Date of Patent: February 28, 2017
    Assignee: L'Air Liquide Société Anonyme Pour L'Étude Et L'Exploitation Des Procedes Georges Claude
    Inventors: Arthur Darde, Mathieu Leclerc, Thomas Morel
  • Patent number: 9568189
    Abstract: A thermal reactor for producing usable heat energy by destroying waste including a vessel wherein organic waste upon entering said vessel gasifies as it falls onto a carbon bed and is transformed into a synthesis gas with high heat and kinetic energy that can be harnessed to produce electricity. Inorganic waste upon entering melts as it falls onto the carbon bed and exits via slag ports to form an inert slag. Because there is no oxygen present in the gasification zone, the waste is not combusted and neither furan or dioxin are formed. The waste includes either prepared refuse derived fuel (RDF) or unprepared raw waste or a combination thereof.
    Type: Grant
    Filed: May 19, 2010
    Date of Patent: February 14, 2017
    Assignee: GREEN ENERGY AND TECHNOLOGY SDN BHD
    Inventors: Mazlan Ali, Siti Fatimah Mohd Shariff, Christopher John Webb
  • Patent number: 9561958
    Abstract: There is herein described a process and apparatus for partial oxidation of hydrocarbons. More particularly, there is described a process and an isothermal reactor apparatus for the partial oxidation of methane which comprises a heat transfer surface, a porous catalytic membrane and wherein heat is dissipated and/or removed through the heat transfer surface.
    Type: Grant
    Filed: January 7, 2011
    Date of Patent: February 7, 2017
    Assignee: Gas2 Limited
    Inventors: Ruben Dario Rodriguez Quintero, Ernesto Manuel Santana Diaz, James Andrew Banister
  • Patent number: 9561968
    Abstract: Methods and systems for making ammonia are provided. The method can include converting carbon monoxide in a first syngas to carbon dioxide to produce a shifted syngas. At least a portion of the carbon dioxide can be separated from the shifted syngas to produce a carbon dioxide-lean syngas. Carbon monoxide and/or carbon dioxide in the carbon dioxide-lean syngas can be converted to methane to produce a methanated first syngas. A second syngas can be separated to produce a purified second syngas and a waste gas. The methanated first syngas and the purified second syngas can be combined to produce an ammonia feedstock. The ammonia feedstock can have a hydrogen to nitrogen molar ratio of about 3.5:1 to about 2.5:1. At least a portion of the hydrogen and nitrogen in the ammonia feedstock can be reacted to produce an ammonia product.
    Type: Grant
    Filed: August 5, 2014
    Date of Patent: February 7, 2017
    Assignee: Kellogg Brown & Root LLC
    Inventors: Shashi Prakash Singh, Akhil Jain Nahar, Stephen Allen Noe
  • Patent number: 9556026
    Abstract: Process for producing a hydrogen-containing product gas suited for operating in regions where the ambient conditions are below freezing for extended periods of time during the winter and warm or hot during the summer months. Hot makeup water is provided to the process to avoid freezing. A portion of the hot makeup water stream is heated in a steam generator to make steam where the steam is used to heat incoming hydrocarbon feed for the process. Another portion of the hot makeup water stream may be heated by combustion product gases where the heated water stream is used to heat incoming combustion oxidant.
    Type: Grant
    Filed: September 3, 2015
    Date of Patent: January 31, 2017
    Assignee: Air Products and Chemicals, Inc.
    Inventors: Ruth Ann Davis, Tanya Mohan Siwatch
  • Patent number: 9550671
    Abstract: A method for producing hydrogen by reforming hydrocarbons using steam, combined with carbon dioxide capture and steam production, which involves mixing the hydrocarbons to be reformed with steam in order to produce the feedstock for the reforming, generating a syngas; the syngas is then cooled, and enriched with H2 and CO2; and then cooled. The condensates of the method are separated from the syngas in order to be used in the method, the saturated syngas being treated by adsorption with pressure modulation so as to produce hydrogen and a gaseous effluent containing CO2 that is captured in a CO2-purifying unit. The condensates from the cooling of the syngas at the outlet of the shift reactor are used in the method for producing highly pure steam supplying the mixing point and for exportation; the CPU also produces CPU condensates that are recycled to be treated jointly with the condensates of the method.
    Type: Grant
    Filed: October 31, 2013
    Date of Patent: January 24, 2017
    Assignee: L'Air Liquide Société Anonyme Pour L'Etude Et L'Exploitation Des Procedes Georges Claude
    Inventors: Arthur Darde, Mathieu Leclerc, Thomas Morel
  • Patent number: 9551278
    Abstract: Hydrogen production process and apparatus using a combined stream of gas turbine exhaust from a gas turbine and combustion air from forced draft fan as combustion oxidant in a steam reforming furnace. A valve assembly for providing draft air is included to quickly provide additional combustion air to the reformer furnace when the gas turbine unexpectedly shuts down.
    Type: Grant
    Filed: July 16, 2014
    Date of Patent: January 24, 2017
    Assignee: Air Products and Chemicals, Inc.
    Inventors: Simon Craig Saloway, David George DeMaria, David Anthony Zagnoli, Russell Ira Snyder, III
  • Patent number: 9550950
    Abstract: A solids circulation system receives a gas stream containing char or other reacting solids from a first reactor. The solids circulation system includes a cyclone configured to receive the gas stream from the first reactor, a dipleg from the cyclone to a second reactor, and a riser from the second reactor which merges with the gas stream received by the cyclone. The second reactor has a dense fluid bed and converts the received materials to gaseous products. A conveying fluid transports a portion of the bed media from the second reactor through the riser to mix with the gas stream prior to cyclone entry. The bed media helps manipulate the solids that is received by the cyclone to facilitate flow of solids down the dipleg into the second reactor. The second reactor provides additional residence time, mixing and gas-solid contact for efficient conversion of char or reacting solids.
    Type: Grant
    Filed: March 13, 2015
    Date of Patent: January 24, 2017
    Assignee: Thermochem Recovery International, Inc.
    Inventors: Ravi Chandran, Jonathan A. Zenz, Dave G. Newport, Hamilton Sean Michael Whitney
  • Patent number: 9518237
    Abstract: Integrated processes are provided for syngas refining and bioconversion of syngas to oxygenated organic compound. In the integrated processes ammonia contained in the syngas is recovered and used as a source of nitrogen and water for the fermentation. The integrated processes first remove tars from syngas by scrubbing using a first aqueous medium under conditions that ammonium bicarbonate is unstable. With tars removed, contact between the syngas and a second aqueous medium enables ammonia and carbon dioxide to be removed from the syngas without undue removal of components adverse to the fermentation, processing or oxygenated product such as benzene, toluene, xylene, ethylene, acetylene, and hydrogen cyanide. At least a portion of the second aqueous medium is supplied as a source of water and ammonia for the fermentation.
    Type: Grant
    Filed: March 11, 2015
    Date of Patent: December 13, 2016
    Assignee: Synata Bio, Inc.
    Inventors: Robert Hickey, Jianxin Du
  • Patent number: 9493714
    Abstract: Hydrocarbon oil obtained by Fischer-Tropsch (FT) synthesis reaction using a catalyst within a slurry bed reactor is fractionated into a distilled oil and a column bottom oil in a rectifying column, part of the column bottom oil is flowed into a first transfer line that connects a column bottom of the rectifying column to a hydrocracker, at least part of the column bottom oil is flowed into a second transfer line branched from the first transfer line and connected to the first transfer line downstream of the branching point, the amount of the catalyst fine powder to be captured is monitored while the catalyst fine powder in the column bottom oil that flows in the second transfer line are captured by a detachable filter provided in the second transfer line, and the column bottom oil is hydrocracked within the hydrocracker.
    Type: Grant
    Filed: August 12, 2011
    Date of Patent: November 15, 2016
    Assignees: JAPAN OIL, GAS, AND METALS NATIONAL CORPORATION, INPEX CORPORATION, JX NIPPON OIL & ENERGY CORPORATION, JAPAN PETROLEUM EXPLORATION CO., LTD., COSMO OIL CO., LTD., NIPPON STEEL & SUMIKIN ENGINEERING CO., LTD.
    Inventors: Kazuhiko Tasaka, Yuichi Tanaka, Marie Iwama
  • Patent number: 9493350
    Abstract: Disclosed is a process for the production of hydrogen in a reactor system comprising a steam reforming reaction zone comprising a reforming catalyst and a membrane separation zone comprising a hydrogen-selective membrane. The process involves a reaction system of so-called open architecture, wherein the reforming zone and the membrane separation zone operate independently of each other. The invention provides the heat for the reforming reaction through heat exchange from liquid molten salts, preferably heated by solar energy.
    Type: Grant
    Filed: March 11, 2013
    Date of Patent: November 15, 2016
    Assignee: STAMICARBON B.V. ACTING UNDER THE NAME OF MT INNOVATION CENTER
    Inventors: Barbara Morico, Annarita Salladini, Gaetano Iaquaniello
  • Patent number: 9487400
    Abstract: A process to prepare a synthesis gas mixture comprising hydrogen and carbon monoxide from a liquid hydrocarbon feedstock containing between 0.1 and 4 wt % ash comprises performing a partial oxidation on a hydrocarbon feed using a multi-orifice burner provided with an arrangement of separate co-annular passages, wherein the hydrocarbon flows through a passage of the burner, an oxidizer gas flows through a separate passage of the burner and wherein the passage for hydrocarbon feed and the passage for oxidizer gas are separated by a passage through which a moderator gas flows and wherein the exit velocity of the moderator gas is greater than the exit velocity of the oxidizer gas.
    Type: Grant
    Filed: December 20, 2013
    Date of Patent: November 8, 2016
    Assignee: Shell Oil Company
    Inventors: Johannes Cornelis De Jong, Franciscus Johanna Arnoldus Martens
  • Patent number: 9481837
    Abstract: Processes, systems and equipment can be used to convert carbonaceous fuel to an output gas stream that includes CO as a primary C-containing product. In some embodiments, the processes and systems also can produce H2 in a separate reaction, with the H2 advantageously being capable of being combined with the CO from a partial oxidation process to provide syngas which, in turn, can be used to produce fuels and chemicals. The processes and systems can be tuned so as to not produce significant amounts of CO2 and do not require an air separation unit.
    Type: Grant
    Filed: March 15, 2013
    Date of Patent: November 1, 2016
    Assignee: The Babcock & Wilcox Company
    Inventors: Luis G Velazquez-Vargas, Thomas J Flynn, Bartev B Sakadjian, Douglas J DeVault, David L Kraft
  • Patent number: 9475052
    Abstract: The present invention provides a miniaturized microfluidic device with a heater that has a simple structure without needing adhesion means for improving the heat transfer between the heater block and the device, and which can form the uniform temperature regions. Disclosed is a microfluidic device, including: a substrate; a reaction flow path formed on the substrate; and a temperature adjustment heater for heating the reaction flow path, in which a reaction flow path formation region including the reaction flow path formed therein and a temperature adjustment heater formation region including the temperature adjustment heater formed therein are alternately arranged on the substrate, the reaction flow path is formed to be bent at least one time in the reaction flow path formation region, and the temperature adjustment heater is formed to be bent at least one time in the temperature adjustment heater formation region.
    Type: Grant
    Filed: March 4, 2013
    Date of Patent: October 25, 2016
    Assignee: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.
    Inventors: Hiroaki Tachibana, Koji Tsuji
  • Patent number: 9469577
    Abstract: Systems and methods conducive to the formation of one or more alkene hydrocarbons using a methane source and an oxidant in an oxidative coupling of methane (OCM) reaction are provided. One or more vessels each containing one or more catalyst beds containing one or more catalysts each having similar or differing chemical composition or physical form may be used. The one or more catalyst beds may be operated under a variety of conditions. At least a portion of the catalyst beds may be operated under substantially adiabatic conditions. At least a portion of the catalyst beds may be operated under substantially isothermal conditions.
    Type: Grant
    Filed: May 23, 2013
    Date of Patent: October 18, 2016
    Assignee: Siluria Technologies, Inc.
    Inventors: Wayne P. Schammel, Julian Wolfenbarger, Milind Ajinkya, Jon McCarty, Joel M. Cizeron, Sam Weinberger, Justin Dwight Edwards, Dave Sheridan, Erik C. Scher, Jarod McCormick, Fabio R. Zurcher, Alex Tkachenko, Joel Gamoras, Dmitry Karshtedt, Greg Nyce
  • Patent number: 9469534
    Abstract: The present invention relates to a reformer tube for producing synthesis gas, e.g., hydrogen, and an apparatus and a process for producing synthesis gas, in particular hydrogen. The reformer tube is configured for directing the flow of starting materials and at least one reaction product in volume streams for the purpose of producing a synthesis gas. The reformer tube has in its interior at least one flow directing device having a first guide device for diverting a first partial volume stream in a direction having a radial component directed away from the longitudinal axis of the reformer tube, and having a second guide device for diverting a second partial volume stream in a direction having a radial component directed towards the longitudinal axis of the reformer tube.
    Type: Grant
    Filed: December 12, 2014
    Date of Patent: October 18, 2016
    Assignee: LINDE AKTIENGESELLSCHAFT
    Inventors: Klemens Wawrzinek, Michael Nold
  • Patent number: 9469535
    Abstract: Embodiments of the present disclosure provide for methods of using NixPty nanoparticles, and the like. In an embodiment, a method of CO2 reforming of methane is provided using supported NixPty nanoparticle material, wherein the NixPty nanoparticles have an average size of about 1.5 to 3 nm, wherein x is about 0.85 to 0.95 and y is about 0.05 to 0.15.
    Type: Grant
    Filed: April 1, 2015
    Date of Patent: October 18, 2016
    Assignee: KING ABDULLAH UNIVERSITY OF SCIENCE AND TECHNOLOGY
    Inventors: Gregory Biausque, Paco Laveille, Dalaver H. Anjum, Valerie Caps, Jean-Marie Basset
  • Patent number: 9463429
    Abstract: Using a device for producing nanocarbon, a fluidized bed is formed by supplying a low hydrocarbon and oxygen to a fluid catalyst, and nanocarbon and hydrogen are produced by a decomposition reaction of the low hydrocarbon accompanied by a self-combustion of the low hydrocarbon and the oxygen. The device includes: a fluidized bed reactor for containing the fluid catalyst and for causing the self-combustion thereof while being supplied with the low hydrocarbon and the oxygen; a gas supplying unit connected to the fluidized bed reactor for supplying the low hydrocarbon and the oxygen to the fluidized bed reactor; an exhaust gas path connected to the fluidized bed reactor for exhausting an exhaust gas in the fluidized bed reactor to outside; and a supplying unit connected to the fluidized bed reactor for supplying the fluid catalyst to the fluidized bed reactor.
    Type: Grant
    Filed: February 11, 2015
    Date of Patent: October 11, 2016
    Assignees: THE JAPAN STEEL WORKS, LTD., National University Corporation Kitami Institute of Technology
    Inventors: Satoru Nakamura, Akio Tada
  • Patent number: 9458397
    Abstract: A method and equipment for producing synthesis gas (S) from solid carbon particles (C), the carbon particles (C) being obtained by pyrolysis, gasification of the carbon particles (C) occurs by indirect heating of the carbon particles (C) in the presence of a process gas (P) in the same space where the carbon particles (C) are present, and the synthesis gas (S) generated during the gasification is discharged from the space. The method is characterised in that the carbon particles (C) and the process gas (P) are located in a reactor (1), and the indirect heating occurs by way of radiant heat from burners (Br1-Brn) located in the reactor (1).
    Type: Grant
    Filed: June 11, 2009
    Date of Patent: October 4, 2016
    Assignee: CORTUS AB
    Inventor: Rolf Ljunggren
  • Patent number: 9458014
    Abstract: A method and system for capturing and isolating carbon dioxide and hydrogen gases from a high temperature synthesis gas stream containing a substantial amount of CO and sulfur compounds for use as a “clean” supplemental fuel, comprising the steps of reducing the temperature of the high temperature synthesis gas stream, removing substantially all of the sulfur compounds present in the synthesis gas, converting a first portion of CO to carbon dioxide in a first high temperature water-gas shift reaction, converting a second portion of CO to carbon dioxide using a second low temperature water-gas shift reaction, converting a third portion of CO to carbon dioxide using a third low temperature water-gas shift reaction and then separating out substantially all hydrogen present in the treated synthesis gas stream.
    Type: Grant
    Filed: December 28, 2012
    Date of Patent: October 4, 2016
    Assignee: General Electronic Company
    Inventors: Thirumala Reddy Nagarjuna Reddy, Ashok Kumar Anand, Mahendhra Muthuramalingam
  • Patent number: 9453644
    Abstract: A method and system for generating electrical power in which a high pressure synthesis gas stream generated in a gasifier is partially oxidized in an oxygen transport membrane based reactor, expanded and thereafter, is combusted in an oxygen transport membrane based boiler. A low pressure synthesis gas slip stream is split off downstream of the expanders and used as the source of fuel in the oxygen transport membrane based partial oxidation reactors to allow the oxygen transport membrane to operate at low fuel pressures with high fuel utilization. The combustion within the boiler generates heat to raise steam to in turn generate electricity by a generator coupled to a steam turbine. The resultant flue gas can be purified to produce a carbon dioxide product.
    Type: Grant
    Filed: December 23, 2013
    Date of Patent: September 27, 2016
    Assignee: PRAXAIR TECHNOLOGY, INC.
    Inventors: Brian R. Kromer, Michael M. Litwin, Sean M. Kelly
  • Patent number: 9453645
    Abstract: The process can include, during a first and second period of time, sending a first stream of oxygen rich gas from an ASU to a first oxygen consuming unit, the first unit being integrated with a system for the generation of electricity, during the first period of time, sending a second stream of oxygen rich gas from the ASU to a second unit, the second unit being a combustion unit, a first stream of air being supplied to the combustion unit during the first period, removing a second CO2 containing gas from the second unit without sending any of the second CO2 containing gas back to the second unit and during the second period of time, sending no oxygen rich gas from the ASU to the second unit without sending any of the third CO2 containing gas back to the second unit.
    Type: Grant
    Filed: August 28, 2013
    Date of Patent: September 27, 2016
    Assignee: L'Air Liquide Société Anonyme Pour L'Étude Et L'Exploitation Des Procedes Georges Claude
    Inventors: Richard Dubettier-Grenier, Alain Guillard, Dennis McDonald, Sebastien De Limon
  • Patent number: 9434613
    Abstract: The invention relates to the production of synthesis gas by means of particularly a series arrangement of heat exchange reforming and autothermal reforming stages, in which the heat required for the reforming reactions in the heat exchange reforming stage, is provided by hot effluent synthesis gas from the autothermal reforming stage. More particularly, the invention relates to optimisation of the operation and control of an arrangement of heat exchange reforming and autothermal reforming stages and introduction of an additional waste heat boiler.
    Type: Grant
    Filed: June 12, 2013
    Date of Patent: September 6, 2016
    Assignee: Haldor Topsoe A/S
    Inventors: Lari Bjerg Knudsen, Martin Frahm Jensen
  • Patent number: 9434897
    Abstract: Devices for a three-stage scrubbing system for treatment of hot crude gases and liquid slag by an entrained flow gasification. Crude gas and slag are conducted downward into a water bath in a central tube. The upper part of the central tube consists of a double-threaded tube screen welded in a gas-tight manner, in which water is injected directly as the first scrubbing and cooling stage in the interior thereof. In the water bath, a bubble column is formed, which simultaneously constitutes the second scrubbing and cooling stage. Surface bodies arranged in three layers increase the scrubbing effect. After leaving the bubble column, the crude gas is again sprayed with water in a cavity, wherein one or more nozzle rings are disposed. This forms the third scrubbing stage. The crude gas then leaves the quenching and scrubbing apparatus in steam-saturated form at 200-220° C. and is sent to further treatment.
    Type: Grant
    Filed: September 19, 2014
    Date of Patent: September 6, 2016
    Assignee: SIEMENS AKTIENGESELLSCHAFT
    Inventors: Frank Hannemann, André Herklotz, Horst Hoppe, Tino Just, Manfred Schingnitz, Darek Schmauch
  • Patent number: 9428696
    Abstract: The invention relates to a process for the production of synthesis gas by the use of autothermal reforming or catalytic partial oxidation in which, after removal of water, effluent gas from the ATR or CPO is recycled to the feed of the ATR or CPO.
    Type: Grant
    Filed: May 21, 2013
    Date of Patent: August 30, 2016
    Assignee: Haldor Topsoe A/S
    Inventor: Per Juul Dahl
  • Patent number: 9427703
    Abstract: Provided are CO2 separation and recovery equipment that yields a higher CO2 recovery rate, and a coal gasification combined power plant including the CO2 separation and recovery equipment with high plant efficiency. The CO2 separation and recovery equipment, has a CO shift reactor in which a gas containing as its main components of CO and H2O is introduced and converted into CO2 and H2, and includes: an inlet valve that is provided on the inlet side of the CO shift reactor; an outlet valve that is provided on the outlet side of the CO shift reactor; a steam control valve for applying high-temperature steam to a foregoing part of the inlet valve; and a gas composition analyzer that senses a gas composition of a stream flowing into the CO shift reactor.
    Type: Grant
    Filed: September 12, 2011
    Date of Patent: August 30, 2016
    Assignee: HITACHI, LTD.
    Inventor: Hiroto Takeuchi
  • Patent number: 9422488
    Abstract: A system includes a gasification fuel injector. The gasification fuel injector includes a tip portion surrounding an injection passage configured to inject a fluid in a downstream direction. The tip portion includes an inner wall surrounding the injection passage and extending in the downstream direction from a neck to a rim, an outer wall surrounding the inner wall and extending from the neck to the rim, and a coolant chamber between the inner and outer walls. The outer wall includes a curved wall portion extending in the downstream direction away from the rim.
    Type: Grant
    Filed: November 8, 2011
    Date of Patent: August 23, 2016
    Assignee: General Electric Company
    Inventor: Allam Nanda Kishore
  • Patent number: 9416077
    Abstract: An integrated plant is provided to improve carbon utilization of carbon molecules from gasified woody biomass to be converted into methanol. Detectors ensure a minimized sulfur content of less than 0.05% by dry weight of the woody biomass. A biomass gasifier reacts woody biomass in a rapid gasification reaction to produce a syngas composition having a ratio of hydrogen to carbon dioxide that is higher than needed for methanol synthesis. Parallel to the gasifier, a hydrocarbon reforming reactor provides a syngas composition having a ratio of hydrogen to carbon monoxide that is higher than needed for methanol synthesis. The combined syngas mixture from the biomass gasifier and the hydrocarbon reforming reactor comprises feed to a methanol synthesis plant, such that a majority of the carbon dioxide produced by the biomass gasification reaction and the hydrogen produced by the hydrocarbon reforming reactor are synthesized into methanol.
    Type: Grant
    Filed: September 13, 2013
    Date of Patent: August 16, 2016
    Assignee: Sundrop Fuels, Inc.
    Inventors: Renus Constantyn Kelfkens, Herbert Mark Kosstrin
  • Patent number: 9410452
    Abstract: Methods of making fuel are described herein. A method may include providing a first working fluid, a second working fluid, and a third working fluid. The method may further include exposing the first working fluid to a first high-voltage electric field to produce a first plasma, exposing the second working fluid to a second high-voltage electric field to produce a second plasma, and exposing the third working fluid to a third high-voltage electric field to produce a third plasma. The method may also include contacting the third plasma, the second plasma, and the first plasma to form a plasma mixture, cooling the plasma mixture using a heat exchange device to form a cooled plasma mixture, and contacting the cooled plasma mixture with a catalyst to form a fuel fluid.
    Type: Grant
    Filed: September 5, 2013
    Date of Patent: August 9, 2016
    Assignee: Powerdyne, Inc.
    Inventors: Geoffrey Hirson, Gus F. Shouse
  • Patent number: 9399738
    Abstract: A circulation type gasification furnace is provided with: a gasification furnace that turns a fluidized medium into a fluidized bed or moving bed, and produces gasification gas by gasifying a gasification raw material injected into the fluidized medium; a combustion furnace that heats the fluidized medium discharged from the gasification furnace and combusts residue of the gasification raw material; a medium separator that, in order to return the fluidized medium to the gasification furnace, separates the fluidized medium from a combustion exhaust gas discharged from the combustion furnace; a gasification gas separator that separates the gasification gas produced in the gasification furnace from the residue of the gasification raw material; and a residue discharge section that creates a seal between the gasification gas separator and the combustion furnace, and discharges the residue separated by the gasification gas separator into the combustion furnace.
    Type: Grant
    Filed: July 18, 2014
    Date of Patent: July 26, 2016
    Assignee: IHI CORPORATION
    Inventor: Makoto Takafuji
  • Patent number: 9399587
    Abstract: A system includes a gasifier configured to gasify a fuel contained within a fuel slurry in order to generate syngas and a black water. The fuel slurry includes at least the fuel and water. The system also includes a black water treatment system fluidly coupled to the gasifier. The black water treatment system is configured to treat the black water to generate a grey water. The black water treatment system includes a first flash tank configured to process the black water by reducing a pressure of the black water to generate a first discharged black water. The black water treatment system also includes a first flow path fluidly coupling a first discharged black water outlet of the first flash tank with a feedstock preparation system configured to generate the fuel slurry in order to provide at least a first portion of the first discharged black water of the first flash tank to the feedstock preparation system.
    Type: Grant
    Filed: February 5, 2014
    Date of Patent: July 26, 2016
    Assignee: General Electric Company
    Inventors: Annavarapu Vijay Bharat Sastri, Sharat Sheshachar Katti
  • Patent number: 9394170
    Abstract: A reactor containing a heat exchanger is disclosed, which can be operated with co-current or counter-current flow. Also disclosed is a system that includes a reactor having a reformer and a vaporizer, a fuel supply, and a water supply. The reactor includes a source of combustion gas, a reformer operative to receive reformate, and a vaporizer operative to receive water. The reformer and vaporizer each include a stack assembly formed by a combination of separator shims and channel shims. The separator shims and channel shims are stacked in a regular pattern to form two sets of channels within the stack assembly. One set of channels will have vertical passageways at either end and a horizontal flowpath between them, while the other set of channels has only a horizontal flowpath.
    Type: Grant
    Filed: March 12, 2014
    Date of Patent: July 19, 2016
    Assignee: Battelle Memorial Institute
    Inventors: Paul E. George, II, Vincent Contini, Matthew E. Goshe
  • Patent number: 9387470
    Abstract: The invention relates to novel bimetallic and trimetallic catalysts, their manufacture and use in both steam reforming and oxidative steam reforming of liquid fuels such as jet fuels, diesel fuels and gasoline to produce synthesis gas and/or hydrogen for fuel cell applications. The invention further relates to manufacture of synthesis gas and/or hydrogen gas for chemicals synthesis and fuel processing. The catalysts have high sulfur tolerance and carbon resistance when used in steam reforming and/or oxidative steam reforming of heavy hydrocarbon fuels.
    Type: Grant
    Filed: January 17, 2008
    Date of Patent: July 12, 2016
    Assignee: The Penn State Research Foundation
    Inventors: Chunshan Song, James J. Strohm, Jian Zheng, Weidong Gu, Chao Xie, Xiaoxing Wang
  • Patent number: 9381460
    Abstract: A pressure swing adsorption process for an adsorption system having 12 adsorption beds, the process having a cycle with 5 pressure equalization steps. Background is provided for the various pressure swing adsorption cycle steps.
    Type: Grant
    Filed: September 11, 2014
    Date of Patent: July 5, 2016
    Assignee: AIR PRODUCTS AND CHEMICALS, INC.
    Inventors: Edward Landis Weist, Jr., Dingjun Wu, Jianguo Xu, Blaine Edward Herb, Bryan Clair Hoke, Jr.
  • Patent number: 9377242
    Abstract: A method and a system for treating waste gases (4) from plants (32, 33) for pig iron production, wherein a first sub-stream (51) of the waste gas is subjected to an at least partial conversion of CO into CO2 after the addition of water and/or water vapor (10) and the waste gas (4) is then subjected to CO2 capture. To be able to set a variable H2/CO ratio in the waste gas, a further sub-stream (52) of the waste gas is not subjected to a conversion of CO into CO2, but is subjected to CO2 capture separately from the first sub-stream (51).
    Type: Grant
    Filed: August 22, 2012
    Date of Patent: June 28, 2016
    Assignee: PRIMETALS TECHNOLOGIES AUSTRIA GMBH
    Inventors: Robert Millner, Gerald Rosenfellner
  • Patent number: 9365784
    Abstract: A coal gasifier is retrofitted to achieve multiple advantages such as reduced oxygen consumption, reduced CO2 and NOx emissions, better H:C ratio, better carbon conversion etc. This is achieved by dividing the coal into at least two zones and modifying the gasifier and operating it as described. The coal is injected into a first zone, configured to devolatilize a substantial portion of the injected coal to produce coal char and volatiles. The operation is tuned to substantially consume the oxidant injected in the first zone. A low-calorific-value, high oxidant feedstock is injected in second zone of the gasifier. The devolatilization of the low-calorific-value, high oxidant content feedstock provides the oxygen containing compounds which gasify at least a portion of the coal char generated in the first zone.
    Type: Grant
    Filed: October 17, 2013
    Date of Patent: June 14, 2016
    Assignee: General Electric Company
    Inventors: Vladimir Zamansky, Vitali Victor Lissianski, Boris Nikolaevich Eiteneer, Wei Wei, Ravichandra Srinivasa Jupudi, Ramanathan Subramanian
  • Patent number: 9359567
    Abstract: A method for using a downdraft gasifier comprising a housing and a refractory stack contained within the housing. The refractory stack may comprise various sections. Apertures in the sections may be aligned to form multiple columnar cavities. Each columnar cavity may comprise an individual oxidation zone. The method of use may include the steps of placing a feedstock into an upper portion of the refractory stack, measuring the temperature of each columnar cavity, and adjusting the flow of oxygen to a particular columnar cavity to maintain the temperature of the particular columnar cavity within a particular range.
    Type: Grant
    Filed: August 26, 2013
    Date of Patent: June 7, 2016
    Assignee: Stratean, Inc.
    Inventors: Alan M. Neves, Grover R. Brockbank, Morris K. Ebeling, Jr.
  • Patent number: 9359201
    Abstract: A process for producing hydrogen from natural gas, said process comprises the steps of: (i) providing an autothermal heat exchanger packed-bed membrane reformer (APBMR) comprising: (a) an elongated external gas oxidation compartment comprising an inlet, an outlet and packed oxidation catalyst particles, said inlet and outlet being located each at one extremity of said external gas oxidation compartment; (b) an elongated internal gas steam-reforming compartment comprising an inlet, an outlet and packed steam-reforming catalyst particles, said inlet and outlet being located each at one extremity of said internal gas steam-reforming compartment; (c) one or more hydrogen-separating membrane(s) positioned in said steam-reforming compartment substantially parallel to the longitudinal axis of said steam-reforming compartment; (d) one insulation layer surrounding said external compartment; and, optionally, (e) one or more elongated internal gas oxidation compartment(s) positioned in said steam-reforming compartment s
    Type: Grant
    Filed: August 2, 2010
    Date of Patent: June 7, 2016
    Assignee: Technion Research & Development Foundation Ltd.
    Inventors: David Stanislav A. Simakov, Moshe Sheintuch