Patents Issued in January 6, 2015
  • Patent number: 8926895
    Abstract: A post-combustion lance for directing a gas at least partially therethrough. The post-combustion lance includes a body extending between an upstream end and a downstream end of the lance, the body including upper and lower portions and a post-combustion distributor mounted therebetween. The lance also includes an internal support assembly for supporting the body, the internal support assembly including an internal tube positioned inside the body and at least partially engaged with the lower portion, and at least partially engaged with the upper portion of the body, so that the internal support assembly supports the body both upstream and downstream relative to the distributor. The lance also includes a lower o-ring gland positioned downstream relative to the internal support assembly and an upper o-ring gland positioned upstream relative to the lower o-ring gland.
    Type: Grant
    Filed: May 1, 2012
    Date of Patent: January 6, 2015
    Assignee: A.H. Tallman Bronze Company, Limited
    Inventors: Michael J. Strelbisky, Kerry J. Legeard, Goran Dimitrijevik
  • Patent number: 8926896
    Abstract: One embodiment includes providing a first layer including a first powder material and a second layer including a second powder material over the first layer, and compacting the first powder material and the second powder material using at least a first magnetic field.
    Type: Grant
    Filed: June 24, 2008
    Date of Patent: January 6, 2015
    Assignee: GM Global Technology Operations LLC
    Inventors: Shekhar G. Wakade, Mark A. Osborne, William L. Miller
  • Patent number: 8926897
    Abstract: A nickel-base superalloy having excellent oxidation resistance is provided. It is useful as high-temperature members such as turbine blades and turbine vanes for jet engines or gas turbines. The nickel-base superalloy has a composition containing Co: 0.1 to 15% by weight, Cr: 0.1 to 10% by weight, Mo: 0.1 to 4.5% by weight, W: 0.1 to 15% by weight, Al: 2 to 8% by weight, Ta+Nb+Ti: 0 to 16% by weight, Hf: 0 to 5% by weight, Re: 0.1 to 16% by weight, Ru: 0.1 to 16% by weight, Si: 0.2 to 5% by weight and a balance made of Ni and unavoidable impurities.
    Type: Grant
    Filed: September 27, 2006
    Date of Patent: January 6, 2015
    Assignee: National Institute for Materials Science
    Inventors: Hiroshi Harada, Kyoko Kawagishi, Toshiharu Kobayashi, Yutaka Koizumi, Atsushi Sato
  • Patent number: 8926898
    Abstract: Disclosed is a lightweight aluminum based alloy that is high in strength and elongation properties at high temperatures of around 200° C. to 300° C. and has excellent workability in hot working. Disclosed also is a heat-resistant aluminum based alloy excellent in wear resistance and rigidity. Specifically, an aluminum based alloy contains, in terms of percent by mass, 5% to 10% of Mn; 0.5% to 5% of V; 0.5% to 5% of Cr; 0.5% to 5% of Fe; 1% to 8% of Si; 0.5% to 5% of Ni, with the balance being aluminum and inevitable impurities. The aluminum based alloy has a structure including 35 to 80 percent by volume of an intermetallic compound phase with the balance being an aluminum metal matrix.
    Type: Grant
    Filed: March 7, 2006
    Date of Patent: January 6, 2015
    Assignee: Kobe Steel, Ltd.
    Inventors: Toshiaki Takagi, Katsura Kajihara, Hideo Hata
  • Patent number: 8926899
    Abstract: Photocatalytic devices are described. In some embodiments, a photocatalytic device may include a cylindrical housing having an inlet opening and an outlet opening; one or more catalyst substrates disposed within the cylindrical housing and adapted to support a hydroxyl radical reaction with ultraviolet light and water vapor that results in hydro peroxides and hydroxyl ions; an ultraviolet light source disposed within the cylindrical housing and adapted to provide the ultraviolet light to the one or more catalyst substrates; and a fan disposed within the cylindrical housing and adapted to cause air to enter the cylindrical housing via the inlet opening, circulate through the one or more catalyst substrates within the cylindrical housing, and exit the cylindrical housing via the outlet opening.
    Type: Grant
    Filed: January 10, 2013
    Date of Patent: January 6, 2015
    Assignee: Dust Free, LP
    Inventor: Gregg William Burnett
  • Patent number: 8926900
    Abstract: Improved system for gas chromatography wherein use is made of a separation column and a TCD (Thermal Conductivity Detector), characterized in that the outflow from the separation column is ionized, and the ionization takes place upstream of the TCD. The ionization of the outflow from the separation column upstream of the TCD is surprisingly found in many cases to have a favorable effect on the response of the TCD. The sensitivity of the TCD is found in many cases to increase substantially. For ionization purposes use can be made of electromagnetic radiation, ionizing radiation or pyrolysis. The degree of ionization is preferably measured by means of measuring means provided for the purpose. The response of the TCD and the measurement data obtained with the measuring means are found together to give in many cases even more and better information relating to components present in the outflow from the separation column.
    Type: Grant
    Filed: June 10, 2009
    Date of Patent: January 6, 2015
    Assignee: Thermo Fisher Scientific S.p.A.
    Inventors: Job Elders, Gert-Jan Burger
  • Patent number: 8926901
    Abstract: A sample analyzer that analyzes a sample by using a reagent contained in a reagent container is disclosed. The sample analyzer includes a container holding unit which is configured to hold a plurality of reagent containers, and a plurality of electronic tags is attached to the plurality of reagent containers, on which a reagent information regarding reagents is recorded. The sample analyzer further includes an antenna section which emits a radio wave to an electronic tag of a reagent container. A range of the radio wave emitted from the antenna section to the electronic tag is limited to a predetermined range or by a limiting member which is arranged between the antenna section and the electronic tag of the reagent container, and which is configured to limit a range of the radio wave emitted from the antenna section to the electronic tag.
    Type: Grant
    Filed: March 18, 2011
    Date of Patent: January 6, 2015
    Assignee: Sysmex Corporation
    Inventor: Kazunori Mototsu
  • Patent number: 8926902
    Abstract: An automatic apparatus is described, which is suitable for the withdrawal of portions of biological material from a parent test tube (1), mobile in a conveyor (6) of a test tube transport plant by means of transport devices (8) of single test tubes, to be loaded in one or more child test tubes (2) countermarked beforehand with suitable identification means and to be sent to different biological material analysis instruments interfaced to said transport plant.
    Type: Grant
    Filed: March 12, 2010
    Date of Patent: January 6, 2015
    Assignee: Inpeco Holding Ltd.
    Inventor: Gianandrea Pedrazzini
  • Patent number: 8926903
    Abstract: To perform accurate measurement in the analysis of chemical components with low concentration, pretreatment such as concentration and purification of samples is essential. For high-throughput of pretreatment of biological samples, various random clinical testing is encountered, where analytes change from sample to sample. The pretreatment apparatus has a separating agent selectively separating a specific component by allowing a sample solution to flow therethrough. A holding section holds a plurality of housing sections, which house the separating agent therein, and has an endless track. A pressurizing section applies pressure to the housing section in a continuous and random-accessible manner; and an extraction solution receiver mechanism selectively receives an extracted solution from the separating agent housed in the housing section. A mass spectrometer is that can be connected to the pretreatment apparatus. Thus, a large number of specimens can be simultaneously processed.
    Type: Grant
    Filed: July 8, 2009
    Date of Patent: January 6, 2015
    Assignee: Hitachi High-Technologies Corporation
    Inventors: Makoto Nogami, Katsuhiro Kanda, Izumi Waki
  • Patent number: 8926904
    Abstract: An apparatus and method for performing analysis and identification of molecules have been presented. In one embodiment, a portable molecule analyzer includes a sample input/output connection to receive a sample, a nanopore-based sequencing chip to perform analysis on the sample substantially in real-time, and an output interface to output result of the analysis.
    Type: Grant
    Filed: May 10, 2010
    Date of Patent: January 6, 2015
    Inventor: Daniel Wai-Cheong So
  • Patent number: 8926905
    Abstract: An apparatus for imaging one or more selected fluorescence indications from a microfluidic device. The apparatus includes an imaging path coupled to least one chamber in at least one microfluidic device. The imaging path provides for transmission of one or more fluorescent emission signals derived from one or more samples in the at least one chamber of the at least one microfluidic device. The chamber has a chamber size, the chamber size being characterized by an actual spatial dimension normal to the imaging path. The apparatus also includes an optical lens system coupled to the imaging path. The optical lens system is adapted to transmit the one or more fluorescent signals associated with the chamber.
    Type: Grant
    Filed: July 9, 2013
    Date of Patent: January 6, 2015
    Assignee: Fluidigm Corporation
    Inventors: Marc A. Unger, Geoffrey Richard Facer, Barry Clerkson, Christopher G. Cesar, Neil Switz
  • Patent number: 8926906
    Abstract: The present application is directed to a technological platform with integrated microfluidic and optical modules for bio-detection. The platform enables in-situ detection by integrating fluidics with optical source and detection capabilities within a fabricated microchip. The platform is a polymer-based microfluidic chip having integrated excitation source and detection elements in a vicinity of a microfluidic reaction chamber configured to contain a micro-volume of a test sample. The principle of detection is based on an excitation source induced fluorescence of the test sample within the microfluidic reaction chamber.
    Type: Grant
    Filed: July 21, 2009
    Date of Patent: January 6, 2015
    Assignee: Concordia University
    Inventors: Muthukumaran Packirisamy, Ashwin L. Acharya
  • Patent number: 8926907
    Abstract: Systems for loading catalyst and/or additives into a fluidized catalytic cracking unit are disclosed. Methods of making and using the systems are also disclosed.
    Type: Grant
    Filed: March 16, 2011
    Date of Patent: January 6, 2015
    Assignee: W. R. Grace & Co.-Conn
    Inventor: Lenny Lee Albin
  • Patent number: 8926908
    Abstract: Reactor vessels with pressure and heat transfer features for producing hydrogen-based fuels and structural elements, and associated systems and methods. A representative reactor system includes a first reaction zone and a heat path, a reactant source coupled to the first reaction zone, and a first actuator coupled to cyclically pressurize the first reaction zone. A second reaction zone is in fluid communication with the first, a valve is coupled between the first and second reaction zones to control a flow rate therebetween, and a second actuator is coupled in fluid communication with the second reaction zone to cyclically pressurize the second reaction zone. First and second heat exchangers direct heat from products to reactants in the reaction zones. A controller controls the first and second actuators in a coordinated manner based at least in part on a flow rate of the second product from the second reaction zone.
    Type: Grant
    Filed: November 26, 2012
    Date of Patent: January 6, 2015
    Assignee: McAlister Technologies, LLC
    Inventor: Roy Edward McAlister
  • Patent number: 8926909
    Abstract: A method for modernizing an ammonia synthesis loop (1) with a first converter (10) and a second converter (11) in series, the first converter (10) comprises a cartridge with one or more catalyst beds, the second converter (11) comprises a catalyst bed in direct contact with said vessel, the method comprising the steps of removing the second converter, and boosting the first converter by replacing the cartridge with a high-efficiency cartridge comprising a plurality of adiabatic catalyst beds and inter-bed heat exchangers, or an isothermal catalyst bed, and by reducing the concentration of inerts in said first converter.
    Type: Grant
    Filed: December 27, 2010
    Date of Patent: January 6, 2015
    Assignee: Casale SA
    Inventors: Ermanno Filippi, Luca Bianchi
  • Patent number: 8926910
    Abstract: A hydrocarbon trap is provided for reducing cold-start hydrocarbon emissions. The trap contains an acidic absorption material for improving absorption of low molecular weight hydrocarbons. The acidic absorption materials may be used either alone or in combination with zeolites which are integrated into and/or supported on a monolithic substrate. The hydrocarbon trap may be positioned in the exhaust gas passage of a vehicle such that hydrocarbons are adsorbed on the trap and stored until the engine and exhaust reach a sufficient temperature for desorption.
    Type: Grant
    Filed: February 7, 2012
    Date of Patent: January 6, 2015
    Assignee: Ford Global Technologies, LLC
    Inventors: Jason Aaron Lupescu, Hungwen Jen
  • Patent number: 8926911
    Abstract: A mounting mat for an exhaust gas treatment device including inorganic fibers, organic binder, high temperature resistant inorganic microspheres, and optionally intumescent material. The exhaust gas treatment device includes a housing, a fragile catalyst support structure resiliently mounted within the housing, and the mounting mat disposed in a gap between the housing and the fragile catalyst support structure.
    Type: Grant
    Filed: December 16, 2010
    Date of Patent: January 6, 2015
    Assignee: Unifax I LLC
    Inventors: Amit Kumar, Thomas S. Lacki
  • Patent number: 8926912
    Abstract: An exhaust gas processing device includes a honeycomb structure in a pillar shape including a honeycomb unit, a catalytic agent, an inorganic mat member, a cylindrical metallic member and an insulating layer. The honeycomb unit includes cell walls to define a plurality of cells which extend from a first end of the honeycomb unit to a second end of the honeycomb unit along a longitudinal direction. The catalytic agent is provided on the cell walls. The inorganic mat member is wound around an outer peripheral surface of the honeycomb structure. The cylindrical metallic member accommodates the honeycomb structure around which the inorganic mat member is wound. The insulating layer has a thickness of about 20 ?m to about 400 ?m and is densely formed. The insulating layer is provided between an inner surface of the cylindrical metallic member and the inorganic mat member.
    Type: Grant
    Filed: October 27, 2011
    Date of Patent: January 6, 2015
    Assignee: Ibiden Co., Ltd.
    Inventors: Fumiyuki Mutsuda, Yoshitaka Fujita
  • Patent number: 8926913
    Abstract: A ceramic particulate filter having a porous catalytic material deposited on walls within the filter. Particulate matter is trapped in the walls of the filter and the catalytic material removes gases, such as nitrogen oxides (NOx), from gases passing through the filter. The filter, in one embodiment, is adaptable for use with internal combustion (gas and diesel) engines. A method of making the filter is also described.
    Type: Grant
    Filed: May 27, 2010
    Date of Patent: January 6, 2015
    Assignee: Corning Incorporated
    Inventors: David Henry, Maxime Moreno, Christophe Michel Remy
  • Patent number: 8926914
    Abstract: A liquid medium plasma discharge generating apparatus includes a main body; a power electrode, provided at one side within the main body, for receiving electric power; a diaphragm member provided within the main body, and consisting of a dielectric defining one or more holes or slits; and a liquid medium charged inside the main body, wherein a ground electrode may be further provided in the main body, opposite the power electrode with the diaphragm member therebetween, whereupon the diaphragm member is arranged contacting the ground electrode.
    Type: Grant
    Filed: July 21, 2010
    Date of Patent: January 6, 2015
    Assignee: Korea Basic Science Institute
    Inventors: Dong Chan Seok, Tai Hyeop Loh, Seung Ryul Yoo, Yong Cheol Hong, Bong Ju Lee
  • Patent number: 8926915
    Abstract: A smell-diffusing cell array substrate, an apparatus configured to transfer smell information and an electronic device are provided, the smell-diffusing cell array substrate includes at least one smell-diffusing cell having a microcapsule with a core-shell structure. A shell of the microcapsule includes a wall material and a photocatalyst dispersed in the wall material. A core of the microcapsule includes a smell-diffusion material and a hydrophilic liquid.
    Type: Grant
    Filed: June 30, 2010
    Date of Patent: January 6, 2015
    Assignee: Samsung Electronics Co., Ltd.
    Inventors: Jong-jin Park, Seung-nam Cha, Jae-hyun Hur, Jong-min Kim
  • Patent number: 8926916
    Abstract: A process and apparatus for recovering dichlorohydrins from a mixture comprising dichlorohydrins, one or more compounds selected from esters of dichlorohydrins, monochlorohydrins and/or esters thereof, and multihydroxylated-aliphatic hydrocarbon compounds and/or esters thereof, and optionally one or more substances comprising water, chlorinating agents, catalysts and/or esters of catalysts is disclosed. The mixture is stripped to recover dichlorohydrin(s) while distilling or fractionating the mixture to separate a lower boiling fraction comprising dichlorohydrin(s) from the mixture in one step. Advantages include more efficient recovery of dichlorohydrins for a given distillation column, less waste due to avoiding the conditions conducive to the formation of heavy byproducts, and reduced capital investment in recovery equipment.
    Type: Grant
    Filed: March 15, 2013
    Date of Patent: January 6, 2015
    Assignee: Dow Global Technologies LLC
    Inventors: Danil Tirtowidjojo, Andrei S. Merenov, Christian D. Kneupper, Bruce D. Hook, Anil Mehta
  • Patent number: 8926917
    Abstract: Described herein are embodiments of systems and methods for oxidizing gases. In some embodiments, a reaction chamber is configured to receive a fuel gas and maintain the gas at a temperature within the reaction chamber that is above an autoignition temperature of the gas. The reaction chamber may also be configured to maintain a reaction temperature within the reaction chamber below a flameout temperature. In some embodiments, heat and product gases from the oxidation process can be used, for example, to drive a turbine, reciprocating engine, and injected back into the reaction chamber.
    Type: Grant
    Filed: March 9, 2012
    Date of Patent: January 6, 2015
    Assignee: Ener-Core Power, Inc.
    Inventor: Boris A. Maslov
  • Patent number: 8926918
    Abstract: The present invention provides isothermal multitube reactors suitable for the production of chlorinated and/or fluorinated propene and higher alkenes from the reaction of chlorinated and/or fluorinated alkanes and chlorinated and/or fluorinated alkenes. The reactors utilize a feed mixture inlet temperature at least 20° C. different from a desired reaction temperature.
    Type: Grant
    Filed: September 11, 2013
    Date of Patent: January 6, 2015
    Assignee: Dow Global Technologies LLC
    Inventors: Max Markus Tirtowidjojo, Hua Bai, Debashis Chakraborty, Juergen Eiffler, Heinz Groenewald, Kurt Frederick Hirsekorn, Manfred Kokott, William J. Kruper, Jr., Thomas Ulrich Luebbe, Avani Maulik Patel, Shirley Shaw Sexton, Peter Wenzel, Marcus Wobser
  • Patent number: 8926919
    Abstract: After absorbing oxygen together with carbon dioxide in an absorber 103, absorbing liquid 104a is supplied to oxygen collecting units 13 and 14. The oxygen collecting units 13 and 14 include silver to collect the oxygen in the absorbing liquid 104a and eliminate the oxygen from the absorbing liquid 104a. A regenerating unit 15 separates and recovers the oxygen collected in one of the two oxygen collecting units 13 and 14 to regenerate the oxygen collecting unit when the other oxygen collecting unit is supplied with the absorbing liquid 104a. A continuous operation can be achieved by switching and using the two oxygen collecting units 13 and 14.
    Type: Grant
    Filed: November 4, 2010
    Date of Patent: January 6, 2015
    Assignee: Kabushiki Kaisha Toshiba
    Inventors: Takashi Ogawa, Manabu Sakurai, Yukio Ohashi, Hideo Kitamura
  • Patent number: 8926920
    Abstract: The invention relates to a plasma source (1) comprising: a conduit (3, 4) carrying a gas flow and an ionization chamber (10) in which a plasma is generated, wherein the ionization chamber (10) is connected to the conduit (3, 4), so that the gas flow in the conduit (3, 4) carries away gas particles out of the ionization chamber (10) thereby reducing the pressure in the ionization chamber (10).
    Type: Grant
    Filed: May 2, 2008
    Date of Patent: January 6, 2015
    Assignee: Max-Planck-Gesellschaft zur Foerderung der Wissenschaften e.V.
    Inventors: Gregor Eugen Morfill, Bernd Steffes
  • Patent number: 8926921
    Abstract: This analysis package comprises: a cartridge (3) for reactive products comprising several recipients (4) for reactive products arranged one above the other, wherein each recipient comprises a neck (6), wherein the neck of each recipient is provided with a closing device (7) and a plate (13) for receiving the cartridge (3), wherein the plate comprises a receptacle (22) which is open to the top for receiving the bases of the recipients (4) for reactive products which bases form the cartridge; and means for keeping the recipients for reactive products in position situated in distance from the receptacle, wherein the position keeping means are organized such that they cooperate with the necks of the recipients for reactive products when the bases of said recipients are received in the receptacle (22).
    Type: Grant
    Filed: July 19, 2007
    Date of Patent: January 6, 2015
    Assignee: Biocode Hycel France SA
    Inventors: Alain Rousseau, Olivier Lerat
  • Patent number: 8926922
    Abstract: The invention relates to a heated reaction chamber for processing a biochip and to a method for controlling said reaction chamber. The heated reaction chamber for processing a biochip comprises a chamber wall, constituted by a flexible circuit board (10), a circuit path (10.3) being configured on the flexible circuit board (10) and being used as the heating device. The use of a flexible circuit board as the wall of a reaction chamber allows for a low thermal capacity of the reaction chamber in the area of the heating device, thereby allowing the chamber to be heated up quickly.
    Type: Grant
    Filed: December 28, 2011
    Date of Patent: January 6, 2015
    Assignee: Zenteris GmbH
    Inventors: Jana Lepschi, Jens Gohring, Stefan Heydenhaus, Manuel Ullrich
  • Patent number: 8926923
    Abstract: The present invention relates to pharmaceutical fluids, and more particularly to a flexible container for aseptic transfer and/or mixing of pharmaceutical fluids. A biocontainer for the transfer of pharmaceutical fluids includes a flexible layer divided by a fold line into a front face and a rear face. The layer is folded about the fold line such that the front face and the rear face are facing each other to define an interior space between them. The biocontainer also includes a seam that connects the front and rear faces to each other to close the interior space. A fill port is also provided to communicate with the interior space. This fill port is intersected by the fold line.
    Type: Grant
    Filed: May 15, 2012
    Date of Patent: January 6, 2015
    Assignee: Meissner Filtration Products, Inc.
    Inventor: Max D. Blomberg
  • Patent number: 8926924
    Abstract: A method for the selective recovery of uranium from a sulphate-based acidic aqueous solution of uranium containing iron and other metals by means of solvent extraction, in which the extractant used in the organic extraction solution is bis(2-ethylhexyl) phosphate and a liquid branched trialkyl phosphine oxide is the modifying agent. It is typical of the method that the uranium concentration in the feed solution is less than 50 mg/l and a reducing agent is introduced into the aqueous and/or extraction solution to prevent the permanent oxidation of iron to trivalent. In the method the majority of the extraction solution is circulated in a circuit consisting of the extraction stage and the storage tank and only a small part of the uranium-loaded extraction solution is routed to scrubbing and stripping.
    Type: Grant
    Filed: January 27, 2011
    Date of Patent: January 6, 2015
    Assignee: Outotec Oyj
    Inventors: Bror Nyman, Erkki Paatero, Stig-Erik Hultholm, Eero Ekman
  • Patent number: 8926925
    Abstract: A catalyst for the selective catalytic reduction of nitrogen oxides in diesel engine exhaust gases using ammonia or a precursor compound decomposable to ammonia. The catalyst includes two superposed coatings applied to a support body, of which the first coating applied directly to the support body includes a transition metal-exchanged zeolite and/or a transition metal-exchanged zeolite-like compound, and effectively catalyzes the SCR reaction. The second coating is applied to the first coating to cover it on the exhaust gas side and prevent hydrocarbons having at least three carbon atoms present in the exhaust gas from contacting the first coating, without blocking the passage of nitrogen oxides and ammonia to the first coating. The second coating may be formed from small-pore zeolites and/or small-pore, zeolite-like compounds, and from suitable oxides, especially silicon dioxide, germanium dioxide, aluminum oxide, titanium dioxide, tin oxide, cerium oxide, zirconium dioxide and mixtures thereof.
    Type: Grant
    Filed: March 1, 2012
    Date of Patent: January 6, 2015
    Assignee: Umicore AG & Co. KG
    Inventors: Nicola Soeger, Katja Adelmann, Michael Seyler, Thomas R. Pauly, Gerald Jeske
  • Patent number: 8926926
    Abstract: A thin layer of low mean-pore-size filter material that permanently accommodates the accumulation of exhaust particulates (as soot or a soot cake) is carried on a porous ceramic support. The supported filter material is closely coupled with the exhaust manifold of the engine, for the purpose of passive regeneration of stored particulates, and removes particulate matter from the exhaust which is directed through the filter layer and ceramic support. The oxygen content of the exhaust oxidizes the particulate matter on the filter material. In a preferred embodiment, a thin layer of the filter material is supported on inlet channel walls of a wall flow-through ceramic filter body to remove the particles from the exhaust. The filter body comprises an upstream exhaust gas flow inlet face with openings to a plurality of inlet channels and a downstream face with a like plurality of openings from outlet channels. The inlet channels are closed at the downstream face and the outlet channels are closed at the inlet face.
    Type: Grant
    Filed: November 25, 2009
    Date of Patent: January 6, 2015
    Assignee: GM Global Technology Operations LLC
    Inventors: Calvin K. Koch, Paul M. Najt, Kushal Narayanaswamy, David L. Hilden
  • Patent number: 8926927
    Abstract: A process for the removal of co2 from a gas comprising the steps of: (a) contacting the gas (1) in an absorber (2) with an aqueous solution of one or more carbonate compounds in the presence of an accelerator, thereby reacting at least part of the co2 to form a bicarbonate compound, under conditions such that at least a part of the bicarbonate compound formed precipitates, forming a bicarbonate slurry; (b) subjecting at least part of the bicarbonate slurry to a concentration step (5) to obtain an aqueous solution (6) and a concentrated bicarbonate slurry (7), wherein the concentrated bicarbonate slurry comprises from 20 to 80 wt % of bicarbonate compounds; (c) returning at least part of the aqueous solution to the absorber; (d) pressurising (8) the concentrated bicarbonate slurry, (e) transferring the pressurized concentrated bicarbonate slurry to a regenerator (12) and applying heat to obtain a co2-rich gas stream (13) and a regenerated carbonate stream (14).
    Type: Grant
    Filed: June 19, 2009
    Date of Patent: January 6, 2015
    Assignee: Shell Oil Company
    Inventor: Jiri Peter Thomas Van Straelen
  • Patent number: 8926928
    Abstract: The invention includes a process for reducing the amount of HCN discharged to atmosphere from a FCC unit, having a regenerator and a means for collecting and supporting catalyst particles. The process comprises adding a catalyst to the regenerator flue gas prior to entering the collecting means and precipitating the catalyst in the collecting means to form a catalyst bed. Ammonia or ammonia precursor is optionally added to the flue gas. The flue gas HCN is reacted in the presence of water and oxygen in the flue gas, and optional ammonia or ammonia precursor, at 200° C. to 800° C. in the presence of the catalyst bed to reduce the HCN amount, and the flue gas containing a reduced amount of HCN is discharged to atmosphere. The catalyst is one or more supported transition or lanthanide metal catalysts. The process can also be utilized in any combustion process.
    Type: Grant
    Filed: February 21, 2014
    Date of Patent: January 6, 2015
    Assignee: Johnson Matthey Process Technologies, Inc.
    Inventors: Martin Evans, Raymond Paul Fletcher, Xunhua Mo
  • Patent number: 8926929
    Abstract: Silicon granules are produced by chemical vapor deposition on seed particles inside a chamber within a fluidized bed reactor. The chamber contains an obstructing member, or bubble breaker, which is sized and shaped to restrict the growth of bubbles inside the chamber and which has interior passageways through which a heated fluid passes to transfer heat to gas inside the chamber.
    Type: Grant
    Filed: January 11, 2010
    Date of Patent: January 6, 2015
    Assignee: REC Silicon Inc
    Inventors: Michael V. Spangler, Glen Stucki
  • Patent number: 8926930
    Abstract: The present invention provides an alkali metal salt of fluorosulfonyl imide having favorable heat resistance and a reduced content of specific impurities and a water content, and provides a method for producing an alkali metal salt of fluorosulfonyl imide, which is capable of easily removing a solvent from a reaction solution. An alkali metal salt of fluorosulfonyl imide of the present invention is represented by the following general formula (I) and has a mass loss rate of 2% or less when the alkali metal salt of fluorosulfonyl imide is kept at 100° C. for 8 hours under an air current. A method for producing an alkali metal salt of fluorosulfonyl imide of the present invention comprises a step of concentrating a solution of the alkali metal salt of fluorosulfonyl imide by bubbling a gas into a reaction solution containing the alkali metal salt of fluorosulfonyl imide, and/or concentrating a solution of the alkali metal salt of fluorosulfonyl imide by thin layer distillation.
    Type: Grant
    Filed: May 27, 2011
    Date of Patent: January 6, 2015
    Assignee: Nippon Shokubai Co., Ltd.
    Inventors: Yuichi Sato, Shimpei Sato, Yasunori Okumura
  • Patent number: 8926931
    Abstract: The present invention generally relates to a catalytic gasification of coal. Catalytic gasification of a Wyodak low-sulfur sub-bituminous coal from the Powder River Basin of Wyoming was investigated using an inexpensive sodium carbonate catalyst applied via incipient wetness impregnation. Experiments in an atmospheric pressure fixed-bed laboratory gasifier were performed to evaluate the effects of reaction temperature, feed gas steam content, and Na2CO3 loading on the catalytic gasification of the Wyodak coal. The temperature range investigated (700-900° C.) was selected with consideration of the Na2CO3 melting point (850° C.) to reduce the loss by volatilization of sodium. Sodium was found to be active during both pyrolysis and gasification steps. The catalyst was most cost-effective at addition levels of approximately 3 wt %. The random pore model provided a good fit to the conversion versus time data collected under both the catalytic and the uncatalytic conditions.
    Type: Grant
    Filed: August 3, 2012
    Date of Patent: January 6, 2015
    Inventors: Maohong Fan, Morris Argyle, Tiberiu Popa
  • Patent number: 8926932
    Abstract: The present invention provides a high surface area porous carbon material and a process for making this material. In particular, the carbon material is derived from biomass and has large mesopore and micropore surfaces that promote improved adsorption of materials and gas storage capabilities.
    Type: Grant
    Filed: November 8, 2007
    Date of Patent: January 6, 2015
    Assignee: The Curators of the University of Missouri
    Inventors: Peter Pfeifer, Galen J. Suppes, Parag Shah, Jacob W. Burress
  • Patent number: 8926933
    Abstract: The present invention is directed to methods of making nanofiber yarns. In some embodiments, the nanotube yarns comprise carbon nanotubes. Particularly, such carbon nanotube yarns of the present invention provide unique properties and property combinations such as extreme toughness, resistance to failure at knots, high electrical and thermal conductivities, high absorption of energy that occurs reversibly, up to 13% strain-to-failure compared with the few percent strain-to-failure of other fibers with similar toughness, very high resistance to creep, retention of strength even when heated in air at 450° C. for one hour, and very high radiation and UV resistance, even when irradiated in air.
    Type: Grant
    Filed: November 9, 2005
    Date of Patent: January 6, 2015
    Assignee: The Board of Regents of The University of Texas System
    Inventors: Mei Zhang, Ray H. Baughman, Kenneth Ross Atkinson
  • Patent number: 8926934
    Abstract: A method for growing an array of carbon nanotubes includes the steps of: (a) providing a substrate; (b) forming a catalyst film on the substrate, the catalyst film including carbonaceous material; (c) introducing a mixture of a carrier gas and a carbon source gas flowing across the catalyst film; (d) focusing a laser beam on the catalyst film to locally heat the catalyst to a predetermined reaction temperature; and (e) growing an array of the carbon nanotubes from the substrate.
    Type: Grant
    Filed: November 2, 2007
    Date of Patent: January 6, 2015
    Assignees: Tsinghua University, Hon Hai Precision Industry Co., Ltd.
    Inventors: Kai-Li Jiang, Zhuo Chen, Chun-Xiang Luo, Shou-Shan Fan
  • Patent number: 8926935
    Abstract: Processes for preparing or handling graphene sheets wherein low bulk density graphene sheets are compressed. The graphene sheets may be produced by a thermal treatment such as exfoliation of precursor or reduction or annealing of previously existing graphene sheets and conveyed in a closed system to a compression apparatus.
    Type: Grant
    Filed: April 23, 2010
    Date of Patent: January 6, 2015
    Assignee: Vorbeck Materials Corp.
    Inventors: Gautham Krishnaiah, John Lettow
  • Patent number: 8926936
    Abstract: The invention relates to a condenser, having a process gas side and a heat transfer medium side said condenser being configured for feeding a hot process gas containing a condensable component to an inlet of the condensing side, and being further configured for withdrawing a cooled process gas from an outlet of the condensing side, and being even further configured for withdrawing a condensate in a position proximate to one end of the condenser, and said condenser having the process gas side divided in a process gas cooling zone configured for having a cool heat transfer medium inlet and a heated heat transfer medium outlet, and a process gas re-heating zone downstream the process gas cooling section, configured for re-heating of the process gas, as well as a processes for condensation and production of sulphuric acid employing such a condenser.
    Type: Grant
    Filed: March 16, 2012
    Date of Patent: January 6, 2015
    Assignee: Haldor Topsoe A/S
    Inventors: Anders Helbo Hansen, Anders Juul Rasmussen, Mads Lykke
  • Patent number: 8926937
    Abstract: The present invention relates to a novel method for preparing a new type of catalyst for the oxidation of CO in a reactant gas or air. The method provides the preparation of a catalyst having nano-sized metal particles and a capping agent deposited on a solid support. The size and distribution of the metal particles can be easily controlled by adjusting reaction condition and the capping agent used. The catalyst prepared has high activity at low temperature toward selective oxidation of CO and is stable over an extended period of time. The catalyst can be used in air filter devices, hydrogen purification processes, automotive emission control devices (decomposition of NOx, x is the integer 1 or 2), F-T synthesis, preparation of fuel-cell electrode, photocatalysis and sensors.
    Type: Grant
    Filed: November 13, 2006
    Date of Patent: January 6, 2015
    Assignee: Agency for Science, Technology and Research
    Inventors: Ziyi Zhong, Jianyi Lin
  • Patent number: 8926938
    Abstract: A method of manufacturing crystalline titanium dioxide (TiO2) powder, a method of a negative active material, and a negative active material and a rechargeable lithium battery including the crystalline titanium dioxide (TiO2) powder are provided. The method of manufacturing the crystalline titanium dioxide powder may include: preparing a titanyl chloride (TiOCl2) aqueous solution by adding titanium tetrachloride (TiCl4) to water at a temperature ranging from 0° C. to 10° C.; adding alcohol, urea, and a sphere-shaping agent to the titanyl chloride aqueous solution to prepare a mixture; and hydrothermally synthesizing the mixture under a pressure ranging from 1.5 atm to 5 atm at a temperature ranging from 80° C. to 155° C.
    Type: Grant
    Filed: January 13, 2010
    Date of Patent: January 6, 2015
    Assignee: IUCF-HYU (Industry-University-Cooperation Foundation Hanyang University)
    Inventors: Yang-Kook Sun, Ce Jin, Hun-Gi Jung, Sung-Woo Oh
  • Patent number: 8926939
    Abstract: The invention provides methods and compositions for the addition of a CGM to precipitation liquor of a Bayer process. The CGM comprises a neopolyol, an ester derived from a neopolyol, and/or an ether derived from a neopolyol. Optionally the CGM may comprise water and/or an antifoaming agent and/or a hydrocarbon carrier liquid. The CGM is quite effective and results in a significant increase in mean particle size of produced alumina crystals.
    Type: Grant
    Filed: March 13, 2013
    Date of Patent: January 6, 2015
    Assignee: Ecolab USA Inc.
    Inventors: Dmitri L. Kouznetsov, Jianjun Liu, David H. Slinkman
  • Patent number: 8926940
    Abstract: Provided are: a device and method for generating hydrogen from a hydrogen reservoir, whereby it is possible to produce two weight equivalents of the weight equivalent of the hydrogen which can be emitted from ammonia borane-based compounds, in other words a hydrogen storage capacity of 13.0%, in a short time at low temperature; a catalyst used with the same; and a device for using emitted hydrogen.
    Type: Grant
    Filed: June 16, 2010
    Date of Patent: January 6, 2015
    Assignee: Youl Chon Chemical Co. Ltd.
    Inventors: Dong Yun Shin, Nok Jung Song, Sung Kwan Kim
  • Patent number: 8926941
    Abstract: The invention involves the use of a temperature swing adsorption process in steam methane reforming or autothermal reforming H2-production processes to capture CO2 and produce nearly pure off gas streams of CO2 for sequestration or enhanced oil recovery (EOR). The hydrogen stream output is substantially pure and can be recycled as a fuel to the steam methane reformer furnace or used in other petroleum and petrochemical processes.
    Type: Grant
    Filed: March 15, 2013
    Date of Patent: January 6, 2015
    Assignee: Chevron U.S.A. Inc.
    Inventor: Raja A. Jadhav
  • Patent number: 8926942
    Abstract: Methods and systems for generating hydrogen and separating carbon dioxide from a feed stream including hydro-carbons and water are disclosed. In some embodiments, the method includes the following: providing a catalytic chamber including a monolithic structure having surfaces coated with carbon dioxide adsorbing materials and one or more washcoated layers of combined steam reforming, water gas shift, and combustion catalysts; directing the feed stream into said catalytic chamber; controlling the feed stream so that it has a temperature range that allows the reactive generation of carbon dioxide and hydrogen gas but does not cause substantial development of coke between hydrocarbons in the feed stream and said surfaces of said monolithic structure; and adsorbing said carbon dioxide generated by heating the feed stream, wherein said carbon dioxide is adsorbed onto carbon dioxide adsorbing materials on said surfaces of said monolithic structure.
    Type: Grant
    Filed: February 22, 2008
    Date of Patent: January 6, 2015
    Assignee: The Trustees of Columbia University in the City of New York
    Inventors: Marco J. Castaldi, Robert J. Farrauto, Tuncel M. Yegulalp
  • Patent number: 8926943
    Abstract: The present invention provides a method for the generation of 223Ra of pharmaceutically tolerable purity comprising i) preparing a generator mixture comprising 227Ac, 227Th and 223Ra; ii) loading said generator mixture onto a strong base anion exchange resin; iii) eluting said 223Ra from said strong base anion exchange resin using a first mineral acid in an alcoholic aqueous solution to give a first eluted 223Ra solution; iv) loading the 223Ra of the first eluted 223Ra solution onto a strong acid cation exchange resin; and v) eluting the 223Ra from said strong acid cation exchange resin using a second mineral acid in aqueous solution to provide a second eluted solution. The invention additionally provides products of corresponding purity and/or products obtained or obtainable by such a method.
    Type: Grant
    Filed: April 29, 2011
    Date of Patent: January 6, 2015
    Assignee: Algeta ASA
    Inventors: Jan Roger Karlson, Peer Børretzen
  • Patent number: 8926944
    Abstract: Compounds according to Formula I and Formula II are potent inhibitors of PSMA activity: The invention also provides pharmaceutical compositions of a complex of a radionuclide and a Formula I compound or a Formula II compound and methods of using the radionuclide complex of a Formula I compound or a Formula II compound for treating or diagnosis of a disease or a condition associated with PSMA activity.
    Type: Grant
    Filed: August 3, 2012
    Date of Patent: January 6, 2015
    Assignee: Molecular Insight Pharmaceuticals
    Inventors: John W. Babich, Craig Zimmerman, John L. Joyal, Genliang Lu