Liquid Contacting (e.g., Sorption, Scrubbing, Etc.) Patents (Class 95/149)
  • Patent number: 7942951
    Abstract: A low-maintenance scrubber inlet device is provided for delivering effluent gases to gas scrubbers. The scrubber inlet device may comprise an interior volume configured to receive effluent gases and direct the effluent gases into the scrubber while maintaining the temperature of the effluent gases. In some instances, a heated gas is introduced to maintain the effluent gas temperature. The scrubber interface device is configured to deliver the effluent gas stream from the inlet manifold to the gas scrubbing system, and to have a very low susceptibility to clogging.
    Type: Grant
    Filed: April 24, 2009
    Date of Patent: May 17, 2011
    Assignee: Airgard, Inc.
    Inventors: Mark Johnsgard, Kris Johnsgard
  • Publication number: 20110107912
    Abstract: A spray dryer absorber (8) is operative for removing gaseous pollutants from a hot process gas and comprises a spray dryer chamber (12) and a plurality of dispersers (14, 16, 18, 20) mounted at a roof (22) of the spray dryer chamber (12), each such disperser (14, 16, 18, 20) being operative for dispersing a portion of the hot process gas around a respective atomizer (24). Said plurality of dispersers (14, 16, 18, 20) comprises a central disperser (20), which is located at the centre (C) of the roof (22) of the spray dryer chamber (12), and at least 3 peripheral dispersers (14, 16, 18) surrounding the central disperser (20), each of said peripheral dispersers (14, 16, 18) being located at substantially the same distance (D) from the periphery (P) of the spray dryer chamber (12).
    Type: Application
    Filed: July 1, 2009
    Publication date: May 12, 2011
    Inventors: Stefan Åhman, Lars-Erik Johansson, Nabil Rafidi, Ali Tabikh, Henrik Tryggeson
  • Patent number: 7938968
    Abstract: A method of storing and dispensing a fluid includes providing a vessel configured for selective dispensing of the fluid therefrom. The vessel contains an ionic liquid therein. The fluid is contacted with the ionic liquid for take-up of the fluid by the ionic liquid. There is substantially no chemical change in the ionic liquid and the fluid. The fluid is released from the ionic liquid and dispensed from the vessel.
    Type: Grant
    Filed: March 18, 2008
    Date of Patent: May 10, 2011
    Assignee: Matheson Tri Gas
    Inventors: Carrie L. Wyse, Robert Torres, Jr., Tadaharu Watanabe, Joseph V. Vininski
  • Patent number: 7931857
    Abstract: A mixing chamber, for the application of a disinfecting agent by vapour, exploits the combined and combined and synergistic action of the mixed product and comprises a calming zone, at least one section (15) for inletting vapour in said calming zone, at least one section (7) for outletting vapour, and for directing it to an applicator nozzle, characterized in that it comprises a spray nozzle (5) inletting a disinfecting agent under pressure in said calming zone, drawing it from a suitable tank (3).
    Type: Grant
    Filed: March 25, 2005
    Date of Patent: April 26, 2011
    Inventor: Fabrizio Ramaccioni
  • Publication number: 20110084020
    Abstract: A method for removing methane from biogas is described. The method includes: (i) receiving biogas including methane and other components into a first tank; (ii) receiving water into the first tank; (iii) contacting the biogas with the water inside the first tank; (iv) dispensing methane gas from an outlet of the first tank; and (v) producing from the tank an effluent stream that includes other components of the biogas.
    Type: Application
    Filed: October 9, 2009
    Publication date: April 14, 2011
    Inventor: Christopher OTT
  • Patent number: 7914685
    Abstract: Compositions comprising synthetic rock, e.g., aggregate, and methods of producing and using them are provided. The rock, e.g., aggregate, contains CO2 and/or other components of an industrial waste stream. The CO2 may be in the form of divalent cation carbonates, e.g., magnesium and calcium carbonates. Aspects of the invention include contacting a CO2 containing gaseous stream with a water to dissolve CO2, and placing the water under precipitation conditions sufficient to produce a carbonate containing precipitate product, e.g., a divalent cation carbonate.
    Type: Grant
    Filed: June 4, 2010
    Date of Patent: March 29, 2011
    Assignee: Calera Corporation
    Inventors: Brent Constantz, Andrew Youngs, James O'Neil, Kasra Farsad, Joshua Patterson, John Stagnaro, Ryan Thatcher, Chris Camire
  • Publication number: 20110061530
    Abstract: The invention relates to a gas liquid contactor and effluent cleaning system and method and more particularly to an array of nozzles configured to produce uniformly spaced flat liquid jets with reduced linear stability. An embodiment of the invention is directed towards a stability unit used with nozzles of a gas liquid contactor and/or an enhancer for stable jet formation, and more particularly to reducing the stability of liquid jets formed from nozzles of the gas liquid contactor. Another aspect of the invention relates to operating the apparatus at a condition that reduces the stability of liquid jets, e.g., a droplet generator apparatus. Yet another aspect of the invention relates to operation of the apparatus with an aqueous slurry. Still another aspect of the invention is directed towards to an apparatus for substantially separating at least two fluids.
    Type: Application
    Filed: November 19, 2010
    Publication date: March 17, 2011
    Applicant: Neumann Systems Group, Inc.
    Inventors: David Kurt Neumann, Andrew R. Awtry, Jason K. Brasseur, Keith R. Hobbs, Boris R. Nizamov, Thomas Lee Henshaw
  • Patent number: 7901641
    Abstract: One exemplary embodiment can be a sprayer for distributing at least one fluid in a vessel. The sprayer can include a first member having a first surface and a second surface forming at least one aperture there-through. Generally, the at least one aperture is skewed with respect to a substantially vertical axis passing through a center of the first member for distributing the at least one fluid in the vessel.
    Type: Grant
    Filed: July 22, 2008
    Date of Patent: March 8, 2011
    Assignee: UOP LLC
    Inventors: Sailesh B. Kumar, Richard S. Hatami, Robert Crismyre
  • Publication number: 20110048232
    Abstract: An air cleaner is described comprising a housing having an air inlet and an air exhaust extending therethrough, a refill for containing a reservoir of liquid which is releasable from the housing, a nebuliser within the housing configured, in use, to be in fluid contact with the source of liquid to generate a mist of liquid droplets, said nebuliser being configured, in use, to eject the mist upwardly, a chamber within the housing in which the mist is retained, a fan within the housing configured, in use, to generate a flow of air through the air inlet and into the chamber such that at least some of the contaminants in the air flow are urged by the mist out of the flow of air and toward the refill. A refill for the air cleaner is also described as well as the use of said air cleaner.
    Type: Application
    Filed: March 6, 2009
    Publication date: March 3, 2011
    Applicant: Reckitt & Coleman (Overseas) Limited
    Inventors: Jocelin Langford, Ellen Piercy, Steve Walsh
  • Patent number: 7896954
    Abstract: A method of storing and dispensing a fluid includes providing a vessel configured for selective dispensing of the fluid therefrom. A solvent mixture comprising an ionic liquid and a cosolvent is provided within the vessel. The fluid is contacted with the solvent mixture for take-up of the fluid by the solvent mixture. The fluid is released from the ionic liquid and dispensed from the vessel.
    Type: Grant
    Filed: September 1, 2009
    Date of Patent: March 1, 2011
    Assignee: Matheson Tri-Gas, Inc.
    Inventors: Carrie L. Wyse, Robert Torres, Jr., Joseph V. Vininski
  • Patent number: 7896947
    Abstract: An air filtering apparatus including an electrolytic bath for electrolyzing water to generate electrolytic water, a gas-liquid contact member in which the electrolytic water generated in the electrolytic bath infiltrates and an air blowing fan for blowing air to the gas-liquid contact member is equipped with a water circulation passage through which the electrolytic water is supplied/circulated to the gas-liquid contact member, the electrolytic water passing through the gas-liquid contact member is received and stocked by a water receiving tray and the stocked electrolytic water is pumped up and supplied to the gas-liquid contact member, a drain pipe branched from the water circulation passage, a water stop valve for opening/closing the drain pipe, and a drain receiver for receiving and stocking the electrolytic water discharged from the drain pipe when the water stop valve is opened.
    Type: Grant
    Filed: August 1, 2007
    Date of Patent: March 1, 2011
    Assignee: Sanyo Electric Co., Ltd.
    Inventors: Kazuo Takahashi, Yoichi Uchida, Hiroaki Usui, Toshio Fukushima, Toru Arakawa, Hiroyuki Kobayashi, Tsuyoshi Rakuma, Tetsuya Yamamoto
  • Publication number: 20100319539
    Abstract: The invention relates to a gas liquid contactor and effluent cleaning system and method and more particularly to an array of nozzles configured to produce uniformly spaced flat liquid jets shaped to minimize disruption from a gas. An embodiment of the invention is directed towards a gas liquid contactor module including a liquid inlet and outlet and a gas inlet and outlet. An array of nozzles is in communication with the liquid inlet and the gas inlet. The array of nozzles is configured to produce uniformly spaced flat liquid jets shaped to minimize disruption from a gas flow and maximize gas flow and liquid flow interactions while rapidly replenishing the liquid.
    Type: Application
    Filed: August 26, 2010
    Publication date: December 23, 2010
    Applicant: Neumann Systems Group, Inc.
    Inventors: David Kurt Neumann, Nicholas J. Miller, Boris R. Nizamov, Thomas Lee Henshaw, Andrew R. Awtry, Jason K. Brasseur, Keith R. Hobbs, Jason A. Tobias, William E. McDermott
  • Publication number: 20100319538
    Abstract: A spray dryer absorber (308) is operative for removing gaseous pollutants from a hot process gas and comprises at least two dispersers (314, 316, 318, 320, 321). Each such disperser is operative for dispersing a portion of the hot process gas around a respective atomizer (24), and for providing the respective portion of the hot process gas with a rotary movement around the atomizer (24). At least one specific disperser (314) is operative for providing the hot process gas passing through that specific disperser (314) with a rotary movement in a direction (FC), which is opposite to the direction (FCC) of the rotary movement of the respective portion of the hot process gas dispersed by at least one other disperser (316) being located closest to that specific disperser (314).
    Type: Application
    Filed: January 30, 2009
    Publication date: December 23, 2010
    Applicant: AHMAN STEFAN O.H.
    Inventors: Stefan O. H. Ahman, Nabil E. Rafidi, Ali M. Tabikh, Lars-Erik Johansson, Thomas E. Pearson
  • Patent number: 7850761
    Abstract: There is provided an apparatus for highly purifying nitric oxide by removing impurities included in nitric oxide, which comprises: a number of dehumidifiers connected to one another in a series, to remove water and carbon dioxide from the nitric oxide; a vaporizing and liquefying unit for respectively separating impurities into a gaseous state and a liquid state by cooling the nitric oxide which passed through the dehumidifiers at sub-zero temperatures; a storage tank for storing highly purified nitric oxide separated by the vaporizing and liquefying unit; an exhaust pump for discharging gaseous impurities, separated by the vaporizing and liquefying unit, to a scrubber; an outlet for discharging liquid impurities, separated by the vaporizing and liquefying unit, to the scrubber; and the scrubber 50 for purifying the gaseous and liquid impurities.
    Type: Grant
    Filed: March 23, 2007
    Date of Patent: December 14, 2010
    Assignee: Wonikmurtrealize Co., Ltd.
    Inventors: Jun-Youl Lee, Bong-Soo Seo
  • Patent number: 7850929
    Abstract: An internal static mixing system such as a disperser of mesh wire or expanded metal co-knit with a multi filament material selected from inert polymers, catalytic polymers, catalytic metals or mixtures in combination with a vertical reactor having a reaction zone and the disperser disposed in said reaction zone, particularly for carrying out paraffin alkylation using acid catalyst is disclosed. The wire mesh provides the structural integrity of the system as well as the open space required in reactors for the movement of vapors and liquids though the system. The disperser may be in sheets, bundles or bales or positioned within a frame.
    Type: Grant
    Filed: June 28, 2006
    Date of Patent: December 14, 2010
    Assignee: Catalytic Distillation Technologies
    Inventors: Lawrence A. Smith, Jr., Abraham P. Gelbein, John R. Adams
  • Publication number: 20100288125
    Abstract: An absorption medium for the removal of acid gases from a fluid stream comprises an aqueous solution a) of at least one amine and b) at least one phosphonic acid, wherein the molar ratio of b) to a) is in the range from 0.0005 to 1.0. The phosphonic acid is, e.g., 1-hydroxyethane-1,1-diphosphonic acid. The absorption medium exhibits a reduced regeneration energy requirement compared with absorption media based on amines or amine/promoter combinations, without significantly decreasing the absorption capacity of the solution for acid gases.
    Type: Application
    Filed: October 9, 2009
    Publication date: November 18, 2010
    Inventors: Gerald Vorberg, Torsten Katz, Georg Sieder, Christian Riemann, Erika Dengler
  • Patent number: 7819942
    Abstract: The invention relates to a method for producing a high-molecular polyester from a solidified polyester prepolymer by solid phase polycondensation. The polycondensation cleavage products of the solid phase polycondensation reaction are extracted from the product by means of a process gas, and the process gas is then cleaned and essentially recycled. According to the invention, the process gas is cleaned by means of an aqueous washing liquid. The invention also relates to an installation for carrying out the inventive method, said installation containing a crystallisation appliance (1) and a reaction appliance (2). A gas outlet (2d) of the reaction appliance (2) is directly or indirectly connected to a gas inlet (3c) in a gas cleaning system (3), and a gas outlet (3d) of the gas cleaning system (3) is connected to a gas inlet (2c) of the reaction appliance (2).
    Type: Grant
    Filed: August 22, 2005
    Date of Patent: October 26, 2010
    Assignee: Buhler AG
    Inventors: Andreas Christel, Claudemiro Ferreira
  • Publication number: 20100263535
    Abstract: A method of mixing an oxygen gas with a hydrocarbon-containing gas includes the steps of wet scrubbing the oxygen gas in a wet scrubber, supplying oxygen gas from the wet scrubber to a gas mixer and mixing the oxygen gas with the hydrocarbon-containing gas in the gas mixer. Wet scrubbers for use in the method may take various forms, including packed-tower, bubble cap, and sparger-type wet scrubbers. The removal of the particulate matter reduces the risk of ignition of the hydrocarbon-containing gas in the gas mixer. The use of a wet scrubber in the oxygen supply line overcomes many problems currently faced with screen and filters, as per current practice.
    Type: Application
    Filed: November 12, 2008
    Publication date: October 21, 2010
    Applicant: DOW TECHNOLOGY INVESTMENTS LLC
    Inventors: Harvey E. Andresen, Christopher P. Christenson, Charles W. Lipp, John R. Mayer, Thomas J. Kling, Victor R. Fey, Laurence G. Britton, Michael J. Rangitsch, Michael L. Hutchison
  • Publication number: 20100242730
    Abstract: Improved contacting stages for carrying out vapor-liquid contacting are described. Particular aspects are directed to co-current vapor-liquid contacting devices with non-parallel contacting stages that provide an efficient usage of column space for fluid flow and contacting, in order to achieve high capacity, high efficiency, and low pressure drop. The fabrication of such contacting stages is improved using one or more structural enhancements, preferably a combination of enhancements, to achieve easy installation and significantly improved rigidity between the various parts and thereby avoid movement/separation of these parts. This reduces the possibility of fluid leakage across, and consequently vapor and/or liquid bypassing of, the contacting stage.
    Type: Application
    Filed: March 31, 2009
    Publication date: September 30, 2010
    Inventors: Thomas C. Heldwein, Joseph Agnello, Aaron J. Muck, Zhanping Xu, Brian J. Nowak
  • Publication number: 20100229723
    Abstract: A method and apparatus for recovering a gaseous component from an incoming gas stream is described. The incoming gas stream is contacted with a lean aqueous absorbing medium to absorb at least a portion of the gaseous component from the incoming gas stream to form a lean treated gas stream and a rich aqueous absorbing medium. At least a portion of the gaseous component is desorbed from the rich aqueous absorbing medium at a temperature to form an overhead gas stream and a regenerated aqueous absorbing medium. At least a portion of the overhead gas stream is treated to recover a condensate stream. At least a portion of the condensate stream is used to form a heated stream. At least a portion of the heated stream is recycled back to the desorbing step. Novel absorbing medium compositions to recover carbon dioxide and/or hydrogen sulfide are also described.
    Type: Application
    Filed: May 29, 2008
    Publication date: September 16, 2010
    Applicant: UNIVERSITY OF REGINA
    Inventors: Don GELOWITZ, Paitoon TONTIWACHWUTHIKUL, Raphael IDEM
  • Patent number: 7794523
    Abstract: The present invention relates to methods and systems for processing an exhaust stream containing a recyclable component mixed with other components and impurities to produce a high purity product that contains all of the recyclable component. One or more waste streams containing none of the recyclable component are also produced. The present invention particularly relates to the recovery of valuable recyclable components used in the manufacture of semiconductor devices.
    Type: Grant
    Filed: November 14, 2006
    Date of Patent: September 14, 2010
    Assignee: Linde LLC
    Inventor: Walter H. Whitlock
  • Patent number: 7789945
    Abstract: A process for maintaining a low carbon monoxide content in a carbon dioxide product that is made in a synthesis gas purification process is disclosed. More particularly, the invention involves an improved process in which a portion of a loaded solvent is sent through a carbon dioxide absorber instead of to a series of carbon dioxide flash drums.
    Type: Grant
    Filed: September 25, 2009
    Date of Patent: September 7, 2010
    Assignee: UOP LLC
    Inventors: William J. Lechnick, Leonid Bresler, Lamar A. Davis
  • Publication number: 20100204074
    Abstract: Disclosed are ionic liquids that have a low melting point. Said liquids are provided in the form of compounds that are selected among the group comprising tetraalkyl ammonium salts, benzyl trialkyl ammonium salts, tetraalkyl phosphonium salts, and benzyl trialkyl phosphonium salts, provided that at last two alkyl groups represent aliphatic radicals with chain lengths ranging from 8 to 10 C atoms, and provided that not all alkyl radicals are identical.
    Type: Application
    Filed: February 23, 2007
    Publication date: August 12, 2010
    Applicant: COGNIS IP MANAGEMENT GMBH
    Inventors: Hendrik Huesken, Paul Birnbrich, Gilbert Schenker
  • Patent number: 7771514
    Abstract: A low-maintenance scrubber inlet device is provided for delivering effluent gases to gas scrubbers. The scrubber inlet device comprises a scrubber interface device in fluid communication with an inlet manifold. The inlet manifold is configured to receive effluent gases and direct the effluent gases into the scrubber interface device while maintaining the temperature of the effluent gases. In some instances, a heated gas is introduced into the inlet manifold to maintain the effluent gas temperature. The scrubber interface device is configured to deliver the effluent gas stream from the inlet manifold to the gas scrubbing system, and to have a very low susceptibility to clogging.
    Type: Grant
    Filed: March 19, 2004
    Date of Patent: August 10, 2010
    Assignee: Airgard, Inc.
    Inventors: Mark Johnsgard, Kris Johnsgard
  • Publication number: 20100186590
    Abstract: An absorption medium for removing acid gases from a fluid stream comprises an aqueous solution of a) of at least one metal salt of an aminocarboxylic acid, and b) of at least one acid promoter, wherein the molar ratio of b) to a) is in the range from 0.0005 to 1.0. The acid promoter is selected from mineral acids, carboxylic acids, sulfonic acids, organic phosphonic acids and partial esters thereof. The absorption medium, compared with absorption media based on amino acid salts, has a reduced regeneration energy requirement without significantly reducing the absorption capacity of the solution for acid gases. In a process for removing acid gases from the fluid stream, the fluid stream is brought into contact with the absorption medium.
    Type: Application
    Filed: January 28, 2010
    Publication date: July 29, 2010
    Applicant: BASF SE
    Inventors: Gerald Vorberg, Torsten Katz, Georg Sieder, Christian Riemann, Rupert Wagner, Ute Lichtfers, Erika Dengler
  • Publication number: 20100186589
    Abstract: A sour gas sweetening solution comprises an aqueous solution of a silicon-containing compound and an amine-containing compound. The silicon-containing compound is preferably maintained at a concentration less than or equal to 500 parts per million (“ppm”) more preferably less than or equal to 400 ppm, and most preferably between about 100 ppm and 300 ppm as SiO2. The silicon-containing compound can be MxSiyOz, wherein “M” is a metal and “x”, “y” and “z” are numbers greater than zero. The amine-containing'compound can be selected from the group consisting of primary amines, secondary amines and tertiary amines.
    Type: Application
    Filed: September 1, 2007
    Publication date: July 29, 2010
    Applicant: Novum Energy Technology, LLC.
    Inventor: Marvin Johnson
  • Patent number: 7754172
    Abstract: The present invention relates to a process for purifying a gas mixture G-0 comprising dinitrogen monoxide, at least comprising the absorption of the gas mixture G-0 in an organic solvent, subsequent desorption of a gas mixture G-1 from the laden organic solvent, absorption of the gas mixture G-1 in water and subsequent desorption of a gas mixture G-2 from the laden water, and also to the use of a purified gas mixture which comprises dinitrogen monoxide and is obtainable by such a process as an oxidizing agent for olefins.
    Type: Grant
    Filed: November 21, 2006
    Date of Patent: July 13, 2010
    Assignee: BASF Aktiengesellschaft
    Inventors: Joaquim Henrique Teles, Beatrice Roessler, Dieter Baumann
  • Patent number: 7736420
    Abstract: The invention relates to an improvement in apparatus and process for the formation of a complex of Lewis acidic or Lewis basic gases in a reactive liquid of opposite character and for the breaking (fragmentation) of said complex associated with the recovery of the Lewis gas therefrom. The improvement resides in forming finely divided droplets of reactive liquid and controlling the temperature, pressure and concentration of said Lewis gas of opposite character to provide for (a) the formation of said complex between said gas and reactive liquid or (b) the breaking of said complex and the recovery of the atomized droplets of reactive liquid.
    Type: Grant
    Filed: May 19, 2006
    Date of Patent: June 15, 2010
    Assignee: Air Products and Chemicals, Inc.
    Inventors: Wayne Thomas McDermott, Philip Bruce Henderson, Daniel Joseph Tempel, Ronald Martin Pearlstein, James Joseph Hart, Rosaleen Patricia Morris-Oskanian, Diwakar Garg
  • Publication number: 20100140144
    Abstract: A method for reducing one or more additives in a gaseous hydrocarbon stream (40) such as natural gas, comprising the steps of: (a) admixing an initial hydrocarbon feed stream (10) with one or more additives (20) to provide a multiphase hydrocarbon stream (30); (b) passing the multiphase hydrocarbon stream (30) from a first location (A) to a second location (B2); (c) at the second location (B2), passing the multiphase hydrocarbon stream (30) through a separator (22) to provide one or more liquid streams (50) comprising the majority of the one or more additives, and a gaseous hydrocarbon stream (40) comprising the remainder of the one or more additives; and (d) washing the gaseous hydrocarbon stream (40) in a decontamination unit (24) with a washing stream (60), wherein the washing stream (60) comprises distilled water, to provide an additive-enriched stream (70) and an additive-reduced hydrocarbon stream (80).
    Type: Application
    Filed: February 15, 2008
    Publication date: June 10, 2010
    Inventors: Paul Clinton, Marcus Johannes Antonius Van Dongen, Nishant Gupta
  • Patent number: 7708807
    Abstract: Device for recovering a material to be measured comprising a reservoir filled with a sample holding material impregnated with a sample liquid in which a material to be measured is dissolved and an adsorbing column for adsorbing the material to be measured, wherein the reservoir and the adsorbing column are communicated by a straight pipe, and further communicated with a recovery vessel via a recovery pipe branched out the straight pipe. Accordingly, operations of opening/closing or switching a first valve provided on the in-flow side of the reservoir, a second valve provided on the out-flow side of the adsorbing column, and a third valve provided to a vent hole to the atmosphere in the recovery vessel, make it possible to recover the material to be measured without depositing the material on the valves.
    Type: Grant
    Filed: December 21, 2004
    Date of Patent: May 4, 2010
    Assignees: Miura Co., Ltd., Kyoto Electronics Manufacturing Co., Ltd.
    Inventors: Katsuhisa Honda, Noriaki Hamada, Jun Kishino, Kazuyuki Sawadaishi
  • Patent number: 7704380
    Abstract: In accordance with the present invention, a method of removing sulfide(s), which is safe, is effective over long periods at low cost, and exerts no adverse influences on the environment. The present invention relates to a method of removing sulfide(s), characterized in that a medium containing sulfide(s), including hydrogen sulfide and mercaptan(s), is allowed to come into contact with 2-bromo-2-nitropropane-1,3-diyl diacetate. Also, the present invention relates to the method, wherein the medium is a solid, liquid, or gas. In accordance with the present invention, sulfide(s), including hydrogen sulfide and mercaptan(s), can efficiently be treated so that they may be removed at low cost without the need for large-capacity equipment. In addition, the present invention can be safely practiced because there is no generation of byproducts that irritate the skin.
    Type: Grant
    Filed: April 5, 2005
    Date of Patent: April 27, 2010
    Assignee: K•I Chemical Industry Co., Ltd.
    Inventors: Toshihiko Shibata, Syoji Fukuyama
  • Patent number: 7691182
    Abstract: Hydrogen production is provided via integrated closed-loop processing of landfill gas (LFG) and solid biomass feedstocks such as various agricultural wastes with minimal environmental impact. LFG is purified of harmful contaminants over a bed of activated charcoal (AC) and is catalytically reformed to synthesis gas, which is further processed to pure hydrogen via CO-shift and pressure-swing adsorption stages. Biomass is gasified in the presence of steam with production of a producer gas and AC. The producer gas is mixed with LFG and is processed to hydrogen as described above. High-surface area AC produced in the gasifier is used for the purification of both LFG and producer gas. An integrated processing of LFG and biomass offers a number of advantages such as a high overall energy efficiency, feedstock flexibility, substantial reduction in greenhouse gas emissions and production of value-added product-biocarbon that can be used as a soil enhancer.
    Type: Grant
    Filed: December 12, 2006
    Date of Patent: April 6, 2010
    Assignee: University of Central Florida Research Foundation, Inc.
    Inventors: Nazim Z. Muradov, Franklyn Smith, Ali Tabatabaie-Raissi
  • Patent number: 7683156
    Abstract: The invention relates to a method for producing a high-molecular polycondensate from a solidified polycondensate prepolymer by solid phase polycondensation. According to said method, the polycondensation cleavage products of the solid phase polycondensation reaction are extracted from the product by means of a process gas, and the process gas is then cleaned of the polycondensation cleavage products and essentially recycled. According to the invention, the specific energy input is less than 120 kWh/t, preferably less than 110 kWh/t and especially between 70 and 100 kWh/t. The invention also relates to an installation for producing a high-molecular polycondensate, said installation comprising a heating appliance (1), followed by a crystallisation appliance (2), a reaction appliance (4), and a cooling appliance (5).
    Type: Grant
    Filed: August 22, 2005
    Date of Patent: March 23, 2010
    Assignee: Buhler AG
    Inventors: Andreas Christel, Claudemiro Ferreira
  • Patent number: 7670490
    Abstract: A method of storing and dispensing a fluid includes providing a vessel configured for selective dispensing of the fluid therefrom. The vessel contains an ionic liquid therein. The fluid is contacted with the ionic liquid for take-up of the fluid by the ionic liquid. There is substantially no chemical change in the ionic liquid and the fluid. The fluid is released from the ionic liquid and dispensed from the vessel.
    Type: Grant
    Filed: June 17, 2005
    Date of Patent: March 2, 2010
    Assignee: Matheson Tri-Gas, Inc.
    Inventors: Carrie L. Wyse, Robert Torres, Jr., Tadaharu Watanabe, Joseph V. Vininski
  • Publication number: 20100024644
    Abstract: Methods and apparatuses are described for contacting an oxidizing solution such as an aqueous hydrogen peroxide composition of hydrogen peroxide and at least one additive that catalyzes the decomposition of the hydrogen peroxide into hydroxyl radicals with an atmospheric effluent containing odorous and/or noxious components. These components are absorbed by the aqueous hydrogen peroxide composition to produce an atmospheric effluent having reduced amounts of the odorous and/or noxious components. Various methods are described for adding the hydrogen peroxide and the decomposition additive.
    Type: Application
    Filed: June 4, 2009
    Publication date: February 4, 2010
    Inventors: Stephen R. Temple, Michael J. Stoltz
  • Publication number: 20100000405
    Abstract: A method of treating exhaust gases is described comprising the introduction of a treatment composition including or comprising a micelle encapsulating compound. A preferred embodiment the treatment comprises by volume; from about 4 to about 40 parts of an alkoxylated C16-C18 tertiary amine surfactant, from about 1 to about 15 parts of at least one carboxylic acid having from 4 to 16 carbon atoms; about 1 to 6 parts of at least one of a C6-C14 alcohol, from 0 to 10 parts of a C4 and lower alcohol, with the balance being water to create a total of about 100 parts by volume. The treatment composition may be introduced into a confined flow path for exhaust gases at a rate of 0.1 to 6% although a range above and below that may be suitable. The invention also extends to a system for treating exhaust gases comprising a confined flow path for the exhaust gases and an application arrangement for applying a treatment composition comprising or including a micelle encapsulating surfactant.
    Type: Application
    Filed: May 25, 2007
    Publication date: January 7, 2010
    Applicant: Green Leader Technologies Pty Ltd.
    Inventors: Michael Thomas Greiner, Grahame Peter Higgs, Robert Cunningham Gardiner, Inia Wharengarangi Timu
  • Patent number: 7638058
    Abstract: A method of storing and dispensing a fluid includes providing a vessel configured for selective dispensing of the fluid therefrom. The vessel contains an ionic liquid therein. The fluid is contacted with the ionic liquid for take-up of the fluid by the ionic liquid. There is substantially no chemical change in the ionic liquid and the fluid. The fluid is released from the ionic liquid and dispensed from the vessel.
    Type: Grant
    Filed: April 7, 2005
    Date of Patent: December 29, 2009
    Assignee: Matheson Tri-Gas
    Inventors: Carrie L. Wyse, Robert Torres, Jr., Tadaharu Watanabe, Joseph V. Vininski
  • Publication number: 20090301302
    Abstract: This disclosure teaches a composition and process which makes it possible to remove floating particulates or prevent the dissemination or particulates, by the misting of a solution that readily captures any particulate material in the air. More specifically, the present disclosure teaches the composition and use of aromatic compounds that are semi-volatile organic compounds (SVOCs) or slow evaporators in water-based carriers with surfactants as the misting/fogging agent for dust suppression. The particulate material is lowered to surfaces and removed by vacuuming, damp-wiping or using a dry cloth with a cationic charge (static cloth). This method can be achieved with neutral air pressure differentials in the work areas.
    Type: Application
    Filed: June 4, 2008
    Publication date: December 10, 2009
    Inventors: Greg Weatherman, Marcia Celusnek Cash
  • Publication number: 20090291874
    Abstract: The present application discloses compositions comprising ionic liquids and an amine compound, and methods for using and producing the same. In some embodiments, the compositions disclosed herein are useful in reducing the amount of impurities in a fluid medium or a solid substrate.
    Type: Application
    Filed: May 21, 2009
    Publication date: November 26, 2009
    Inventors: Jason E. Bara, Dean E. Camper, Richard D. Noble, Douglas L. Gin
  • Publication number: 20090282976
    Abstract: Greenhouse gas emissions containing methane are collected at the source and dispersed into the soil via subsurface drip irrigation techniques. In one embodiment, methane gas generated from anaerobic digestion in a septic tank, such as a decentralized septic system, is disposed of via a subsurface wastewater disposal system. Secondary-treated wastewater effluent from the septic tank and the air/methane gas drawn from above the septic tank can be alternately pumped downstream to a drain field containing a time-dosed dispersal system comprising drip irrigation emitters in downstream driplines. Alternatively, the air/methane gas can be simultaneously drawn from the septic tank and injected into the pressure flow of wastewater effluent via a venturi-type mixer-injector. The methane gas pumped through the drip system into the soil can oxidize and break down into carbon dioxide as one of its by-products.
    Type: Application
    Filed: May 13, 2009
    Publication date: November 19, 2009
    Inventor: Rodney Ruskin
  • Publication number: 20090229464
    Abstract: A process and system for removing tars from synthesis gas uses glycerol produced as a byproduct of biodiesel manufacture. The biodiesel may be made from various oil feedstocks such as canola, rapeseed, or soybean oils. Associated with the harvesting of these crops may be the ready availability of byproduct biomass useful as feedstock for gasification. In addition, methanol may be sourced from the gasification of biomass to exploit a potential synergy between biodiesel manufacture and biomass gasification. The present invention develops those synergies further by making use of a byproduct stream from the manufacture of biodiesel to remove tars from the gasifier synthesis gas and to provide a useful end use for the byproduct.
    Type: Application
    Filed: March 12, 2008
    Publication date: September 17, 2009
    Applicant: Aker Kvaerner Inc.
    Inventor: Mark ROBERTSON
  • Patent number: 7585415
    Abstract: A method of storing and dispensing a fluid includes providing a vessel configured for selective dispensing of the fluid therefrom. A solvent mixture comprising an ionic liquid and a cosolvent is provided within the vessel. The fluid is contacted with the solvent mixture for take-up of the fluid by the solvent mixture. The fluid is released from the ionic liquid and dispensed from the vessel.
    Type: Grant
    Filed: June 17, 2005
    Date of Patent: September 8, 2009
    Assignee: Matheson Tri-Gas
    Inventors: Carrie L. Wyse, Robert Torres, Jr., Joseph V. Vininski
  • Publication number: 20090211446
    Abstract: Compositions and methods related to the removal of acidic gas. In particular, the present disclosure relates to a composition and method for the removal of acidic gas from a gas mixture using a solvent comprising a diamine (e.g., piperazine) and carbon dioxide. One example of a method may involve a method for removing acidic gas comprising contacting a gas mixture having an acidic gas with a solvent, wherein the solvent comprises piperazine in an amount of from about 4 to about 20 moles/kg of water, and carbon dioxide in an amount of from about 0.3 to about 0.
    Type: Application
    Filed: January 7, 2009
    Publication date: August 27, 2009
    Inventors: Gary Rochelle, Marcus Hilliard
  • Patent number: 7578883
    Abstract: An arrangement and associated method for abating effluent from an etching process is disclosed.
    Type: Grant
    Filed: August 29, 2001
    Date of Patent: August 25, 2009
    Assignee: LSI Corporation
    Inventors: Michael Williams, Michael Barthman
  • Publication number: 20090064858
    Abstract: A deputation process and corresponding apparatus for purification of the air of a closed environment characterized by indoor pollution, in which, in order to reduce the pollution, a water tank is provided that contains a multiplicity of active biomasses designed to absorb and metabolize the pollutant substances that are contained in the water and come from the air of the closed environment, and elements of water-air contact, designed precisely to transfer the pollutant substances from the closed environment into the water within the tank.
    Type: Application
    Filed: November 3, 2006
    Publication date: March 12, 2009
    Applicant: INGEGNERIA AMBIENTALE SRL
    Inventors: Uranio Mazzanti, Paolo De Filippis, Marco Scarsella
  • Publication number: 20080245233
    Abstract: Fouling in basic washing systems such as caustic scrubbers can be prevented or at least mitigated by treating the liquid washing phase used in a caustic scrubber with an additive having at least one compound selected from the group consisting of oxalyl dihydrazide, a disulfite salt, isopropyl hydroxylamine, chlorobenzhydrazide, aminobenzhydrazide, a thiosulfate salt, 4,4-dimethyl oxazolidine, a hydrosulfite salt, and mixtures thereof.
    Type: Application
    Filed: April 3, 2008
    Publication date: October 9, 2008
    Applicant: BAKER HUGHES INCORPORATED
    Inventors: Zhenning Gu, Joseph L. Stark, Roger D. Metzler
  • Publication number: 20080216653
    Abstract: An apparatus for cleaning air includes a housing having a chamber. The scrubber includes a carbon dioxide scrubber layer disposed in the chamber which claims carbon dioxide from air passing through the scrubber layer. The scrubber includes a forcing element which draws the air into the scrubber and forces the air through the scrubber layer which is powered without any electricity. A system for supporting a breathable environment for users. The system includes an enclosure. The system includes an air scrubber disposed in the enclosure which cleans carbon dioxide from air in the enclosure that is powered without any electricity. A method for cleaning carbon dioxide from air. The method includes the steps of flowing compressed air through a fluid driven motor to operate the motor without any electricity. There is the step of rotating a fan with the operating motor.
    Type: Application
    Filed: March 7, 2008
    Publication date: September 11, 2008
    Inventors: Gregory Paton-Ash, Michael Bishoff
  • Patent number: 7368001
    Abstract: A vapor recovery system for use during filling of a tank installation with a volatile liquid. The tank has a fill-pipe for the introduction of the liquid into the tank wherein the exit to which fill-pipe is normally below the liquid level in the tank. The vapor recovery system includes a reduced cross-sectional area region of the fill-pipe and a duct extending from that region through the side wall of the fill-pipe into the ullage space above the liquid level in the tank. The system further has a valve assembly associated with the duct which valve assembly normally closes off the duct, but which valve assembly is opened by flow of liquid along the fill-pipe into the tank, such that vapor in the tank may be drawn along the duct from the ullage space by the reduced static pressure in the region of reduced cross-sectional area of the fill-pipe. A method of recovering vapor using such a system is also described.
    Type: Grant
    Filed: July 29, 2003
    Date of Patent: May 6, 2008
    Assignee: Petroman Limited
    Inventor: Rodney Carter
  • Patent number: 7347889
    Abstract: An ultrasonic solution separator including an ultrasonic atomization chamber supplied with a solution containing a target material; an ultrasonic oscillator producing mist from the solution in the ultrasonic atomization chamber with ultrasonic oscillation; a power supply for ultrasonics connected to the ultrasonic oscillator, and a collection portion transporting the mist produced by the ultrasonic oscillator with a carrier gas and aggregating and collecting the mist included in the carrier gas. The power supply supplying high-frequency power to the ultrasonic oscillator so that the ultrasonic oscillator oscillates at an ultrasonic frequency. The ultrasonic separator aggregates and collects the mist produced in the ultrasonic atomization chamber by means of the collection portion. With this ultrasonic solution separator, the temperature of carrier gas in the ultrasonic atomization chamber is at least 5° C. higher than the carrier gas in the collection portion.
    Type: Grant
    Filed: July 23, 2004
    Date of Patent: March 25, 2008
    Assignee: Ultrasound Brewery
    Inventors: Kazuo Matsuura, Masanori Sato
  • Patent number: 7329308
    Abstract: The present invention relates to systems and methods for controlling humidity and temperature in gases or air streams used in semiconductor processing systems. These systems and methods can be used in combination with systems and methods for contaminant detection and removal.
    Type: Grant
    Filed: July 9, 2004
    Date of Patent: February 12, 2008
    Assignee: Entegris, Inc.
    Inventors: William M. Goodwin, Oleg P. Kishkovich, Anatoly Grayfer