Patents Assigned to Air Liquid
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Publication number: 20240091471Abstract: The invention concerns a manual artificial respiration bag (1) for ventilating a patient in need thereof, comprising a deformable bag (10) with a gas inlet (11), a gas outlet (12) and an inner volume (13) for a respiratory gas; an upstream conduct element (20) fluidly connected to the gas inlet (11) of the deformable bag (10), and comprising a gas entry port (21); and a downstream conduct element (30) fluidly connected to the gas outlet (12) of the deformable bag (10), comprising an exhaust valve (35) comprising an exhaust port (36). A venturi device (50) comprising a main body (110) comprising a venturi nozzle (120); at least one oxygen inlet (131) for providing oxygen; at least one air inlet (132) for providing air; a mixing chamber (133) for mixing therein oxygen and air and obtaining an air/oxygen mixture; and gas selection means (110, 130) for selecting oxygen or an air/oxygen mixture as a desired gas to be provided to the venturi nozzle (120).Type: ApplicationFiled: September 19, 2023Publication date: March 21, 2024Applicant: Air Liquide Medical Systems SRLInventors: Eloise DE BEAUFORT, Arnaud Lesimple, Alexandre Broc, Davide Zadra, Luca Alberici, Jean-Christophe Richard
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Publication number: 20240093108Abstract: In a crude oil purification process including phase separators, a vapor recovery unit (VRU), and dew pointing/dehydration and CO2 removal membranes, instead of compressing the low boiling point (i.e., C1-5) hydrocarbon vapor stream from the VRU along with the main portion of gas from the separation train and feeding it to the membranes, it is compressed and dehydrated along with the H2O/C3+ hydrocarbon enriched permeate from the dew pointing and dehydration membranes.Type: ApplicationFiled: September 21, 2022Publication date: March 21, 2024Applicant: Air Liquide Advanced Technologies U.S. LLCInventor: Sandeep KARODE
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Patent number: 11920732Abstract: A quality control method for the preparation of dry compressed gas cylinder including passivating and/or preparing the compressed gas cylinder with the technique to be validated, filling the passivated/prepared compressed gas cylinder with gaseous carbon dioxide to a normal working pressure, wherein the gaseous carbon dioxide has a known ?18O isotope ratio, maintaining the pressurized gas cylinder at ambient temperature for a first predetermined period of time, and gradually emptying the pressurized gas cylinder, while simultaneously measuring the ?18O isotopic ratio, wherein a predetermined variation in the measured isotopic ratio of ?18O indicates a properly prepared cylinder.Type: GrantFiled: March 2, 2020Date of Patent: March 5, 2024Assignees: Airgas, Inc., America Air Liquide, Inc., L'Air Liquide, Société Anonyme pour l'Etude et l'Exploitation des Procédés Georges ClaudeInventors: Tracey Jacksier, Mani C. Matthew, Richard A. Socki, Jun Sonobe, Megumi Isaji, James McHale
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Publication number: 20240058763Abstract: A hollow fiber membrane bundle useful for manufacturing a wide variety of hollow fiber membrane modules having different flow configurations includes hollow fiber membranes arranged around a porous support tube, a cured resin tubesheet formed at first end of the bundle, and either a cured resin nub or a cured resin tubesheet formed at a second end of the bundle. The bore(s) of the hollow fiber membranes are open at a face of the tubesheet adjacent the first end of the bundle. The tubesheet has an annular structure that encapsulates the hollow fiber membranes and the porous support tube at the first end of the bundle but which does not completely block a bore of the porous support tube, wherein the collection tube has a plurality of orifices formed therein at least at positions adjacent the nub.Type: ApplicationFiled: August 16, 2022Publication date: February 22, 2024Applicants: L'Air Liquide, Societe Anonyme pour l'Etude et l'Exploitation des Procedes Georges Claude, Air Liquide Advanced Technologies U.S. LLCInventors: Sandeep K. KARODE, Karl BEERS, Sudhir S. KULKARNI, Tim POLUDNIAK, Fan Z. WORLEY, Ed SANDERS, JR.
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Publication number: 20240058762Abstract: A hollow fiber membrane bundle useful for manufacturing a wide variety of hollow fiber membrane modules having different flow configurations includes hollow fiber membranes arranged around a porous support tube, a cured resin tubesheet formed at first end of the bundle, and either a cured resin nub or a cured resin tubesheet formed at a second end of the bundle. The bore(s) of the hollow fiber membranes are open at a face of the tubesheet adjacent the first end of the bundle. The tubesheet has an annular structure that encapsulates the hollow fiber membranes and the porous support tube at the first end of the bundle but which does not completely block a bore of the porous support tube, wherein the collection tube has a plurality of orifices formed therein at least at positions adjacent the nub.Type: ApplicationFiled: August 16, 2022Publication date: February 22, 2024Applicants: L'Air Liquide, Societe Anonyme pour l'Etude et l?Exploitation des Procedes Georges Claude, Air Liquide Advanced Technologies U.S. LLCInventors: Sandeep K. KARODE, Karl BEERS, Sudhir S. KULKARNI, Tim POLUDNIAK, Fan Z. WORLEY, Ed SANDERS, JR.
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Patent number: 11904343Abstract: The invention relates to a device for injecting a fluid, in particular a cryogenic fluid, the device comprising a fluid feed head and a fluid dispenser body, detachably mounted on said feed head, said feed head comprising a groove for circulating the fluid fed to said body, said groove being closed when the body is mounted on the feed head and said groove being open when the feed head and the body are detached from one another.Type: GrantFiled: November 30, 2017Date of Patent: February 20, 2024Assignees: L'Air Liquide, Societe Anonyme Pour L'Etude Et L'Exploitation Des Procedes Georges Claude, Air Liquide France IndustrieInventors: Jo Algoet, Alain Brangeon, Michel Pichou, Christian Reymond
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Publication number: 20230398494Abstract: A hollow fiber membrane bundle useful for manufacturing a wide variety of hollow fiber membrane modules having different flow configurations includes hollow fiber membranes arranged around a porous support tube, a cured resin tubesheet formed at first end of the bundle, and either a cured resin nub or a cured resin tubesheet formed at a second end of the bundle. The bore(s) of the hollow fiber membranes are open at a face of the tubesheet adjacent the first end of the bundle. The tubesheet has an annular structure that encapsulates the hollow fiber membranes and the porous support tube at the first end of the bundle but which does not completely block a bore of the porous support tube, wherein the collection tube has a plurality of orifices formed therein at least at positions adjacent the nub.Type: ApplicationFiled: June 9, 2022Publication date: December 14, 2023Applicants: L'Air Liquide, Societe Anonyme pour l'Etude et l’Exploitation des Procedes Georges Claude, Air Liquide Advanced Technologies U.S. LLCInventors: Sandeep K. KARODE, Karl BEERS, Sudhir S. KULKARNI, Tim POLUDNIAK, Fan Z. WORLEY, Ed SANDERS, JR.
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Publication number: 20230398496Abstract: A hollow fiber membrane bundle useful for manufacturing a wide variety of hollow fiber membrane modules having different flow configurations includes hollow fiber membranes arranged around a porous support tube, a cured resin tubesheet formed at first end of the bundle, and either a cured resin nub or a cured resin tubesheet formed at a second end of the bundle. The bore(s) of the hollow fiber membranes are open at a face of the tubesheet adjacent the first end of the bundle. The tubesheet has an annular structure that encapsulates the hollow fiber membranes and the porous support tube at the first end of the bundle but which does not completely block a bore of the porous support tube, wherein the collection tube has a plurality of orifices formed therein at least at positions adjacent the nub.Type: ApplicationFiled: June 9, 2022Publication date: December 14, 2023Applicants: L'Air Liquide, Societe Anonyme pour l'Etude et l'Exploitation des Procedes Georges Claude, Air Liquide Advanced Technologies U.S. LLCInventors: Sandeep K. KARODE, Karl BEERS, Sudhir S. KULKARNI, Tim POLUDNIAK, Fan Z. WORLEY, Ed SANDERS, JR.
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Publication number: 20230390695Abstract: The invention relates to a process for recovering methane from digester biogas or landfill gas. More specifically, the invention pertains to a method for producing biomethane that removes impurities from a compressed digester biogas with staged membrane modules of at least two different types, to produce a biomethane having at least 94% CH4, below 3% of CO2, and below 4 ppm of H2S.Type: ApplicationFiled: August 11, 2023Publication date: December 7, 2023Applicant: Air Liquide Advanced Technologies, U.S. LLCInventors: Yong DING, Michael J. MITARITEN
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Patent number: 11837474Abstract: Cyclic etch methods comprise the steps of: i) exposing a SiN layer covering a structure on a substrate in a reaction chamber to a plasma of hydrofluorocarbon (HFC) to form a polymer layer deposited on the SiN layer that modifies the surface of the SiN layer, the HFC having a formula CxHyFz where x=2-5, y>z, the HFC being a saturated or unsaturated, linear or cyclic HFC; ii) exposing the polymer layer deposited on the SiN layer to a plasma of an inert gas, the plasma of the inert gas removing the polymer layer deposited on the SiN layer and the modified surface of the SiN layer on an etch front; and iii) repeating the steps of i) and ii) until the SiN layer on the etch front is selectively removed, thereby forming a substantially vertically straight SiN spacer comprising the SiN layer on the sidewall of the structure.Type: GrantFiled: September 15, 2022Date of Patent: December 5, 2023Assignee: American Air Liquide, Inc.Inventors: Xiangyu Guo, James Royer, Venkateswara R. Pallem, Nathan Stafford
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Publication number: 20230357281Abstract: Disclosed are indium (In)-containing film forming compositions comprising In(III)-containing precursors that contain halogens, methods of synthesizing them and methods of using them to deposit the indium-containing films and/or indium-containing alloy film. The disclosed In(III)-containing precursors contain chlorine with nitrogen based ligands. In particular, the disclosed In(III)-containing precursors contains 1 or 2 amidinate ligands, 1 or 2 iminopyrrolidinate ligands, 1 or 2 amido amino alkane ligands, 1 or 2 ?-diketiminate ligands or a silyl amine ligand. The disclosed In(III)-containing precursors are suitable for vapor phase depositions (e.g., ALD, CVD) of the indium-containing films and/or indium-containing alloy films.Type: ApplicationFiled: July 3, 2023Publication date: November 9, 2023Applicant: American Air Liquide, Inc.Inventors: Kayla DIEMOZ, Bradley McKEOWN, Claudia FAFARD, Venkateswara R. PALLEM
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Publication number: 20230357095Abstract: A method for irrigation of a crop capable of producing Cannabidiol (CBD) comprises irrigating the crop with a nanobubble hydrogen rich water (HRW-nano), whereby a concentration of CBD in the crop increased as a result of irrigating with the HRW-nano, compared to irrigation with an irrigation water having the same composition except without added hydrogen (control irrigation).Type: ApplicationFiled: September 13, 2021Publication date: November 9, 2023Applicants: L'Air Liquide, Societe Anonyme pour l'Etude et l'Exploitation des Procedes Georges Claude, American Air Liquide, Inc.Inventors: Rovshan MAHMUDOV, Shu FANG, Yan ZENG
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Patent number: 11806677Abstract: A preprocessing method comprises a sintering step of heating a solid material container filled with a solid material using a temperature which is lower than either the melting point or sublimation of the solid material, whichever is lower, and crystallizing at least part of the solid material, and an impurity removal step of heating the solid material container filled with the solid material using a temperature which is lower than either the melting point or sublimation of the solid material, whichever is lower, and removing at least part of the impurities included in the solid material.Type: GrantFiled: December 6, 2018Date of Patent: November 7, 2023Assignees: L'Air Liquide, Societe Anonyme Pour L'Etude Et L'Exploitation des Procedes Georges Claude, American Air Liquide, Inc.Inventors: Kohei Tarutani, Jean-Marc Girard, Nicolas Blasco, Stefan Wiese, Guillaume Husson
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Patent number: 11798811Abstract: Disclosed are methods for etching a silicon-containing film to form a patterned structure, methods for reinforcing and/or strengthening and/or minimizing damage of a patterned mask layer while forming a patterned structure and methods for increasing etch resistance of a patterned mask layer in a process of forming a patterned structure. The methods include using an activated iodine-containing etching compound having the formula CnHxFyIz, wherein 4?n?10, 0?x?21, 0?y?21, and 1?z?4 as an etching gas. The activated iodine-containing etching compound produces iodine ions, which are implanted into the patterned hardmask layer, thereby strengthening the patterned mask layer.Type: GrantFiled: June 26, 2020Date of Patent: October 24, 2023Assignee: American Air Liquide, Inc.Inventor: Fabrizio Marchegiani
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Patent number: 11784041Abstract: The disclosed lanthanide precursor compounds include a cyclopentadienyl ligand having at least one aliphatic group as a substituent and at least one bidentate ligand. These precursors are suitable for depositing lanthanide containing films.Type: GrantFiled: February 8, 2022Date of Patent: October 10, 2023Assignees: L'Air Liquide, Sociéte Anonyme pour l'Etude et l'Exploitation des Procédés Georges Claude, American Air Liquide, Inc.Inventors: Daehyeon Kim, Junhyun Song, Wontae Noh, Venkateswara R. Pallem
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Patent number: 11771857Abstract: The invention relates to a protective cover (1) for a medical ventilator (20) adapted for use in a contaminated environment, in particular an NRBC environment, having a peripheral casing (2) defining an internal compartment (3) designed to accommodate a medical ventilator (20). The peripheral casing (2) has a plurality of connection interfaces (4, 5, 6, 7) sealably attached to said peripheral casing (2). Each connection interface (4, 5, 6, 7) has at least one internal gas passage with at least one gas inlet and at least one gas outlet. A sealing device is arranged in the internal gas passage of at least one connection interface (4, 5, 6, 7) for sealing said internal gas passage.Type: GrantFiled: June 12, 2020Date of Patent: October 3, 2023Assignee: Air Liquide Medical SystemsInventor: Romain Davoine
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Patent number: 11739220Abstract: A Si-containing film forming composition comprising a catalyst and/or a polysilane and a N—H free, C-free, and Si-rich perhydropolysilazane having a molecular weight ranging from approximately 332 dalton to approximately 100,000 dalton and comprising N—H free repeating units having the formula [—N(SiH3)x(SiH2-)y], wherein x=0, 1, or 2 and y=0, 1, or 2 with x+y=2; and x=0, 1 or 2 and y=1, 2, or 3 with x+y=3. Also disclosed are synthesis methods and applications for using the same.Type: GrantFiled: February 21, 2019Date of Patent: August 29, 2023Assignees: L'Air Liquide, Société Anonyme pour l'Etude et l'Exploitation des Procédés Georges Claude, American Air Liquide, Inc.Inventors: Antonio Sanchez, Gennadiy Itov, Manish Khandelwal, Cole Ritter, Peng Zhang, Jean-Marc Girard, Zhiwen Wan, Glenn Kuchenbeiser, David Orban, Sean Kerrigan, Reno Pesaresi, Matthew Damien Stephens, Yang Wang, Guillaume Husson, Grigory Nikiforov
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Patent number: 11717806Abstract: An adsorbent bed, including at least one elementary composite structure that includes adsorbent particles in a polymer matrix, wherein the adsorbent bed has a bed packing, ?bed, defined as a volume occupied by the at least one elementary composite structure Vecs divided by a volume of the adsorbent bed Vbed where ?bed is greater than 0.60.Type: GrantFiled: July 11, 2020Date of Patent: August 8, 2023Assignees: L'Air Liquide, Société Anonyme pour l'Etude et l'Exploitation des Procédés Georges Claude, Air Liquide Advanced Technologies U.S. LLCInventors: Philippe A. Coignet, Dean W. Kratzer, Antoine Pruvot, Matthew Metz
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Publication number: 20230221067Abstract: A single compressor is used to separately compress permeate from cascaded first and second gas separation membrane-based separation units and residue from a fourth gas separation membrane-based separation unit in order to avoid too high a CO2 partial pressure in the compressed permeate. After the permeates from the first and second stages are compressed, the compressed stream is fed to a third gas separation membrane-based separation unit.Type: ApplicationFiled: January 13, 2022Publication date: July 13, 2023Applicants: L'Air Liquide, Societe Anonyme pour l'Etude et l'Exploitation des Procedes Georges Claude, Air Liquide Advanced Technologies U.S. LLCInventors: Sandeep KARODE, Paul TERRIEN, Cyril DEFAYE
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Publication number: 20230211281Abstract: A single compressor is used to separately compress permeate from cascaded first and second gas separation membrane-based separation units and residue from a fourth gas separation membrane-based separation unit in order to avoid too high a CO2 partial pressure in the compressed permeate. After the permeates from the first and second stages are compressed, the compressed stream is fed to a third gas separation membrane-based separation unit.Type: ApplicationFiled: December 31, 2021Publication date: July 6, 2023Applicants: L'Air Liquide, Societe Anonyme pour l'Etude et l?Exploitation des Procedes Georges Claude, Air Liquide Advanced Technologies U.S. LLCInventors: Sandeep KARODE, Paul TERRIEN, Cyril DEFAYE