Patents Issued in March 12, 2024
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Patent number: 11925884Abstract: A flotation device having a flotation tank for receiving liquid to be purified, a saturator for receiving a pressurized liquid-gas mixture and at least one feeder. A line leads from the saturator to the feeder through which the pressurized liquid-gas mixture may be introduced into the flotation tank. The feeder includes a flow channel that has different flow cross sectional areas along the extension thereof. The flow channel may be a Venturi nozzle.Type: GrantFiled: October 28, 2019Date of Patent: March 12, 2024Assignee: Valmet Technologies OyInventor: Peter Ohlenschlaeger
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Patent number: 11925885Abstract: A filter has a filter center tube that includes a plurality of layers of solidified material including a first layer with a first undulating strip of solidified material extending in a first predetermined direction, and a second layer with a second undulating strip of solidified material extending in a second predetermined direction. The first layer is in contact with the second layer and the first predetermined direction is not parallel with the second predetermined direction, forming a plurality of pores therebetween.Type: GrantFiled: March 24, 2021Date of Patent: March 12, 2024Assignee: Caterpillar Inc.Inventors: Jon Tyler Immel, Javier A. Rodriguez
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Patent number: 11925886Abstract: Various embodiments of the present disclosure can include a system for producing a controlled concentrated waste fluid. The system can comprise a concentrator and the concentrator can be selected from the group consisting of an evaporator and a distillation system. The system can include a feedback sensor and the feedback sensor can include a total dissolved solids (TDS) sensor disposed in a waste stream associated with the concentrator.Type: GrantFiled: May 15, 2018Date of Patent: March 12, 2024Assignee: XDI Holdings, LLCInventor: James Charles Juranitch
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Patent number: 11925887Abstract: A separation tank device may include a holding tank having a tank wall coupled to and extending above a tank base. A base wall may be coupled to and may extend above the tank base. The base wall may form a base upper aperture that is opposingly positioned to the tank base, and a base lower aperture may be formed in the base wall. The device may further include a movable wall having a movable upper aperture and a movable lower aperture, and the movable wall may be movable between a first position and a second position. When the movable wall is in the first position, the movable lower aperture may be positioned above and aligned with the base upper aperture, and when the movable wall is in the second position the movable lower aperture may be unaligned with the base upper aperture.Type: GrantFiled: April 1, 2021Date of Patent: March 12, 2024Inventors: Ashley Gaertig, Eric Gaertig
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Patent number: 11925888Abstract: A component for a centrifugal degasser for an air/oil mixture of a turbomachine is disclosed. The degasser rotates about an axis of symmetry, forming an annular chamber for centrifugal separation of the mixture. The chamber forms a fluid passage duct, one inlet of which is oriented axially for supplying the chamber with the mixture, and a first outlet of which is oriented radially inwards for discharging the deoiled air separated from the mixture. The chamber also includes at least one second oil outlet oriented radially outwards and intended to discharge the oil separated from the mixture to the outside of the degasser. The chamber has longitudinal walls passing radially therethrough, at least one of the surfaces of the longitudinal walls having surface structures and/or corrugations arranged to form obstacles to a flow of the mixture along the surface of the longitudinal walls.Type: GrantFiled: May 20, 2020Date of Patent: March 12, 2024Assignee: SAFRAN HELICOPTER ENGINESInventors: Arnaud Georges Nifenecker, Benjamin Nicolas Fulleringer, Nicolas Maurice Marcel Herran
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Patent number: 11925889Abstract: A spliceable and foldable filter element device is provided, which includes a quadrilateral filter element body made of a flexible material. The quadrilateral filter element body is a folding layer having vertical folds. A left frame body and a right frame body are respectively disposed on a left side and a right side of the quadrilateral filter element body, at least one clamping rod is arranged between the left frame body and the right frame body, the clamping rod comprises three or more clamping teeth, the clamping teeth correspond to the folding layer in position, and the clamping rod is clamped with the folding layer through the clamping teeth. The spliceable and foldable filter element device has the advantages of simple structure, low cost, foldability, flexible use, convenience, easy storage and transportation.Type: GrantFiled: September 11, 2023Date of Patent: March 12, 2024Inventor: Jianping Zhao
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Patent number: 11925890Abstract: Aspects herein include monitoring devices for filtration systems. An embodiment of the monitoring device can include a first fluid conduit and a first pressure sensor, wherein the first pressure sensor is in fluid communication with the first fluid conduit. The monitoring device can also include a second fluid conduit and a second pressure sensor, wherein the second pressure sensor is in fluid communication with the second fluid conduit. The monitoring device can also include a control circuit in electronic communication with the first pressure sensor and the second pressure sensor. The monitoring device can also include a housing, wherein the first pressure sensor, the second pressure sensor and the control circuit are all disposed within the housing. Other embodiments are also included herein.Type: GrantFiled: October 23, 2019Date of Patent: March 12, 2024Assignee: Donaldson Company, Inc.Inventors: Wade A. Wessels, Peter P. Vitko, Brent R. Nelson
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Patent number: 11925891Abstract: A filter media and methods are provided. The media is stretchable and exhibits a high degree of elongation which thereby extends its surface area during pleating. By extending surface area of media during pleating, the initial differential pressure is lowered as the area of media is stretched while keeping the same efficiency range with a compressed thickness of media on the affected area.Type: GrantFiled: February 10, 2021Date of Patent: March 12, 2024Assignee: PARKER-HANNIFIN CORPORATIONInventors: SoonDeuk Jeung, Yogesh Ner, Lu Liu, Zhiwang Wu, Lei Li
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Patent number: 11925892Abstract: A filter element is provided. The filter element includes a filter media pack including an outer surface. The outer surface extending between a first flow face and a second flow face. The filter element also includes a polymeric coating applied to the outer surface of the filter media pack, wherein the polymeric coating is not a molded structure. In embodiments, the polymeric coating covers at least 25% of a span between the first flow face and the second flow face and has an average thickness of between 0.005 and 0.100 in. In other embodiments, the polymeric coating has a surface roughness of at least 50 ?in to provide an outer gripping surface. A method and system for applying the polymeric coating to the filter element are also provided.Type: GrantFiled: January 11, 2023Date of Patent: March 12, 2024Assignee: Baldwin Filters, Inc.Inventors: Timothy L. Krull, Matthew K. Epperson, Daniel P. Pokorney, Michael J. Von Seggern
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Patent number: 11925893Abstract: The present disclosure provides a device for separating sub-micron particles in the air, comprising a first separation channel, a second separation channel and a collection device which are connected in sequence, wherein each of the first separation channel and the second separation channel is of a rectangle structure with two open ends, the height H1 of the first separation channel is greater than the height H2 of the second separation channel, and each separation channel is provided with a vibration sound source and an antimicrobial coating layer. Based on the agglomeration theory of suspended particles in the air by ultrasonic standing waves, the device can aggregate sub-micron suspended particles flowing into each channel of the device on the upper and lower wall surfaces and the centerline of the channel, and sterilize the aggregated particles, thereby effectively removing the sub-micron suspended particles in the air.Type: GrantFiled: August 4, 2020Date of Patent: March 12, 2024Assignee: BEIHANG UNIVERSITYInventors: Xiaodong Li, Jizhou Liu
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Patent number: 11925894Abstract: A carbon dioxide capture system includes a first heat exchanger configured to exchange heat between an exhaust stream and a lean carbon dioxide effluent stream. The carbon dioxide capture system also includes a first turboexpander including a first compressor driven by a first turbine. The first compressor is coupled in flow communication with the first heat exchanger. The first turbine is coupled in flow communication with the first heat exchanger and configured to expand the lean carbon dioxide effluent stream. The carbon dioxide capture system further includes a carbon dioxide membrane unit coupled in flow communication with the first compressor. The carbon dioxide membrane unit is configured to separate the exhaust stream into the lean carbon dioxide effluent stream and a rich carbon dioxide effluent stream. The carbon dioxide membrane unit is further configured to channel the lean carbon dioxide effluent stream to the first heat exchanger.Type: GrantFiled: November 9, 2020Date of Patent: March 12, 2024Assignee: AIR PRODUCTS AND CHEMICALS, INC.Inventors: Douglas Carl Hofer, Joseph Philip DiPietro
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Patent number: 11925895Abstract: The invention relates to a method and to a device for performing a process (P) having at least one heat-consuming process step (F). A first fluid (2), which arises in the process and contains acid gases and water vapor, is cooled indirectly against a second fluid (7), an acidic condensate thus being formed. The invention is characterized in that the first fluid (2) is cooled in at least two successive steps (E1, E2), between which heat for use in the heat-consuming process step (V) is indirectly drawn from the second fluid (10).Type: GrantFiled: July 4, 2019Date of Patent: March 12, 2024Assignee: Linde GmbHInventors: Martin Lang, Alexander Hirsch
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Patent number: 11925896Abstract: A gas separation method in which a rare as a first introduced gas and an impurity gas as a second introduced gas, are introduced into a raw material gas. Each of the flow rates of the first and second introduced gases is controlled based on the flow rates of the rare gas and impurity gas in the discharged gas from a rare gas using facility. A gas separation device includes an introduction pipe for introducing rare gas in a separation gas container into a raw material gas, an introduction pipe for introducing impurity gases in the separation gas container into the raw material gas, a flow meter provided in a supply pipe for supplying a discharged gas of a rare gas using facility, and an arithmetic device electrically connected to each of the flow meter the flow rate controller, and the flow rate controller.Type: GrantFiled: September 27, 2021Date of Patent: March 12, 2024Assignee: TAIYO NIPPON SANSO CORPORATIONInventor: Masaya Yamawaki
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Patent number: 11925897Abstract: Provided is a biomaterial removing device including an air injection part, a first processing part spaced apart from the air injection part, and a second processing part spaced apart from the air injection part with the first processing part therebetween, wherein the first processing part includes a first biomaterial removing part configured to remove biomaterials included in air collected from the air injection part and a first monitoring part, and the second processing part includes a second biomaterial removing part configured to remove the residual biomaterials and a second monitoring part, wherein the first biomaterial removing part includes a dry air purifier, the second biomaterial removing part includes a wet air purifier, and the first biomaterial removing part and the second biomaterial removing part each include an image sensor.Type: GrantFiled: October 13, 2021Date of Patent: March 12, 2024Assignee: ELECTRONICS AND TELECOMMUNICATIONS RESEARCH INSTITUTEInventor: Jin Tae Kim
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Patent number: 11925898Abstract: The present invention discloses a flue gas low-temperature adsorption denitrification method, including: pressurizing a flue gas that has been subjected to dust removal and desulfurization, precooling the pressurized flue gas, cooling the precooled flue gas to a temperature lower than room temperature by a flue gas cooling system, flowing the flue gas at the temperature lower than room temperature into a low-temperature denitrification system, performing physical adsorption denitrification in the low-temperature denitrification system, precooling the flue gas that has been subjected to dust removal and desulfurization with the denitrificated flue gas, and flowing the heat-absorbed clean flue gas into a chimney to be discharged.Type: GrantFiled: April 5, 2021Date of Patent: March 12, 2024Assignee: HUANENG CLEAN ENERGY RESEARCH INSTITUTEInventors: Shiqing Wang, Qixiang Fan, Shisen Xu, Shiwang Gao, Shaomin Wang, He Zhao, Minhua Jiang, Ping Xiao, Bin Huang, Hongwei Niu, Jinyi Wang, Lianbo Liu
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Patent number: 11925899Abstract: A system for removing undesirable compounds from contaminated air includes a biofilter having sintered glass media. Hydrogen sulfide is removed from contaminated air by passing the contaminated air through the biofilter.Type: GrantFiled: May 10, 2021Date of Patent: March 12, 2024Assignee: Evoqua Water Technologies LLCInventor: Timothy Frank Matheis
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Patent number: 11925900Abstract: Process for reducing the content of NOx and N2O from an input tail gas of a nitric acid process, said input tail gas having a temperature lower than 400° C., the process comprising an abatement stage at least including a deN2O stage and deNOx stage and providing a conditioned tail gas having a temperature greater than the input tail gas, wherein, prior to submission to said abatement stage, said input tail gas is pre-heated to a temperature of at least 400° C. by indirect heat exchange with at least a portion of said conditioned gas.Type: GrantFiled: February 19, 2019Date of Patent: March 12, 2024Assignee: CASALE SAInventors: Fabio Laurenzi, Raffaele Ostuni, Jean Francois Granger
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Patent number: 11925901Abstract: A system for separating a solvent includes a first mixing tank comprising a waste solvent feed and a reactant feed; a first filter comprising a nanofiltration membrane; a distillation column or an evaporator; a condenser or cooler; and a pervaporation membrane. A method for separating a solvent includes mixing a waste solvent with a reactant to cause precipitation or complexing and forming a mixture; filtering the mixture using a nanofiltration membrane and forming a permeate; distilling or evaporating the permeate to form a concentrated solvent; condensing or cooling the concentrated solvent to below a boiling point of solvents in the concentrated solvent; and filtering the concentrated solvent using pervaporation to form a purified solvent. The system and method may be used to separate and purify a solvent without creating thermal degradation products.Type: GrantFiled: August 15, 2023Date of Patent: March 12, 2024Assignees: Donaldson Company, Inc., Ecosce LLCInventors: Matthew P. Goertz, Matthew S. Whitten, Ahmed Shuja, Shawn McLean
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Patent number: 11925902Abstract: A thermally reflective membrane apparatus comprises a housing structure, and a thermally reflective membrane contained within the housing structure. The thermally reflective membrane comprises a semipermeable structure, and a porous, thermally reflective structure physically contacting the semipermeable structure. The porous, thermally reflective structure comprises discrete thermally reflective particles, and a binder material coupling the discrete thermally reflective particles to one another and the semipermeable structure. A fluid treatment system and method of treating a fluid are also described.Type: GrantFiled: September 1, 2020Date of Patent: March 12, 2024Assignee: Battelle Energy Alliance, LLCInventors: John R. Klaehn, Christopher J. Orme, Aaron D. Wilson, Birendra Adhikari, Frederick F. Stewart, Seth W. Snyder
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Patent number: 11925903Abstract: A system includes an electrochemical regenerator configured to receive a first solution having a first salt concentration and output a second solution having a second salt concentration lower than the first salt concentration and a third solution having a third salt concentration higher than the first salt concentration. The first and second solutions are sent to first and second reservoirs respectively absorb and emit heat in response to a phase change of one of the solutions. The absorption or emission of heat can be used in a heat pump system.Type: GrantFiled: December 2, 2021Date of Patent: March 12, 2024Assignee: XEROX CORPORATIONInventors: Francisco E. Torres, Eugene S. Beh, Michael Benedict
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Patent number: 11925904Abstract: A funnel-less filtration device that attaches directly to a storage container such as a cell culture media bottle. The device includes a filter collar containing one or more membranes, an inlet with a coupling device for attaching the filter device to a supply of liquid to be filtered, an outlet at a lower portion of the collar, a vacuum port in the collar below the membrane(s) and a filtered vent in the collar above the membrane(s). Optionally, the device may include a filtrate reservoir attached to the outlet, preferably by a threaded connection. Optionally, the upper opening to the filter collar is selectively and removably sealed with a lid until used. The lid is then removed the filter device inverted over a storage container such as cell culture media bottle and the two are attached via the upper opening of the filter collar. The assembly is then inverted so the supply container is above the filter device.Type: GrantFiled: October 5, 2017Date of Patent: March 12, 2024Assignee: EMD Millipore CorporationInventors: Christopher A. Scott, Kurt Greenizen, Paul Sydlowski
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Patent number: 11925905Abstract: The forward osmosis membrane and the preparation method thereof provided by the present invention, through fully cover the support mesh layer of the membrane with antibacterial nanoparticles, especially the mixture of nano-Ag and nano TiO2, ensures without reducing the strength, water flux and salt rejection, providing an effective, long-term and comprehensive antibacterial effect. In the present invention, the antibacterial nanoparticles, especially the mixture of nano-Ag and nano-TiO2, are used to carry out antibacterial modification on the support mesh of the forward osmosis membrane, so as to inhibit the growth of bacteria on the forward osmosis membrane, improves the forward osmosis and also improves the safety of the entire purification and filtration system. The antibacterial forward osmosis membrane of the present invention can be applied to the filtration and purification of complex water sources, especially the purification and filtration of eutrophic and bacteria-prone water sources.Type: GrantFiled: August 8, 2022Date of Patent: March 12, 2024Assignee: BEIJING BAOSHENGTONG INTERNATIONAL ELECTRIC ENGINEERING TECHNOLOGY CO., LTD.Inventor: Chun Tang
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Patent number: 11925906Abstract: A preparation method and a device for a seawater desalination-seawater extraction uranium membrane lining are provided. The preparation method is as follow: the lining is configured as a finished product for standby through the following process, including cleaning, drying, restoration of circular, generating burrs, fixing the length of burrs; the device includes the first module, the second module, the third module, the fourth module and the fifth module. The present invention has the advantages of simple operation, short time, low cost and obvious treatment effect, the bonding strength between the separation function layer and the lining is enhanced, and the separation function layer is not easy to fall off, the physical damage resistance is greatly increased, it is not easy to fall off and the initial bubble point pressure of the prepared enhanced film is high.Type: GrantFiled: October 16, 2023Date of Patent: March 12, 2024Assignee: HARBIN ENGINEERING UNIVERSITYInventors: Jun Wang, Bingtao Zhang, Hongsen Zhang, Qi Liu, Jing Yu, Jiahui Zhu, Jingyuan Liu, Rongrong Chen
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Patent number: 11925907Abstract: Disclosed herein is a method for continuously preparing crystalline cannabinoid particles. The method includes preparing a cannabinoid-rich solution that comprises a first cannabinoid and inducing the cannabinoid-rich solution to a supersaturated state in which the first cannabinoid has a supersaturated concentration that is greater than a corresponding saturation concentration of the first cannabinoid. The method includes flowing the cannabinoid-rich solution into a continuous stirred-tank reactor (CSTR) in a continuous manner, mixing the cannabinoid-rich solution under turbulent mixing conditions to form a plurality of crystalline cannabinoid particles and a cannabinoid-depleted solution within the CSTR, and discharging the plurality of crystalline cannabinoid particles and the cannabinoid-depleted solution from the CSTR in a continuous manner to provide a flow rate through the CSTR.Type: GrantFiled: July 21, 2020Date of Patent: March 12, 2024Assignee: Canopy Growth CorporationInventors: Christopher Adair, Ben Geiling
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Patent number: 11925908Abstract: A fine bubble generator may include an inlet; an outlet; a first fine bubble generation portion; and a second fine bubble generation portion. The first fine bubble generation portion includes: a diameter-reducing flow path and a diameter-increasing flow path. The second fine bubble generation portion includes: a first swirling flow generation portion; and a second swirling flow generation portion. The first swirling flow generation portion includes: a first outer peripheral portion; and a plurality of first vanes disposed configured to generate a first swirling flow flowing in a first swirling direction with respect to a center axis of the second fine bubble generation portion. The second swirling flow generation portion includes: a second outer peripheral portion; and a plurality of second vanes configured to generate a second swirling flow flowing in a second swirling direction opposite to the first swirling direction with respect to the center axis.Type: GrantFiled: June 6, 2022Date of Patent: March 12, 2024Assignee: RINNAI CORPORATIONInventors: Tomoyuki Shimazu, Kunio Kataoka
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Patent number: 11925909Abstract: Provided is a slurry manufacturing apparatus including: a mixing unit that mixes a predetermined powder and a solvent in a mixing chamber to produce a slurry; a supply unit that supplies a reaction gas to the mixing chamber when the slurry is produced by the mixing unit; and a circulation unit that recovers a surplus of the reaction gas from the mixing chamber and resupplies the surplus of the reaction gas to the mixing chamber.Type: GrantFiled: December 2, 2020Date of Patent: March 12, 2024Assignee: NIHON SPINDLE MANUFACTURING CO., LTD.Inventors: Keiichiro Onishi, Keiichi Asami
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Patent number: 11925910Abstract: An apparatus for continuously generating and controlling the density of foam has a fluid in-flow manifold in communication with a source of liquid and comprising a pressure sensor. A plurality of branch lines are in fluid communication with the in-flow manifold a foam out-flow manifold. Each branch line has a flow control valve, a Venturi tube and in fluid communication with a throat of each Venturi tube an air induction control valve. The foam out-flow manifold has a pressure sensor. At least one in-flow control valve is disposed between the source and the in-flow manifold and at least one out-flow control valve is in communication with the out-flow manifold. The branch valves, air valves, the in-flow control valve and the out-flow control valve are operable to provide a chosen flow rate of the liquid and a selected foam product flow rate at a selected density of the foam product.Type: GrantFiled: April 17, 2023Date of Patent: March 12, 2024Assignee: RheoVest, LLCInventors: Eric Appleton, Clayton Massett, Nathan R. Hutchings
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Patent number: 11925911Abstract: It is described an apparatus for the extrusion and mixing of plastic materials, for example rubber-based and silicone-based materials, comprising a dump extruder body whereon two conical screws (2) converging towards an extrusion die (3) suitable for being occluded by closing means (4) are mounted, the conical screws (2) being accommodated within a low-pressure compounding chamber (1) and within a pair of converging conical channels also defining a high-pressure chamber (2?), said low-pressure chamber (1) corresponding to an upstream area with respect to an extrusion direction, wherein said high-pressure chamber (2?) and/or said low-pressure chamber (1) accommodate a presser body (5, 5?, 6), defining a movable wall suitable for causing a controlled change in the volume of the respective chamber (1, 2?).Type: GrantFiled: February 13, 2019Date of Patent: March 12, 2024Assignee: COLMEC S.p.A.Inventor: Ubaldo Colombo
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Patent number: 11925912Abstract: The disclosure features a system that includes a plurality of material tanks, each of which includes at least one material for forming a chemical composition and includes a first recirculation loop; at least one mixing tank in which the materials from the material tanks are mixed to form a chemical composition, the mixing tank including a second recirculation loop; and at least one holding tank configured to continuously receive the chemical composition from the mixing tank, the holding tank including a third recirculation loop. The system may further include a plurality of fluid flow controller units and be configured to form material and chemical composition flows in an in-process steady state.Type: GrantFiled: December 7, 2018Date of Patent: March 12, 2024Assignee: Fujifilm Electronic Materials U.S.A., Inc.Inventors: Shih-Pin Chou, Wen-Hung Chang, Deepak Mahulikar, Tamas Varga, Abhudaya Mishra
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Patent number: 11925913Abstract: An automated apparatus for preparing a liquid bioprocess solution includes at least one mixing chamber having a lower port and an upper port for fluid to enter the at least one mixing chamber, an array of tubing for fluid flow within the system, a plurality of valves provided within the tubing, and a mixing controller configured to cause the automated apparatus to perform a series of sequential mixing steps causing the preparation of the liquid bioprocess solution from a dry ingredient. The series of sequential mixing steps include opening a first valve associated with the lower port to provide fluid to the at least one mixing chamber through the lower port, and after a predetermined amount of elapsed time, closing the first valve and opening a second valve associated with the upper port to provide fluid to the at least one mixing chamber through the upper port.Type: GrantFiled: August 10, 2021Date of Patent: March 12, 2024Assignee: FUJIFILM IRVINE SCIENTIFIC, INC.Inventors: Thomas Reid Fletcher, David Neese, Wayne Mauro
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Patent number: 11925914Abstract: Systems for producing performic acid and methods for producing performic acid. The systems may include two or more reactor units, two or more servient programmable logic controllers, a control panel, and a master programmable logic controller. The system may modify the production of performic acid in at least one of the two or more reactor units upon and/or after the occurrence of a disruptive event in order to maintain a desired level of performic acid production and/or a desired level of disinfection.Type: GrantFiled: March 9, 2021Date of Patent: March 12, 2024Assignee: KEMIRA OYJInventors: Patricia Aubeuf-Prieur, Iris Porat, Marco Stammegna, Sampsa Greus
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Patent number: 11925915Abstract: A squeezing roller granulator that has a squeezing roller pair composed of a toothed pressure roller and a toothed squeezing roller. The teeth of the pressure roller and the squeezing roller have tooth flanks that are situated between a tooth root region and a tooth tip region. The tooth root region has an outer diameter that is smaller than the outer diameter of the tooth tip region, and the tooth tip region of at least one of the rollers of the squeezing roller pair has three squeezing zones including a middle squeezing zone, which define different distances between the tooth tip regions with a minimum distance in the region of the middle squeezing zone, and the contour of the tooth flanks and the tooth root region of the rollers of the squeezing roller pair defines a maximum cross-section of granulate cushions to be formed.Type: GrantFiled: November 4, 2015Date of Patent: March 12, 2024Assignee: Maag Automatik GmbHInventors: Helmuth Meidhof, Stefan Dahlheimer, Marco Nieder
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Patent number: 11925916Abstract: Compositions for regeneration of spent dialysis fluid are disclosed. The compositions include a sorbent comprising a titanium-glyoxal complex. Sorbent cartridges comprising the sorbents, and methods and systems for using the cartridges in dialysis also are disclosed.Type: GrantFiled: November 28, 2018Date of Patent: March 12, 2024Assignees: Baxter International Inc., Baxter Healthcare SAInventors: Rosa Hung-Chen Yeh, Yuanpang Samuel Ding, Cristian Adolfo Menzel Bueno
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Patent number: 11925917Abstract: Wet impregnation of active metal precursors into porous substrates, together with selective adsorption of the precursors on the pore surfaces, enables transition metal oxides derived from the precursors to disperse throughout the substrate, even at the nanoscale, without increased sintering or agglomeration, thereby forming oxygen carriers suitable for chemical looping. The porous substrate can be an oxide, for example SiO2. The oxygen carriers can comprise relatively large oxide loadings of over about 20 wt % and exhibit high reactivity over many regeneration cycles with substantially no loss in oxygen transport capacity or decrease in kinetics. The use of multiple transition metal oxides, for example NiO in addition to CuO, can greatly enhance chemical looping performance.Type: GrantFiled: August 13, 2021Date of Patent: March 12, 2024Inventor: Kyle O′Malley
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Patent number: 11925918Abstract: A silica aggregate includes primary silica particles aggregated, the primary silica particles having an average particle size of 1 nm or more and less than 10 nm, the primary silica particles being crosslinked to each other by a bond containing a siloxane bond.Type: GrantFiled: March 26, 2020Date of Patent: March 12, 2024Assignee: CANON KABUSHIKI KAISHAInventors: Kengo Kanazaki, Fumio Yamauchi, Teigo Sakakibara, Yoshinori Kotani, Ryoko Ueyama
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Patent number: 11925920Abstract: The present invention relates to a catalyst for hydrogenation of an aromatic compound, which is capable of greatly reducing the inactivation of a catalyst by using a support including a magnesium-based spinel structure, and a preparation method therefor.Type: GrantFiled: October 16, 2018Date of Patent: March 12, 2024Assignee: HANWHA CHEMICAL CORPORATIONInventors: Eung Gyu Kim, Won Yong Kim, Jeong Hwan Chun, Young Jin Cho, Joung Woo Han, Hyo Suk Kim, Wan Jae Myeong, Ki Taeg Jung
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Patent number: 11925921Abstract: The present invention relates to catalysts, methods of making catalysts, and methods of using catalysts, where the catalysts include: at least one of a transition metal and a transition metal oxide supported by yttria-stabilized zirconia (YSZ), where the transition metal is promoted by at least one of an alkali metal and an alkaline-earth metal.Type: GrantFiled: August 14, 2020Date of Patent: March 12, 2024Assignee: COLORADO SCHOOL OF MINESInventors: James Douglas Way, Colin A. Wolden, Zhenyu Zhang
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Patent number: 11925922Abstract: The present invention relates to a method of improving the corrosion resistance of a metal substrate surface using an oxygen reduction catalyst, which may improve the corrosion resistance of the metal substrate surface by coating the metal substrate surface with the oxygen reduction catalyst so that the metal substrate surface is changed to a passive state through the action of the oxygen reduction catalyst in an environment in which a stable oxide layer is not spontaneously formed on the metal substrate surface. The present invention has an advantage in that it can dramatically improve the corrosion resistance of the metal substrate under a corrosive environment by allowing a recoverable oxide layer to be formed on the metal substrate surface through the action of the oxygen reduction catalyst, applied to the surface, even in an environment in which an oxide layer is not spontaneously formed on the metal substrate.Type: GrantFiled: March 7, 2022Date of Patent: March 12, 2024Assignee: POSTECH RESEARCH AND BUSINESS DEVELOPMENT FOUNDATIONInventors: Yong-Tae Kim, Jaeik Kwak, Hyoung Seop Kim, Sujung Son, Sang-Mun Jung
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Patent number: 11925923Abstract: A pulsed compression reactor may include a reactor housing, a spring piston, and a driver piston. The reactor housing may define an interior volume, and may include a first passage and a second passage which lead to the interior volume. The spring piston may be positioned within the interior volume, wherein the spring piston and the reactor housing at least partially define a perimeter of a gas spring buffer chamber within the interior volume. The driver piston may be positioned within the interior volume, wherein the spring piston, the driver piston, and the reactor housing at least partially define a perimeter of a reaction chamber within the interior volume.Type: GrantFiled: August 15, 2022Date of Patent: March 12, 2024Assignee: Dow Global Technologies LLCInventors: Cornelis Biesheuvel, Adrianus C. De Kok, Hendrik L. Pelt, Wim M. Kamperman
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Patent number: 11925924Abstract: A synthetic block for optimizing the performance of diamonds and gemstones is provided, including: a sealing material, a thermal insulation material, conductive materials, and a heating material. The conductive materials are provided at both ends of the sealing material. The heating material abuts between the conductive materials, and a high-temperature and high-pressure area is formed inside the heating material. The thermal insulation material includes a first thermal insulation tube and a second thermal insulation tube that are sequentially telescoped the conductive materials. The first thermal insulation tube abuts on an outer wall of the heating material, the second thermal insulation tube is provided between the sealing material and the first thermal insulation tube, a height of the second thermal insulation tube is greater than that of the first thermal insulation tube, and the synthetic block is square.Type: GrantFiled: March 12, 2020Date of Patent: March 12, 2024Assignee: GUILIN KEYSTONE MACHINERY CO., Ltd.Inventor: Xiaowen Zhang
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Patent number: 11925925Abstract: The invention provides ionic polymers (IP) consisting of anions and a polymeric backbone containing cations. The invention also provides the ionic polymers incorporated in membranes or attached to solid supports and use of the ionic polymers in processing of biomass.Type: GrantFiled: September 19, 2018Date of Patent: March 12, 2024Assignee: Embion Technologies SAInventors: Sviatlana Siankevich, Georgios Savoglidis, Paul Joseph Dyson, Zhaofu Fei
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Patent number: 11925926Abstract: Platinum complexes having ferrocene-diphosphine ligands for catalysis of the hydroxycarbonylation of ethylenically unsaturated compounds.Type: GrantFiled: December 7, 2021Date of Patent: March 12, 2024Assignee: EVONIK OXENO GMBH & CO. KGInventors: Carolin Schneider, Ralf Jackstell, Matthias Beller, Robert Franke
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Patent number: 11925927Abstract: Catalyst compositions and processes for the oligomerization of ethylene to 1-octene are described. The catalyst composition includes a triamino bisphospino (NPNPN) ligand system with specific phosphorous and nitrogen ligands. The terminal nitrogen atoms include linear alkyl hydrocarbons that differ in the number of carbon atoms by 3.Type: GrantFiled: November 3, 2022Date of Patent: March 12, 2024Assignee: SABIC Global Technologies B.V.Inventors: Abdulaziz Al-Nezari, Ilia Korobkov, Khalid Albahily
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Patent number: 11925928Abstract: A self-cleaning fabric having a photocatalyst responsive to UV, visible and IR irradiations for inactivating harmful microorganisms via photocatalysis.Type: GrantFiled: June 17, 2022Date of Patent: March 12, 2024Assignee: City University of Hong KongInventors: Jin Shang, Tianqi Wang, Mingzhe Sun
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Patent number: 11925929Abstract: A fluid catalytic cracking unit fractionator comprising a fractionator column having a slurry pumparound section and a bottom liquid section. The slurry pumparound section comprises an upper bed and a lower bed each disposed in the fractionator column. The slurry pumparound section further comprises an upper liquid distributor (such as a spray header comprising a plurality of upper nozzles) disposed above the upper bed and configured to distribute liquid from the bottom liquid section onto the upper bed. The slurry pumparound section also comprises a lower liquid distributor (such as a spray header comprising a plurality of lower nozzles) disposed below the upper bed and above the lower bed and configured to distribute liquid from the bottom liquid section onto the lower bed.Type: GrantFiled: September 14, 2022Date of Patent: March 12, 2024Assignee: PROCESS CONSULTING SERVICES, INC.Inventors: Anthony Frederick Barletta, Jr., Scott William Golden, Edward Lee Hartman, Steven Leslie White
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Patent number: 11925930Abstract: In an apparatus, a gas containing CH4 and CO2 is supplied from a first supply unit to a synthetic gas production unit which generates a synthetic gas containing CO and H2 while heating a first catalytic structure; the synthetic gas is supplied to a gas production unit which generates a lower olefin-containing gas including propylene while heating a second catalytic structure; and a detection unit detects propylene discharged from the gas production unit. The first catalytic structure includes first supports having a porous structure and a first metal fine particle that is present in first channels of the first supports. The second catalyst structure includes second supports having a porous structure and a second metal fine particle in the second supports. The second supports have a second channels, a portion of which have an average inner diameter of 0.95 nm or less.Type: GrantFiled: December 3, 2019Date of Patent: March 12, 2024Assignee: FURUKAWA ELECTRIC CO., LTD.Inventors: Yuichiro Banba, Kaori Sekine, Yukako Nakai, Mai Nishii, Masayuki Fukushima, Sadahiro Kato, Takao Masuda, Yuta Nakasaka, Takuya Yoshikawa
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Patent number: 11925931Abstract: Humidified sample preparation station for serial crystallography according to one embodiment is a humidified enclosure that delivers relative humidities above 95% and preferably above 97% in standard operation, and that can allow microscope observation of samples within. Humidified sample preparation station for serial crystallography can be used for preparation of protein crystal samples for examination using X-rays and for protein structure determination by X-ray crystallography, involving addition of liquid to the sample and removal of liquid from the sample using vacuum or suction.Type: GrantFiled: August 9, 2021Date of Patent: March 12, 2024Assignee: MiTeGen, LLCInventors: Richard Jayne, David Closs, Benjamin A. Apker, Robert E. Thorne
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Patent number: 11925932Abstract: An example microfluidic device includes a microfluidic network through which operational fluid is to flow and a droplet ejector. The microfluidic device includes a drive fluid storage volume to contain drive fluid, the drive fluid storage volume connected in series between the microfluidic network and the droplet ejector. When the drive fluid is ejected from the droplet ejector, the operational fluid is drawn through the microfluidic network.Type: GrantFiled: April 24, 2018Date of Patent: March 12, 2024Assignee: Hewlett-Packard Development Company, L.P.Inventor: Si-lam Choy
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Patent number: 11925933Abstract: The present invention generally relates to microfluidic devices. In some aspects, various entities, such as droplets or particles, may be contained within a microfluidic device, e.g., within collection chambers or other locations within the device. In some cases, the entities may be released from such locations, e.g., in a sequential pattern, or an arbitrary pattern. In some cases, the entities may be imaged, reacted, analyzed, etc. while contained within the collection chambers. Other aspects are generally directed to methods of making or using such devices, kits involving such devices, or the like.Type: GrantFiled: April 14, 2017Date of Patent: March 12, 2024Assignee: President and Fellows of Harvard CollegeInventors: David A. Weitz, Kiryakos S. Mutafopulos, Thomas Hufnagel
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Patent number: 11925934Abstract: Microfluidic devices for cell sorting or cell fractionation are disclosed. A microfluidic device can comprise one or more inlets, a first wall and a second wall, and two or more outlets. The first and second walls can be substantially planar to each other and the first wall having can have a plurality of ridges protruding from the first wall and defining a compression gap between the ridge and a surface of the second wall. The microfluidic device can also be a cell sorting device for sorting a plurality of cells based on one or more biophysical cellular properties including size, elasticity, viscosity, and/or viscoelasticity wherein the cells are subjected to one or more compressions due to the compression gap. Also disclosed are methods for cell sorting based on a variety of biophysical cellular properties.Type: GrantFiled: July 1, 2020Date of Patent: March 12, 2024Assignee: Georgia Tech Research CorporationInventors: Todd Sulchek, Alexander Alexeev, Gonghao Wang