Patents Issued in April 30, 2024
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Patent number: 11970403Abstract: Methods for synthesizing zeolites in the presence of a pH-modified WS-ODSO composition are provided. A pH-modified WS-ODSO composition is used as a component in zeolite synthesis along with precursors and reagents for synthesizing zeolites. The methods advantageously reduce the amount of utility water required for synthesizing zeolites. In certain embodiments the methods reduce the amounts of added mineralizer reagent typically required for synthesizing zeolites. The methods advantageously reduce the amount of utility water required for synthesizing a material and reduce the DSO waste from a refinery and discharge into the environment.Type: GrantFiled: June 27, 2022Date of Patent: April 30, 2024Assignee: SAUDI ARABIAN OIL COMPANYInventors: Robert P. Hodgkins, Omer Refa Koseoglu
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Patent number: 11970404Abstract: A method and system for the offshore production of fuel includes an offshore marine platform on which is mounted an ammonia production unit. The ammonia production unit may produce ammonia utilizing raw materials sourced adjacent the marine platform, including seawater and electricity from offshore wind turbines. The produced ammonia may be subsequently liquified and transported away from the marine platform, or conveyed to a remote location via a seabed pipeline. A portion of the hydrogen produced as part of the ammonia production process may be utilized to operate onboard combustion turbines that can in turn drive electric generators onboard the marine platform to produce electricity.Type: GrantFiled: June 14, 2023Date of Patent: April 30, 2024Assignee: Stena Power & LNG Solutions ASInventors: Svein Borge Hellesmark, Göran Hermansson
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Patent number: 11970405Abstract: Provided is a method for producing lithium carbonate from lithium ion battery waste, the lithium ion battery waste including battery positive material components containing Li and at least one metal selected from the group consisting of Co, Ni and Mn, wherein, after subjecting the lithium ion battery waste to a wet process, thereby separating the at least one metal of the battery positive material components from the lithium ion battery waste to obtain crude lithium carbonate, the method includes: a dissolution step of dissolving the crude lithium carbonate in a liquid while feeding a carbon dioxide gas; and a decarbonization step of heating a lithium dissolved solution obtained in the dissolution step to release carbonic acid, and wherein when dissolving the crude lithium carbonate in the liquid in the dissolution step, the liquid is stirred in a reaction vessel using a stirrer, and a ratio of a diameter (d) of a stirring blade of the stirrer to an inner diameter (D) of the reaction vessel (d/D) is from 0.Type: GrantFiled: August 29, 2019Date of Patent: April 30, 2024Assignee: JX METALS CORPORATIONInventors: Hirotaka Ariyoshi, Isao Tomita, Hiroshi Abe
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Patent number: 11970406Abstract: Automated systems to make target compounds from slide stainer waste streams inactive utilizing advanced oxidation processes are described herein. Advanced oxidation processes are promoted by UV irradiation and further accelerated by use of radical initiators, such as hydrogen peroxide. The automated systems further include mechanisms for segregating components of the waste streams.Type: GrantFiled: June 9, 2022Date of Patent: April 30, 2024Assignee: Ventana Medical Systems, Inc.Inventors: Nathan Crum, Joseph M. Jakubowski, Jerome W. Kosmeder, II, Eric May, Michael Otter, Taylor J. Shingler, Benjamin C. Stevens
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Patent number: 11970407Abstract: An ion-exchange resin module and a deionization apparatus using same are proposed. An ion-exchange resin module may have the inside filled with ion-exchange resin and may be configured to have a pressing plate such that fluid in the ion-exchange resin is discharged. Multiple ion-exchange resin modules may be installed by being stacked in an inner space defined inside a tank of the deionization apparatus. A discharge pipe which passes through the lower end of the tank and extends to the upper end thereof may be installed in the inner space, the discharge pipe being located in a through duct which passes through the centers of the ion-exchange resin modules.Type: GrantFiled: November 19, 2019Date of Patent: April 30, 2024Assignee: HYOSUNG HEAVY INDUSTRIES CORPORATIONInventors: Chang Woo Han, Seung Boong Jeong
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Patent number: 11970408Abstract: An embodiment of this disclosure provides a liquid treatment device, including: a housing 10 having a housing body 16 and a cover body 11, wherein the housing body 16 is open at one end in a length direction and is close at the other end, the cover body 11 is matched with the one end of the housing body 16 for sealing the one end, and the cover body 11 is provided with an inlet 13 for a liquid to flow into the cover body 11; a reverse osmosis membrane unit 20 located in an accommodation space enclosed by the housing body 16 and the cover body 11, the reverse osmosis membrane unit 20 including a reverse osmosis membrane 24 for performing reverse osmosis treatment on the liquid, a collector tube 27 collects a purified liquid obtained by the reverse osmosis treatment, and a support rod 22 supporting the reverse osmosis membrane 24, wherein the reverse osmosis membrane 24 includes a liquid inlet 21 at one end in the length direction; and a filter 30 arranged in the cover body 11 and located between the liquid inlType: GrantFiled: May 28, 2021Date of Patent: April 30, 2024Assignee: Canpro Water Treatment Inc.Inventor: Yiu Chau Chau
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Patent number: 11970409Abstract: Per- and polyfluoroalkyl substances (PFAS) are destroyed by oxidation in supercritical conditions. PFAS in water can be concentrated and prepared for destruction in a pretreatment phase. Following annihilation of the PFAS in supercritical conditions to levels below 5 parts per trillion (ppt), the water effluent can be used to recover heat, returned to sub-critical conditions, and then released back into the environment.Type: GrantFiled: November 21, 2022Date of Patent: April 30, 2024Assignee: Revive Environmental Technology, LLCInventors: Lindy E. Dejarme, Kavitha Dasu, Russell R. Sirabian, Jeffrey Ellis, Dan Garbark, Nathan Bryant, John Tallarico, Joseph Casciano, Slawomir Winecki, David Holley, Joshua James, Keith Brown, Doug Hendry, Darwin Argumedo, Aaron Frank, Christopher Gordon Scheitlin, Michael M. Miller
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Patent number: 11970410Abstract: The present application pertains to systems and methods for desalination. In one embodiment the system employs a first storage reservoir configured to be near the surface of a body of water and configured to store a low density fluid. A second storage reservoir is configured to be located below the surface of the body of water. A desalination system is operably connected to the second reservoir. Desalinated water is produced by allowing desalination permeate to displace low density fluid in the second reservoir and transfer the low density fluid from the second reservoir to the first reservoir. Desalinated water is exported by transferring low density fluid from the first reservoir into the second reservoir to displace desalinated water from the second reservoir into a water export pipeline.Type: GrantFiled: August 21, 2023Date of Patent: April 30, 2024Inventor: Ethan Novek
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Patent number: 11970411Abstract: A method of treating aqueous, preferably concentrated, waste streams with a unique combination of steps in a way that is easily scalable and able to be used with batch or continuous flows. The method comprises at least the following steps: Adding at least one precipitating agent to the waste water to produce precipitated solids; and removing the precipitated solids from the waste water using a forward flushable membrane to remove the precipitate solids.Type: GrantFiled: December 20, 2021Date of Patent: April 30, 2024Assignee: GARRATT-CALLAHAN COMPANYInventors: E. H. Kelle Zeiher, Henri Robert Asbell, James E Gamlen, Daron Gareth Evans
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Patent number: 11970412Abstract: A plasma electrode module, an underwater plasma discharge device including the plasma electrode module, and a water treatment system are provided. The plasma electrode module includes a conductive substrate including a plurality of holes, a ceramic layer surrounding a portion of the outer surface of the conductive substrate, and a plasma electrode disposed in each of the plurality of holes, wherein the plasma electrode has a multilayer structure in which a cylindrical ground portion, a fixed portion, and a discharge portion are sequentially stacked, the ground portion is in contact with the conductive substrate and plasma is generated on the discharge portion, and each of the plurality of holes has a diameter in a range of 1 mm to 10 mm.Type: GrantFiled: June 9, 2021Date of Patent: April 30, 2024Assignee: DOOSAN ENERBILITY CO., LTD.Inventor: Yong Hae Park
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Patent number: 11970413Abstract: To provide an electric vacuum cleaning apparatus and a cleaning head can continuously perform both of suction cleaning and wiping for disinfecting the surface to be cleaned together. The apparatus includes: an electric blower that generates suction vacuum pressure; a suction air passage equipped with a suction port and fluidly connected to a suction side of the electric blower; an electrolyzed-water generator that electrolyzes water to produce electrolyzed water containing hypochlorous acid; a wiping-member attachment to which a wiping member is detachably attached; and a supply mechanism that supplies the electrolyzed water to at least one of a surface to be cleaned and the wiping member that is attached to the wiping-member attachment.Type: GrantFiled: November 8, 2019Date of Patent: April 30, 2024Assignee: Toshiba Lifestyle Products & Services CorporationInventors: Takahiro Murosaki, Hironori Sasaki
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Patent number: 11970414Abstract: Disclosed herein is a water system component including a substrate and a hydrophilic coating disposed on the substrate. The hydrophilic coating includes an adhesive agent; an insolubilizer for insolubilizing the adhesive agent; titanium dioxide; and a metal oxide selected from the group consisting of silver oxide, copper oxide, iron oxide, magnesium oxide, and combinations thereof.Type: GrantFiled: July 7, 2020Date of Patent: April 30, 2024Assignee: HAMILTON SUNDSTRAND CORPORATIONInventors: Barbara M. Peyton, Carol L. Metselaar, John W. Steele
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Patent number: 11970415Abstract: The present invention discloses a sludge anaerobic fermentation treatment method with simultaneously enhanced acid production and phosphorus removal. The method includes steps of: (1) adding waste activated sludge into an anaerobic reaction system, with a concentration of a total suspended solid (TSS) of 10000-15000 mg/L; (2) maintaining a pH value of the waste activated sludge at 10±0.1; adding powdery magnetite of 0.3-0.9 g/gVS S. Compared with simple alkaline conditions, in the method of the present invention, an accumulation amount of short chain fatty acids (SCFAs) in a fermentation broth is increased by 20%, and a content of orthophosphoric acid is reduced by 10%. The method can further improve the enhancing effect by using sulfuric acid to modify the magnetite, the accumulation amount of SCFAs can be increased by 36.7% at most, and the content of phosphorus and refractory organic substances can be reduced by 32.4% and 40.4% at most, respectively.Type: GrantFiled: January 15, 2021Date of Patent: April 30, 2024Assignee: ZHEJIANG UNIVERSITYInventors: Liang Zhu, Donghui Lu, Jianxun Chen, Chen Wang, Taixing Han, Xiangyang Xu
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Patent number: 11970416Abstract: The present invention is directed to clay composites comprising at least one polycation attached to the clay surface and at least one aldehyde degrading microorganism and uses thereof for removal of aldehyde from aldehyde containing environments.Type: GrantFiled: May 23, 2019Date of Patent: April 30, 2024Assignee: TECHNION RESEARCH & DEVELOPMENT FOUNDATION LIMITEDInventors: Adi Ish-Am Radian, Ayelet Fishman, Yael Zvulunov, Zohar Ben-Barak Zelas
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Patent number: 11970417Abstract: Systems for producing articles from glass tube include a converter having a base with a plurality of processing stations and a turret moveable relative to the base. The turret indexes a plurality of holders for holding the glass tubes successively through the processing stations. The systems further include a gas flow system or a suction system for producing a flow of gas through the glass tube during one or more heating, forming, separating or piercing operations. The flow of gas through the glass tube produced by the gas flow system or suction system may be sufficient to evacuate or purge volatile constituents of the glass from the glass tube and/or pierce a meniscus formed on the glass tube during separation, thereby reducing the Surface Hydrolytic Response (SHR) of the interior surface of the glass tube and articles made therefrom.Type: GrantFiled: May 6, 2022Date of Patent: April 30, 2024Assignee: CORNING INCORPORATEDInventors: Lewis Kirk Klingensmith, Joseph Michael Matusick, Connor Thomas O'Malley, Matthew Daniel Trosa, Steven Robert Wagner
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Patent number: 11970418Abstract: Methods for producing glass articles from glass tube includes securing a glass tube in a holder of a converter; rotating the glass tube; and passing the glass tube through processing stations, which include at least a heating station and a forming station, to form one or more features at a working end of the glass tube. An active time is an amount of time the glass tube is engaged with a heating element or a forming tool while in a processing station, and an exposure index for the processing station is the rotational speed of the glass tube multiplied by a number of heating elements or forming tools in the processing station multiplied by the active time. An absolute difference between the exposure index and a nearest integer is less than or equal to 0.30, which reduces temperature and dimensional inhomogeneity around a circumference of the glass tube.Type: GrantFiled: August 10, 2021Date of Patent: April 30, 2024Assignee: CORNING INCORPORATEDInventors: Olivier Fournel, Kevin Patrick McNelis
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Patent number: 11970419Abstract: A method of forming an imaging fibre apparatus comprises: •arranging core rods 102 and cladding rods 104 to form at least one primary stack 100a, each primary stack 100a comprising a plurality of core rods 102 and cladding rods 104 arranged in a stack arrangement thereby to form a plurality of core regions within a cladding region; •performing a drawing process to form a plurality of drawn stacks from the at least one primary stack; •wherein the plurality of core rods and cladding rods are further arranged to have a selected shape such that the plurality of stacks stack together in a desired arrangement and wherein the stack arrangement comprises an at least partial outer layer of cladding rods thereby to provide separation between core regions of respective adjacent stacks when stacked in the desired arrangement, the method further comprising: •stacking the plurality of drawn stacks together in the desired arrangement to form a further stack; •drawing the further stack; and •using the drawn further stack toType: GrantFiled: June 20, 2019Date of Patent: April 30, 2024Assignee: The University Court of the University of EdinburghInventors: Harry A. C. Wood, James M. Stone, Kerrianne Harrington
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Patent number: 11970420Abstract: A molding device and a molding method for an optical fiber preform are provided. The molding device includes a rotating mechanism, an extrusion mechanism, and a cylinder mold that is of a cylindrical structure with two ends each having an opening. After a hollow cladding sleeve is obtained by rotating the cylinder mold through the rotating mechanism, a molten core glass is then reversely extruded into the cladding sleeve in the cylinder mold from bottom to top by the extrusion mechanism to prepare the optical fiber preform.Type: GrantFiled: June 13, 2022Date of Patent: April 30, 2024Assignee: CHINA JILIANG UNIVERSITYInventors: Shiqing Xu, Youjie Hua, Bingpeng Li, Ying Tian, Feifei Huang, Junjie Zhang, Muzhi Cai, Renguang Ye
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Patent number: 11970421Abstract: Glass articles including one or more 3D printed surface features attached to a surface of a substrate at a contact interface between the 3D printed surface feature and the surface. The 3D printed surface feature(s) include a glass or a glass-ceramic, a compressive stress region at an exterior perimeter surface of the 3D printed surface feature(s), and a central tension region interior of the compressive stress region. The 3D printed surface feature(s) may be formed of a contiguous preformed material 3D printed on a surface of a substrate. The compressive stress region of a 3D printed surface feature may be formed using an ion-exchange process.Type: GrantFiled: December 5, 2019Date of Patent: April 30, 2024Assignee: CORNING INCORPORATEDInventors: Matthew John Dejneka, Seyed Amir Farzadfar, Michael Thomas Gallagher, Balamurugan Meenakshi Sundaram, Yawei Sun
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Patent number: 11970422Abstract: Composite cement with improved reactivity and improved fresh properties comprising a hydraulic cement or a caustic activator, a hyaloclastite as pozzolan containing 45-62 wt.-% SiO2, 10-20 wt. % Al2O3, 6-15 wt.-% Fe2O3, 7-15 wt.-% CaO, 7-15 wt.-% MgO, 1.5-4 wt. % (K2O+Na2O), and having 0-5 wt.-% loss on ignition at 950° C. and ?50 wt.-% X-ray amorphous phase, and a carbonate filler with an at least bimodal particle size distribution adapted to provide a slope n in a Rosin-Rammler-Sperling-Bennett distribution curve of ?1.15 in a particle size distribution of the composite cement; a method for manufacturing it, as well as use of a composition comprising the hyaloclastite as pozzolan and the carbonate filler as mineral addition for composite cements comprising a hydraulic cement or a caustic activator.Type: GrantFiled: April 25, 2022Date of Patent: April 30, 2024Assignee: HCONNECT 2 GMBHInventors: Frank Bullerjahn, Sigum Kjaer Bremseth, Kjell Skjeggerud, Wolfgang Dienemann
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Patent number: 11970423Abstract: Cement compositions of the present disclosure include a cement precursor, water, and a cement retarder that includes hydrocarboxylic acid derivatives. In particular, the cement compositions include from 10 wt. % to 70 wt. % cement precursor, from 5 wt. % to 70 wt. % water, and from 0.1 percent by weight of cement (BWOC) to 10 percent BWOC cement retarder comprising the hydrocarboxylic acid derivatives. The hydrocarboxylic acid derivatives provide increased thickening time to the cement compositions at downhole temperatures of greater than or equal to 50° C. The present disclosure further includes methods of cementing a wellbore using the cement compositions with the cement retarder comprising the hydrocarboxylic acid derivatives.Type: GrantFiled: December 7, 2021Date of Patent: April 30, 2024Assignee: Saudi Arabian Oil CompanyInventors: Sara Abdulaziz Alkhalaf, Abdullah Al-Yami, Vikrant Wagle, Ali Al Safran
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Patent number: 11970424Abstract: The present invention specifically relates to equipment and a method for preparing an aerogel thermal insulation mortar for a high-temperature kiln thereof. The equipment comprises a top box, a support frame platform, a processing mechanism, an agitation mechanism, a receiving mechanism and a docking mechanism, wherein the top box is provided with a partition frame capable of dividing an inner space thereof into a first material discharge cavity, a second material discharge cavity, a third material discharge cavity and a fourth material discharge cavity respectively; the receiving mechanism is mounted on an inner top of the support frame platform and docked with the top box; the docking mechanism is mounted on the receiving mechanism; an inner bottom of the support frame platform is provided with a collection box; one side of the top box is provided with a door panel.Type: GrantFiled: August 21, 2023Date of Patent: April 30, 2024Assignee: CNBM Technology Innovation Academy (Shandong) Co., Ltd.Inventors: Zhonglun Zhang, Mingming Wang, Zhijun Xin
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Patent number: 11970425Abstract: Disclosed is a liquid regulator for ultra-dispersed, high-mud-resistance, high-foam-stability, low-shrinkage and enhanced autoclaved aerated concrete, which comprises the following ingredients in parts by weight: 75 parts to 85 parts of hyperdispersant; 5 parts to 10 parts of anti-mud agent; 1 part to 3 parts of shrinkage reducing ingredient; 10 parts to 20 parts of reinforcing ingredient; and 0.05 part to 0.1 part of foam stabilizing ingredient; and the invention further discloses a preparation and application thereof. By adding the liquid regulator into the autoclaved aerated concrete, the effects of ultra-dispersion, high mud resistance, high foam stability, low shrinkage and performance enhancement can be achieved.Type: GrantFiled: May 19, 2023Date of Patent: April 30, 2024Assignee: Chongqing Juwei Energy Saving Building Materials Co., LTDInventors: Huaguo Liang, Hu Xie, Sinan Wu
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Patent number: 11970426Abstract: A method of enhancing nitrogen and phosphate fertilizer recovery and, particularly, to using sewage sludge and corn stover to enhance nitrogen and phosphate fertilizer recovery. The methods can further use ferric chloride as a catalyst to further enhance nitrogen recovery. The fertilizer can be produced by hydrothermally carbonizing a mixture including about 20% of sewage sludge and about 30% of corn stover.Type: GrantFiled: December 5, 2023Date of Patent: April 30, 2024Assignee: KING FAISAL UNIVERSITYInventors: Muhammad Aamir, Muhammad Hassan
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Patent number: 11970427Abstract: This disclosure relates to slow- and controlled-release fertilizers (S-CRF), and more particularly to a microelement amino acid chelate-urea formaldehyde (UF) slow-release fertilizer and a method for preparing the same by reactive extrusion. The microelement amino acid chelate-UF slow-release fertilizer includes a biodegradable UF polymer and a microelement amino acid chelate. The macromolecular chains of the biodegradable UF polymer interpenetrate in the cross-linked network structure of the chelate, so as to form a polymer composite with a semi-interpenetrating network structure.Type: GrantFiled: November 1, 2023Date of Patent: April 30, 2024Assignees: NORTH UNIVERSITY OF CHINA, SHANXI ZHONGBEI NEW MATERIAL TECHNOLOGY CO., LTD.Inventors: Yaqing Liu, Chaoyang Wu, Guizhe Zhao
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Patent number: 11970428Abstract: Disclosed are compositions and methods of making a liquid fertilizer additive of biodegradable polymeric and/or oligomeric nitrification inhibitors comprised of utilizing a non-aqueous polar, aprotic organo liquid (NAPAOL) as the reaction medium for the reaction of aldehyde(s) with cyano-containing nitrification inhibitors that have one or more aldehyde reactive groups selected from the group consisting of a) primary, b) secondary amines, c) amides, d) thiols, e) hydroxyls and f) phenols.Type: GrantFiled: August 8, 2022Date of Patent: April 30, 2024Assignee: SOILGENIC TECHNOLOGIES, LLCInventors: Gary David McKnight, Randall Linwood Rayborn
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Patent number: 11970429Abstract: A composite particle is described herein. The composite particle can contain a seed particle of an agricultural treatment material and a shell disposed on the seed particle, wherein the shell comprises a clay.Type: GrantFiled: October 1, 2020Date of Patent: April 30, 2024Assignee: CARBO CERAMICS INC.Inventors: Keith Hogan, Steve Canova, David Osby
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Patent number: 11970430Abstract: The present invention provides a method for the co-production of 1,1-difluoroethane and vinyl chloride, including: (a) vaporizing dichloroethane and hydrogen fluoride, and delivering the vaporized dichloroethane and hydrogen fluoride into a reactor for a catalytic reaction under the action of a catalyst to obtain a reaction product; (b) delivering the reaction product into a first rectifying tower for separation to obtain an overhead product from the first rectifying tower and a bottom product from the first rectifying tower; (c) delivering the overhead product from the first rectifying tower into a second rectifying tower for separation to obtain hydrogen chloride and a bottom product from the second rectifying tower; (d) delivering the bottom product from the second rectifying tower into a purifying tower for purification to obtain an overhead product from the purifying tower; (e) simultaneously delivering the overhead product from the purifying tower and a saturated organic solvent into a third rectifyingType: GrantFiled: June 25, 2021Date of Patent: April 30, 2024Assignee: Zhejiang Quhua Fluor-Chemistry Co LtdInventors: Huimei Yu, Jiangyong Hong, Bo Yang, Yang Zhao, Yan Zhang, Linhui Li, Yawen Ren
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Patent number: 11970431Abstract: Described are polymerizable high energy light absorbing compounds of formula I: Wherein Y, Pg, R2, R3, R4, R5, and R6 are as described herein. The compounds absorb various wavelengths of ultraviolet and/or high energy visible light and are suitable for incorporation in various products, such as biomedical devices and ophthalmic devices.Type: GrantFiled: May 27, 2021Date of Patent: April 30, 2024Assignee: Johnson & Johnson Vision Care, Inc.Inventors: Ghulam Maharvi, Shivkumar Mahadevan, Stephen C. Arnold, Patricia Martin, Leilani K. Sonoda, Dola Sinha
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Patent number: 11970432Abstract: The present invention provides a process for preparing 2-methyl-N-(2?-methylbutyl)butanamide of the following formula (1): the process comprising: subjecting an ?-arylethyl-2-methylbutylamine compound of the following general formula (2): wherein Ar represents a substituted or unsubstituted aryl group having 6 to 20 carbon atoms, to N-2-methylbutyrylation to form an N-?-arylethyl-2-methyl-N-(2?-methylbutyl)butanamide compound of the following general formula (3): wherein Ar is as defined above, and removing the ?-arylethyl group of the resulting compound (3) to form 2-methyl-N-(2?-methylbutyl)butanamide (1).Type: GrantFiled: February 28, 2023Date of Patent: April 30, 2024Assignee: SHIN-ETSU CHEMICAL CO., LTD.Inventors: Takeshi Kinsho, Yusuke Nagae, Shogo Tsukaguchi, Yasuhiko Kutsuwada, Tatsuya Hojo, Takeru Watanabe
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Patent number: 11970433Abstract: A new synthetic route to a 2,2?-dimethyl-4,4?-diiodoazobenzene compound using homo-oxidative cross-coupling of an aryl diazonium salt using a Cu-catalyzed Sandmeyer-style reaction.Type: GrantFiled: December 8, 2023Date of Patent: April 30, 2024Assignee: KING FAISAL UNIVERSITYInventor: Obadah Subhi Abdel-Rahman
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Patent number: 11970435Abstract: Provided are embodiments of creatine and creatine ethyl ester (CEE) salts where the anion is an artificial (non-saccharide) taste-modifier. These compounds represent stable white non-hygroscopic solids or semisolids that can readily dissolve in water and buffer solutions. Synthesis of novel creatine salts using environmentally safe solvents such as ethanol resulted in the formation of products in quantitative yields with sodium or potassium chloride as a byproduct. The creatine and creatine alkyl eater derivative salts are stable sweet-tasting compounds that are more palatable to a consumer than creatine or derivatives thereof.Type: GrantFiled: May 7, 2018Date of Patent: April 30, 2024Assignee: AUGUSTA UNIVERSITY RESEARCH INSTITUTE, INC.Inventors: Iryna Lebedyeva, Christopher Klug
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Patent number: 11970436Abstract: The present invention provides a process for purifying a monoterpene or sesquiterpene having a purity greater than about 98.5% (w/w). The process comprises the steps of derivatizing the monoterpene (or sesquiterpene) to produce a monoterpene (or sesquiterpene) derivative, separating the monoterpene (or sesquiterpene) derivative, and releasing the monoterpene (or sesquiterpene) from the derivative. Also encompassed by the scope of the present invention is a pharmaceutical composition comprising a monoterpene (or sesquiterpene) having a purity greater than about 98.5% (w/w). The purified monoterpene can be used to treat a disease such as cancer. The present monoterpene (or sesquiterpene) may be administered alone, or may be co-administered with radiation or other therapeutic agents, such as chemotherapeutic agents.Type: GrantFiled: May 20, 2022Date of Patent: April 30, 2024Assignee: UNIVERSITY OF SOUTHERN CALIFORNIAInventors: Thomas Chen, Daniel Levin, Satish Puppali
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Patent number: 11970437Abstract: An 8-((4-hydroxynaphthalen-1-yl)diazenyl)naphthalene-1,3-disulfonic acid compound, its synthesis, and its use as an antioxidant agent.Type: GrantFiled: October 27, 2023Date of Patent: April 30, 2024Assignee: KING FAISAL UNIVERSITYInventors: Hany Mohamed Abd El-Lateef Ahmed, Mai Mostafa Khalaf Ali, Antar Ahmed Abdelhamid Ahmed, Amer A. Amer
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Patent number: 11970438Abstract: There is provided a compound having a structure represented by the following Formula (1), in Formula (1), R1 and R2 each independently represent a phenyl group having a substituent or an unsubstituted phenyl group, R3 and R4 each independently represent a C2-C12 alkyl group having a substituent or an unsubstituted C2-C12 alkyl group, a cyano group, a trifluoromethyl group, or a halogen atom, R5 and R6 each independently represent a hydrogen atom or an alkyl group, R7 represents a phenyl group having a substituent, an unsubstituted phenyl group, or a heteroaromatic group having a specific structure, and X? represents an anion, and in a case where at least one anionic substituent is included in a molecule, X? may not be present.Type: GrantFiled: April 15, 2021Date of Patent: April 30, 2024Assignee: Canon Kabushiki KaishaInventors: Ai Hayakawa, Koromo Shirota, Taichi Shintou, Tsuyoshi Santo
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Patent number: 11970439Abstract: An 8-(4-chlorobenzylideneamino)naphthalene-1,3-disulfonic acid compound, its synthesis, and its use as an antioxidant agent.Type: GrantFiled: October 30, 2023Date of Patent: April 30, 2024Assignee: KING FAISAL UNIVERSITYInventors: Hany Mohamed Abd El-Lateef Ahmed, Mai Mostafa Khalaf Ali, Antar Ahmed Abdelhamid Ahmed, Amer A. Amer
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Patent number: 11970440Abstract: An 8-(3-chlorobenzylideneamino)naphthalene-1,3-disulfonic acid compound, its synthesis, and its use as an antioxidant agent.Type: GrantFiled: October 30, 2023Date of Patent: April 30, 2024Assignee: KING FAISAL UNIVERSITYInventors: Hany Mohamed Abd El-Lateef Ahmed, Mai Mostafa Khalaf Ali, Antar Ahmed Abdelhamid Ahmed, Amer A. Amer
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Method for preparing thionocarbamate and co-producing 2-mercaptoethanol or O-alkylthioethyl xanthate
Patent number: 11970441Abstract: The invention belongs to the field of mineral flotation collector materials, and particularly discloses a method for preparing thionocarbamate. In the preparation process, xanthate and 2-haloethanol are esterified to obtain O-alkyl-S-hydroxyethyl xanthate, and then O-alkyl-S-hydroxyethyl xanthate and fatty amine are reacted to obtain a mixture of thionocarbamate and 2-mercaptoethanol. The mixture of thionocarbamate and 2-mercaptoethanol is washed with alkali, and the oil phase and water phase are separated. The oil phase and water phase are thionocarbamate and 2-hydroxyethylthiolate, respectively, and 2-mercaptoethanol is obtained by washing with an acid. 2-alkylthioethanol is obtained by reacting 2-hydroxyethanethiolate with alkyl halide, and then with carbon disulfide and alkali to prepare O-alkylthioethyl xanthate. Thionocarbamate, 2-mercaptoethanol and O-alkylthioethyl xanthate prepared by this method possess high yield and high purity.Type: GrantFiled: December 7, 2018Date of Patent: April 30, 2024Assignee: CENTRAL SOUTH UNIVERSITYInventors: Hong Zhong, Xiaoping Huang, Shuai Wang, Zhanfang Cao -
Patent number: 11970442Abstract: To achieve a method for producing a carbonic ester at a high yield by a simple process while suppressing formation of by-products, for example, a method for producing an aliphatic carbonic ester. The above problem is solved by a method for producing a carbonic ester, the method including a carbonic ester formation reaction in which an alcohol and carbon dioxide are reacted in the presence of an aromatic nitrile compound and a catalyst, wherein the water content in the alcohol used in the carbonic ester formation reaction is 0.10% by mass or less.Type: GrantFiled: January 8, 2019Date of Patent: April 30, 2024Assignee: MITSUBISHI GAS CHEMICAL COMPANY, INC.Inventors: Hidefumi Harada, Takehiko Isobe, Hongyu Liu, Yousuke Shinkai, Ryotaro Umezu
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Patent number: 11970443Abstract: Provided are a novel crosslinking agent compound, and a superabsorbent polymer prepared by using the same. More particularly, provided are a crosslinking agent compound having a novel structure, which exhibits excellent crosslinking property and thermal degradability, and a superabsorbent polymer prepared by using the same.Type: GrantFiled: October 18, 2019Date of Patent: April 30, 2024Assignee: LG Chem, Ltd.Inventors: Won Taeck Lim, Wonmun Choi, Gicheul Kim, Ki Hyun Kim, Seul Ah Lee
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Patent number: 11970444Abstract: Disclosed herein is an efficacious process for preparation of highly purified Glycopyrrolate tosylate in high yield. The process is being cost effective, environment friendly and easily scalable to high volume industrial production.Type: GrantFiled: November 6, 2019Date of Patent: April 30, 2024Assignee: HARMAN FINOCHEM LIMITEDInventors: Vijay Trimbak Kadam, Dhananjay Uddhavrao Ed Aki, Ravindra Bhausaheb Pagire, Mayur Sanjay Kulkarni, Harpreet Singh Minhas, Gurpreet Singh Minhas
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Patent number: 11970445Abstract: There is provided a method and an apparatus for efficiently recovering an amide-based compound such as N-methyl-2-pyrrolidone from an aqueous solution containing an amide-based compound such as N-methyl-2-pyrrolidone.Type: GrantFiled: September 27, 2019Date of Patent: April 30, 2024Assignee: LG CHEM, LTD.Inventors: Sanghwan Jo, Joong Jin Han, Hansol Kim
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Patent number: 11970446Abstract: The present invention relates to novel crystalline salt forms of mesembrine, also known as 3a-(3,4-dimethoxyphenyl)-octahydro-1-methy-6H-indol-6-one. Mesembrine has the chemical formula C17H23NO3. The invention further relates to the preparation of a novel crystalline salt of mesembrine and to the use of the mesembrine salt as a medicament. In one embodiment the novel crystalline salt form of mesembrine is mesembrine besylate salt.Type: GrantFiled: March 31, 2023Date of Patent: April 30, 2024Assignee: Kanna Health LTDInventor: Ryan Joseph Protzko
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Patent number: 11970447Abstract: Crystalline salts of psilocin are disclosed. The beneficial and therapeutic uses of the crystalline psilocin salts and of compositions containing the crystalline psilocin salts are also disclosed. The disclosure sets out methods of making and characterizing the crystalline psilocin salts.Type: GrantFiled: May 24, 2022Date of Patent: April 30, 2024Assignee: CANNA-CHEMISTRIES LLCInventors: Nate Schultheiss, Nico Setiawan, Lisa M. McCracken, David Jonaitis
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Patent number: 11970448Abstract: Described herein are monomers capable of forming a biologically useful multimer when in contact with one, two, three or more other monomers in an aqueous media. In one aspect, such monomers may be capable of binding to another monomer in an aqueous media (e.g. in vivo) to form a multimer, (e.g. a dimer). Contemplated monomers may include a ligand moiety, a linker element, and a connector element that joins the ligand moiety and the linker element. In an aqueous media, such contemplated monomers may join together via each linker element and may thus be capable of modulating one or more biomolecules substantially simultaneously, e.g., modulate two or more binding domains on a protein or on different proteins.Type: GrantFiled: July 15, 2020Date of Patent: April 30, 2024Assignees: CORNELL UNIVERSITY, PURDUE RESEARCH FOUNDATIONInventors: Francis Barany, Maneesh Pingle, Donald E. Bergstrom, Sarah F. Giardina, Lee Daniel Arnold
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Patent number: 11970449Abstract: The present invention relates to a mechanochemical based synthesis of perfluoropyridine monomers, polymers made using such monomers and methods of making and using articles comprising such polymers. Such perfluoropyridine monomers are easily chemically tuned have the strength needed for high temperature applications and the flexibility needed for low temperature applications. In addition, to the aforementioned monomers, a mechanochemical based synthesis for such perfluoropyridine monomers is provided. All of the aforementioned performance application advantages are also found in polymers comprising Applicants' perfluoropyridine monomers.Type: GrantFiled: May 26, 2023Date of Patent: April 30, 2024Assignee: United States of America as represented by the Secretary of the Air ForceInventors: Scott T. Iacono, Chadron M Friesen
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Patent number: 11970450Abstract: The present invention relates to crystalline compounds comprising vadadustat and L-proline and processes for their preparation. Furthermore, the invention relates to a pharmaceutical composition comprising one or more of the crystalline compounds of the present invention and at least one pharmaceutically acceptable excipient. The pharmaceutical composition of the present invention can be used as a medicament, in particular for the treatment and/or prevention of anemia for example in patients with end-stage renal disease (ESRD) and/or chronic kidney disease (CKD).Type: GrantFiled: November 7, 2019Date of Patent: April 30, 2024Assignee: Sandoz AGInventors: Verena Adamer, Andrea Thaler, Erwin Schreiner
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Patent number: 11970451Abstract: An 6-(3-hydroxyphenyl)-2-methoxy-4-(3-methylphenyl)nicotinonitrile compound, its synthesis, and its use as an antimicrobial agent.Type: GrantFiled: December 7, 2023Date of Patent: April 30, 2024Assignee: KING FAISAL UNIVERSITYInventors: Hany Mohamed Abd El-Lateef Ahmed, Mai Mostafa Khalaf Ali, Antar Ahmed Abdelhamid Ahmed
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Patent number: 11970452Abstract: Methods are provided for modulating MRGPRX2 or a MRGPRX2 ortholog generally, or for treating a MRGPRX2 or a MRGPRX2 ortholog dependent condition more specifically, by contacting the MRGPRX2 or the MRGPRX2 ortholog by administering to a subject in need thereof, respectively, an effective amount of a compound having structure (I): or a pharmaceutically acceptable salt, isomer, hydrate, solvate or isotope thereof, wherein W, Z, R1, R2, R3, R4, R5, R6 and Rx are as defined herein. Pharmaceutical compositions containing such compounds, as well as the compounds themselves, are also provided.Type: GrantFiled: October 20, 2021Date of Patent: April 30, 2024Assignee: Escient Pharmaceuticals, Inc.Inventors: Marion Lanier, Marcus Boehm, Liming Huang, Esther Martinborough, Marcos Sainz, Brandon Selfridge, Adam Yeager
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Patent number: 11970453Abstract: An 2-ethoxy-8-(4-fluorobenzylidene)-4-(4-fluorophenyl)-5,6,7,8-tetrahydroquinoline-3-carbonitrile compound, its synthesis, and its use as an antimicrobial agent.Type: GrantFiled: November 28, 2023Date of Patent: April 30, 2024Assignee: KING FAISAL UNIVERSITYInventors: Mohamed Gouda, Hany Mohamed Abd El-Lateef Ahmed, Mai Mostafa Khalaf Ali, Saad Shaaban, Antar Ahmed Abdelhamid Ahmed