Patents Issued in June 30, 2020
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Patent number: 10696898Abstract: A reverse photochromic compound of the related art has difficulty in sensing light with a wavelength of 600 nm or greater in a visible light region which has been used for medical applications. Therefore, an object of the present invention is to provide a reverse photochromic compound and a polymer which have a high sensitivity to light having a wavelength of 600 nm or greater. The present invention relates to a compound and the like represented by the following general formula (1).Type: GrantFiled: January 31, 2018Date of Patent: June 30, 2020Assignees: FUJIFILM Wako Pure Chemical Corporation, NIHON UNIVERSITYInventors: Ryuzi Katoh, Masami Enoki, Kazuki Nemoto, Katsufumi Suzuki, Tetsuji Murase, Shigeaki Imazeki
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Patent number: 10696899Abstract: A multi-compartment microcapsule emits photons when subjected to a stimulus. In some embodiments, the multi-compartment microcapsules have first and second compartments separated by an isolating structure adapted to rupture in response to the stimulus, wherein the first and second compartments contain reactants that come in contact and react to produce photons when the isolating structure ruptures.Type: GrantFiled: May 9, 2017Date of Patent: June 30, 2020Assignee: International Business Machines CorporationInventors: Eric J. Campbell, Sarah K. Czaplewski, Joseph Kuczynski, Timothy J. Tofil
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Patent number: 10696900Abstract: A metal oxide/silicon dioxide-coated quantum dot and a preparation method thereof are provided. The metal oxide/silicon dioxide is selected from aluminum oxide/silicon dioxide, zirconium dioxide/silicon dioxide, titanium dioxide/silicon dioxide or zinc oxide/silicon dioxide, and the content of the metal oxide/silicon dioxide in the metal oxide/silicon dioxide-coated quantum dot is 1 wt % to 98 wt %. The metal oxide/silicon dioxide-coated quantum dot is prepared by one of a sol-gel method and a pyrolysis method.Type: GrantFiled: June 3, 2018Date of Patent: June 30, 2020Inventor: Liang Li
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Patent number: 10696901Abstract: Provided are a method of manufacturing a liquid crystal alignment layer, a liquid crystal alignment layer manufactured by using the same, and a liquid crystal display device including the liquid crystal alignment layer. More specifically, provided are the method of manufacturing the liquid crystal alignment layer with enhanced alignment property and stability, in which a liquid crystal aligning agent is applied onto a substrate, and after drying, alignment treatment is immediately performed by light irradiation while omitting a high-temperature heat treatment process, and then the alignment-treated coating film is cured by heat treatment, thereby reducing light irradiation energy required in the process and simplifying the process by omitting the high-temperature heat treatment process before light irradiation, the liquid crystal alignment layer, and the liquid crystal display device including the same.Type: GrantFiled: November 2, 2016Date of Patent: June 30, 2020Assignee: LG CHEM, LTD.Inventors: Jung Ho Jo, Hang Ah Park, Soon Ho Kwon, Hee Han, Jun Young Yoon, Hyeong Seuk Yun
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Patent number: 10696902Abstract: An automatic batch sequence computer control system is configured to automatically operate process valves in a delayed coker for a complete coke drum cycle. Double verification of the movement of the process valves is used to confirm advancing to the next step. Primary verification is achieved by using position sensors on the valves. Secondary verification is achieved by using monitored process conditions and confirming the measured conditions correlate with expected process conditions for an arrangement of valve positions at a given sequence in the coke drum cycle. A safety interlock system may be integrated with the control system.Type: GrantFiled: November 28, 2017Date of Patent: June 30, 2020Assignee: BP Corporation North America Inc.Inventor: Richard Lucas
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Method and reactor containing perovskite for cracking hydrocarbon and method for coating the reactor
Patent number: 10696903Abstract: A reactor has an inner surface accessible to the hydrocarbon and comprising a sintered product of at least one of cerium oxide, zinc oxide, tin oxide, zirconium oxide, boehmite and silicon dioxide, and a perovskite material of formula: AaBbCcDdO3-?. 0<a<1.2, G?b?1.2, 0.9<a+b?1.2, O<c<1.2, 0?d?1.2, 0.9<c+d?1.2, ?0.5<?<0.5. A is selected from calcium, strontium, barium, and any combination thereof. B is selected from lithium, sodium, potassium, rubidium, and any combination thereof. C is selected from cerium, zirconium, antimony, praseodymium, titanium, chromium, manganese, ferrum, cobalt, nickel, gallium, tin, terbium and any combination thereof.Type: GrantFiled: February 6, 2019Date of Patent: June 30, 2020Assignee: General Electric CompanyInventors: Yanfei Gu, Wenqing Peng, Shizhong Wang, Chuan Lin, Lawrence Bernard Kool, Zhaoping Wu, Qijia Fu, Zhigang Deng -
Patent number: 10696904Abstract: The present invention relates to a pyrolysis apparatus comprising a pyrolysis chamber have a first end and a second end, a feed inlet connected adjacent the first end of the pyrolysis chamber, a biochar outlet connected adjacent the second end of the pyrolysis chamber, and a gas outlet in fluid communication with the pyrolysis chamber. The pyrolysis chamber and feed inlet further comprise centreless screw conveyors. The present invention alleviates the problems associated with dust, oils and tars being present in the generated syngas. The present invention can also be used in a method of continuously processing biomass.Type: GrantFiled: April 20, 2016Date of Patent: June 30, 2020Assignee: RAINBOW BEE EATER IP PTY LTDInventors: Ian Stanley, Peter Burgess
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Patent number: 10696905Abstract: The present invention relates to a pressure-controlled oil refining device for refining oil from liquid-state oil waste. The purpose of the present invention is to provide a pressure-controlled oil refining device wherein: liquid-state oil waste is introduced and then heated such that, as the pressure rises, the vaporized fluid (oil+impurities) is transferred in the upward direction; a pressure valve is opened/closed such that the oil and impurities can be separated from the fluid and then discharged; the oil is condensed by a cooler such that the same can be liquefied again and stored; and the oil can be refined from the oil waste and reused.Type: GrantFiled: November 3, 2016Date of Patent: June 30, 2020Inventor: Yongil Park
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Patent number: 10696906Abstract: A coke catching apparatus for use in hydrocarbon cracking to assist in the removal of coke and the prevention of coke build up in high coking hydrocarbon processing units. The apparatus includes a grid device for preventing large pieces of coke from entering the outlet of the process refining equipment while lowing small pieces of coke to pass through and be disposed of. The coke catching apparatus can be easily disassembled to be removed from the refining process equipment and cleaned.Type: GrantFiled: September 7, 2018Date of Patent: June 30, 2020Assignee: Marathon Petroleum Company LPInventors: Gregory A. Cantley, Ross Vail, Kathleen Yaden, Ray Brooks
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Patent number: 10696907Abstract: Apparatus and processes herein provide for converting hydrocarbon feeds to light olefins and other hydrocarbons. The processes and apparatus include, in some embodiments, feeding a hydrocarbon, a first catalyst and a second catalyst to a reactor, wherein the first catalyst has a smaller average particle size and is less dense than the second catalyst. A first portion of the second catalyst may be recovered as a bottoms product from the reactor, and a cracked hydrocarbon effluent, a second portion of the second catalyst, and the first catalyst may be recovered as an overhead product from the reactor. The second portion of the second catalyst may be separated from the overhead product, providing a first stream comprising the first catalyst and the hydrocarbon effluent and a second stream comprising the separated second catalyst, allowing return of the separated second catalyst in the second stream to the reactor.Type: GrantFiled: July 15, 2019Date of Patent: June 30, 2020Assignee: Lummus Technology Inc.Inventors: Liang Chen, Peter Loezos, Rama Rao Marri, Bryan Tomsula, Jon A. Hood, Hardik Singh, Michael Dorsey, Justin Breckenridge
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Patent number: 10696908Abstract: Embodiments disclosed herein relate to systems and processes for producing olefins and/or dienes. The systems and processes may include thermally cracking a C1-C4 hydrocarbon containing feed to produce a cracked hydrocarbon effluent containing a mixture of olefins and paraffins. The systems and processes may also include dehydrogenating the cracked hydrocarbon effluent to produce a dehydrogenated hydrocarbon effluent containing additional olefins and/or dienes.Type: GrantFiled: July 18, 2018Date of Patent: June 30, 2020Assignee: LUMMUS TECHNOLOGY LLCInventors: Kandasamy Meenakshi Sundaram, Ronald M. Venner
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Patent number: 10696909Abstract: According to one embodiment, a heavy oil may be processed by a method that may include upgrading at least a portion of the heavy oil to form an upgraded oil, where the upgrading includes contacting the heavy oil with a hydrodemetalization catalyst, a transition catalyst, a hydrodenitrogenation catalyst, and a hydrocracking catalyst to remove at least a portion of metals, nitrogen, or aromatics content from the heavy oil and form the upgraded oil; and passing the upgraded oil to a steam cracker and steam cracking the upgraded oil to form a steam-cracked effluent; and where the final boiling point of the upgraded oil is less than or equal to 540° C.Type: GrantFiled: July 16, 2018Date of Patent: June 30, 2020Assignee: Saudi Arabian Oil CompanyInventors: Kareemuddin Shaik, Lianhui Ding, Mazin Tamimi, Ibrahim Abba, Abdennour Bourane
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Patent number: 10696910Abstract: According to one embodiment, a heavy oil may be processed by a method that may include upgrading at least a portion of the heavy oil to form an upgraded oil, where the upgrading comprises contacting the heavy oil with a hydrodemetalization catalyst, a transition catalyst, a hydrodenitrogenation catalyst, and a hydrocracking catalyst to remove at least a portion of metals, nitrogen, or aromatics content from the heavy oil and form the upgraded oil. The method may further include passing at least a portion of the upgraded oil to a separation device that separates the upgraded oil into one or more transportation fuels; and where the final boiling point of the upgraded oil is less than or equal to 540° C.Type: GrantFiled: July 16, 2018Date of Patent: June 30, 2020Assignee: Saudi Arabian Oil CompanyInventors: Kareemuddin Shaik, Lianhui Ding, Mazin Tamimi, Ibrahim Abba, Abdennour Bourane
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Patent number: 10696911Abstract: A method is described for processing biomass using a series of mechanisms that operate in unison to maintain solids flow through small gasifiers that are otherwise prone to blockage. An automated system that implements these methods is also disclosed.Type: GrantFiled: February 9, 2016Date of Patent: June 30, 2020Assignee: V-GRID Energy SystemsInventor: Michael Cheiky
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Patent number: 10696912Abstract: A method of conveying fuel, such as bulk material, into a gasification reactor that has a lateral infeed opening can be practiced with device for conveying fuels into a gasification reactor comprising a bulk material container, a conveying pipe, into which a discharge of the bulk material container opens and which can be connected to a lateral infeed opening of the gasification reactor, and a mechanical conveying apparatus disposed in the conveying pipe, the conveying apparatus is formed by a hydraulically drivable plunger, which is movably guided in a first, cylindrical section of the conveying pipe, and in that the conveying pipe has an internal cross-section which decreases continuously in the conveying direction of the fuel in order to form a compacting cone in a second axial section that is downstream of the first section, wherein the second section is configured as an exchangeable pipe portion with another exchangeable pipe portion.Type: GrantFiled: September 19, 2018Date of Patent: June 30, 2020Assignee: CARE BETEILIGUNGSVERWALTUNG GMBHInventor: Michael Rensing
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Patent number: 10696913Abstract: A large-scale fluidized bed biogasifier provided for gasifying biosolids. The biogasifier includes a reactor vessel with a pipe distributor and at least two fuel feed inlets for feeding biosolids into the reactor vessel at a desired fuel feed rate of more than 40 tons per day with an average of about 100 tons per day during steady-state operation of the biogasifier. A fluidized bed in the base of the reactor vessel has a cross-sectional area that is proportional to at least the targeted fuel feed rate such that the superficial velocity of gas is in the range of 0.1 m/s (0.33 ft/s) to 3 m/s (9.84 ft/s). In operation, biosolids are heated inside the fluidized bed reactor to a temperature range between 900° F. (482.2° C.) and 1600° F. (871.1° C.).Type: GrantFiled: December 20, 2019Date of Patent: June 30, 2020Assignee: Aries Gasification, LLCInventors: Renus Kelfkens, Brandon Davis, Paul Cairney, Gerald M. Cox, William P. Jepson, Douglas R. Bull, Ross Patten
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Patent number: 10696914Abstract: The present invention relates to a lubricant base oil containing an aromatic ester lubricant represented by Chemical Formula 1 and to a method for preparing the aromatic ester lubricant. By containing an aromatic ester lubricant, the lubricant base oil exhibits an excellent dispersibility and fluidity and is ecofriendly due to a high biodegradability. In addition, the method for preparing the aromatic ester lubricant does not generate such toxic substances as S, N, aromatic compounds and heavy metals and enables an easy control of the physical properties of a desired lubricant base oil by selecting a suitable alcohol compound to be introduced for an esterification reaction.Type: GrantFiled: July 30, 2018Date of Patent: June 30, 2020Assignees: SK Innovation Co., Ltd., SK Lubricants Co., Ltd.Inventors: Hee Jung Jeon, Yong Woo Kim
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Patent number: 10696915Abstract: A dry lubricant for conveyor belts and other surfaces set for lubricating through direct application via a nozzle is disclosed. Lubricants including a homogeneous mixture of fatty acids, a hydrocarbon such as a mineral oil, a sorbitan ester, and a polyglycol, which are substantially-free of water are disclosed. Methods of using the lubricants in dry and semi-dry modes are further disclosed.Type: GrantFiled: July 27, 2015Date of Patent: June 30, 2020Assignee: Ecolab USA Inc.Inventors: Fabiola Morales Arriaga, Sara Trevino Garza, Jesus Ochoa Guerra, Jaime Mendoza Santos
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Patent number: 10696916Abstract: Lubricant compositions, core-shell nanoparticles, and related methods are disclosed. In an exemplary embodiment, a lubricant composition includes a plurality of core-shell nanoparticles. The nanoparticles include a core, a first shell disposed on the core, and a second shell disposed on the first shell. The first shell is formed from a siliceous material and the second shell is formed from a hydrophobic material. The first and second shells form functional coatings that reduce wear and friction of parts lubricated with the lubricant composition.Type: GrantFiled: May 12, 2017Date of Patent: June 30, 2020Assignee: Board of Regents, The University of Texas SystemInventors: Pranesh Aswath, Richard B. Timmons, Vinay Sharma, Ali Erdemir
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Patent number: 10696917Abstract: Low-friction fluorinated coatings are disclosed herein. A preferred low-friction material contains a low-surface-energy fluoropolymer having a surface energy between about 5 mJ/m2 to about 50 mJ/m2, and a hygroscopic material that is covalently connected to the fluoropolymer in a triblock copolymer, such as PEG-PFPE-PEG. The material forms a lubricating surface layer in the presence of humidity. An exemplary copolymer comprises fluoropolymers with average molecular weight from 500 g/mol to 20,000 g/mol, wherein the fluoropolymers are (?,?)-hydroxyl-terminated and/or (?,?)-amine-terminated, and wherein the fluoropolymers are present in the triblock structure T-(CH2—CH2—O)—CH2—CF2—O—(CF2—CF2—O)m(CF2—O)n—CF2—CH2—(O—CH2—CH2)p-T where T is a hydroxyl or amine terminal group, p=1 to 50, m=1 to 100, and n=1 to 100. The copolymer also contains isocyanate species and polyol or polyamine chain extenders or crosslinkers possessing a functionality of preferably 3 or greater.Type: GrantFiled: March 17, 2016Date of Patent: June 30, 2020Assignee: HRL Laboratories, LLCInventors: Andrew P. Nowak, Adam F. Gross, Elena Sherman
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Patent number: 10696918Abstract: A method for continuous purification of motor lubricant oil includes circulating lubricant oil between a motor lubricant oil tank and a motor; transporting contaminated lubricant oil from the motor lubricant oil tank in a cleaning loop. The transport in the cleaning loop includes adding at least one liquid separation aid to contaminated lubricant oil; supplying contaminated lubricant oil to a three-phase centrifugal separator; continuously separating contaminants from the lubricant oil in the separator and continuously discharging a first liquid phase including purified lubricant oil from a liquid light phase outlet of the separator, continuously discharging a second liquid phase including solid contaminants from a liquid heavy phase outlet of the separator and continuously discharging a sludge phase from a sludge outlet by the aid of a conveyor screw of the three-phase separator. The method further includes transporting the first liquid phase including purified oil back to the lubricant oil tank.Type: GrantFiled: December 4, 2014Date of Patent: June 30, 2020Assignee: ALFA LAVAL CORPORATE ABInventors: Claes Wase, Mats Englund
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Patent number: 10696919Abstract: The present subject matter describes a method for preparation of a lubricant dispersed with carbon nanotubes (CNTs) and a lubricant dispersed with the CNTs prepared thereof. The method comprises ball milling the CNTs and purifying the ball milled CNTs to remove impurities in the CNTs. The method also comprises oxidizing surfaces of the purified CNTs by adding the purified CNTs to a solution comprising at least one oxidizing acid and then refluxing the solution. The oxidized surfaces of the CNTs are modified by adding the CNTs to a solution comprising at least one fatty acid to obtain surface modified CNTs. The method also comprises dispersing the surface modified CNTs in a lubricant to obtain the lubricant dispersed with CNTs.Type: GrantFiled: June 30, 2016Date of Patent: June 30, 2020Assignee: Hindustan Petroleum Corporation LimitedInventors: Annaji Rajiv Kumar Tompala, Srinivas Vadapalli, Amitabh Kumar Jain, Venkata Chalapathi Rao Peddy, Venkateswarlu Choudary Nettem, Sri Ganesh Gandham
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Patent number: 10696920Abstract: Present invention relates to a novel process for purification of lipid material for further use as such as e.g. a source of fuel or chemicals.Type: GrantFiled: September 28, 2017Date of Patent: June 30, 2020Assignee: NESTE OYJInventors: Blanka Toukonitty, Petri Lindqvist
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Patent number: 10696921Abstract: A process for extraction of crude oil from distillers dried grain solubles and/or distillers dried grains and producing corn distillers meal that may be used as a livestock supplement is disclosed. For example, the corn distillers meal may be used as a crude protein supplement for use in a livestock feed diet or a poultry feed diet. The solvent extracted crude oil may be suitable for oleochemical processing for personal care and home care products, biodiesel production, and/or renewable diesel production from hydro-treating the extracted oil to make green diesel fuel.Type: GrantFiled: August 8, 2018Date of Patent: June 30, 2020Assignee: Novita Nutrition, LLCInventors: Keith Bruinsma, Donald Endres, Steven J. Furcich
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Patent number: 10696922Abstract: A process and a plant are specified, with which free fatty acids can be obtained in a simple manner by hydrolysis of fatty acid alkyl esters, especially fatty acid methyl esters (FAME), or alternatively of fatty acid triglycerides present in oils and fats of vegetable and animal origin. According to the invention, a portion of the free fatty acids already produced is recycled back into the reaction mixture, which results in self-acceleration of the hydrolysis reaction.Type: GrantFiled: June 27, 2017Date of Patent: June 30, 2020Assignee: L'Air Liquide, Société Anonyme pour l'Etude et l'Exploitation des Procédés Georges ClaudeInventors: Ingo Bauer, Armin Brandner, Gunter Brauner, Matthias Kasper, Peter Potschacher
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Patent number: 10696923Abstract: Embodiments herein relate to the production of alkyl esters from lipid feed stocks. In an embodiment, a process for producing alkyl esters is included. The process can include mixing a lipid feed stock with an alcohol, water, and at least one of carbon dioxide, carbon monoxide, and/or one or more acids to form a reaction mixture, and contacting the reaction mixture with a catalyst under supercritical conditions for the alcohol, the catalyst comprising a metal oxide. Other embodiments are also included herein.Type: GrantFiled: February 7, 2019Date of Patent: June 30, 2020Assignee: SarTec CorporationInventors: Charles Vincent McNeff, Clayton V. McNeff, Larry C. McNeff, Bingwen Yan
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Patent number: 10696924Abstract: PROBLEM To provide a composition comprising highly enriched PUFA or its alkyl esters while containing fatty acid esters of 3-MCPD at adequately low concentrations and to provide an efficient method for producing the composition. MEANS FOR SOLVING A composition that contains fatty acids or fatty acid alkyl esters as its major component, the composition containing highly unsaturated fatty acid or alkyl ester thereof, wherein the proportion of the highly unsaturated fatty acid in the constituent fatty acids of the composition is 50 area % or more and wherein the concentration of 3-MCPD as found upon analyzing the composition by American Oil Chemists' Society official method Cd 29b-13 assay A is less than 1.80 ppm.Type: GrantFiled: May 6, 2019Date of Patent: June 30, 2020Assignee: Nippon Suisan Kaisha, Ltd.Inventors: Nobushige Doisaki, Kiyomi Furihata, Hideaki Yamaguchi
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Patent number: 10696925Abstract: An automatic dishwashing composition is provided including a dispersant polymer blend, comprising: an acrylic acid homopolymer; and a copolymer of acrylic acid and a sulfonated monomer; wherein the blend ratio of the acrylic acid homopolymer to the copolymer of 3:1 to 1:3; and a surfactant, wherein the surfactant is a fatty alcohol alkoxylate of formula I: wherein R1 is a linear or branched, saturated C8-24 alkyl group; R2 is a linear saturated C2-8 alkyl group; m has an average value of 22 to 42; n has an average value of 4 to 12; wherein m+n is an average value of 26 to 54; wherein the fatty alcohol alkoxylate has an average ethyleneoxy unit concentration per molecule, X, of >45 wt %; and, wherein the fatty alcohol alkoxylate has a ratio, Z, equal to X divided by n, wherein the ratio, Z, is <9.5.Type: GrantFiled: March 19, 2018Date of Patent: June 30, 2020Assignees: Dow Global Technologies LLC, Rohm and Haas CompanyInventors: Sara B. Klamo, Edward D. Daugs, Scott Backer, Severine Ferrieux, Paul Mercando, Eric Wasserman
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Patent number: 10696926Abstract: Stable unit dose compositions with high water content are provided. Such unit dose compositions include an aqueous composition having a water activity of from about 0.60 to about 0.95 and a water-soluble container formed from a water-soluble or water-dispersible film material. In one embodiment, the aqueous composition includes water in an amount of 20% to 70% by weight, a structured surfactant system which is in the form of a lamellar structure, and a salt which promotes the formation of the lamellar structure. The surfactant system may include: (1) a linear alkylbenzene sulfonate (LAS) and/or an alcohol ethoxylsulfate (AES), (2) a non-ionic surfactant, and (3) a fatty acid. The unit dose compositions can prevent the enclosed liquid detergent composition with a high level of water content from dissolving or pre-maturely dispersing the water-soluble container due to the lamellar structure of the composition.Type: GrantFiled: January 25, 2018Date of Patent: June 30, 2020Assignee: Henkel IP & Holding GmbHInventors: Casey Elphege Camire, Patrick Shane Akeem Harewood, Cynthia L. Moser, Daniel Thomas Piorkowski, David S. Stott, II
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Patent number: 10696927Abstract: The present invention relates to the use of 8-hydroxyquinoline sulfonic acids in detergents and cleaning agents for improving the washing or cleaning performance with respect to bleachable stains.Type: GrantFiled: May 8, 2017Date of Patent: June 30, 2020Assignee: Henkel AG & Co. KGaAInventors: Mareile Job, Nicole Bode, Eva-Maria Wikker, Christian Kropf
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Patent number: 10696928Abstract: Detergent compositions comprising a water-soluble film and a leuco colorant. At least about 10% of the leuco colorant is incorporated into the water-soluble film. Methods of making such detergent compositions. A detergent composition including (a) at least one laundry care ingredient and (b) a leuco composition. The leuco composition has a first color state and a second color state and the mole ratio of second color state to first color state is from 2:98 to 5:95. Also disclosed are methods of determining the approximate functional age of a detergent composition comprising the steps of (a) providing a detergent composition that includes at least one laundry care ingredient and a leuco composition, (b) providing a functional age scale that includes a plurality of distinct colors that correspond to a unique functional age and (c) comparing the color of the detergent composition with the functional age scale.Type: GrantFiled: March 14, 2019Date of Patent: June 30, 2020Assignee: The Procter & Gamble CompanyInventors: Gregory Scot Miracle, Daniel Dale Ditullio
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Patent number: 10696929Abstract: A laundry care composition having a carrier and a leuco colorant.Type: GrantFiled: March 14, 2019Date of Patent: June 30, 2020Assignee: The Procter & Gamble CompanyInventors: Gregory Scot Miracle, Daniel Dale Ditullio
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Patent number: 10696930Abstract: The need for a fast acting and broad spectrum antimicrobial composition which does not reduce surface shine and does not leave visible residues on the surface, which is also preferably suitable for surfaces which contact food, is met by formulating the antimicrobial composition according to the present invention.Type: GrantFiled: June 21, 2018Date of Patent: June 30, 2020Assignee: The Procter & Gamble CompanyInventors: Adam Simon Hayward, Alan Edward Sherry
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Patent number: 10696931Abstract: Detergent compositions having surfactant systems that include alkyl ethoxylated sulfate surfactant (AES) and linear alkyl benzene sulfonate surfactant (LAS). Methods of treating fabric with such compositions.Type: GrantFiled: August 24, 2018Date of Patent: June 30, 2020Assignee: THE PROCTER & GAMBLE COMPANYInventors: Sarah Ann Delaney, Patrick Christopher Stenger, Meg Elizabeth Hall, Cheyne Thomas
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Patent number: 10696932Abstract: This disclosure relates to a composition (e.g., a cleaning and/or stripping composition) containing (a) 0.5-25 percent by weight an alkaline compound; (b) 1-25 percent by weight an alcohol amine compound; (c) 0.1-20 percent by weight a hydroxylammonium compound; (d) 5-95 percent by weight an organic solvent; (e) 0.1-5 percent by weight a corrosion inhibitor compound; and (f) 2-25 percent by weight water.Type: GrantFiled: July 28, 2016Date of Patent: June 30, 2020Assignee: Fujifilm Electronic Materials U.S.A., Inc.Inventors: Raj Sakamuri, Ognian N. Dimov, Ahmad A. Naiini, Sanjay Malik, Binod B. De, William A. Reinerth
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Patent number: 10696933Abstract: This disclosure relates to a cleaning composition that contains 1) at least one redox agent; 2) at least one first chelating agent, the first chelating agent being a polyaminopolycarboxylic acid; 3) at least one metal corrosion inhibitor, the metal corrosion inhibitor being a substituted or unsubstituted benzotriazole; 4) at least one organic solvent selected from the group consisting of water soluble alcohols, water soluble ketones, water soluble esters, and water soluble ethers; 5) at least one quaternary ammonium hydroxide; and 6) water. This disclosure also relates to a method of using the above composition for cleaning a semiconductor substrate.Type: GrantFiled: October 22, 2019Date of Patent: June 30, 2020Assignee: Fujifilm Electronic Materials U.S.A., Inc.Inventors: Tomonori Takahashi, Bing Du, William A. Wojtczak, Thomas Dory, Emil A. Kneer
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Patent number: 10696934Abstract: A water-soluble film contains a polyvinyl alcohol resin (A), and has a complete dissolution time (T) and a curl area percentage (S), wherein a product (T×S) of the complete dissolution time (T) and the curl area percentage (S) satisfies the following expression (1): 1000?(Complete dissolution time (T))×(Curl area percentage (S))?7000??(1) The water-soluble film satisfies contradictory property requirements, i.e., satisfactory solubility and curl suppressing property, for example, even if being formed by using an acid-modified PVA resin.Type: GrantFiled: September 7, 2016Date of Patent: June 30, 2020Assignee: MITSUBISHI CHEMICAL CORPORATIONInventors: Masanori Ookubo, Katsuhiko Katsuma, Takahiro Hiura
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Patent number: 10696935Abstract: Liquid detergent compositions can be stably structured using amides of an aliphatic polyamine with two, three or four molecules of fully saturated hydroxyl alkyl acids, even in the presence of hydrolysing detergent ingredients such as lipase enzyme.Type: GrantFiled: January 31, 2019Date of Patent: June 30, 2020Assignee: The Procter & GambleInventors: Liesbet Maria Cornelia Detroch, Susana Fernandez-Prieto, Vincenzoi Guida, Michael Klostermann, Hans-Jurgen Kohle, Bruno Jean-Pierre Matthys, Johan Smets, Gonglu Tian
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Patent number: 10696936Abstract: A gelled biological growth medium in a culture container, as well as kits and methods of producing the growth medium, utilize gelling of a liquid growth medium containing low methoxyl pectin on a film of calcium salt deposited on a growth surface of the culture container. The salt acts as a trigger for gelation and is conveniently deposited on the walls by evaporation of methanol or another volatile solvent.Type: GrantFiled: December 31, 2018Date of Patent: June 30, 2020Assignee: Perlman Consulting, LLCInventor: Daniel Perlman
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Patent number: 10696937Abstract: Aspects of the invention relate to automated cell culture incubators. In some embodiments, automated cell culture incubators comprise an integrated manipulation having one or more cell scrapers.Type: GrantFiled: March 31, 2016Date of Patent: June 30, 2020Assignee: Thrive Bioscience, Inc.Inventor: Alan Blanchard
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Patent number: 10696938Abstract: An imaging system and method for microbial growth detection, counting or identification. One colony may be contrasted in an image that is not optimal for another type of colony. The system and method provides contrast from all available material through space (spatial differences), time (differences appearing over time for a given capture condition) and color space transformation using image input information over time to assess whether microbial growth has occurred for a given sample.Type: GrantFiled: April 22, 2016Date of Patent: June 30, 2020Assignee: BD KIESTRA B. V.Inventors: Timothy M. Wiles, Raphael R. Marcelpoil
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Patent number: 10696939Abstract: In an example implementation, a method of cell lysis includes moving cell fluid from a first reservoir through a microfluidic channel toward a second reservoir, activating a lysing element multiple times as a cell from the cell fluid passes through the microfluidic channel, and moving lysate fluid that results from the activating through the microfluidic channel and into the second reservoir.Type: GrantFiled: April 22, 2016Date of Patent: June 30, 2020Assignee: Hewlett-Packard Development Company, L.P.Inventors: Alexander Govyadinov, Erik D. Torniainen, David P. Markel, Pavel Kornilovich
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Patent number: 10696940Abstract: The invention provides a method for the continuous, microbe-reduced production and/or processing of a biopharmaceutical, biological macromolecular product from a heterogeneous cell culture-fluid mixture, comprising the steps of: (a) providing a particle-free fluid from a heterogeneous cell culture-fluid mixture containing the product, in the form of a product stream, (b) at least one filtration, providing a filtrate, (c) at least two chromatography steps for purifying the product, (d) at least one virus depletion, (e) at least one ultrafiltration and/or at least one diafiltration of the product stream of steps (b), (c) and/or (d), characterized in that the at least two chromatography steps from (c) comprise a purification via at least two chromatography columns and/or membrane adsorbers in each case and that the process is carried out in a closed and modular manner The invention further provides a corresponding modular system for carrying out said method.Type: GrantFiled: April 29, 2016Date of Patent: June 30, 2020Assignee: BAYER AKTIENGESELLSCHAFTInventors: Benjamin Maiser, Peter Schwan, Martin Lobedann, Volker Möhrle
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Patent number: 10696941Abstract: Compositions and methods and apparatus for growth and maintenance of microorganisms and/or bioprocesses using one or more gases as electron donors, electron acceptors, carbon sources, or other nutrients, and for a bioprocess that converts hydrogen and carbon dioxide, or syngas, or producer gas into lipid products, bio-based oils, or other biochemical products.Type: GrantFiled: August 28, 2015Date of Patent: June 30, 2020Assignee: Kiverdi, Inc.Inventors: Peter Dalla-Betta, John S. Reed
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Patent number: 10696942Abstract: Methods and compositions for enhancing or promoting germination of bacterial spores, and yeasts are disclosed herein. The composition of the present invention comprises an extract obtained from banana or any member belonging to the genus Musa that may be used alone or in a growth medium to promote and enhance germination of bacterial spores, growth of bacterial, yeast, and fungal cell cultures.Type: GrantFiled: November 22, 2017Date of Patent: June 30, 2020Assignee: Texas Tech University SystemInventor: Mark Lyte
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Patent number: 10696943Abstract: The present invention pertains to a method for the mass cultivation of cells, and a cell cultivation device and kit. The present invention further pertains to a continuous cell cultivation method and a continuous cell cultivation device in which a carrier is used.Type: GrantFiled: January 26, 2018Date of Patent: June 30, 2020Assignee: UBE INDUSTRIES, LTD.Inventors: Masahiko Hagihara, Motohisa Shimizu, Yukinori Wada
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Patent number: 10696944Abstract: A microfluidic system for causing perturbations in a cell membrane, the system including a microfluidic channel defining a lumen and being configured such that a cell suspended in a buffer can pass therethrough, wherein the microfluidic channel includes a cell-deforming constriction, wherein a diameter of the constriction is a function of the diameter of the cell.Type: GrantFiled: October 17, 2012Date of Patent: June 30, 2020Assignee: Massachusetts Institute of TechnologyInventors: Armon R. Sharei, Andrea Adamo, Robert S. Langer, Klavs F. Jensen
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Patent number: 10696945Abstract: A composition including adult pluripotent olfactory stem cells is provided. The adult pluripotent olfactory stem cells are obtained by culturing a cell mixture from an olfactory tissue of a mammal in media containing growth factors and then isolating cells which express B-lymphoma moloney murine leukemia virus insertion region-1 (Bmi-1).Type: GrantFiled: June 6, 2017Date of Patent: June 30, 2020Assignee: China Medical UniversityInventors: Woei-Cherng Shyu, Chung-Y. Hsu, Der-Yang Cho, Chen-Huan Lin, Wei Lee, San-Yuan Chen, Long-Bin Jeng, Chang-Hai Tsai
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Patent number: 10696946Abstract: This invention relates to methods of expanding T regulatory cells through OX40L and Jagged-1 induced signaling. The methods can be used for treating autoimmune diseases.Type: GrantFiled: November 3, 2017Date of Patent: June 30, 2020Assignee: The Board of Trustees of the University of IllinoisInventor: Bellur Prabhakar
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Patent number: 10696947Abstract: The current disclosure relates to a culture medium, different methods to generate adult-like cardiomyocytes from pluripotent embryonic stem cells (ESC) and/or (induced) pluripotent stem cells (iPSC) using the medium, in particular from stem cells that differentiated into (foetal) cardiomyocytes, and to kits comprising the medium, or the medium together with differentiated (foetal) cardiomyocytes derived from pluripotent embryonic stem cells (ESC) and/or (induced) pluripotent stem cells (iPSC).Type: GrantFiled: June 6, 2014Date of Patent: June 30, 2020Assignee: NCARDIA B.V.Inventor: Stefan Robbert Braam