Patents Issued in July 16, 2019
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Patent number: 10351743Abstract: Protein-based adhesives. In one embodiment of the present disclosure, an elastin-like polypeptide has a sequence LDGTL-(PGX1GVPGKGVPGX2GVPGX1GVPGX3GVPGX2GV)n-PVADRGMRLE, wherein each X1 is selected from the group consisting of tyrosine (Y), dihydroxyphenylalanine (DOPA), and 3,4,5-trihydroxyphenylalanine (TOPA), wherein each X2 is selected from the group consisting of valine (V), Y, DOPA, and TOPA, wherein each X3 is selected from the group consisting of glutamic acid (E) and lysine (K), and wherein n is at or between 6 and 10 or higher or lower.Type: GrantFiled: August 8, 2016Date of Patent: July 16, 2019Assignee: Purdue Research FoundationInventors: Julie C. Liu, Jonathan James Wilker, Mary Jane Brennan, Charng-yu Lin
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Patent number: 10351744Abstract: Apparatus and methods for manually applying flexible noodles (e.g., noodles made of adhesive material) to a workpiece (e.g., a composite part) during production or construction. The noodle is fed out over a series of upright rolls and rollers to the target area. Those rolls and rollers are rotatably coupled to a platform that is designed to be worn on the forearm of the operator. In accordance with one example, the noodle applicator comprising an ergonomic handle and an ergonomic forearm brace that are positioned and attached to the platform to allow the weight of the platform to be centered higher up the forearm, protecting the wrist. The direction of application is in-line with the forearm of the operator, decreasing the strain involved.Type: GrantFiled: January 9, 2017Date of Patent: July 16, 2019Assignee: The Boeing CompanyInventors: Eric C. Anderson, Sarah C. Leung, Carolyn L. Kupper, Damien Stafford
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Patent number: 10351745Abstract: An abrasive particle including a shaped abrasive particle including a body having a plurality of abrasive particles bonded to at least one surface of the body of the shaped abrasive particle.Type: GrantFiled: February 2, 2018Date of Patent: July 16, 2019Assignee: SAINT-GOBAIN CERAMICS & PLASTICS, INC.Inventors: Frederic Josseaux, David F. Louapre
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Patent number: 10351746Abstract: To provide a composition for a heat cycle system which comprises a working fluid containing HFO-1123 and having cycle performance sufficient as an alternative to R410A while the influence over global warming is suppressed, and a heat cycle system employing the composition. A composition for a heat cycle system, which comprises a working fluid for heat cycle containing trifluoroethylene and having a global warming potential (100 years) in Intergovernmental Panel on Climate Change (IPCC), Fourth assessment report, of less than 675, and a heat cycle system employing the composition for a heat cycle system.Type: GrantFiled: August 12, 2016Date of Patent: July 16, 2019Assignee: AGC Inc.Inventor: Masato Fukushima
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Patent number: 10351747Abstract: The invention relates to a method for operating a system at an operating temperature of between 300° C. and 500° C., using a heat transfer fluid comprising branched siloxanes of general formula (I) (R3SiO1/2), (SiO4/2) in which w represents integral values of between 4 and 20, z represents integral values of between 1 and 15, and R represents a methyl group, the sum of the fractions of all siloxanes of general formula (1) being at least 95 mass %, in relation to the whole heat transfer fluid.Type: GrantFiled: January 26, 2016Date of Patent: July 16, 2019Assignee: Wacker Chemie AGInventors: Steffen Doerrich, Richard Weidner, Sven Heidsieck, Bernhard Rieger
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Patent number: 10351748Abstract: The present invention provides a nano molten salt heat transfer and heat storage medium, the method of preparation and the application, which belongs to the technical sector of heat storage and transfer. The nano molten salt heat transfer and heat storage medium of the invention means that the metal oxide nano-particles and/or non-metal oxide nano particles are dispersed in the conventional molten salt system to form the nano molten salt heat transfer and heat storage medium by composition. The heat transfer and heat storage medium provided by the invention has the good thermal stability and high thermal conductivity, which is ideally suited for industrial energy storage, thermal storage and transfer system of solar thermal power generation.Type: GrantFiled: January 21, 2014Date of Patent: July 16, 2019Assignee: SHENZHEN ENESOON SCIENCE & TECHNOLOGY CO., LTD.Inventor: ZhiYong Zeng
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Patent number: 10351749Abstract: A composition composed of a crosslinked interpolymer elastomer and thermally conductive filler dispersed within an elastomeric matrix, thermally conductive articles made from the composition, and methods of producing the composition and articles.Type: GrantFiled: June 18, 2015Date of Patent: July 16, 2019Assignee: Dow Global Technologies LLCInventors: Yunfeng Yang, Hongyu Chen, Tao Han
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Patent number: 10351750Abstract: Drilling fluid compositions include a base fluid, at least one additive chosen from an emulsifier, weighting material, fluid-loss additive, viscosifier, or alkali compound, and from 0.1 wt. % to 1 wt. %, based on total weight of the drilling fluid composition, of an ethoxylated alcohol compound having the formula R—(OCH2CH2)7—OH, in which R is a saturated or unsaturated, linear or branched hydrocarbyl group having from 8 to 20 carbon atoms. The base fluid may be an aqueous base fluid. Methods for drilling a subterranean well include operating a drill in a wellbore in the presence of a drilling fluid composition including the base fluid, the additive, and the ethoxylated alcohol compound.Type: GrantFiled: April 12, 2017Date of Patent: July 16, 2019Assignee: Saudi Arabian Oil CompanyInventors: Hussain AlBahrani, Abdullah Al-Yami, Ali Safran, Abdulaziz Alhelal
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Patent number: 10351751Abstract: A wellbore is internally sealed using nanoparticles. Permeability properties are determined for a particular formation, along with its pore throat size distribution. A wellbore internal sealant (nanoparticle treatment fluid) is designed based on the determined permeability properties and pore throat size distribution. The nanoparticle treatment fluid is introduced into the formation. Pore throats within the formation are plugged by nanoparticles in the nanoparticle treatment fluid. Internal sealing reduces leak-off from filtercake damage, and also eliminates build-up of surface filtercake. Sealing the pore-structure of a particular wellbore zone alleviates the need for additional lost circulation material, resulting in a very thin filtercake and significantly reducing the chance of differential sticking. Oil-based muds can be replaced with water-based equivalents.Type: GrantFiled: August 2, 2016Date of Patent: July 16, 2019Assignee: SCHLUMBERGER TECHNOLOGY CORPORATIONInventors: Dominic Joseph Brady, Mohan Kanaka Raju Panga, Wael Abdallah
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Patent number: 10351752Abstract: Treating a subterranean formation with a composition including a maleic anhydride copolymer, an amine crosslinker, and a gelling agent. The maleic anhydride copolymer includes first repeat units I and II and at least one of second repeat units III and IV: where each R1 is independently —H, —O(C1-C5) alkyl, or —(C1-C5) alkyl; each R2 is independently —H, —O(C1-C5) alkyl, or —(C1-C5) alkyl; each R3 is independently —OH or —O?M1, each M1 is independently an alkali metal, an alkaline earth metal, an ammonium ion, or a quaternary ammonium ion; and each R4 is independently —NH2 or —OM1. The gelling agent includes at least one of: a calcium chelating agent, a calcium precipitating agent, a pH buffer, an agent reactive with hydroxide, and an acid generating agent, and promotes formation of a gel from the maleic anhydride copolymer and the amine crosslinker in contact with set cement.Type: GrantFiled: November 1, 2017Date of Patent: July 16, 2019Assignee: Saudi Arabian Oil CompanyInventors: B. Raghava Reddy, Matthew Gary Hilfiger
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Corrosion-resistant refractory binder compositions and oil well completion and production operations
Patent number: 10351753Abstract: Corrosion-resistant refractory binder compositions may include high alumina cement, high-alumina refractory aluminosilicate material, and phosphorous material. Examples of high-alumina refractory aluminosilicate material include crushed firebrick, firebrick grog, refractory mortar, fire clay, mullite, fused mullite, and combinations thereof. The binder composition may be mixed with sufficient amount of fluid such as water to form a slurry and introduced into a wellbore penetrating a subterranean formation, where it may be allowed to set at a point downhole. Such compositions, once set, may exhibit enhanced corrosion and heat resistance. Such compositions, once set, may additionally be cured. Curing may take place at higher temperatures and/or pressures, and may furthermore increase temperature resistance and/or strength of the set binder composition.Type: GrantFiled: December 18, 2013Date of Patent: July 16, 2019Assignee: Halliburton Energy Services, Inc.Inventors: Kyris Agapiou, Ben Iverson, Sam Lewis -
Patent number: 10351754Abstract: A composition for use as a latex cement additive, the composition comprising an aqueous latex, the aqueous latex comprising an aqueous fluid and a solid elastomer, where the solid elastomer is dispersed in the aqueous fluid; a liquid elastomer, the liquid elastomer having a viscosity between 50,000 cP and 300,000 cP at room temperature; and a surfactant, the surfactant operable to facilitate incorporation of the liquid elastomer into the aqueous latex.Type: GrantFiled: January 12, 2018Date of Patent: July 16, 2019Assignee: SAUDI ARABIAN OIL COMPANYInventor: B. Raghava Reddy
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Patent number: 10351755Abstract: A lost circulation material (LCM) is provided having an alkaline nanosilica dispersion and a polyester activator. The alkaline nanosilica dispersion and the polyester activator may form a gelled solid after interaction over a contact period. Methods of lost circulation control using the LCM are also provided.Type: GrantFiled: August 17, 2017Date of Patent: July 16, 2019Assignee: Saudi Arabian Oil CompanyInventors: Vikrant Wagle, Rajendra Kalgaonkar, Abdullah Al-Yami, Zainab Alsaihati
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Patent number: 10351756Abstract: Organoclay is used as an alternative emulsifier and reinforcing agent to enhance the strength of emulsified polymeric gel aqueous solutions and form water in oil emulsions. The stability of the emulsion can be controlled by controlling salinity and the intensity of initial mixing. The new system can be used for water shut-off treatments as well as a relative permeability modifier in high water permeability zones. In addition, the system can tolerate salts much better than classical surfactants. This system will be appropriate for wellbores having high temperature (>85° C.) with harsh environmental conditions.Type: GrantFiled: March 12, 2018Date of Patent: July 16, 2019Assignees: King Fahd University of Petroleum and Minerals, King Abdulaziz City for Science and TechnologyInventors: Ibnelwaleed Ali Hussein, Ahmad Akanbi Adewunmi, Abdullah Saad Sultan, Khalid Saad Elkarsani, Ghaithan A. Al-Muntasheri
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Patent number: 10351757Abstract: The present invention relates to a method for removing organic deposits from oil and gas wells and other subsystem systems comprising cumene and biodiesel. The invention also relates to a method for removing organic deposits, including the steps for pumping said remover composition through a riser and/or through peripheral pipes of the umbilical and/or production pipe, leaving the composition in contact with the deposit for a sufficient time for removal of at least 50% of such.Type: GrantFiled: June 12, 2015Date of Patent: July 16, 2019Assignee: PETRÓLEO BRASILEIRO S.A.-PETROBRASInventors: Wendel Rodrigues Cezario, Rodrigo Pio Borges Menezes, Pedro Aledi Portugal, Rosana Serfaty De Campos, Guilherme dos Santos Vieira Lima, Plinio Martins Dias Da Silva
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Patent number: 10351758Abstract: Provided in this disclosure, in part, are methods, compositions, and systems for degrading organic matter, such as kerogen, in a subterranean formation. Further, these methods, compositions, and systems allow for increased hydraulic fracturing efficiencies in subterranean formations, such as unconventional rock reservoirs. Also provided in this disclosure is a method of treating kerogen in a subterranean formation including placing in the subterranean formation a composition that includes a first oxidizer including a persulfate and a second oxidizer including a bromate.Type: GrantFiled: September 1, 2016Date of Patent: July 16, 2019Assignee: Saudi Arabian Oil CompanyInventors: Katherine Leigh Hull, Ghaithan A. Al-Muntasheri, Younane N. Abousleiman, David Jacobi
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Patent number: 10351759Abstract: A family of organic tracers is proposed for single well chemical tracer tests, for example for the measurement of residual oil in petroleum reservoirs. The tracers consist of at least one ester of (hydroxyalkyl) benzoic acid of formula (I), wherein at least one of R1 to R5 is a hydroxy alkyl group —R7—OH and each of the remaining R1 to R5 groups is independently selected from H, F, Cl, Br, I, CF3CF2Cl, CFCl2, CCl3 and at least one of these remaining R1 to R5 groups is not H, R6 is selected from CH3, C2H5, C3H7, C4H9, CF3, CH2CF3, CCl3, CH2CCl3, CH2CHCl2, CH2CH2Cl, CH2CF3, CH2CHF2, CH2CH2F, CH2CH2CH2F, CH2CH2CHF2, CH2CH2CF3, CH2CH2CH2Cl, CH2CH2CH—Cl2, CH2CH2CCl3, C3H6F, C3H5F2, C3H4F3, C3H6Cl, C3H5Cl2, C3H5Cl3 or a halogenated (hydroxymethyl)phenol and R7 is selected from CH2, C2H4, C3H6, C4H8.Type: GrantFiled: June 1, 2015Date of Patent: July 16, 2019Assignee: RESTRACK ASInventors: Stephen J. Sayfritz, Alexander Krivokapic
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Patent number: 10351760Abstract: Polymeric clay stabilizers including at least one ionic repeating unit for treatment of subterranean formations. A method of treating a subterranean formation that can include obtaining or providing a composition comprising including a polymeric clay stabilizer including at least one ionic repeating unit, wherein the clay stabilizer has a melting point or glass transition temperature that is equal to or less than 100° C. The method can also include placing the composition in a subterranean formation.Type: GrantFiled: July 15, 2014Date of Patent: July 16, 2019Assignee: Halliburton Energy Services, Inc.Inventors: Nathan Carl Schultheiss, Humberto Almeida Oliveira, Chandra Sekhar Palla-Venkata, Zheng Lu
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Patent number: 10351761Abstract: The method allows employing proppant surface modification with the emulsified treatment material for proppant delivery deep into far-field fracture zone during operations of hydraulic fracturing or heterogeneous proppant placement via proppant aggregation. In the case of gravel packing operations, to maintain the circulation of the proppant slurry for homogeneous proppant settling to the desired wellbore location. The emulsified treatment material can be degradable of non-degradable in downhole conditions.Type: GrantFiled: March 31, 2014Date of Patent: July 16, 2019Assignee: Schlumberger Technology CorporationInventors: Vadim Kamil'evich Khlestkin, Christopher Fredd, Bruno Lecerf
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Patent number: 10351762Abstract: A composition, treatment fluid and method using hydrolyzable fines. A treatment fluid, which may optionally include a high solids content fluid (HSCF) and/or an Apollonianistic solids mixture, includes a fluid loss control agent comprising a dispersion of hydrolyzable fines, optionally with one or more of a surfactant, plasticizer, dispersant, degradable particles, reactive particles and/or submicron particles selected from silicates, ?-alumina, MgO, ?-Fe2O3, TiO2, and combinations thereof.Type: GrantFiled: December 19, 2017Date of Patent: July 16, 2019Assignee: SCHLUMBERGER TECHNOLOGY CORPORATIONInventors: Anthony Loiseau, Yiyan Chen, Mohan Kanaka Raju Panga
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Patent number: 10351763Abstract: Treating a gas condensate reservoir having a porous formation material includes introducing a formation treatment fluid to the gas condensate reservoir and maintaining the formation treatment fluid in the gas condensate reservoir. The formation treatment fluid is a dispersion including metal oxide nanoparticles, and the gas condensate reservoir includes discrete portions of condensate in contact with the porous formation material.Type: GrantFiled: February 26, 2018Date of Patent: July 16, 2019Assignee: Saudi Arabian Oil CompanyInventors: Ayman Mohammed Almohsin, Mohammed Bataweel, Eyad Alali
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Patent number: 10351764Abstract: The present invention relates to aqueous compositions for forming a foam, comprising a surfactant and a particulate inorganic material, and optionally one or more polymers, such as soil conditioning polymers, and/or viscosity increasing polymers. The present invention further relates to the use and application of said aqueous compositions.Type: GrantFiled: January 15, 2016Date of Patent: July 16, 2019Assignee: ImerTech SASInventors: Michael Greenhill-Hooper, Gilles Collard, Stephen Johan Neethling, Pablo Rafael Brito Parada
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Patent number: 10351765Abstract: An organic electroluminescence device includes an anode, an emitting layer and a cathode, in which the emitting layer includes a first compound and a second compound, the first compound is a delayed fluorescent compound, the second compound is a fluorescent compound, an emission quantum efficiency of the first compound is 70% or less, and an ionization potential Ip1 of the first compound and an ionization potential Ip2 of the second compound satisfy a relationship of 0?Ip2?Ip1?0.8 eV.Type: GrantFiled: September 13, 2018Date of Patent: July 16, 2019Assignee: IDEMITSU KOSAN CO., LTD.Inventors: Toshinari Ogiwara, Yuichiro Kawamura
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Patent number: 10351766Abstract: The present disclosure provides a method for fabricating a phosphor. A first solution is formed by dissolving potassium hexafluorogermanate (K2GeF6) and either K2MnF6 or KMnO4 in a hydrofluoric acid solution. An anhydrous ethanol is added to the first solution to make a total concentration of fluoride ions of potassium hexafluorogermanate (K2GeF6), hydrofluoric acid, and either K2MnF6 or KMnO4 equal to or less than 48M to form a precipitate. Afterward, the precipitate is collected.Type: GrantFiled: November 29, 2016Date of Patent: July 16, 2019Assignee: Lextar Electronics CorporationInventors: Wen-Li Zhou, Wei-Lun Wu, Ru-Shi Liu, Yu-Chun Lee, Ching-Yi Chen, Tzong-Liang Tsai
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Patent number: 10351767Abstract: A scalable method for the manufacture of narrow, bright, monodisperse, photo-luminescent quantum dots prepared in the presence of a Group II-VI molecular seeding cluster fabricated in situ from a zinc salt and a thiol or selenol compound. Exemplary quantum dots have a core containing indium, phosphorus, zinc and either sulfur or selenium.Type: GrantFiled: September 26, 2016Date of Patent: July 16, 2019Assignee: Nanoco Technologies Ltd.Inventors: Steven Daniels, James Harris, Paul Glarvey, Katherine Orchard, Arun Narayanaswamy
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Patent number: 10351768Abstract: Mixed halide scintillation materials of a first general formula A4B(1-y)MyX?6(1-z)X?6z and a second general formula A(4-y)BMyX?6(1-z)X?6z are disclosed. In the general formulas, A is an alkali metal, B is an alkaline earth metal, and X? and X? are two different halogen atoms. Scintillation materials of the first general formula include a divalent external activator M such as Eu2+ or Yb2+ or a trivalent external activator M such as Ce3+. Scintillation materials of the second general formula include a monovalent external activator M such as In+, Na+, or Tl+ or a trivalent external activator such as Ce3+.Type: GrantFiled: November 15, 2016Date of Patent: July 16, 2019Assignee: UNIVERSITY OF TENNESSEE RESEARCH FOUNDATIONInventors: Luis Stand, Mariya Zhuravleva, Kan Yang, Charles L. Melcher, Adam Coleman Lindsey
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Patent number: 10351769Abstract: A heavy metal cadmium deactivator for activating the activity of sulfur-reducing bacteria in rice field soil, and an application thereof. The deactivator is constituted by electron shuttles alone or electron shuttles and electron donors, but cannot be constituted by electron donors alone. The mass ratio of the electron donors to the electron shuttles is (1:3)-(1:8). Also, a heavy metal cadmium deactivating method for activating the activity of microorganisms in rice field soil, such as sulfur-reducing bacteria. By applying the functional deactivator to rice field soil, the activity of microorganisms, such as sulfur-reducing bacteria, can be activated, thereby accelerating the reduction process of sulfur and iron in soil to facilitate the fixation of cadmium; cadmium adsorption and accumulation in rice is reduced to achieve secure production in fields moderately or lightly polluted by cadmium.Type: GrantFiled: April 20, 2018Date of Patent: July 16, 2019Assignee: GUANGDONG INSTITUTE OF ECO-ENVIRONMENTAL SCIENCE & TECHNOLOGYInventors: Fangbai Li, Chuanping Liu, Xiangqin Wang, Jiangtao Qiao
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Patent number: 10351770Abstract: Polysaccharides may be partially oxidized by oxidative opening of a monosaccharide unit while still retaining glycosidic bonds. Such polysaccharides may be further functionalized with an amine moiety at a site of oxidative opening. Polysaccharides that are partially oxidized and amine-functionalized in this manner may be combined with an aqueous liquid to form compositions suitable for stabilizing clays in clay-containing formations. Clay stabilization may promote reduced swelling of the clays in the presence of water.Type: GrantFiled: August 3, 2018Date of Patent: July 16, 2019Assignee: Integrity Bio-Chemicals, LLCInventors: Ashoka V. R. Madduri, Matthew B. Blackmon, Sameer S. Vhora, Charles E. Milliron, III, Curtis J. Rodencal, Sanket Gandhi
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Patent number: 10351771Abstract: The invention relates to a liquid-crystalline medium comprising at least one compound of the formula I, in which R1 has the meanings indicated in Claim 1, and to the use thereof in liquid-crystalline media and in electro-optical liquid-crystal displays.Type: GrantFiled: August 13, 2014Date of Patent: July 16, 2019Assignee: Merck Patent GmbHInventors: Mark Goebel, Lars Lietzau, Sabine Schoen, Andreas Pohle
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Patent number: 10351772Abstract: The present invention relates to a nematic liquid crystal composition containing a polymerizable compound and having a negative dielectric anisotropy (??) and PSA or PSVA liquid crystal display element produced by using the same. The liquid crystal composition according to the present invention can provide PSA or PSVA liquid crystal display element, in which a sufficient pretilt angle is included, the amount of remaining monomer is small, there are no or almost no problems, e.g., alignment defects and display defects, arisen from a low voltage holding rate (VHR) and the like, and excellent response performance is exhibited. A liquid crystal display element using the liquid crystal composition according to the present invention is useful for an active-matrix-drive liquid crystal display element and can be applied to PSA, PSVA, and other liquid crystal display elements.Type: GrantFiled: April 9, 2015Date of Patent: July 16, 2019Assignee: DIC CORPORATIONInventors: Go Sudo, Marina Goto
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Patent number: 10351773Abstract: Disclosed are liquid crystal compounds of cycloalkyl-containing dibenzofuran derivatives, a preparation method therefor and use thereof. The compounds are as represented by formula I. In the molecular structures of the compounds of formula I provided by the present invention, liquid crystal compounds of cycloalkyl terminal group-containing dibenzofuran derivatives, compared with those having flexible alkyl chains as terminal groups, exhibit better intersolubility, and thus the use of a compound as represented by formula I provided by the present invention can improve the intersolubility of a liquid crystal compound and extend the application range of a liquid crystal mixture, producing an important application value.Type: GrantFiled: October 12, 2017Date of Patent: July 16, 2019Assignee: SHIJIAZHUANG CHENGZHI YONGHUA DISPLAY MATERIAL CO., LTDInventors: Ming Li, Hongru Gao, Fangmiao Zhang, Jingsong Meng, Guoliang Yun, Xing Zhang, Lei Zhao, Jia Deng
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Patent number: 10351774Abstract: Provided are a liquid crystal composition satisfying at least one of characteristics such as high maximum temperature, low minimum temperature, small viscosity, suitable optical anisotropy and large dielectric anisotropy, or the liquid crystal composition having a suitable balance regarding at least two of the characteristics; and an AM device including the composition. The liquid crystal composition contains a specific compound having small optical anisotropy as a first component, and a specific compound having positive dielectric anisotropy as a second component, and may contain a specific compound having high maximum temperature or small viscosity as a third component, a specific compound having positive dielectric anisotropy as a fourth component, or a specific compound having negative dielectric anisotropy as a fifth component.Type: GrantFiled: September 11, 2017Date of Patent: July 16, 2019Assignees: JNC CORPORATION, JNC PETROCHEMICAL CORPORATIONInventor: Masayuki Saito
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Patent number: 10351775Abstract: A mineral composition made from a mixed solid phase of calcium and magnesium carbonates, method of preparing same and use thereof. A mineral composition made from a mixed solid phase of calcium and magnesium carbonates, formed from a crystallized calcium portion and a crystallized magnesium portion in the form of platelets, the crystals of the calcium portion and those of the magnesium portion being aggregated in the form of composite aggregates, said aggregates themselves being at least partially agglomerated, said calcium portion comprising at least one carbonate chosen from the group consisting of calcite, aragonite and the mixtures thereof, said magnesium portion comprising hydromagnesite in platelet form, said mixed solid phase having a bulk density less than or equal to 250 kg/m3, and greater than or equal to 80 kg/m3, measured according to standard EN 459.2.Type: GrantFiled: March 22, 2013Date of Patent: July 16, 2019Assignee: S.A. Lhoist Recherche et DeveloppementInventors: Marion Lorgouilloux, Robert Sebastian Gartner, Marc Pelletier, Thierry Chopin
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Patent number: 10351776Abstract: The present invention relates to triazine-intercalated metal phosphates including at least one monomer unit of the following general formula (I): (A-H)a(+)[Mbm+(H2PO4)x1(?)(HPO4)x22(?)(PO4)x33(?)(PO3)y(?)](a?)*pH2O??(I) The invention further relates to the use thereof, the specific compounds of the general formula (I), to the preparation thereof, and to compositions.Type: GrantFiled: June 22, 2017Date of Patent: July 16, 2019Assignee: J.M. Huber CorporationInventors: Hans-Günter Köstler, Trupte Dave, Wolfgang Wehner
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Patent number: 10351777Abstract: A biomass thermal conversion system including a fixed bed drying zone; a fixed bed pyrolysis zone fluidly connected to the drying zone; a combustion zone fluidly connected to the pyrolysis zone by a material path; and a comminution mechanism arranged across the material path between the pyrolysis zone and the combustion zone, configured to grind char off a pyrolyzed surface of solid biomass and reduce a dimension of the solid biomass below a threshold size.Type: GrantFiled: July 20, 2017Date of Patent: July 16, 2019Assignee: All Power Labs, Inc.Inventor: James Mason
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Patent number: 10351778Abstract: Methods and systems for producing anode grade coke are disclosed, which allow anode grade coke to be produced from crude oil having a high sulfur content. A fraction of the resid is hydrotreated while another fraction of the resid is treated in a solvent deasphalting unit. A synthetic stream is provided by blending hydrotreated resid with one or more streams from the deasphalting unit. The synthetic stream is fed to an anodic coker unit.Type: GrantFiled: May 23, 2017Date of Patent: July 16, 2019Assignee: Kellogg Brown & Root LLCInventor: Rashid Iqbal
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Patent number: 10351779Abstract: A catalyst precursor suitable for the Fischer Tropsch reaction is described comprising cobalt oxide supported on a porous support wherein the porous support is a ceramic foam comprising a closed cell structure.Type: GrantFiled: March 15, 2016Date of Patent: July 16, 2019Assignee: Johnson Matthey Public Limited CompanyInventors: Andrea Celani, Laura Helen Davies, Elizabeth Margaret Holt, Gordon James Kelly
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Patent number: 10351780Abstract: The Fischer-Tropsch process can be used for the conversion of hydrocarbonaceous feed stocks into normally liquid and/or solid hydrocarbons (i.e. measured at 0° C., 1 bar). The feed stock (e.g. natural gas, associated gas, coal-bed methane, residual oil fractions, biomass and/or coal) is converted in a first step into a mixture of hydrogen and carbon monoxide. This mixture is often referred to as synthesis gas or syngas. The present invention relates to process for preparing a paraffin product from a carbonaceous feedstock and a system for preparing a paraffin product from a carbonaceous feedstock.Type: GrantFiled: July 26, 2016Date of Patent: July 16, 2019Assignee: SHELL OIL COMPANYInventors: Gerald Sprachmann, Paul Jason Williams, Mahesh Venkataraman Iyer
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Patent number: 10351781Abstract: A novel pt/pd sodalite caged catalyst combination with sulfided base metal catalyst for improved catalytic hydroprocessing of renewable feedstock. Particularly, the invention relates to a process for preparation of the said catalyst. More particularly, the invention relates to a process for the preparation of hydrocarbon fuel from the feed stock using a said catalyst. Further, the invention discloses a novel catalyst and a process for the preparation of the Pt/Pd encapsulated in sodalite cage with silica-alumina ZSM-5 synthesized around it supported with nickel, molybdenum, cobalt, tungsten or one or more thereof. The invention also provides process to convert vegetable oils, free fatty acids, and microbial lipids, bio-crude and conventional non-renewable crude based feed stocks such as diesel, naphtha, kerosene, gas oil, residue, etc.Type: GrantFiled: October 18, 2016Date of Patent: July 16, 2019Assignee: COUNCIL OF SCIENTIFIC & INDUSTRIAL RESEARCHInventors: Anil Kumar Sinha, Mohit Anand, Saleem Akthar Farooqui, Rakesh Kumar, Rakesh Kumar Joshi, Rohit Kumar, Tasleem Khan, Parvez Alam, Gopalan Sibi Malayil
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Patent number: 10351782Abstract: A single step catalytic process for the preparation of aromatic rich aviation fuel from renewable resource in the presence of a hydrogen stream, and one or more hydroprocessing catalysts, under operating conditions for hydroconversion reactions, as defined herein, with mixed hot and cold streams of the renewable feed and getting desired product after separation of water, lighter hydrocarbon gases and carbon oxides, the said product comprising of hydrocarbons C6-C24, rich in aromatic content in the aviation fuel range, including kerosene range.Type: GrantFiled: September 11, 2015Date of Patent: July 16, 2019Assignee: COUNCIL OF SCIENTIFIC AND INDUSTRIALInventors: Anil Kumar Sinha, Mohit Anand, Saleem Akhtar Farooqui, Rakesh Kumar, Rakesh Kumar Joshi, Rohit Kumar, Tasleem Khan, Parvez Alam
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Patent number: 10351783Abstract: Methods of separating products from the catalytic fast pyrolysis of biomass are described. In a preferred method, a portion of the products from a pyrolysis reactor are recovered and separated using a quench system and solvent contacting system that employs materials produced in the pyrolysis process.Type: GrantFiled: September 21, 2017Date of Patent: July 16, 2019Assignee: Anellotech, Inc.Inventors: Michael Tanzio, Charles M. Sorensen, Jr., Marc E. Schneidkraut, Jeffrey P. Whiting
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Patent number: 10351784Abstract: The invention relates weldments useful as heat transfer tubes in pyrolysis furnaces. The invention relates to tubes that are useful in pyrolysis furnaces. The weldments include a tubular member and at least one mixing element. The tubular member comprises an aluminum-containing alloy. The mixing element comprises an aluminum-containing alloy. The mixing element's aluminum-containing alloy can be the same as or different from the tubular member's aluminum-containing alloy. Other aspects of the invention relate to pyrolysis furnaces which include such weldments, and the use of such pyrolysis furnaces for hydrocarbon conversion processes such as steam cracking.Type: GrantFiled: November 16, 2015Date of Patent: July 16, 2019Assignee: ExxonMobil Chemical Patents Inc.Inventors: David B. Spicer, ChangMin Chun
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Patent number: 10351785Abstract: Deep desulfurization of hydrocarbon feeds containing undesired organosulfur compounds to produce a hydrocarbon product having low levels of sulfur, i.e., 15 ppmw or less of sulfur, is achieved by with an apparatus arranged for flashing the feed at a target cut point temperature to obtain two fractions. A low boiling temperature fraction contains refractory, sterically hindered sulfur-containing compounds, which have a boiling point at or above the target cut point temperature. A high boiling temperature fraction, having a boiling point below the target cut point temperature, is substantially free of refractory sulfur-containing compounds. The high boiling temperature fraction is contacted with isomerization catalyst, and the isomerized effluent and the low boiling temperature fraction are combined and contacted with a hydrotreating catalyst in a hydrodesulfurization reaction zone operating under mild conditions to reduce the quantity of organosulfur compounds to an ultra-low level.Type: GrantFiled: October 10, 2018Date of Patent: July 16, 2019Assignee: Saudi Arabian Oil CompanyInventor: Omer Refa Koseoglu
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Patent number: 10351786Abstract: 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: September 15, 2017Date of Patent: July 16, 2019Assignee: 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: 10351787Abstract: Described herein are processes for the conversion of ethylene into CS+ olefins, naphthenics, and aromatics via a dual catalyst reaction utilizing a dehydroaromatization catalyst.Type: GrantFiled: March 6, 2018Date of Patent: July 16, 2019Assignee: INVISTA North America S.a.r.l.Inventors: William M. Cross, Jr., Daniel Travis Shay, Rui Chi Zhang, Fang Zhang
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Patent number: 10351788Abstract: Processes and apparatus for isomerizing hydrocarbons are provided. The process comprises providing a feed stream comprising C5, C6 and C7+ hydrocarbons. The feed stream is separated to produce a first stream rich in C5 and C6 hydrocarbons and a second stream rich in benzene and C7+ hydrocarbons. The first stream is isomerized in the presence of isomerization catalyst and hydrogen in an isomerization zone under isomerization conditions to produce an isomerized stream. The second stream is contacted with a benzene saturation catalyst at benzene saturation conditions to produce a saturation effluent stream comprising cyclohexane.Type: GrantFiled: February 28, 2018Date of Patent: July 16, 2019Assignee: UOP LLCInventors: Pankaj Kumar Singh, Avijit Basu, Manoj Kumar, Mohamed S. M. Shakur, Rajaraman Panchapakesan
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Patent number: 10351789Abstract: A method of increasing the accuracy of the quantification of an analyte in a hydrocarbon, the analyte containing a marking compound, by obtaining a first sample containing (a) the hydrocarbon and (b) the marking compound, obtaining a homogeneity inducing material, contacting the homogeneity inducing material with an aliquot of the first sample in a volumetric ratio of greater than or equal to about 5:1 to produce a second sample, and determining an amount of the marking compound in the second sample using an analytical technique based on the marking material.Type: GrantFiled: June 26, 2017Date of Patent: July 16, 2019Assignee: Authentix, Inc.Inventors: Jeffrey L. Conroy, Philip B. Forshee
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Patent number: 10351790Abstract: The present invention provides an apparatus for molding gas hydrate pellets that includes: a pulverizer in which dehydrated gas hydrates are pulverized; a cooler having a rotating shaft provided therein, comprising a plurality of agitation blades installed along a height direction of the rotating shaft and configured to cool the gas hydrates to a predetermined temperature; a decompressor configured to decompress the cooled gas hydrates to a predetermined pressure; and a pellet molder configured to mold the decompressed gas hydrates to pellets.Type: GrantFiled: June 27, 2013Date of Patent: July 16, 2019Assignees: Dongguk University Industry-Academic Cooperation Foundation, Dongshin Hydraulics Co., Ltd., Korea Gas Corporation, Sungil Turbine Co., Ltd., Daewoo Engineering & Construction Co., Ltd.Inventors: Myung Ho Song, Yong Seok Yoon, In Kee Jung, Jung Wook Kim, Seung Hee An, Sang Yup Jang, Jae Won Lee, Sang M. Kim, Jin Seop Yang, Ta-Kwan Woo
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Patent number: 10351791Abstract: A quaternary ammonium compound of formula (X), wherein R0, R, R2 and R3 is each individually an optionally substituted alkyl, alkenyl or aryl group and R includes an optionally substituted hydrocarbyl moiety having at least 5 carbon atoms.Type: GrantFiled: July 28, 2014Date of Patent: July 16, 2019Assignee: Innospec LimitedInventors: Jacqueline Reid, Stephen L. Cook
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Patent number: 10351792Abstract: The present disclosure relates to polymers suitable for viscosity index improvers in lubricating oil compositions and further relates to oil compositions comprising such polymers. The disclosure also relates to polymer compositions derived from alkyl (meth)acrylate monomers and selected molar ratios of the (meth)acrylate monomers in the polymer suitable to use as viscosity modifiers.Type: GrantFiled: May 9, 2017Date of Patent: July 16, 2019Assignee: Afton Chemical CorporationInventor: Yungwan Kwak