Patents Issued in November 29, 2016
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Patent number: 9505597Abstract: A load-bearing top plate which provides contact with a vehicle chassis by means of a bearing plate and is the part of a jack employed in cars and other vehicles for hoisting heavy loads to a certain small height or moving bodies at rest for a short distance exerting high pressure on them. It is characterized in that it has a lower piece, and a upper piece which is in contact with the vehicle and enables intended position of the aforementioned rotatable load-bearing top plate by first rotating over the aforesaid lower piece and then locking. One pin connects the aforementioned lower piece and upper piece. A pushing element is inserted around the aforesaid pin.Type: GrantFiled: March 23, 2012Date of Patent: November 29, 2016Assignee: ARIKAN KRIKO VE MAKINA SANAYI TICARET ANONIM SIRKETIInventor: Cem Güney Ayana
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Patent number: 9505598Abstract: A sterilizing machine for sterilizing bottle seals includes a rotor with vertically-oriented seal holders disposed on its periphery. Each seal holder accommodates a seal stack. As the rotor rotates, the seal holder carries the stack from a seal input, past first and second stations, to a seal output. The first station has a sterilizing-agent sprayer with successive outlets spaced apart from each other in the longitudinal direction by one seal diameter. The sprayer is directed toward a seal holder for applying sterilizing agent onto individual seals held therein. The second station is an activating and/or drying station downstream of the first station in the rotation direction.Type: GrantFiled: August 24, 2013Date of Patent: November 29, 2016Assignee: KHS GmbHInventors: Thomas Niehr, Jürgen Vorwerk, Igor Singur
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Patent number: 9505599Abstract: An evacuated bottle system including a bottle defining a hollow interior, the bottle having a neck with a rim defining an opening; a cap assembly supported on the bottle, the cap assembly including a funnel having a first portion and a second portion, the first portion being insertable within the interior of the bottle and the second portion engaging a portion of the bottle to support the funnel above the rim, the funnel defining a bore that fluidly communicates with the hollow interior of the bottle; a self-sealing membrane that covers the bore formed by the funnel to selectively seal the hollow interior of the bottle; a cap attachable to the bottle, the cap including a cover portion that extends at least partially over the self-sealing membrane to restrain movement thereof, the cover portion being axially spaced from the self-sealing membrane to define a gap that permits axial movement of the self-sealing membrane to selectively open the bottle to fluid communication outside of the bottle.Type: GrantFiled: November 13, 2014Date of Patent: November 29, 2016Assignee: CORNERSTONE CM, INC.Inventors: Michael G. Marantis, Joshua W. Hubbard, Jonathan P. Richards, Richard A. Ponton
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Patent number: 9505600Abstract: A dispenser machine for storing and dispensing viscous foods and beverages and provides for the efficient and safe dispensation of a viscous food or beverage product that is contained in a flexible product container and which does not come into direct contact with the dispenser equipment. The dispenser includes an evacuation system which includes a weighted roller or slidable weight in contact with one or more sides of the product container and which operates by force of gravity to pressure and direct the food or beverage product contained in the container toward and out of the bag or container tube spout. A pump unit, which is configurable to provide for the dispensation of both food and beverage products with different viscosities by the addition or removal of one or pump pins, draws product from the container as desired and the pump unit pins operate to pinch and prevent the flow of product from the container tube spout after the pump is shut off.Type: GrantFiled: November 11, 2014Date of Patent: November 29, 2016Assignee: TRV Dispense, LLCInventors: Tracy Vulpitta, Erwin Vulpitta, Scott Northuis
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Patent number: 9505601Abstract: The invention discloses a carrier stand for a sports cooler having a travel closed position on a taller dispensing position. The stand can be integrated or removable from the cooler.Type: GrantFiled: March 7, 2013Date of Patent: November 29, 2016Inventor: Derek Ray Shoup
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Patent number: 9505602Abstract: A fuel can adapter is designed to be used with a fuel can having a neck that is internally and externally threaded. The fuel can adapter includes a plate having external threads for engaging internal threads of the neck, the plate including a hole. The adapter includes a sliding tube mounted to slide within the hole in the plate. The adapter includes an elbow mounted at an upper end of the tube, the elbow including an outlet. The adapter further includes a protrusion extending from the plate beside the hole. The elbow bears against the protrusion to exert a torque on the plate that threads or unthreads the plate from the neck of the fuel can.Type: GrantFiled: June 6, 2014Date of Patent: November 29, 2016Assignee: Mercedes Textiles Ltd.Inventor: Duane Leonhardt
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Patent number: 9505603Abstract: A two-part key coded device that can be added to existing container and dispense stations. The key coded device includes a female key ring that is retrofitted to an existing bung and a compatible male key ring that is retrofitted to an existing or new dispense head. The key code system can enable only a specific or compatible type of chemical to be connected to the dispense head, and provides a measure of safety against inadvertently connecting the wrong type of chemical.Type: GrantFiled: November 27, 2013Date of Patent: November 29, 2016Assignee: ENTEGRIS, INC.Inventor: John M. Hennen
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Patent number: 9505604Abstract: Dispensing device (1) provided with an additive (2) for dispensing a dose of an additive to a liquid that is flowing in a pipe, and this device (1) is provided with fastening means to fasten the housing (6) to a water pipe, whereby the dispensing device (1) is provided with audio means (11) that are blocked by the presence of the. additive (2) itself and are unblocked when the additive (2) is entirely or almost entirely consumed and the audio means (11) generate sound in the unblocked state in a mechanical way under the influence of the liquid flow.Type: GrantFiled: July 17, 2013Date of Patent: November 29, 2016Assignee: DOTRACO, naamloze vennootschapInventor: Guido Ivo Cesar Van de Moortele
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Patent number: 9505605Abstract: Methods and apparatus for forming MEMS devices. An apparatus includes at least a portion of a semiconductor substrate having a first thickness and patterned to form a moveable mass; a moving sense electrode forming the first plate of a first capacitance; at least one anchor patterned from the semiconductor substrate and having a portion that forms the second plate of the first capacitance and spaced by a first gap from the first plate; a layer of semiconductor material of a second thickness patterned to form a first electrode forming a first plate of a second capacitance and further patterned to form a second electrode overlying the at least one anchor and forming a second plate spaced by a second gap that is less than the first gap; wherein a total capacitance is formed that is the sum of the first capacitance and the second capacitance. Methods are disclosed.Type: GrantFiled: August 4, 2015Date of Patent: November 29, 2016Assignee: Taiwan Semiconductor Manufacturing Company, Ltd.Inventors: Chia-Hua Chu, Chun-Wen Cheng
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Patent number: 9505606Abstract: A MEMS (micro electro mechanical system) actuator with discretely controlled multiple motions comprises bottom layer, stepper plate, support, and motion plate. The multiple motion of the motion plate is generated by the electrostatically actuated stepper plates and geometrically predetermined supports. By introducing the MEMS actuator with discretely controlled multiple motions, simple motion control can be achieved by digital controlling and only single voltage is needed for motion control of the motion plate.Type: GrantFiled: June 13, 2007Date of Patent: November 29, 2016Assignees: Angstrom, Inc., Stereo Display, Inc.Inventors: Jin Young Sohn, Gyoung II Cho, Cheong Soo Seo
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Patent number: 9505607Abstract: Methods of forming sensor integrated package devices and structures formed thereby are described. An embodiment includes providing a substrate core, wherein a first conductive trace structure and a second conductive trace structure are disposed on the substrate core, forming a cavity between the first conductive trace structure and the second conductive trace structure, and placing a magnet on a resist material disposed on a portion of each of the first and second conductive trace structures, wherein the resist material does not extend over the cavity.Type: GrantFiled: March 27, 2015Date of Patent: November 29, 2016Assignee: Intel CorporationInventors: Kyu Oh Lee, Zheng Zhou, Islam A. Salama, Feras Eid, Sasha N. Oster, Lay Wai Kong, Javier Soto Gonzalez
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Patent number: 9505608Abstract: A microvalve includes a displaceable member having an elongated arm portion, a plurality of actuator ribs connected through a central spine to the elongated arm portion, and a hinge portion. Each of the actuator ribs has a first portion and a second portion, the first portions each having an end connected to the central spine, the second portions each having an end connected to the central spine. A channel is formed in the plate. A plurality of elongated openings is formed in the plate and define the actuator ribs, each elongated opening having longitudinally extending side edges. One of the elongated openings separates each rib in the second portion of ribs from an adjacent rib or the plate. The channel and a longitudinally extending side edge of one of the elongated openings separate the second portion of the actuator ribs from the plate and define an electrical isolation region.Type: GrantFiled: May 15, 2015Date of Patent: November 29, 2016Assignee: DunAn Microstaq, Inc.Inventors: Parthiban Arunasalam, Chen Yang, E. Nelson Fuller, Joe A. Ojeda, Sr., Gengxun Kara Gurley
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Patent number: 9505609Abstract: A method and system for preparing a semiconductor wafer are disclosed. In a first aspect, the method comprises providing a passivation layer over a patterned top metal on the semiconductor wafer, etching the passivation layer to open a bond pad in the semiconductor wafer using a first mask, depositing a protection layer on the semiconductor wafer, patterning the protective layer using a second mask, and etching the passivation layer to open other electrodes in the semiconductor wafer using a third mask. The system comprises a MEMS device that further comprises a first substrate and a second substrate bonded to the first substrate, wherein the second substrate is prepared by the aforementioned steps of the method.Type: GrantFiled: April 29, 2015Date of Patent: November 29, 2016Assignee: INVENSENSE, INC.Inventor: Daesung Lee
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Patent number: 9505610Abstract: Techniques and mechanisms for providing precisely fabricated structures of a semiconductor package. In an embodiment, a build-up carrier of the semiconductor package includes a layer of porous dielectric material. Seed copper and plated copper is disposed on the layer of porous dielectric material. Subsequent etching is performed to remove copper adjacent to the layer of porous dielectric material, forming a gap separating a suspended portion of a MEMS structure from the layer of porous dielectric material. In another embodiment, the semiconductor package includes a copper structure disposed between portions of an insulating layer or portions of a layer of silicon nitride material. The layer of silicon nitride material couples the insulating layer to another insulating layer. One or both of the insulating layers are each protected from desmear processing with a respective release layer structure.Type: GrantFiled: September 25, 2013Date of Patent: November 29, 2016Assignee: Intel CorporationInventors: Weng Hong Teh, Tarek A Ibrahim, Sarah K Haney, Daniel N Sobieski, Parshuram B Zantye, Chad E Mair, Telesphor Kamgaing
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Patent number: 9505611Abstract: Semiconductor devices and methods are provided for integrally forming electromechanical devices (e.g. MEMS or NEMS devices) with CMOS devices in a FEOL (front-end-of-line) structure as part of a replacement metal gate process flow. For example, a method includes forming an electromechanical device in a first device region of a substrate and forming a transistor device in a second device region of the substrate. The electromechanical device includes a sacrificial anchor structure and a sacrificial cantilever structure formed of a sacrificial material. The transistor device includes a sacrificial gate electrode structure formed of the sacrificial material. A replacement metal gate process is performed to replace the sacrificial gate electrode structure of the transistor device with a metallic gate electrode, and to replace the sacrificial anchor structure and the sacrificial cantilever structure with a metallic anchor structure and a metallic cantilever structure.Type: GrantFiled: July 30, 2015Date of Patent: November 29, 2016Assignee: GLOBAL FOUNDRIES INC.Inventors: Fei Liu, Qiqing C. Ouyang, Keith Kwong Hon Wong
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Patent number: 9505612Abstract: A method for thin film encapsulation (TFE) of a microelectromechanical system (MEMS) device, including providing a substrate; forming a MEMS device on the substrate; forming one or more etching channels adjacent to the MEMS device; providing one or more cavities below the MEMS device; and forming one or more cavities above the MEMS device.Type: GrantFiled: December 19, 2014Date of Patent: November 29, 2016Assignee: Agency for Science, Technology and ResearchInventors: Jae-Wung Lee, Jaibir Sharma, Navab Singh
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Patent number: 9505613Abstract: Structures, materials, and methods to control the spread of a solder material or other flowable conductive material in electronic and/or electromagnetic devices are provided.Type: GrantFiled: September 24, 2014Date of Patent: November 29, 2016Assignee: NUVOTRONICS, INC.Inventors: David W. Sherrer, James R. Reid
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Patent number: 9505614Abstract: A microphone system includes a diaphragm suspended by springs and including a sealing layer that seals passageways which, if left open, would degrade the microphone's frequency response by allowing air to pass from one side of the diaphragm to the other when the diaphragm is responding to an incident acoustic signal. In some embodiments, the sealing layer may include an equalization aperture to allow pressure to equalize on both sides of the diaphragm.Type: GrantFiled: January 8, 2015Date of Patent: November 29, 2016Assignee: INVENSENSE, INC.Inventors: Fang Liu, Kuang L. Yang
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Patent number: 9505615Abstract: A method for controlling the microstructural arrangement of nominally-aligned arrays of carbon nanotubes (CNTs) and a foam structure of CNTs are disclosed. The method includes a functionalization of CNT surfaces, for example, a non-covalent functionalization. The non-covalent functionalization of CNT surfaces can be obtained by way of a wetting process, for example by the use of a solution of surfactant or silica (SiO2) nanoparticles to wet the CNTs. In particular, the CNT array is first detached from the growth substrate and then a functionalization substance (surfactant or SiO2) is added to the CNT array. The functionalization substance can be dissolved in a volatile solvent, such that CNT arrays densify after the solvent evaporates. A method for synthesizing nominally-aligned arrays of carbon nanotubes (CNTs) is further disclosed, wherein the synthesizing method is combined with the wetting process.Type: GrantFiled: April 23, 2013Date of Patent: November 29, 2016Assignee: CALIFORNIA INSTITUTE OF TECHNOLOGYInventors: Abha Misra, Chiara Daraio, Jordan R. Raney
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Patent number: 9505616Abstract: The present invention relates to an apparatus that produces a high-purity gas of producing a high-purity gas using the apparatus. An apparatus for producing a high-purity gas according to an embodiment of the invention may include a column configured to perform a sorption-enhanced reaction for removing a reaction by-product produced through a catalyst reaction by using sorption, wherein the column is divided into a plurality of sections, and the plurality of sections have decreasing proportions of a catalyst and increasing proportions of an adsorbent from a front end towards a rear end along a reaction path, and wherein the sorption-enhanced reaction is a sorption-enhanced steam methane reforming (SE-SMR) reaction for producing hydrogen by a methane reforming reaction and removing a by-product of carbon dioxide.Type: GrantFiled: May 15, 2015Date of Patent: November 29, 2016Assignee: Korea University Research and Business FoundationInventors: Ki Bong Lee, Hyun-Min Jang, Chan-Hyun Lee
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Patent number: 9505617Abstract: Disclosed are a radiating wall catalytic reactor for providing heat from the inside wall surface 8 of a reaction chamber 1 by radiation 16 to support an overall endothermic gas phase chemical reaction taking place in the reaction chamber 1, and a process for carrying out a chemical reaction in the reactor. The reaction chamber 1 is provided with an entrance port 2 for introducing a gaseous reactant(s) in a continuous manner into the chamber 1 and an exit port 3 to enable the gaseous product(s) to leave the chamber 1 in a continuous manner. The reaction chamber 1 includes a plurality of catalyst segments (A)5, which has one void segment (B)6 on either side of it; and the reaction chamber 1 is made of a material(s) that is (are) suitable to resist a temperature of 700° C. or more.Type: GrantFiled: March 4, 2014Date of Patent: November 29, 2016Assignee: Alantum Europe GmbHInventors: Stanislaw Tadeusz Kolaczkowski, Dirk Naumann, Shadi Saberi, Babak Saberi
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Patent number: 9505618Abstract: Semiconductor materials offer several potential benefits as active elements in the development of harvesting-energy conversion technologies. In particular, lead selenide (PbSe) semiconductors have been used and proposed to design solar energy harvesting devices, IR sensors, FET devices, amongst others. The present disclosure provides a simple, low cost synthesis of lead selenide using benzoic acid as the capping ligand in an opened environment. The use of an aromatic ligand, and mores specifically benzoic acid, provides robustness and more durability to the lead selenide, and therefore prevents the lead selenide from breaking or cracking easily. Also the aromatic ligand prevents the degradation and oxidation of the lead selenide, without affecting any of the lead selenide electronic and chemical characteristics.Type: GrantFiled: November 26, 2014Date of Patent: November 29, 2016Assignee: Ana G. Méndez University SystemInventors: Mitk'El B. Santiago Berríos, Weyshla A. Rodríguez Rodríguez
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Patent number: 9505619Abstract: Graphitic nanotubes, which include tubular fullerenes (commonly called “buckytubes”) and fibrils, which are functionalized by chemical substitution, are used as solid supports in electrogenerated chemiluminescence assays. The graphitic nanotubes are chemically modified with functional group biomolecules prior to use in an assay. Association of electrochemiluminescent ruthenium complexes with the functional group biomolecule-modified nanotubes permits detection of molecules including nucleic acids, antigens, enzymes, and enzyme substrates by multiple formats.Type: GrantFiled: March 20, 2006Date of Patent: November 29, 2016Assignee: MESO SCALE TECHNOLOGIES, LLC.Inventors: Richard J. Massey, Mark T. Martin, Liwen Dong, Ming Lu, Alan Fischer, Fabian Jameison, Pam Liang, Robert Hoch, Jonathan K. Leland
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Patent number: 9505620Abstract: Methods and systems are provided for forming carbon allotropes. An exemplary method includes treating a carbonaceous compound to form a feedstock that includes at least about 10 mol % oxygen, at least about 10 mol % carbon, and at least about 20 mol % hydrogen. Carbon allotropes are formed from the feedstock in a reactor in a Bosch reaction at a temperature of at least about 500° C. The carbon allotropes are separated from a reactor effluent stream.Type: GrantFiled: April 10, 2013Date of Patent: November 29, 2016Assignees: EXXONMOBIL UPSTREAM RESEARCH COMPANY, SOLID CARBON PRODUCTS, LLCInventors: Robert D. Denton, Dallas B. Noyes, Russell J. Koveal, Jr., Terry A. Ring
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Patent number: 9505621Abstract: A method for producing carbon nanotubes having specific lengths, said method comprising: producing carbon nanotubes having at least two types of zones along their lengths, wherein each zone type has a characteristic structure that confers specific properties; and processing said carbon nanotubes to selectively attack one zone type more aggressively than another zone type.Type: GrantFiled: March 19, 2014Date of Patent: November 29, 2016Assignee: NanoLab, Inc.Inventors: Nolan Nicholas, David Carnahan
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Patent number: 9505622Abstract: This carbon nanofiber is produced by a vapor phase reaction of a carbon oxide-containing raw material gas using a metal oxide powder including a Co oxide as a catalyst, wherein at least one type selected from metal cobalt, carbon-containing cobalt metals, and cobalt-carbon compounds is contained (encapsulated) in the fiber in a wrapped state. This method for producing a carbon nanofiber includes: producing a carbon nanofiber by a vapor phase reaction of a carbon oxide-containing raw material gas using a mixed powder of a Co oxide and a Mg oxide as a catalyst, wherein a mixed powder of CoO and MgO, which is obtained by hydrogen-reducing a mixed powder of Co3O4 and MgO using a reduction gas having a hydrogen concentration in which metal cobalt is not generated, is used as the catalyst.Type: GrantFiled: September 28, 2012Date of Patent: November 29, 2016Assignee: MITSUBISHI MATERIALS CORPORATIONInventors: Masahiro Hagiwara, Hiroyuki Imai
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Patent number: 9505623Abstract: Methods of making graphene quantums dots are provided. The methods can produce graphene quantum dots with a monodisperse size distribution. The graphene quantum dots are produced, via one-pot synthesis, from a graphene source and a strong oxidizing mixture at an elevated temperature. The strong oxidizing mixture can contain one or more permanganates and one or more oxidizing acids. Exemplary permanganates include sodium permanganate, potassium permanganate, and calcium permanganate. Exemplary oxidizing acids include nitric acid and sulfuric acid. The graphene quantum dots can have an average particle size of between about 1 nm and 20 nm and a monodisperse size distribution. For example, the size distribution can have a span about 1 or less and/or a coefficient of variance of about 0.5 or less. About 40% or more of the graphene quantum dots can have a diameter within ±5 nm of the average particle size of the graphene quantum dots.Type: GrantFiled: June 23, 2015Date of Patent: November 29, 2016Assignee: University of South FloridaInventors: Yiru Qin, Shu-Feng Zhou
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Patent number: 9505624Abstract: A catalyst-free CVD method for forming graphene. The method involves placing a substrate within a reaction chamber, heating the substrate to a temperature between 600° C. and 1100° C., and introducing a carbon precursor into the chamber to form a graphene layer on a surface of the substrate. The method does not use plasma or a metal catalyst to form the graphene.Type: GrantFiled: February 18, 2014Date of Patent: November 29, 2016Assignee: Corning IncorporatedInventors: Xinyuan Liu, Robert George Manley, Robert Michael Morena, Zhen Song
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Patent number: 9505625Abstract: A method for preparing a composition including synthetic mineral particles, in which: a hydrogel that is a precursor of the synthetic mineral particles is prepared, and the hydrogel is subjected to a hydrothermal treatment, characterized in that at least one step of the hydrothermal treatment is carried out with the addition of at least one carboxylate salt to the treatment medium, the carboxylate salt having the formula R—COOM?, where M? denotes a metal selected from the group consisting of Na and K, and R is selected from H and the alkyl groups that include fewer than 10 carbon atoms.Type: GrantFiled: December 22, 2011Date of Patent: November 29, 2016Assignees: UNIVERSITE PAUL SABATIER TOULOUSE III, CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE (C.N.R.S.)Inventors: Christophe Le Roux, Francois Martin, Pierre Micoud, Angela Dumas
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Patent number: 9505626Abstract: A new crystalline molecular sieve designated SSZ-101 is disclosed. SSZ-101 is synthesized using a N-cyclohexylmethyl-N-ethylpiperidinium cation as a structure directing agent.Type: GrantFiled: September 9, 2014Date of Patent: November 29, 2016Assignee: Chevron U.S.A. Inc.Inventors: Tracy Margaret Davis, Joel Schmidt, Dan Xie
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Patent number: 9505627Abstract: Uses for a new crystalline molecular sieve designated SSZ-27 are disclosed. SSZ-27 is synthesized using a hexamethyl [4.3.3.0] propellane-8,11-diammonium cation as a structure directing agent.Type: GrantFiled: April 14, 2016Date of Patent: November 29, 2016Assignee: Chevron U.S.A. Inc.Inventors: Stacey Ian Zones, Dan Xie, Robert James Saxton
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Patent number: 9505628Abstract: This disclosure provides a facial green method for metal cyanides preparation, including the following steps: 1) supported metal nanoparticles and Fenton's reagent are mixed with nitrile and then stirred to obtain suspension, wherein metal nanoparticles are selected from a nano metal, nano metal oxide and nano metal salt; 2) centrifuging the suspension to obtain a product and drying the product after stirring to obtain the metal cyanides. As prepared metal cyanides have broad application prospects in the fields of sensor, battery, medicine, electroplating and catalysis. This Fenton-improved cyanation (FIC) method may effectively exclude the toxicity from free cyanide anions and get rid of UV-light, being more energy-saving and more feasible for large-scale industrial production of MCs.Type: GrantFiled: October 27, 2014Date of Patent: November 29, 2016Assignee: Zhejiang UniversityInventors: Jie Fan, Wuzhong Yi, Renhong Li, Shihui Zou, Liping Xiao, Linfang Lu
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Patent number: 9505629Abstract: Disclosed is a method of preparing calcium carbonate using a direct carbonation reaction. The method includes dissolving fuel gas desulfurization gypsum into an ammonia solution, performing a filtering process after making a carbonation reaction by feeding carbon dioxide into the ammonia solution in which the fuel gas desulfurization gypsum is dissolved, and performing a filtering process after precipitating the calcium carbonate by maintaining a filtered solution in a stationary state.Type: GrantFiled: August 15, 2014Date of Patent: November 29, 2016Assignee: Korea Institute of Geoscience and Mineral ResourcesInventors: Kyungsun Song, Young-Nam Jang, Soo-Chun Chae
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Patent number: 9505630Abstract: The present invention relates to a method for tuning shape, exposed crystal face and size of titanium dioxide by using inorganic salts and changing pH value of the reaction environment. The present invention changes the shape of titanium dioxide crystal and the exposed face thereof by adding different inorganic salts during the reaction to utilize different alkali metal ions of the inorganic salts and also can change the size of titanium dioxide crystal by tuning different pH value in the reaction. By this synthesis method, the shape and size of titanium dioxide can be tuned for different applications, such as photocatalysis, dye-sensitized solar cells, photolysis of water and other optoelectronic components or materials, to achieve their optimal efficiencies.Type: GrantFiled: January 27, 2014Date of Patent: November 29, 2016Assignee: NATIONAL TSING HUA UNIVERSITYInventors: Chi-Young Lee, Hsin-Tien Chiu, Min-Han Yang
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Patent number: 9505631Abstract: The present invention relates to positive electrode active substance particles for lithium ion batteries, comprising lithium manganate particles comprising Li and Mn as main components and having a cubic spinel structure (Fd-3m), wherein primary particles of the positive electrode active substance have a dodecahedral or higher-polyhedral shape in which none of crystal planes equivalent to the (111) plane are located adjacent to each other, and flat crystal planes are crossed with each other to form a clear ridge, and an average primary particle diameter of the primary particles is not less than 1 ?m and not more than 20 ?m. The positive electrode active substance particles according to the present invention are excellent in packing property, load characteristics and high-temperature stability.Type: GrantFiled: January 19, 2010Date of Patent: November 29, 2016Assignee: TODA KOGYO CORPORATIONInventors: Hiroaki Masukuni, Kazumichi Koga, Masayuki Uegami, Kazutoshi Matsumoto
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Patent number: 9505632Abstract: Embodiments disclosed herein relate to using cobalt (Co) to fine tune the magnetic properties, such as permeability and magnetic loss, of nickel-zinc ferrites to improve the material performance in electronic applications. The method comprises replacing nickel (Ni) with sufficient Co+2 such that the relaxation peak associated with the Co+2 substitution and the relaxation peak associated with the nickel to zinc (Ni/Zn) ratio are into near coincidence. When the relaxation peaks overlap, the material permeability can be substantially maximized and magnetic loss substantially minimized. The resulting materials are useful and provide superior performance particularly for devices operating at the 13.56 MHz ISM band.Type: GrantFiled: August 5, 2014Date of Patent: November 29, 2016Assignee: Skyworks Solutions, Inc.Inventors: Michael David Hill, David Bowie Cruickshank, Kelvin M. Anderson
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Patent number: 9505633Abstract: The invention described herein, is a design that allows the amount of any liquid which is to be filtered, to be monitored while submerged yet remain contactless to the liquid in its measurement to indicate how much liquid has passed through the filter inside the jug/container or cartridge. It can indicate when a filter used in the container/jug holding the liquid has expired or can indicate how much liquid has been through the filter so the user can decide when it requires replacing. The status indication is displayed by using a motion sensor to give a user interaction display based on movement rather than direct contact of user. Currently all water utilize external indicators located on the jugs to monitor the usage of the filter.Type: GrantFiled: October 20, 2011Date of Patent: November 29, 2016Inventor: Naseem Bari
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Patent number: 9505634Abstract: The present invention provides a “warning device dedicated for replacing aged-filter in a handheld showerhead”, which comprises a showerhead stem, an impeller mount, an impeller, a signal circuit device and a transparent lid. The showerhead stem includes an upper adapting section, a lower adapting section, and a mounting cavity for containing parts of impeller and signal circuit device. With upper adapting section and lower adapting section, the warning device can be easily sandwiched between showerhead and filter cylinder of conventional “handheld showerhead with built-in filter”.Type: GrantFiled: June 24, 2015Date of Patent: November 29, 2016Inventors: Ying Lin Cai, Chao Fou Hsu
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Patent number: 9505635Abstract: The wastewater filtration system and method relates to systems and methods that use Ruba Al-Khali Saudi sand as the filtration media in systems for treating industrial wastewater. Ruba Al-Khali Saudi sand is effective in removing organic dyes, particularly rhodamine B, from the wastewater. The method includes bringing wastewater having an organic dye constituent into contact with the Saudi sand for a period of time sufficient to adsorb the organic dye. The system may include a batch reactor, such as a fixed bed or moving bed reactor, or a continuous flow reactor, such as a column reactor. When a batch reactor is used, the method may benefit from shaking or agitating the filtration media, particularly in the dark or under low ambient light conditions. The method may include regenerating the Saudi sand after use by heating the filtration media.Type: GrantFiled: December 22, 2014Date of Patent: November 29, 2016Assignee: KING FAHD UNIVERSITY OF PETROLEUM AND MINERALSInventors: Mohammed Ashraf Gondal, Xiaofeng Chang, Mohammad Ashraf Ali, Mohamed Abdulkader Dastageer, Syed M. Zubair, John H. Lienhard, V
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Patent number: 9505636Abstract: A modular device that is optimized for preliminary water treatment and energy generation and methods for operating the same are described.Type: GrantFiled: January 14, 2011Date of Patent: November 29, 2016Assignee: J. Craig Venter InstituteInventor: Orianna Bretschger
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Patent number: 9505637Abstract: Provided are methods of inhibiting microbial fouling and improving efficiency in biocide dosing in an industrial process containing an aqueous liquid having a biocide demand. In exemplary embodiments, the methods comprise treating an aqueous liquid having a biocide demand with a biocide, monitoring the biocide demand of the aqueous liquid, and filtering a stream of the aqueous liquid. The filtering may be performed in a full-flow or side stream manner.Type: GrantFiled: March 15, 2013Date of Patent: November 29, 2016Assignee: Ecolab USA Inc.Inventors: Walter Kozlowski, Amit Gupta
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Patent number: 9505638Abstract: A method for treating wastewater using a ballasted flocculation technique includes continuously measuring the concentration of suspended solids, organic matter or other impurities in the water to be treated prior to directing the water to be treated to a flocculation tank. Based on this measurement, the amount of ballast necessary to obtain treated water of a predetermined quality is then calculated. In the flocculation tank, ballast and a flocculating reagent are added to the water to form a water-floc mixture. The water-floc mixture is directed to a settling tank where a sludge-ballast mixture is settled. The sludge-ballast mixture is directed to a mixing tank and then to a separator to separate the ballast from the sludge. The separated ballast is directed to the flocculation tank. The separated sludge is directed to the mixing tank when the level of sludge-ballast mixture in the mixing tank is lower than a predetermined level.Type: GrantFiled: December 16, 2013Date of Patent: November 29, 2016Assignee: Veolia Water Solutions & Technologies SupportInventors: Philippe Sauvignet, Claus Dahl, Valery Ursel, Celine Levecq, Jean-Francois Beaudet
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Patent number: 9505639Abstract: Methods and apparatus of embodiments of the invention relate to treating water including contacting a liquid stream with a source comprising inorganic and/or divalent ions and separating the stream into an effluent and a fluid comprising less sulfate than the stream, wherein the effluent comprises more sulfate and more inorganic and/or divalent ions than the stream. Methods and apparatus relate to treating water including a reaction unit comprising an inlet for feed fluid and an inlet for inorganic and/or divalent ions and a separator unit comprising an inlet for output from the reaction unit, an outlet for effluent, and an outlet for fluid comprising less sulfate than the feed fluid. Some embodiments include introducing the fluid comprising less sulfate than the stream into a subterranean formation.Type: GrantFiled: May 31, 2011Date of Patent: November 29, 2016Assignee: SCHLUMBERGER TECHNOLOGY CORPORATIONInventor: M. Fazrie B. A. Wahid
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Patent number: 9505640Abstract: The present invention relates to a method for reduce treating ballast water which has been subjected to a biocidal treatment with a chlorine-based oxidizing agent or an oxygen-based oxidizing agent, by using a tablet or pellet of sodium sulfite.Type: GrantFiled: November 17, 2010Date of Patent: November 29, 2016Assignee: Nippon Soda Co., Ltd.Inventors: Yoshinori Kamatsuchi, Takao Miyakoshi
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Patent number: 9505641Abstract: A method for decontaminating a liquid having sulfides includes preparing a stabilized sodium percarbonate solution. In an embodiment, the method includes decontaminating a liquid. The liquid comprises reactive sulfides. The method also includes preparing a stabilized sodium percarbonate solution, which includes adding sodium percarbonate to a liquid solution. The liquid solution comprises a peroxide stabilizer and an acid. The method further includes dosing the liquid into the stabilized sodium percarbonate solution to decontaminate the liquid by oxidizing at least a portion of the reactive sulfides, wherein at least a portion of the reactive sulfides comprise solids.Type: GrantFiled: May 15, 2014Date of Patent: November 29, 2016Assignee: United Laboratories International, LLCInventors: Stephen D. Matza, Jack G. Frost
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Patent number: 9505642Abstract: Embodiments of the invention include water treatment systems and components for water treatment systems that possess a collapsed and an expanded configuration, that can be easily transported in the collapsed configuration and expeditiously set up in the field into their expanded configuration. The embodiments include trickle filter/clarifier combinations, upflow anaerobic digester reactors, recirculating anaerobic digesters and their components. In preferred embodiments the volume of the expanded configurations is at least four times the volume of the collapsed configurations.Type: GrantFiled: November 20, 2014Date of Patent: November 29, 2016Assignee: AcqualogicInventors: Peter Heller Haase, Ross Harlen Levy
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Patent number: 9505643Abstract: An apparatus and method for recovering thermal energy from boiler stack exhaust gases and using the thermal energy in biomaterial processing. The apparatus and method include means to improve the boiler's operation and reduce emission of certain regulated compounds.Type: GrantFiled: May 5, 2014Date of Patent: November 29, 2016Inventor: Sue S. Schwartz
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Patent number: 9505644Abstract: Methods and systems are provided for treating wastewater to simultaneously remove nitrogen, carbon, and phosphorus. The process includes an anoxic tank that receives at least two streams, including plant influent wastewater and return activated sludge. These streams are mixed in the anoxic tank to promote phosphorus release and fermentation of particulate and dissolved organic matter. The mixed liquor is transferred to an aerated tank having low dissolved oxygen concentrations to promote development of phosphorus-release bacteria that is eventually recycled to the anoxic tank by way of the return activated sludge. Simultaneous nitrification, denitrification, and phosphorus release occur in the aerated tank. A membrane tank separates treated effluent from activated sludge in a membrane tank.Type: GrantFiled: May 30, 2014Date of Patent: November 29, 2016Assignee: AMERICAN WATER WORKS COMPANY, INC.Inventors: Eugenio Giraldo, Yanjin Liu, Swarna Muthukrishnan
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Patent number: 9505645Abstract: It is an object of the present invention to provide a vacuum degassing apparatus configured so as to be capable of carrying out more simply exchange operation for an extension pipe made of heat-resisting metal and immersed in molten glass. The present invention includes a vacuum housing, a vacuum vessel, an introduction pipe and a discharge pipe which are assembled by a plurality of bricks, and an extension pipe connected to at least one of the introduction pipe and the discharge pipe and made of heat-resisting metal. The extension pipe is constituted by a base end portion, a body portion formed so as to be continuous to the base end portion, and a sealing flange extending from an outer peripheral side of the body portion.Type: GrantFiled: August 28, 2013Date of Patent: November 29, 2016Assignee: Asahi Glass Company, LimitedInventors: Wataru Miyoshi, Hiroaki Hamamoto, Suguru Kobayashi, Toshiyuki Uematsu, Michito Sasaki
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Patent number: 9505646Abstract: A melter apparatus includes a floor, a ceiling, and a substantially vertical wall connecting the floor and ceiling at a perimeter of the floor and ceiling, a melting zone being defined by the floor, ceiling and wall, the melting zone having a feed inlet and a molten glass outlet positioned at opposing ends of the melting zone. The melting zone includes an expanding zone beginning at the inlet and extending to an intermediate location relative to the opposing ends, and a narrowing zone extending from the intermediate location to the outlet. One or more burners, at least some of which are positioned to direct combustion products into the melting zone under a level of molten glass in the zone, are also provided.Type: GrantFiled: May 28, 2014Date of Patent: November 29, 2016Assignee: Johns ManvilleInventor: Aaron Morgan Huber