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公开(公告)号:US10035705B2
公开(公告)日:2018-07-31
申请号:US15689500
申请日:2017-08-29
Applicant: BNNT, LLC
Inventor: Michael W. Smith , Kevin C. Jordan , Jonathan C. Stevens
IPC: C01B21/064 , B01J19/08 , B01J10/00
CPC classification number: C01B21/0641 , B01J10/005 , B01J19/08 , B01J2219/0898 , C01B21/064 , C01P2004/13 , C01P2004/133
Abstract: Described herein are processes and apparatus for the large-scale synthesis of boron nitride nanotubes (BNNTs) by induction-coupled plasma (ICP). A boron-containing feedstock may be heated by ICP in the presence of nitrogen gas at an elevated pressure, to form vaporized boron. The vaporized boron may be cooled to form boron droplets, such as nanodroplets. Cooling may take place using a condenser, for example. BNNTs may then form downstream and can be harvested.
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公开(公告)号:US10005798B2
公开(公告)日:2018-06-26
申请号:US12681697
申请日:2008-03-31
Applicant: Norbert Auner , Christian Bauch , Rumen Deltschew , Gerd Lippold , Seyed-Javad Mohsseni-Ala
Inventor: Norbert Auner , Christian Bauch , Rumen Deltschew , Gerd Lippold , Seyed-Javad Mohsseni-Ala
CPC classification number: C07F7/122 , B01J19/08 , C07F7/0896
Abstract: The invention relates to a method for the plasma-assisted synthesis of organohalosilanes in which organohalosilanes of the general empirical formula R1mR2oSiX4-p (X=F, Cl, Br or I; p=1-4; p=m+o; m=1-4; o=0-3; R1, R2=alkyl, alkenyl, alkinyl, aryl) and/or carbosilanes of the general empirical formula R3qSiX3-qCH2SiR4rX3-r (X=F, Cl, Br or I; q=0-3; r=0-3; R3, R4=alkyl, alkenyl, alkinyl, aryl) are formed by activating a plasma in a mixture of one or more volatile organic compounds from the group of alkanes, alkenes, alkines and aromates with SiX4 and/or organohalosilanes RnSiX4-n (X=F, Cl, Br oder I; n=1-4; R=alkyl, alkenyl, alkinyl, aryl).
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公开(公告)号:US20170326509A1
公开(公告)日:2017-11-16
申请号:US15526374
申请日:2014-11-17
Applicant: SHIMADZU CORPORATION , KAZUSA DNA RESEARCH INSTITUTE
Inventor: Jun YANAGIBAYASHI , Tetsuo OHASHI , Osamu OHARA
CPC classification number: B01F3/12 , B01F9/02 , B01F9/10 , B01F11/0082 , B01F13/0809 , B01J8/20 , B01J19/08 , B03C1/00 , B03C1/01 , B03C1/0332 , B03C1/0335 , B03C1/288 , B03C2201/18 , B03C2201/26 , C12M1/42
Abstract: The present invention relates to a particle manipulation method to disperse magnetic particles 70 in a liquid 35 filling up a tube container 10, wherein a circumferential direction moving step to move the magnetic particles 70 along the circumferential direction of the container 10 in the liquid 35 and in a radial direction moving step to move the magnetic particles 70 as crossing the radial direction of the container 10 in the liquid 35 are implemented repeatedly. Such manipulations can be achieved by combining rotation of the container and gravity force and magnetic field manipulations.
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公开(公告)号:US20170218230A1
公开(公告)日:2017-08-03
申请号:US15515210
申请日:2015-10-02
Inventor: Vincent Studer
CPC classification number: C09J5/02 , B01J19/00 , B01J19/08 , B01J2219/00596 , B01J2219/00711 , B82Y40/00 , C09J2205/31 , C09J2471/006 , C09J2483/006 , C40B50/18 , G01N33/54353
Abstract: Process for printing an adhesive pattern on a polymer brush extending at the surface of a support (1), forming a nanometric anti-fouling layer (2), the process comprising the following steps:—placing the layer (2) in contact with a first aqueous solution (4) containing a benzophenone,—then illuminating the layer with radiation (3) at a wavelength within the absorption spectrum of benzophenone, according to the pattern and according to a surface energy.
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公开(公告)号:US20170182473A1
公开(公告)日:2017-06-29
申请号:US15314047
申请日:2014-05-30
Applicant: FUJI MACHINE MFG. CO., LTD.
Inventor: Akihiro NIWA , Takahiro JINDO , Toshiyuki IKEDO
IPC: B01J19/08
CPC classification number: B01J19/08 , B01J2219/0809 , B01J2219/0824 , B01J2219/0877 , B01J2219/0894 , C01B13/11 , C01B2201/22 , C02F1/4608 , H05H1/2406 , H05H2001/2462
Abstract: Water is flowed inside main body section formed from an insulating material such that a specified space remains inside the main body section. Electrodes and are arranged along the outer walls of the main body section and voltage is applied to the electrodes. Processing gas present inside the main body section is plasmarized and plasma is emitted to the water flowing inside the main body section.
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公开(公告)号:US20170174520A1
公开(公告)日:2017-06-22
申请号:US15129485
申请日:2015-03-27
Applicant: Pertuus Research & Development Limited
Inventor: Ian Walters , Dyla Walters
CPC classification number: B01J19/08 , B01J2219/0879 , B01J2219/0894 , B82Y30/00 , B82Y40/00 , C01B32/184 , C01B32/225 , C01B2204/04 , C01P2004/03 , C01P2004/61 , C01P2004/62 , Y10S977/734 , Y10S977/842 , Y10S977/846 , Y10S977/847
Abstract: According to the invention there is a particle including a plurality of stacked sub-structures, each sub-structure including a stack of graphene layers, in which the separation between successive stacked sub-structures is greater than the separation between successive graphene layers in each sub-structure.
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公开(公告)号:US09670380B2
公开(公告)日:2017-06-06
申请号:US14892100
申请日:2014-05-21
Inventor: Pascal Jozef Paul Buskens , Maurice Christian Danho Mourad , Maria Elizabeth Louise Wouters , Leonardus Johannus Maria Genoveva Dortmans , Earl Lawrence Vincent Goetheer , Nanning Joerg Arfsten
IPC: C08F2/00 , B01J19/08 , C09D183/06 , C09D5/00 , C09D5/32 , C08F2/38 , B05D3/06 , C08K3/16 , C08K3/36 , C08K5/098 , G03F7/16
CPC classification number: B01J19/08 , B01J2219/00144 , B05D3/06 , C08F2/38 , C08K3/16 , C08K3/36 , C08K5/098 , C09D5/00 , C09D5/32 , C09D183/06 , G03F7/16
Abstract: The invention relates to a chemical conversion process and to a process for removing particles from a reaction mixture. The chemical conversion process of the invention comprises plasmonic heating of a reaction mixture, which reaction mixture comprises at least a one component and plasmonic particles, by exposing said reaction mixture to light comprising one or more wavelengths which are absorbed by at least part of the plasmonic particles, thereby controlling the reaction rate of one or more chemical reactions.
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公开(公告)号:US09587349B2
公开(公告)日:2017-03-07
申请号:US14557170
申请日:2014-12-01
Applicant: XYLECO, INC.
Inventor: Marshall Medoff
IPC: D04H1/42 , D04H1/425 , D03D15/00 , H01J37/317 , B01J19/08 , D06M10/00 , D06M10/02 , D06M10/08 , D06M101/04 , D06M101/06
CPC classification number: D06M10/008 , B01J19/08 , B01J2219/08 , D03D15/00 , D04H1/42 , D04H1/425 , D06M10/001 , D06M10/02 , D06M10/06 , D06M10/08 , D06M2101/04 , D06M2101/06 , D10B2201/00 , D10B2201/01 , D10B2201/22 , D10B2201/26 , D10B2201/28 , H01J37/317 , H01J2237/303 , H01J2237/3165 , Y10T156/10
Abstract: Textiles are provided that include fibrous cellulosic materials having an α-cellulose content of less than about 93%, the fibrous materials being spun, woven, knitted, or entangled. The fibrous cellulosic materials can be irradiated with a dose of ionizing radiation that is sufficient to increase the molecular weight of the cellulosic materials without causing significant depolymerization of the cellulosic materials. Methods of treating textiles that include irradiating the textiles are also provided.
Abstract translation: 提供纺织品,其包括α-纤维素含量小于约93%的纤维状纤维素材料,纤维材料是纺织的,编织的,针织的或缠结的。 纤维状纤维素材料可以用足以增加纤维素材料的分子量而不引起纤维素材料显着解聚的电离辐射剂量照射。 还提供了包括照射纺织品的纺织品的处理方法。
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公开(公告)号:US09517444B2
公开(公告)日:2016-12-13
申请号:US14879337
申请日:2015-10-09
Applicant: XYLECO, INC.
Inventor: Marshall Medoff
IPC: B01J19/08 , C12P7/10 , C12P19/02 , C10G3/00 , C10G11/00 , C10G15/10 , C10G47/00 , C10L1/04 , C12P19/14 , C12P7/14 , C08B1/00 , C08L97/02 , C12P19/04
CPC classification number: B01J19/08 , B01J19/081 , B01J19/085 , B01J2219/08 , B01J2219/0879 , C08B1/00 , C10G3/00 , C10G11/00 , C10G15/10 , C10G47/00 , C10G2300/1011 , C10L1/02 , C10L1/04 , C10L2200/0469 , C10L2270/02 , C10L2270/04 , C10L2290/02 , C10L2290/06 , C10L2290/26 , C10L2290/34 , C10L2290/36 , C10L2290/543 , C12P5/00 , C12P5/02 , C12P5/023 , C12P7/02 , C12P7/04 , C12P7/10 , C12P7/14 , C12P7/16 , C12P19/02 , C12P19/14 , C12P2201/00 , C12P2203/00 , H01M8/1007 , H01M8/1013 , H01M8/16 , H01M8/22 , Y02E50/16 , Y02E50/343 , Y02P30/20 , Y02T50/678
Abstract: Biomass (e.g., plant biomass, animal biomass, and municipal waste biomass) is processed to produce useful products, such as fuels. For example, systems can use feedstock materials, such as cellulosic and/or lignocellulosic materials and/or starchy materials, to produce ethanol and/or butanol, e.g., by fermentation.
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公开(公告)号:US09506648B2
公开(公告)日:2016-11-29
申请号:US14629253
申请日:2015-02-23
Applicant: PYROGENESIS CANADA, INC.
Inventor: Pierre Carabin , Lakshminarayana Rao
IPC: A62D3/19 , F23G7/06 , F23G7/04 , B09B3/00 , B01D53/75 , B01D53/44 , A62D3/35 , H05H1/42 , H05H1/48 , A62D3/38 , B01J19/08 , B01J19/02 , A62D101/22 , A62D101/28
CPC classification number: F23G7/061 , A62D3/19 , A62D3/35 , A62D3/38 , A62D2101/22 , A62D2101/28 , A62D2203/02 , B01D53/44 , B01D53/75 , B01J19/02 , B01J19/08 , B01J19/088 , B01J2219/00155 , B01J2219/00159 , B01J2219/08 , B01J2219/0809 , B01J2219/0811 , B01J2219/0841 , B01J2219/0871 , B01J2219/0877 , B01J2219/0894 , B01J2219/0898 , B09B3/0091 , F23G7/04 , F23G2200/00 , F23G2201/00 , F23G2202/00 , F23G2209/00 , F23G2209/101 , F23G2209/142 , F23G2900/54402 , H05H1/34 , H05H1/42 , H05H1/48 , H05H2001/3426 , H05H2001/3452 , H05H2001/3468 , Y10S588/90
Abstract: A two step process for the destruction of a precursor material using a steam plasma in a three zone reactor wherein the precursor material is hydrolyzed as a first step in the high temperature zone of the reactor, followed by a second step of medium temperature oxidation of the reactant stream in the combustion zone of the reactor where combustion oxygen or air is injected and immediate quenching of the resulting gas stream to avoid the formation of unwanted by-products. A related apparatus includes a non transferred direct current steam plasma torch, an externally cooled three zone steam plasma reactor means for introducing the precursor material into the plasma plume of the plasma torch, means for introducing the combustion air or oxygen into the combustion zone, means for exiting the reactant mixture from the reactor and means for quenching the reactant mixture located at the exit end of the reactor.
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