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公开(公告)号:US20240307851A1
公开(公告)日:2024-09-19
申请号:US18606351
申请日:2024-03-15
IPC分类号: B01J20/287 , B01D15/32 , B01J20/10 , B01J20/22 , B01J20/28 , B01J20/32 , C07K1/20 , C07K14/605
CPC分类号: B01J20/287 , B01D15/325 , B01J20/103 , B01J20/22 , B01J20/28004 , B01J20/28083 , B01J20/3204 , B01J20/3217 , B01J20/3246 , C07K1/20 , C07K14/605 , B01J2220/4806 , B01J2220/52 , B01J2220/58
摘要: Silica particles have a fine pore size of 1 to 250 Angstrom (Å) and comprise a silane group which comprises two groups which are each independently chosen from alkyl, aryl, alkylaryl, heteroalkyl, heteroaryl, and heteroalkylaryl groups. The silica particles are prepared by a method. The silica particles can be used as a stationary phase for purifying a modified conjugated peptide, such as a GLP-1 agonist or a GLP-2 analog.
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公开(公告)号:US11964252B2
公开(公告)日:2024-04-23
申请号:US17157526
申请日:2021-01-25
申请人: XPLOSAFE, LLC
发明人: Shoaib F. Shaikh , Allen W. Apblett , Nicholas F. Materer , Evgueni Kadossov , Michael L. Teicheira
IPC分类号: C06B45/00 , B01D53/02 , B01J20/10 , B01J20/28 , B01J20/32 , C01B33/18 , C06B21/00 , C06B23/00 , F42D5/04
CPC分类号: B01J20/103 , B01D53/02 , B01J20/28021 , B01J20/28064 , B01J20/28073 , B01J20/28076 , B01J20/28083 , B01J20/3204 , B01J20/3219 , B01J20/3246 , B01J20/3293 , C01B33/18 , C06B21/0091 , C06B23/00 , C06B45/00 , F42D5/04 , B01D2253/106 , B01D2257/708 , B01D2259/4583 , C01P2002/82 , C01P2004/04 , C01P2004/13 , C01P2006/12 , C01P2006/14 , C01P2006/16
摘要: The present invention provides an improved sorbent and corresponding device(s) and uses thereof for the capture and stabilization of volatile organic compounds (VOC) or semi-volatile organic compounds (SVOC) from a gaseous atmosphere. The sorbent is capable of rapid and high uptake of one or more compounds and provides quantitative release (recovery) of the compound(s) when exposed to elevated temperature and/or organic solvent. Uses of particular improved grades of mesoporous silica are disclosed.
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公开(公告)号:US11707068B2
公开(公告)日:2023-07-25
申请号:US16823697
申请日:2020-03-19
申请人: SONY CORPORATION
IPC分类号: A01N59/16 , B01J21/06 , B01J21/18 , C02F1/28 , B01J20/28 , B01J20/32 , B01J35/10 , B01J35/00 , B01J23/745 , B01J39/07 , B01J23/89 , B01J27/188 , B01J39/02 , C02F1/50
CPC分类号: A01N59/16 , B01J20/28057 , B01J20/28069 , B01J20/3204 , B01J20/3246 , B01J21/063 , B01J21/18 , B01J23/745 , B01J23/8993 , B01J27/188 , B01J35/002 , B01J35/004 , B01J35/108 , B01J35/1023 , B01J35/1028 , B01J35/1038 , B01J35/1042 , B01J39/02 , B01J39/07 , C02F1/281 , C02F1/285 , C02F1/288 , C02F1/505 , C02F2305/10 , Y10T428/249967 , A01N59/16 , A01N2300/00
摘要: Disclosed herein is a fungicide, including a porous carbon material and a silver member adhered to the porous carbon material, wherein a value of a specific surface area based on a nitrogen BET, namely Brunauer, Emmett, and Teller method is equal to or larger than 10 m2/g, and a volume of a fine pore based on a BJH, namely Barrett, Joyner, and Halenda method and an MP, namely Micro Pore method is equal to or larger than 0.1 cm3/g.
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公开(公告)号:US20180345248A1
公开(公告)日:2018-12-06
申请号:US16058069
申请日:2018-08-08
发明人: Darryl W. Brousmiche , Jacob N. Fairchild , Jason F. Hill , Giorgis Isaac , Michael F. Morris , Kevin D. Wyndham
IPC分类号: B01J20/283 , C07F7/18 , B01J20/28 , B01D15/30 , B01D15/32 , B01D15/40 , B01D53/02 , B01J20/22 , B01J20/32 , B01J20/30 , B01J20/289 , B01J20/288 , B01D15/26 , B01J20/282 , B01J20/285 , B01J20/284
CPC分类号: B01J20/283 , B01D15/26 , B01D15/30 , B01D15/305 , B01D15/322 , B01D15/40 , B01D53/025 , B01J20/22 , B01J20/28004 , B01J20/28016 , B01J20/28042 , B01J20/28057 , B01J20/28059 , B01J20/28061 , B01J20/28064 , B01J20/28066 , B01J20/28069 , B01J20/28071 , B01J20/28073 , B01J20/28076 , B01J20/28078 , B01J20/28083 , B01J20/28085 , B01J20/282 , B01J20/284 , B01J20/285 , B01J20/288 , B01J20/289 , B01J20/3085 , B01J20/32 , B01J20/3204 , B01J20/3206 , B01J20/3208 , B01J20/3234 , B01J20/3246 , B01J20/3285 , B01J20/3293 , B01J2220/54 , B01J2220/80 , C07F7/1804
摘要: The present disclosure relates to a method of separating a compound of interest, particularly unsaturated compound(s) of interest, from a mixture. The compound is separated using a column having a chromatographic stationary phase material for various different modes of chromatography containing a first substituent and a second substituent. The first substituent minimizes compound retention variation over time under chromatographic conditions. The second substituent chromatographically and selectively retains the compound by incorporating one or more aromatic, polyaromatic, heterocyclic aromatic, or polyheterocyclic aromatic hydrocarbon groups, each group being optionally substituted with an aliphatic group.
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公开(公告)号:US20180250656A1
公开(公告)日:2018-09-06
申请号:US15758151
申请日:2016-09-08
发明人: Himanshu MISHRA , A.S.F. FARINHA , Shahnawaz SINHA
CPC分类号: B01J20/103 , B01J20/28004 , B01J20/28019 , B01J20/3217 , B01J20/3246 , B01J20/3257 , B01J20/3293 , C02F1/288 , C02F1/36 , C02F1/385 , C02F2101/32 , C02F2101/325 , C02F2103/10 , C02F2103/365 , C09K3/32
摘要: Functionalized material, methods of producing the functionalized material, and use thereof for separation processes such as but not limited to use for separating and extracting a dissolved organic foulant, charged contaminant or oily matter or any combination thereof from water, such as produced water, are provided. In an embodiment, the functionalized material is a mineral material, such as mica, silica (e.g. an SiO2 microsphere) or a metal oxide, and the outer surface of the material is functionalized with an alkyl chain or a perfluorinated species. In an embodiment, the method of making the functionalized material, includes: a) providing a mineral material; b) providing an alkyl chain and/or a perfluorinated species, the alkyl chain or perfluorinated species selected to dissolve organic foulants, charged contaminants or oily matter from water or any combination thereof; c) hydroxylating the material via a concentrated acid solution or a basic solution; and d) grafting the alkyl chain and/or the perfluorinated species onto the material via a silanation reaction.
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公开(公告)号:US20180126358A1
公开(公告)日:2018-05-10
申请号:US15345850
申请日:2016-11-08
发明人: Holden T. Ranz , Timothy A. Nalette , Ping Yu
CPC分类号: B01J20/20 , B01D53/02 , B01D53/0407 , B01D53/26 , B01D53/58 , B01D53/82 , B01D2253/102 , B01D2253/104 , B01D2253/112 , B01D2253/202 , B01D2253/25 , B01D2257/406 , B01D2257/80 , B01D2258/06 , B01D2259/40001 , B01D2259/4566 , B01D2259/4575 , B01J20/0244 , B01J20/08 , B01J20/261 , B01J20/28052 , B01J20/3204 , B01J20/3208 , B01J20/321 , B01J20/3234 , B01J20/3236 , B01J20/3246 , B01J2220/56 , Y02A50/2346
摘要: A sorbent bed may comprise a sorbent support comprising at least one of a carbon material, a polymeric material, or alumina, wherein the sorbent support comprises a plurality of pores; and an impregnant configured to absorb ammonia disposed within the plurality of pores in the sorbent support, wherein the sorbent bed comprises between 20% and 60% by weight impregnant.
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公开(公告)号:US09925521B2
公开(公告)日:2018-03-27
申请号:US14401385
申请日:2013-05-15
发明人: Kevin D. Wyndham , Michael F. Morris , Darryl W. Brousmiche , Jason F. Hill , Jacob N. Fairchild
IPC分类号: B01J20/32 , B01J20/282 , B01J20/288 , B01J20/283 , B01D15/26 , B01J20/28 , B01D15/30 , B01D15/32 , B01D15/40 , B01D53/02 , B01J20/22 , B01J20/289 , C07F7/18 , B01J20/30 , B01J20/285 , B01J20/284
CPC分类号: B01J20/283 , B01D15/26 , B01D15/30 , B01D15/305 , B01D15/322 , B01D15/40 , B01D53/025 , B01J20/22 , B01J20/28004 , B01J20/28016 , B01J20/28042 , B01J20/28057 , B01J20/28059 , B01J20/28061 , B01J20/28064 , B01J20/28066 , B01J20/28069 , B01J20/28071 , B01J20/28073 , B01J20/28076 , B01J20/28078 , B01J20/28083 , B01J20/28085 , B01J20/282 , B01J20/284 , B01J20/285 , B01J20/288 , B01J20/289 , B01J20/3085 , B01J20/32 , B01J20/3204 , B01J20/3206 , B01J20/3208 , B01J20/3234 , B01J20/3246 , B01J20/3285 , B01J20/3293 , B01J2220/54 , B01J2220/80 , C07F7/1804
摘要: In one aspect, the present invention provides a chromatographic stationary phase material for various different modes of chromatography represented by Formula 1: [X](W)a(Q)b(T)c (Formula 1). X can be a high purity chromatographic core composition having a surface comprising a silica core material, metal oxide core material, an inorganic-organic hybrid material or a group of block copolymers thereof. W can be absent and/or can include hydrogen and/or can include a hydroxyl on the surface of X. Q can be a functional group that minimizes retention variation over time (drift) under chromatographic conditions utilizing low water concentrations. T can include one or more hydrophilic, polar, ionizable, and/or charged functional groups that chromatographically interact with the analyte. Additionally, b and c can be positive numbers, with the ratio 0.05≤(b/c)≤100, and a≥0.
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公开(公告)号:US09925515B1
公开(公告)日:2018-03-27
申请号:US15468530
申请日:2017-03-24
申请人: Abuzar Kabir , Kenneth G. Furton
发明人: Abuzar Kabir , Kenneth G. Furton
IPC分类号: B01J20/10 , B01J20/283 , B01J20/30 , B01J20/28 , B01J20/22 , B01D15/08 , B01J20/291 , B01J20/32 , B01D15/20 , B01J20/281 , B01D15/26
CPC分类号: B01J20/22 , B01D15/08 , B01D15/26 , B01J20/103 , B01J20/28047 , B01J20/291 , B01J20/3021 , B01J20/3204 , B01J20/3217 , B01J20/3246 , B01J20/3248 , B01J20/3261 , B01J20/3293 , B01J2220/52 , G01N30/482
摘要: A chromatographic stationary phase or solid phase extraction (SPE) sorbent are sol-gel metal oxide particles comprising metal oxide network units with organic functionality bonded to the metal of the metal oxide and possess a higher performance or capacity than that of conventional ligand coated silica particles. The organic functionality is distributed throughout the metal oxide particle and wherein the mole percent of metals of the metal oxides with bonded organic functionality is in excess of nine mole percent of the particle. The particles are prepared from sol-gel processing employing an acid catalyst or an acid catalyst followed by a base catalyst to metal oxide precursors, at least nine mole percent of which have organic functionality. The particles are processed from a sol-gel condensation product into a size depending on the intended use.
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公开(公告)号:US20170173523A1
公开(公告)日:2017-06-22
申请号:US15428017
申请日:2017-02-08
CPC分类号: B01D53/62 , B01D53/1475 , B01D53/1493 , B01D2252/30 , B01J20/103 , B01J20/22 , B01J20/3204 , B01J20/3246 , B01J20/3251 , B01J20/3425 , Y02C10/06
摘要: The present invention concerns the absorption and desorption behaviour of carbon dioxide (CO2) using ionic liquids derived from amino acids adsorbed on porous carrier materials.
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公开(公告)号:US09533245B2
公开(公告)日:2017-01-03
申请号:US14258892
申请日:2014-04-22
IPC分类号: B01D39/08 , G01N33/49 , D04H1/4218 , D04H1/4326 , D04H1/54 , B01J20/28 , B01J20/283 , B01J20/286 , B01J20/32 , B01J20/10 , G01N21/05 , G01N1/40 , B01L3/00 , B01D15/34 , G01N21/03
CPC分类号: B01D39/086 , B01D15/34 , B01J20/103 , B01J20/28038 , B01J20/283 , B01J20/286 , B01J20/3246 , B01J2220/54 , B01L3/502753 , B01L3/5635 , D04H1/4218 , D04H1/4326 , D04H1/54 , G01N21/05 , G01N33/491 , G01N2001/4088 , G01N2021/0325
摘要: A filter device of the present disclosure includes at least a sheet-shaped fiber structure having a plurality of fibers made of amorphous silicon dioxide, wherein the plurality of fibers are tangled and thus connected together to form voids in the sheet-shaped fiber structure. A filter device of the present disclosure corresponds to an analysis device including: a substrate; a flow path formed on the substrate; and a sheet-shaped fiber structure provided on the inner wall of the flow path, wherein the sheet-shaped fiber structure includes a plurality of fibers made of amorphous silicon dioxide, and the plurality of fibers are tangled and thus connected together to form voids in the sheet-shaped fiber structure.
摘要翻译: 本公开的过滤器装置至少包括具有多个由无定形二氧化硅制成的纤维的片状纤维结构,其中多个纤维缠结并因此连接在一起以在片状纤维结构中形成空隙。 本公开的过滤装置对应于分析装置,包括:基板; 形成在所述基板上的流路; 以及设置在所述流路的内壁上的片状纤维结构体,其中,所述片状纤维结构体包括多个由无定形二氧化硅制成的纤维,所述多根纤维缠结并因此连接在一起形成空隙 片状纤维结构。
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