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公开(公告)号:US11925926B2
公开(公告)日:2024-03-12
申请号:US17544144
申请日:2021-12-07
Applicant: EVONIK OPERATIONS GMBH
Inventor: Carolin Schneider , Ralf Jackstell , Matthias Beller , Robert Franke
CPC classification number: B01J31/1616 , C07C51/00 , C07C2531/22
Abstract: Platinum complexes having ferrocene-diphosphine ligands for catalysis of the hydroxycarbonylation of ethylenically unsaturated compounds.
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公开(公告)号:US11773050B2
公开(公告)日:2023-10-03
申请号:US17203796
申请日:2021-03-17
Applicant: Circlia Nordic ApS
IPC: B01J3/00 , B01J3/02 , B01J4/00 , B01J19/24 , C10G1/00 , C07C67/08 , C10L1/02 , C10L8/00 , B01J3/04 , C10G3/00 , B01J19/00 , C07C37/00 , C07C51/00 , C07D307/34
CPC classification number: C07C67/08 , B01J3/008 , B01J3/02 , B01J3/042 , B01J4/007 , B01J4/008 , B01J19/0013 , B01J19/241 , B01J19/2415 , C07C37/004 , C07C51/00 , C07D307/34 , C10G1/00 , C10G3/40 , C10L1/02 , C10L1/026 , C10L8/00 , B01J2219/00087 , B01J2219/00159 , B01J2219/00162 , B01J2219/00164 , C10G2300/1011 , C10L2200/0476 , C10L2270/026 , C10L2290/06 , Y02E50/10 , Y02P20/54
Abstract: The invention discloses a method for producing bio-fuel (BF) from a high-viscosity biomass using thermo-chemical conversion of the biomass in a production line (10) with pumping means (PM), heating means (HM) and cooling means (CM). The method has the steps of 1) operating the pumping means, the heating means and the cooling means so that the production line is under supercritical fluid conditions (SCF) to induce biomass conversion in a conversion zone (CZ) within the production line, and 2) operating the pumping means so that at least part of the production line is in an oscillatory flow (OF) mode. The invention is advantageous for providing an improved method for producing biofuel from a high-viscosity biomass. This is performed by an advantageous combination of two operating modes: supercritical fluid (SCF) conditions and oscillatory flow (OF).
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公开(公告)号:US20180258251A1
公开(公告)日:2018-09-13
申请号:US15843422
申请日:2017-12-15
Applicant: INSTITUTO MEXICANO DEL PETROLEO
Inventor: Jose Antonio TOLEDO ANTONIO , Maria Antonia CORTES JACOME , Isidro MEJIA CENTENO , Jorge Alberto GARCIA MARTINEZ , Jose ESCOBAR AGUILAR , Esteban LOPEZ SALINAS , Maria de Lourdes Araceli MOSQUEIRA MONDRAGON , Miguel PEREZ LUNA , Carlos ANGELES CHAVEZ , Jaime SANCHEZ VALENTE , Maria de Lourdes Alejandra GUZMAN CASTILLO , Ana Karina MEDINA MENDOZA
CPC classification number: C08J11/16 , B01J20/3204 , B01J21/04 , B01J23/74 , B01J23/75 , B01J23/755 , B01J29/0333 , C07C41/00 , C07C45/52 , C07C45/59 , C07C47/58 , C07C51/00 , C07C43/23 , C07C49/84 , C07C63/04
Abstract: The present invention is related to a catalytic process, which includes catalytic compositions for depolymerisation and deoxygenation of lignin contained in the biomass for obtaining aromatic hydrocarbons. The catalytic composition consists of at least one non-noble element from group VIIIB of the periodic table supported on a mesoporous matrix composed of an inorganic oxide, which can be alumina surface-modified with a second inorganic oxide with the object of inhibiting the interaction between the active component and the support. The process of lignin depolymerisation consists of dissolving lignin in a mixture of protic liquids, reacting it|a reaction system by batch or in continuous flow at inert and/or reducing atmosphere, at a temperature of between 60 to 320° C. and a pressure of from 5 to 90 kg/cm2. When the reaction is developed into a batch system, oxygenated aromatic hydrocarbons are mainly produced, both by thermal as well as catalytic depolymerisation, whereas in a continuous flow reaction system, deoxygenated aromatic hydrocarbons are produced.
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公开(公告)号:US09957215B2
公开(公告)日:2018-05-01
申请号:US15680541
申请日:2017-08-18
Applicant: aPEEL Technology, Inc.
Inventor: Louis Perez , Camille Mol , Ronald C. Bakus, II , James Rogers , Gabriel Rodriguez
IPC: C07C51/09 , C07C51/36 , C07C67/08 , C08G63/06 , C08G63/00 , C09D167/00 , C09D167/04 , A23B7/16 , A23L3/3454 , C09D5/00
CPC classification number: C07C51/09 , A23B7/16 , A23L3/3454 , A23V2002/00 , C07C51/00 , C07C51/36 , C07C51/367 , C07C67/03 , C07C67/08 , C08G63/00 , C08G63/06 , C09D5/00 , C09D167/00 , C09D167/04 , C07C59/105 , C07C53/126 , C07C59/01 , C07C69/24 , C07C69/675 , C07C69/58 , C07C69/732 , C07C69/533 , C07C57/12 , C07C57/03 , C07C59/42 , C07C69/587
Abstract: Described herein are methods of preparing cutin-derived monomers, oligomers, or combinations thereof from cutin-containing plant matter. The methods can include heating the cutin-derived plant matter in a solvent at elevated temperature and pressure. In some preferred embodiments, the methods can be carried out without the use of additional acidic or basic species.
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公开(公告)号:US20170370012A1
公开(公告)日:2017-12-28
申请号:US15697956
申请日:2017-09-07
Applicant: KABUSHIKI KAISHA TOSHIBA
Inventor: Akihiko ONO , Satoshi MIKOSHIBA , Yuki KUDO , Jun TAMURA , Ryota KITAGAWA , Chingchun HUANG
CPC classification number: C25B3/04 , B01J19/127 , B01J2219/0875 , B01J2219/1203 , C01B32/05 , C01B32/50 , C07C51/00 , C25B9/06 , C25B9/08 , H01L31/076 , Y02E10/548
Abstract: According to one embodiment, a photochemical reaction system comprises a CO2 production unit, a CO2 absorption unit, and a CO2 reduction unit. The CO2 reduction unit comprises a laminated body and an ion transfer pathway. The laminated body comprises an oxidation catalyst layer producing O2 and H+ by oxidizing H2O, a reduction catalyst layer producing carbon compounds by reducing CO2 absorbed by the CO2 absorption unit, and a semiconductor layer formed between the oxidation catalyst layer and the reduction catalyst layer and develops charge separation with light energy. The ion transfer pathways make ions move between the oxidation catalyst layer side and the reduction catalyst layer side.
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公开(公告)号:US09751825B2
公开(公告)日:2017-09-05
申请号:US14234127
申请日:2012-07-19
Applicant: Huw M. L. Davies , Spandan Chennamadhavuni , Andrei Bakin
Inventor: Huw M. L. Davies , Spandan Chennamadhavuni , Andrei Bakin
IPC: A61K31/194 , A61K31/216 , A61K31/343 , A61K31/357 , A61K31/36 , A61K31/405 , C07C69/73 , C07C69/604 , C07C69/618 , C07C69/65 , C07C69/732 , C07C69/734 , C07C69/738 , C07D317/60 , C07D319/18 , C07D209/26 , C07D209/34 , C07D307/79 , C07C259/06 , C07C205/56 , C07C51/00 , C07C57/42 , C07C67/31 , C07C69/736 , C07C201/12 , C07D209/24 , C07D307/80 , C07D317/68
CPC classification number: C07C69/73 , A61K31/194 , A61K31/216 , A61K31/343 , A61K31/357 , A61K31/36 , A61K31/405 , C07C51/00 , C07C57/42 , C07C67/31 , C07C69/604 , C07C69/618 , C07C69/65 , C07C69/732 , C07C69/734 , C07C69/736 , C07C69/738 , C07C201/12 , C07C205/56 , C07C259/06 , C07D209/24 , C07D209/26 , C07D209/34 , C07D307/79 , C07D307/80 , C07D317/60 , C07D317/68 , C07D319/18
Abstract: The disclosure relates to TAK1 inhibitors, compositions, and uses related thereto. In certain embodiments, the disclosure relates to compounds of formula (I), pharmaceutical compositions having a compound of formula (I), and methods of treating or preventing cancer by administering an effective amount of a pharmaceutical composition having a compound of formula (I) to a subject in need thereof.
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公开(公告)号:US20170247310A1
公开(公告)日:2017-08-31
申请号:US15516105
申请日:2015-10-02
Applicant: Monsanto Technology LLC
Inventor: Kam-To Wan , John H. Ahn , John Wang , Don Probst
IPC: C07C51/367 , C07C51/00 , C07C37/00
CPC classification number: C07C51/367 , C07C37/00 , C07C39/30 , C07C51/00 , C07C51/16 , C07C59/56 , C07C59/64
Abstract: Processes for producing 2,5-dichlorophenol and 3,6-dichloro-2-methoxybenzoic acid are described. Various processes for isomerizing 2,4-dichlorophenol over a zeolite catalyst to form 2,5-dichlorophenol are provided. Processes for preparing 2,5-dichlorophenol including hydroxylating 1,4-dichlorobenzene are also described. The present invention also relates to processes for producing 3,6-dichloro-2-methoxybenzoic acid.
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公开(公告)号:US20170183570A1
公开(公告)日:2017-06-29
申请号:US15392886
申请日:2016-12-28
Applicant: NESTE OYJ
Inventor: Jukka MYLLYOJA , Marina LINDBLAD , Mats KÄLDSTRÖM , Rami PIILOLA , Elias IKONEN
CPC classification number: C10G3/46 , C07C51/00 , C07C51/377 , C10G3/47 , C10G3/50 , C10G45/08 , C10G45/10 , C10G2300/1011 , C10G2300/202 , C10G2400/02 , Y02P30/20 , C07C55/02
Abstract: The present invention relates to a method for conversion of levulinic acid and to a hydrocarbon composition obtainable by the method. The method comprises a step of providing a feedstock, a conversion step of subjecting the feedstock to a C—C coupling reaction and a hydrotreatment, and a hydrodeoxygenation step. The content of levulinic acid dimer derivatives having 4 oxygen atoms subjected to the hydrodeoxygenation step is 20 wt.-% or more.
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公开(公告)号:US20170174796A1
公开(公告)日:2017-06-22
申请号:US15447371
申请日:2017-03-02
Applicant: THE UNIVERSITY OF AKRON
Inventor: Joseph KENNEDY , Yongmoon KWON , Subramanyam UMMADISETTY
CPC classification number: C08F8/00 , C07C17/013 , C07C19/075 , C07C31/18 , C07C51/00 , C07C209/08 , C07C211/01 , C08F8/06 , C08F8/10 , C08F8/12 , C08F8/20 , C08F8/26 , C08F8/30 , C08F8/32 , C08F10/10 , C08F110/10 , C08F2810/30 , C08F2810/40 , C08G18/3206 , C08G18/6204 , C08G18/7671 , C08F4/16 , C08F2/38 , C08F8/28
Abstract: The present invention generally relates to alcohol-terminated polyisobutylene (PIB) compounds, and to a process for making such compounds. In one embodiment, the present invention relates to primary alcohol-terminated polyisobutylene compounds, and to a process for making such compounds. In still another embodiment, the present invention relates to polyisobutylene compounds that can be used to synthesize polyurethanes, to polyurethane compounds made via the use of such polyisobutylene compounds, and to processes for making such compounds. In yet another embodiment, the present invention relates to primary alcohol-terminated polyisobutylene compounds having two or more primary alcohol termini and to a process for making such compounds. In yet another embodiment, the present invention relates to primary terminated polyisobutylene compounds having two or more primary termini selected from amine groups or methacrylate groups.
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10.
公开(公告)号:US20170107251A1
公开(公告)日:2017-04-20
申请号:US15355082
申请日:2016-11-18
Applicant: YEDA RESEARCH AND DEVELOPMENT CO. LTD.
Inventor: David MILSTEIN , Ekambaram Balaraman , Chidambaram Gunanathan , Boopathy Gnanaprakasam , Jing Zhang
IPC: C07K5/12 , C07C209/62 , C07D305/06 , C07D307/44 , C07C29/149 , C07D295/027 , C07D207/06 , C07D207/08 , C07D211/12 , C07C231/10 , C07D307/52 , C07D295/185 , C07C67/00 , C07C213/02 , C07C51/00 , C07D309/30 , C07D307/33 , C07D307/83 , C07C67/297 , C07D241/12 , C07B41/02 , C07B43/04 , C07B41/08 , C07B41/12 , C07B43/06 , B01J31/24 , C07C41/26
CPC classification number: C07K5/12 , B01J31/18 , B01J31/189 , B01J31/2404 , B01J31/2409 , B01J31/248 , B01J31/2485 , B01J2231/40 , B01J2231/49 , B01J2231/643 , B01J2231/763 , B01J2531/0244 , B01J2531/821 , C07B41/02 , C07B41/08 , C07B41/12 , C07B43/04 , C07B43/06 , C07C29/136 , C07C29/149 , C07C29/177 , C07C41/16 , C07C41/26 , C07C45/002 , C07C45/006 , C07C51/00 , C07C51/02 , C07C51/23 , C07C51/295 , C07C67/00 , C07C67/03 , C07C67/297 , C07C209/00 , C07C209/62 , C07C213/00 , C07C213/02 , C07C231/02 , C07C231/10 , C07C2601/08 , C07C2601/10 , C07C2601/14 , C07D207/06 , C07D207/08 , C07D211/12 , C07D213/38 , C07D241/08 , C07D241/12 , C07D295/023 , C07D295/027 , C07D295/185 , C07D305/06 , C07D307/14 , C07D307/33 , C07D307/44 , C07D307/52 , C07D307/83 , C07D309/30 , C07D487/14 , C07F9/58 , C07F9/65583 , C07F15/0046 , C07F15/0053 , C07K1/00 , C08G69/00 , Y02P20/52 , C07C233/05 , C07C235/06 , C07C233/07 , C07C235/16 , C07C235/14 , C07C235/10 , C07C211/27 , C07C211/07 , C07C211/35 , C07C211/46 , C07C211/10 , C07C215/28 , C07C217/58 , C07C69/14 , C07C69/24 , C07C31/125 , C07C31/12 , C07C49/78 , C07C49/04 , C07C49/10 , C07C49/08 , C07C49/403 , C07C31/205 , C07C31/202 , C07C31/04 , C07C31/08 , C07C33/20 , C07C33/22 , C07C31/1355 , C07C31/10 , C07C43/13 , C07C69/78 , C07C69/75 , C07C53/124 , C07C53/126 , C07C59/125 , C07C57/32 , C07C61/08 , C07C57/30 , C07C65/21 , C07C63/08 , C07C63/06
Abstract: The present invention relates to novel Ruthenium complexes and related borohydride complexes, and their use for (1) hydrogenation of amides (including polyamides) to alcohols and amines; (2) preparing amides from alcohols with amines (including preparing polyamides (e.g., polypeptides) by reacting dialcohols and diamines or by polymerization of amino alcohols); (3) hydrogenation of esters to alcohols (including hydrogenation of cyclic esters (lactones), cyclic di-esters (di-lactones) or polyesters); (4) hydrogenation of organic carbonates (including polycarbonates) to alcohols and of carbamates (including polycarbamates) or urea derivatives to alcohols and amines; (5) dehydrogenative coupling of alcohols to esters; (6) hydrogenation of secondary alcohols to ketones; (7) amidation of esters (synthesis of amides from esters and amines); (8) acylation of alcohols using esters; (9) coupling of alcohols with water to form carboxylic acids; and (10) dehydrogenation of beta-amino alcohols to form pyrazines. The present invention further relates to novel uses of certain pyridine Ruthenium complexes.
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