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公开(公告)号:US20240209268A1
公开(公告)日:2024-06-27
申请号:US18595750
申请日:2024-03-05
Applicant: Neste Oyi
Inventor: Blanka TOUKONIITTY , Ville PAASIKALLIO , Jukka-Pekka PASANEN , Jouni TOURONEN , Meri HOVI , Antti PASANEN , Salla LIKANDER , Sami TOPPINEN , Pekka AALTO , Kari JANSSON , Marina LINDBLAD , Mats KÄLDSTRÖM , Kaisa LAMMINPÄÄ , Andrea PEREZ NEBREDA
CPC classification number: C10G3/50 , C10G3/49 , C10G9/36 , C10G11/18 , C10G45/12 , C10G45/64 , C10G2300/1007 , C10G2300/1011 , C10G2300/202
Abstract: A method is disclosed of purifying a recycled or renewable organic material, wherein the recycled or renewable organic material contains one or more impurities selected from a group consisting of silicon compounds, phosphorous, Cl and sterols. Exemplary embodiments include (a) providing the recycled or renewable organic material; (c) heat treating the recycled or renewable organic material at 100 to 450° C.; and (f) hydrotreating the heat treated recycled or renewable organic material in a presence of a hydrotreating catalyst; to obtain purified hydrotreated recycled or renewable organic material.
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公开(公告)号:US20240198319A1
公开(公告)日:2024-06-20
申请号:US18067829
申请日:2022-12-19
Applicant: Saudi Arabian Oil Company , JGC Catalysts & Chemicals Ltd. , Japan Cooperation Center for Petroleum and Sustainable Energy
Inventor: Omer Refa KOSEOGLU , Ali ALZAID , Kazuki NAKAJIMA , Koji UCHIDA , Yusuke MATSUMOTO
IPC: B01J29/16 , B01J23/882 , B01J35/00 , B01J35/10 , C10G45/12
CPC classification number: B01J29/166 , B01J23/882 , B01J35/0066 , B01J35/1014 , B01J35/1019 , B01J35/1038 , B01J35/1042 , B01J35/1061 , C10G45/12 , C10G2300/1003 , C10G2300/1011 , C10G2300/1051 , C10G2300/1059 , C10G2300/1074 , C10G2300/202 , C10G2300/308
Abstract: Hydrotreating catalyst material and/or hydrotreating catalyst particles are provided having at least two hydrotreating metal components and a chelating agent carried on a support. The support comprises an inorganic oxide binder and a post-framework modified ultra-stable Y-type (USY) zeolite in which a portion of aluminum atoms constituting a zeolite framework thereof is substituted with zirconium atoms and/or titanium atoms and/or hafnium atoms. The hydrotreating metal components form a metal complex via the chelating agent, and are carried on said support as chelating complex type II active sites.
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公开(公告)号:US11680211B2
公开(公告)日:2023-06-20
申请号:US16698468
申请日:2019-11-27
Applicant: FURUKAWA ELECTRIC CO., LTD.
Inventor: Takao Masuda , Yuta Nakasaka , Takuya Yoshikawa , Sadahiro Kato , Masayuki Fukushima , Hiroko Takahashi , Yuichiro Banba , Kaori Sekine
CPC classification number: C10G45/12 , B01J6/001 , B01J29/40 , B01J35/023 , B01J35/1057 , B01J35/1061 , B01J35/1066 , B01J37/0201
Abstract: Provided is a structured catalyst for hydrodesulfurization that suppresses the decline in catalytic activity and achieves efficient hydrodesulfurization. The structured catalyst for hydrodesulfurization (1) includes a support (10) of a porous structure composed of a zeolite-type compound, and at least one catalytic substance (20) present in the support (10), the support (10) having channels (11) connecting with each other, and the catalytic substance (20) being present at least in the channels (11) of the support (10).
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公开(公告)号:US20190091672A1
公开(公告)日:2019-03-28
申请号:US16198317
申请日:2018-11-21
Applicant: UOP LLC
Inventor: Gregory J. Lewis
IPC: B01J29/85 , C01B39/54 , B01J37/04 , B01J37/10 , B01J37/00 , C10G3/00 , C10G35/06 , C10G45/64 , C10G50/00 , C10G11/05 , C10G47/20 , C10G45/12
CPC classification number: B01J29/85 , B01J29/70 , B01J29/76 , B01J29/82 , B01J31/02 , B01J37/0018 , B01J37/04 , B01J37/10 , B01J37/16 , B01J37/30 , C01B37/08 , C01B39/48 , C01B39/54 , C01P2002/74 , C10G3/49 , C10G11/05 , C10G35/065 , C10G35/095 , C10G45/12 , C10G45/64 , C10G47/20 , C10G50/00 , C10G2300/70
Abstract: A new family of crystalline microporous metalloalumino(gallo)phosphosilicates designated MeAPSO-82 has been synthesized. These metalloalumino(gallo)phosphosilicates are represented by the empirical formula of: Rp+rA+mM2+wExPSiyOz where A is an alkali metal such as potassium, R is an quaternary ammonium cation such as ethyltrimethylammonium, M is a divalent metal such as Zn and E is a trivalent framework element such as aluminum or gallium. This family of metalloalumino(gallo)phosphosilicate materials are stabilized by combinations of alkali and quaternary ammonium cations, enabling unique, high charge density compositions. The MeAPSO-82 family of materials have the CGS topology and have catalytic properties for carrying out various hydrocarbon conversion processes and separation properties for separating at least one component.
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公开(公告)号:US10053639B2
公开(公告)日:2018-08-21
申请号:US14506790
申请日:2014-10-06
Applicant: ExxonMobil Research and Engineering Company
Inventor: Stuart S. Shih , Xiaochun Xu , William J. Novak , Carlos N. Lopez , Timothy Lee Hilbert , Stephen John McCarthy
IPC: C10G67/00 , C10G67/02 , C10G45/02 , C10G45/06 , C10G45/08 , C10G45/10 , C10G45/12 , C10G45/62 , C10G45/64 , C10G65/04
CPC classification number: C10G67/02 , C10G45/02 , C10G45/06 , C10G45/08 , C10G45/10 , C10G45/12 , C10G45/62 , C10G45/64 , C10G65/043 , C10G2300/1051 , C10G2300/1055 , C10G2300/1059 , C10G2300/202 , C10G2400/04 , C10G2400/08
Abstract: Methods are provided for dewaxing a distillate fuel boiling range feed to improve one or more cold flow properties of the distillate fuel feed, such as cloud point, where the distillate fuel feed is fractionated to produce both a jet fuel product and an arctic diesel fuel product. The decrease of cloud point is achieved by using a feedstock having a concentration of nitrogen of less than about 50 wppm and a concentration of sulfur of less than about 15 wppm. Further, the dewaxing catalyst may have a reduced content of hydrogenation metals, such as a content of Pt or Pd of from about 0.05 wt % to about 0.35 wt %. A distillate fuel feed can be dewaxed to achieve a desired cloud point differential using a reduced metals content dewaxing catalyst under the same or similar conditions to those required for a dewaxing catalyst with higher metals content.
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公开(公告)号:US10011777B2
公开(公告)日:2018-07-03
申请号:US14054288
申请日:2013-10-15
Applicant: Virginia M. Roberts , Michel Daage , Kun Wang
Inventor: Virginia M. Roberts , Michel Daage , Kun Wang
IPC: C07C1/32 , C10G3/00 , B01J23/02 , B01J23/04 , B01J23/10 , B01J29/70 , B01J29/74 , B01J29/76 , C10G45/02 , C10G45/04 , C10G45/08 , C10G45/10 , C10G45/12
CPC classification number: C10G3/50 , B01J23/02 , B01J23/04 , B01J23/10 , B01J29/703 , B01J29/7046 , B01J29/7461 , B01J29/7492 , B01J29/7661 , B01J29/7692 , C10G3/44 , C10G3/45 , C10G45/02 , C10G45/04 , C10G45/08 , C10G45/10 , C10G45/12 , C10G2300/1014 , C10G2300/1018 , C10G2300/202 , C10G2300/302 , C10G2300/305 , C10G2300/307 , C10G2400/02 , C10G2400/04 , C10G2400/10 , Y02P30/20
Abstract: Systems and methods are provided for processing a feed derived from a biomass source that contains nitrogen in the form of fatty amides, e.g., derived from hydrothermal processing of a biomass source feed, while reducing/minimizing the amount of heteroatom removal performed during subsequent/concurrent hydroprocessing. Optionally, the feed can also contain free fatty acids. This is accomplished in part by first exposing the feed to a catalyst comprising a rare earth oxide, alkali oxide, and/or alkaline earth oxide, which can remove the nitrogen heteroatoms from the compounds within the feed or can convert the nitrogen to a form readily removed in subsequent hydroprocessing. The catalyst may also suitable for catalyzing coupling (such as condensation) or conversion reactions of amides, carboxylic acids, carboxylic acid derivatives, and/or other molecules in the feed suitable for participating in the coupling reaction.
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公开(公告)号:US20180043343A1
公开(公告)日:2018-02-15
申请号:US15798375
申请日:2017-10-30
Applicant: UOP LLC
Inventor: Christopher P. Nicholas , Mark A. Miller
IPC: B01J29/70 , C10G45/12 , C10G47/16 , C01B39/46 , B01J37/04 , B01J37/10 , B01J37/00 , B01J37/08 , C07C2/12 , C10G25/03
CPC classification number: B01J29/7046 , B01J29/7292 , B01J35/002 , B01J37/009 , B01J37/04 , B01J37/08 , B01J37/10 , B01J2229/42 , C01B39/06 , C01B39/12 , C01B39/46 , C01B39/48 , C07C2/12 , C07C2529/70 , C10G25/03 , C10G45/12 , C10G47/16
Abstract: A new crystalline aluminosilicate zeolite comprising a MTT framework has been synthesized that has been designated UZM-53. This zeolite is represented by the empirical formula: M+mRrAl1−xExSiyOz where M represents sodium, potassium or a combination of sodium and potassium cations, R is the organic structure directing agent or agents derived from reactants R1 and R2 where R1 is diisopropanolamine and R2 is a chelating diamine, and E is an element selected from the group consisting of gallium, iron, boron and mixtures thereof. Catalysts made from UZM-53 have utility in various hydrocarbon conversion reactions such as oligomerization.
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公开(公告)号:US20170252732A1
公开(公告)日:2017-09-07
申请号:US15446296
申请日:2017-03-01
Applicant: UOP LLC
Inventor: Gregory J. Lewis , Lisa Knight
CPC classification number: B01J29/85 , B01J29/82 , B01J29/90 , B01J35/002 , B01J35/02 , B01J37/0018 , B01J37/009 , B01J37/04 , B01J37/06 , B01J37/30 , B01J38/12 , C01B39/54 , C01P2002/72 , C01P2002/74 , C10G3/49 , C10G29/205 , C10G35/095 , C10G45/00 , C10G45/12 , C10G45/64 , C10G47/20 , C10G50/00 , Y02P20/584
Abstract: A new family of high charge density crystalline microporous silicometallophosphate designated SAPO-79 has been synthesized. These silicometallophosphate are represented by the empirical formula of: Rp+rMm+ExPSiyOz where M is an alkali metal such as potassium, R is an organoammonium cation such as diethyldimethylammonium and E is a trivalent framework element such as aluminum or gallium. The SAPO-79 family of materials represent the first alkali-stabilized phosphate-based molecular sieves to have the ERI topology and have catalytic properties for carrying out various hydrocarbon conversion processes and separation properties for separating at least one component.
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公开(公告)号:US09662640B2
公开(公告)日:2017-05-30
申请号:US14142444
申请日:2013-12-27
Applicant: Rive Technology, Inc.
Inventor: Ernest Senderov , Mohammad Ibrahim Qureshi
IPC: B01J29/06 , C01B39/02 , B01J29/08 , B01J29/03 , B01J29/04 , B01J29/89 , B01J29/83 , B01J29/84 , B01J29/85 , B01J29/18 , B01J29/40 , B01J29/65 , B01J29/70 , C10G29/20 , C10G45/12 , C10G47/16 , C10G50/00 , C10G11/05 , B01J35/10 , B01J29/50
CPC classification number: B01J29/084 , B01J29/0308 , B01J29/041 , B01J29/06 , B01J29/08 , B01J29/18 , B01J29/40 , B01J29/50 , B01J29/65 , B01J29/7007 , B01J29/7015 , B01J29/7034 , B01J29/83 , B01J29/84 , B01J29/85 , B01J29/89 , B01J35/10 , B01J35/1057 , B01J35/1061 , B01J35/109 , B01J2029/081 , B01J2229/126 , B01J2229/16 , B01J2229/36 , B01J2229/37 , B01J2229/38 , C10G11/05 , C10G29/205 , C10G45/12 , C10G47/16 , C10G50/00
Abstract: Methods for introducing mesoporosity into zeolite materials that employ an acid pretreatment step are provided. By utilizing a non-acidic chelating agent during the acid treatment step, the zeolite material can be pretreated with a strong acid, often in higher concentrations or over shorter contact times, than had previously been contemplated. The resulting acid-treated mesoporous materials retain desirable properties, including Si/Al, UCS, and total mesopore and micropore volume. The ability to use a stronger acid without damaging the zeolite material results in a less expensive process capable of producing mesoporous zeolite materials suitable for a wide range of uses.
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公开(公告)号:US09617479B2
公开(公告)日:2017-04-11
申请号:US14573081
申请日:2014-12-17
Applicant: Bradley R. Fingland , Joseph Emmanuel Gatt
Inventor: Bradley R. Fingland , Joseph Emmanuel Gatt
IPC: C07C1/00 , C10G1/00 , C10G73/02 , C10G53/00 , C10G3/00 , C10G45/12 , C10G45/10 , C10G45/06 , C10G69/02 , C10L1/08 , C10L10/14 , C07C7/04 , B01J23/85
CPC classification number: C10G3/50 , B01J23/85 , C07C7/04 , C10G3/44 , C10G3/47 , C10G3/48 , C10G3/49 , C10G45/06 , C10G45/10 , C10G45/12 , C10G69/02 , C10G2300/1014 , C10L1/08 , C10L10/14 , C10L2200/0469 , C10L2270/026 , Y02E50/13 , Y02P20/52 , Y02P30/20 , C07C11/06
Abstract: Feeds containing triglycerides are processed to produce a diesel fuel product and propylene. The diesel product and propylene are generated by deoxygenating the triglyceride-containing feed using processing conditions that enhance preservation of olefins that are present in the triglycerides. The triglyceride-containing feed is processed in the presence of a catalyst containing a Group VI metal and a Group VIII non-noble metal and in the presence of CO.
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