Patents Examined by In Suk C Bullock
  • Patent number: 11674092
    Abstract: A process is disclosed for producing distillate range hydrocarbons using MTW and/or SSZ-41x catalysts.
    Type: Grant
    Filed: June 15, 2022
    Date of Patent: June 13, 2023
    Assignee: CHEVRON U.S.A. INC.
    Inventors: Trenton J. Otto, Ann Jia-Bao Liang, Stacey Ian Zones, Christopher Michael Lew, Jesús C. Pascual, Bi-Zeng Zhan
  • Patent number: 11673121
    Abstract: Disclosed are a catalyst for oxidative coupling reaction of methane, a method for preparing the same, and a method for oxidative coupling reaction of methane using the same. The catalyst includes a mixed metal oxide, which is a mixed oxide of metals including sodium (Na), tungsten (W), manganese (Mn), barium (Ba) and titanium (Ti). It is possible to obtain paraffins, such as ethane and propane, and olefins, such as ethylene and propylene, with high efficiency through the method for oxidative coupling reaction of methane using the catalyst.
    Type: Grant
    Filed: December 17, 2021
    Date of Patent: June 13, 2023
    Assignee: KOREA INSTITUTE OF SCIENCE AND TECHNOLOGY
    Inventors: Jeong-Myeong Ha, Lien Thi Do, Jae Wook Choi, Dong Jin Suh, Young Hyun Yoon, Gi Seok Yang, Hyun Joo Lee
  • Patent number: 11667593
    Abstract: Methods of forming arenes, including asymmetrical arenes, such as asymmetrical pyrene derivatives. Substituents of starting materials may be selected to direct a photochemical cascade and possibly a 1,2-aryl shift. The methods may include a Mallory cyclization, which is controlled, at least in part, by substituents of the starting materials. Compounds and compositions including asymmetrical arenes.
    Type: Grant
    Filed: September 6, 2022
    Date of Patent: June 6, 2023
    Assignee: The Florida State University Research Foundation, Inc.
    Inventors: Nikolas Ramos Dos Santos, Igor Alabugin, Alexandria Palazzo
  • Patent number: 11654420
    Abstract: A process and catalyst are provided for the non-oxidative dehydrogenation of propane for the production of propylene as petrochemical building blocks. The process provides a direct single-step gas-phase dehydration of propane mixed with nitrogen in the presence and absence of steam/hydrogen over supported bimetallic alumina-silicates zeolites. The catalyst contains no precious metal entities and may contain one metal from group VIB in combination with another metal from group IIIA or IVA supported on FAU, MFI, KFI, BEA type alumina-silicates zeolites. The process provides a propane conversion of 18% to 52% with a propylene yield of 10% to 25%.
    Type: Grant
    Filed: July 1, 2021
    Date of Patent: May 23, 2023
    Assignee: Council of Scientific & Industrial Research
    Inventors: Bipul Sarkar, Ankit Agrawal, Om Vir Singh, Indrajit Kumar Ghosh, Shailendra Tripathi, Sanat Kumar, Anjan Ray
  • Patent number: 11649409
    Abstract: In accordance with one or more embodiments of the present disclosure, a method for producing aromatic compounds from pyrolysis gasoline includes hydrotreating a stream comprising the pyrolysis gasoline, thereby producing a hydrotreated pyrolysis gasoline stream comprising paraffins; aromatizing the hydrotreated pyrolysis gasoline stream comprising paraffins, thereby producing a stream comprising benzene-toluene-xylenes (BTX); and processing the stream comprising BTX in an aromatics recovery complex, thereby producing the aromatic compounds from the pyrolysis gasoline.
    Type: Grant
    Filed: January 3, 2022
    Date of Patent: May 16, 2023
    Assignee: Saudi Arabian Oil Company
    Inventors: Noor Nasser Al-Mana, Zhonglin Zhang, Omer Refa Koseoglu, Sohel Shaikh
  • Patent number: 11648544
    Abstract: Disclosed are a bifunctional catalyst and a preparation method therefor, the bifunctional catalyst being suitable to produce high-value aromatic hydrocarbons by subjecting alkylaromatic hydrocarbons to a disproportionation/transalkylation/dealkylation reaction while suppressing aromatic loss or subjecting C8 aromatic hydrocarbons to an isomerization reaction while suppressing xylene loss.
    Type: Grant
    Filed: March 31, 2022
    Date of Patent: May 16, 2023
    Assignee: SK Innovation Co., Ltd.
    Inventors: Sang Il Lee, Ji Hoon Lee, Young Eun Cheon
  • Patent number: 11634371
    Abstract: A method for separating classes of hydrocarbon compounds from a feed stream including a hydrocarbon mixture is disclosed. The method includes the steps of passing a feed stream through a plurality of separation units arranged in a series in any order, wherein each separation unit has an adsorbent material; and separating classes of hydrocarbon compounds from the feed stream. When one of the plurality of separation units comprises an adsorbent material that is a metal organic framework selected from a zirconium, hafnium, cerium, or titanium-based metal organic framework, then another plurality of separation units includes an adsorption material that is different from the metal organic framework. The method is conducted in a liquid phase. The method can also use a single separation unit with a continuous cyclic bed apparatus. The method can be combined with refining and downstream processes.
    Type: Grant
    Filed: December 6, 2021
    Date of Patent: April 25, 2023
    Assignee: EXXONMOBIL TECHNOLOGY AND ENGINEERING COMPANY
    Inventors: Changyub Paek, Randall D. Partridge, Yogesh V. Joshi, Jayashree Kalyanaraman, Joseph M. Falkowski
  • Patent number: 11634370
    Abstract: The present disclosure relates to methods for selectively hydrogenating acetylene, to methods for starting up a selective hydrogenation reactor, and to hydrogenation catalysts useful in such methods. In one aspect, the disclosure provides a method for selectively hydrogenating acetylene, the method comprising contacting a catalyst composition with a process gas. The catalyst composition comprises a porous support, palladium, and one or more ionic liquids. The process gas includes ethylene, present in the process gas in an amount of at least 20 mol. %; acetylene, present in the process gas in an amount of at least 1 ppm; and 0 to 190 ppm or at least 600 ppm carbon monoxide. At least 90% of the acetylene present in the process gas is hydrogenated, and the selective hydrogenation is conducted without thermal runaway.
    Type: Grant
    Filed: October 22, 2019
    Date of Patent: April 25, 2023
    Assignee: Clariant International Ltd
    Inventors: Darren Adams, Mingyong Sun, Uwe Duerr, Denise Cooper, Brian Heasley, Ling Xu, Tina Clinton
  • Patent number: 11634649
    Abstract: Integrated pyrolysis and hydrocracking systems and processes for efficiently cracking of hydrocarbon mixtures, such as mixtures including compounds having a normal boiling temperature of greater than 450° C., 500° C., or even greater than 550° C., such as whole crudes for example, are disclosed.
    Type: Grant
    Filed: October 1, 2020
    Date of Patent: April 25, 2023
    Assignee: LUMMUS TECHNOLOGY LLC
    Inventors: Kandasamy Meenakshi Sundaram, Stephen J. Stanley, Ronald M. Venner, Ujjal K. Mukherjee
  • Patent number: 11629299
    Abstract: Petrochemical products may be produced from a hydrocarbon material by a process that may include separating the hydrocarbon material into at least a lesser boiling point fraction and a greater boiling point fraction, cracking the lesser boiling point fraction in a first reactor in the presence of a catalyst at a reaction temperature of from 500° C. to 700° C. to produce a first cracking reaction product, and cracking the greater boiling point fraction in a second reactor in the presence of the catalyst at a reaction temperature of from 500° C. to 700° C. to produce a second cracking reaction product. The hydrocarbon material may be crude oil. The first reactor may be a riser, and the second reactor may be a downer. The catalyst may be passed from the first reactor to the second reactor, from the second reactor to a regenerator, and from the regenerator to the first reactor, such that the catalyst is circulated between the first reactor, second reactor, and regenerator.
    Type: Grant
    Filed: January 7, 2022
    Date of Patent: April 18, 2023
    Assignee: Saudi Arabian Oil Company
    Inventors: Md Ashraful Islam, Abdennour Bourane, Juttu Gopal
  • Patent number: 11623902
    Abstract: The present disclosure relates to methods for selectively hydrogenating acetylene, to methods for starting up a selective hydrogenation reactor, and to hydrogenation catalysts useful in such methods. In one aspect, the disclosure provides a method for selectively hydrogenating acetylene, the method comprising contacting a catalyst composition with a process gas. The catalyst composition comprises a porous support, palladium, and one or more ionic liquids. The process gas includes ethylene, present in the process gas in an amount of at least 20 mol. %; and acetylene, present in the process gas in an amount of at least 1 ppm. At least 90% of the acetylene present in the process gas is hydrogenated, and the selective hydrogenation is conducted without thermal runaway. Notably, the process gas is contacted with the catalyst at a gas hourly space velocity (GHSV) based on total catalyst volume in one bed or multiple beds of at least 7,100 h?1.
    Type: Grant
    Filed: October 22, 2019
    Date of Patent: April 11, 2023
    Assignee: Clariant International Ltd
    Inventors: Darren Adams, Mingyong Sun, Uwe Duerr, Denise Cooper, Brian Heasley, Ling Xu, Tina Clinton
  • Patent number: 11572516
    Abstract: Processes for producing olefins include integration of steam cracking with a dual catalyst metathesis process. The processes include steam cracking a hydrocarbon feed to form a cracking reaction effluent containing butenes, separating the cracking reaction effluent to produce a cracking C4 effluent including normal butenes, isobutene, and 1,3-butadiene, subjecting the cracking C4 effluent to selective hydrogenation to convert 1,3-butadiene in the cracking C4 effluent to normal butenes, removing isobutene from a hydrogenation effluent to produce a metathesis feed containing normal butenes, and contacting the metathesis feed with a metathesis catalyst and a cracking catalyst directly downstream of the metathesis catalyst to produce a metathesis reaction effluent.
    Type: Grant
    Filed: March 26, 2020
    Date of Patent: February 7, 2023
    Assignee: Saudi Arabian Oil Company
    Inventors: Sohel K Shaikh, Raed H Abudawoud, Zhonglin Zhang, Munir D Khokhar, Furqan Aljumah
  • Patent number: 11547986
    Abstract: A method is disclosed for producing small crystal, high aluminum content zincoaluminosilicate crystalline materials having the SSZ-41 framework structure. The compositions made according to that method, as well as uses of the same, are also disclosed.
    Type: Grant
    Filed: March 14, 2022
    Date of Patent: January 10, 2023
    Assignee: CHEVRON U.S.A. INC.
    Inventors: Stacey Ian Zones, Cong-Yan Chen
  • Patent number: 11541377
    Abstract: A modified Y-type molecular sieve has a rare earth content of about 4-11% by weight on the basis of rare earth oxide, a sodium content of no more than about 0.5 wt % by weight on the basis of sodium oxide, a zinc content of about 0.5-5% by weight on the basis of zinc oxide, a phosphorus content of about 0.05-10% by weight on the basis of phosphorus pentoxide, a framework silica-alumina ratio of about 7-14 calculated on the basis of SiO2/Al2O3 molar ratio, a percentage of non-framework aluminum content to the total aluminum content of no more than about 10%, and a percentage of the pore volume of secondary pores having a pore size of 2-100 nm to the total pore volume of about 20-40%. The modified Y-type molecular sieve has a high crystallinity and a high thermal and hydrothermal stability, and is rich in secondary pores.
    Type: Grant
    Filed: August 20, 2019
    Date of Patent: January 3, 2023
    Assignees: CHINA PETROLEUM & CHEMICAL CORPORATION, RESEARCH INSTITUTE OF PETROLEUM PROCESSING, SINOPEC
    Inventors: Hao Sha, Lingping Zhou, Shuai Yuan, Weilin Zhang, Zhenyu Chen, Mingde Xu, Huiping Tian
  • Patent number: 11534715
    Abstract: Provided is a dust cover having excellent moisture control performance which is applied to a car lamp. The dust cover having excellent moisture control performance has excellent lamp humidity adjustment ability, and thus, efficiently removes moisture present inside to prevent moisture dew condensation due to a rapid temperature difference beforehand, and furthermore, maintains humidity inside the lamp low to prevent corrosion or malfunction of mounted components.
    Type: Grant
    Filed: September 4, 2020
    Date of Patent: December 27, 2022
    Assignee: DesiKhan Co., Ltd.
    Inventors: Nak Cheon Choi, Eun Young Park, Jong Hyup Kim
  • Patent number: 11498887
    Abstract: The present invention relates to a process for producing a diene, preferably a conjugated diene, more preferably 1,3-butadiene, comprising the dehydration of at least one alkenol having a number of carbon atoms greater than or equal to 4, in the presence of a catalytic material comprising at least one crystalline metalosilicate in acid form, preferably a macroporous zeolite, more preferably a zeolite with a FAU, BEA or MTW structure. Preferably, said alkenol having a number of carbon atoms greater than or equal to 4 may be obbtained directly through biosynthetic processes, or through catalytic dehydration processes of at least one diol. When said alkenol is a butenol, said diol is preferably a butanediol, more preferably 1,3-butanediol, even more preferably bio-1,3-butanediol, i.e. 1,3-butanediol deriving from biosynthetic processes.
    Type: Grant
    Filed: October 18, 2017
    Date of Patent: November 15, 2022
    Assignee: Versalis S.P.A.
    Inventors: Daniele Delledonne, Alberto Cesana, Marco Mattachini, Monica Vittoria Pastori
  • Patent number: 11498058
    Abstract: The present application discloses a supported PtZn intermetallic alloy catalyst, a method for preparing the same and application thereof. The catalyst uses SiO2 as a support and Zn as a promoter, and a small amount of active component Pt is supported; the weight percentage of Pt is 0.025%-1%, and the weight percentage of Zn is 0.025%-1.7%, a co-impregnation method is adopted in preparation, the SiO2 support is impregnated in aqueous solution of chloroplatinic acid and zinc nitrate, and then drying and high-temperature reduction are performed to obtain a PtZn/SiO2 catalyst. The catalyst has the advantages of high activity, high stability, low price and low toxicity. The catalyst provided by the present application is applicable to preparation of alkene through short-chain alkane dehydrogenation, in particular to preparation of propylene through propane dehydrogenation in a hydrogen atmosphere.
    Type: Grant
    Filed: November 21, 2019
    Date of Patent: November 15, 2022
    Assignee: Tianjin University
    Inventors: Jinlong Gong, Sai Chen, Liang Zeng
  • Patent number: 11452997
    Abstract: Isobutanol may be converted into predominantly C12+ olefin oligomers under specified conditions. Such methods may comprise: contacting a feed comprising isobutanol with a zeolite solid acid catalyst having a MWW framework under conditions effective to convert the isobutanol into a product comprising C4n olefin oligomers, wherein n is an integer having a value of two or greater and about 80 wt. % or greater of the C4n olefin oligomers are larger than C8.
    Type: Grant
    Filed: December 29, 2020
    Date of Patent: September 27, 2022
    Assignee: EXXONMOBIL TECHNOLOGY AND ENGINEERING COMPANY
    Inventors: Jihad M Dakka, Patrick L Hanks, Brandon M Carcuffe, Cynthia F Omilian, Ralph C DeHaas, Arsam Behkish
  • Patent number: 11453829
    Abstract: The invention relates to a process for the production of C6-C7 aromatic compounds from a hydrocarbon feedstock of naphtha type comprising a step of fractionating (2) the feedstock in order to obtain an upper stream and a lower stream, a step of catalytic reforming of the upper stream (6) and of the lower stream (9), a step of recombining (15) the reformate effluents obtained, a step of recontacting (16) and a step of stabilizing (19) the stabilized reformate effluents and a step of separating (22) the raffinate in order to recover C6 and C7 hydrocarbon compounds.
    Type: Grant
    Filed: November 16, 2018
    Date of Patent: September 27, 2022
    Assignee: IFP Energies nouvelles
    Inventors: Celine Bertino-Ghera, Alexandre Pagot
  • Patent number: 11439991
    Abstract: Processes for aromatizing hydrocarbons include contacting the hydrocarbons with a catalyst composition comprising a metal oxide dispersed on a surface of a zeolite support, where contacting the hydrocarbons with the catalyst composition causes at least a portion of the hydrocarbons to undergo a chemical reaction to form aromatic hydrocarbons. The catalyst composition is prepared by a synthesis process that includes combining the zeolite support with a hydrocarbon solvent to form a zeolite mixture, where the hydrocarbon solvent pre-wets the pores of the zeolite support. The synthesis process further includes combining a polar solvent comprising a metal salt with the zeolite mixture to form an impregnated zeolite support. The synthesis process also includes drying the impregnated zeolite support and calcining the impregnated zeolite support to convert the metal salt to the metal oxide, thereby forming the catalyst composition.
    Type: Grant
    Filed: December 19, 2019
    Date of Patent: September 13, 2022
    Assignees: King Fahd University of Petroleum & Minerals, Saudi Arabian Oil Company
    Inventors: Palani Arudra, Abdullah M. Aitani, Yaming Jin, Omer Refa Koseoglu, Muhammad Naseem Akhtar