Alkane Patents (Class 562/549)
  • Patent number: 11779905
    Abstract: The present invention relates to catalyst compositions containing a mixed oxide catalyst of formula (I) or formula (II) as described herein, their preparation, and their use in a process for ammoxidation of various organic compounds to their corresponding nitriles and to the selective catalytic oxidation of excess NH3 present in effluent gas streams to N2 and/or NOx.
    Type: Grant
    Filed: January 29, 2021
    Date of Patent: October 10, 2023
    Assignee: Ascend Performance Materials Operations LLC
    Inventors: Yawu T. Chi, Scott G. Moffatt, Mikhail Khramov, Ranjeeth Reddy Kalluri, Bruce F. Monzyk, Soundar Ramchandran, Marty Alan Lail, Maruthi Sreekanth Pavani
  • Patent number: 11440865
    Abstract: Processes for converting a hydrocarbon reactant into an alcohol compound and/or a carbonyl compound are disclosed, and these processes include the steps of forming a supported chromium catalyst comprising chromium in a hexavalent oxidation state, irradiating the hydrocarbon reactant and the supported chromium catalyst with a light beam at a wavelength in the UV-visible spectrum to reduce at least a portion of the supported chromium catalyst to form a reduced chromium catalyst, and hydrolyzing the reduced chromium catalyst to form a reaction product comprising the alcohol compound and/or the carbonyl compound. The supported chromium catalyst can be formed by heat treating a supported chromium precursor, contacting a chromium precursor with a solid support while heat treating, or heat treating a solid support and then contacting a chromium precursor with the solid support.
    Type: Grant
    Filed: October 14, 2021
    Date of Patent: September 13, 2022
    Assignee: Chevron Phillips Chemical Company, LP
    Inventors: Carlos A. Cruz, Masud M. Monwar, Max P. McDaniel, Jared L. Barr, Kathy S. Clear, William C. Ellis
  • Patent number: 11413604
    Abstract: Provided in this disclosure are catalyst compositions. The catalyst compositions include an oxidative dehydrogenation catalyst that includes a mixed metal oxide having the empirical formula: Mo1.0V0.12-0.49Te0.05-0.17Nb0.10-0.20AlcOd wherein c is from 0 to 2.0 and d is a number to satisfy the valence of the oxide. The compositions are at least 40 wt. % amorphous as measured by XRD. The disclosure also provides methods of making the compositions.
    Type: Grant
    Filed: August 1, 2019
    Date of Patent: August 16, 2022
    Assignee: NOVA Chemicals (International) S.A.
    Inventors: Vasily Simanzhenkov, Xiaoliang Gao, Marie Barnes, David Sullivan, Yoonhee Kim
  • Patent number: 11180435
    Abstract: Processes for converting a hydrocarbon reactant into an alcohol compound and/or a carbonyl compound are disclosed, and these processes include the steps of forming a supported chromium catalyst comprising chromium in a hexavalent oxidation state, irradiating the hydrocarbon reactant and the supported chromium catalyst with a light beam at a wavelength in the UV-visible spectrum to reduce at least a portion of the supported chromium catalyst to form a reduced chromium catalyst, and hydrolyzing the reduced chromium catalyst to form a reaction product comprising the alcohol compound and/or the carbonyl compound. The supported chromium catalyst can be formed by heat treating a supported chromium precursor, contacting a chromium precursor with a solid support while heat treating, or heat treating a solid support and then contacting a chromium precursor with the solid support.
    Type: Grant
    Filed: September 14, 2020
    Date of Patent: November 23, 2021
    Assignee: Chevron Phillips Chemical Company, LP
    Inventors: Carlos A. Cruz, Masud M. Monwar, Max P. McDaniel, Jared L. Barr, Kathy S. Clear, William C. Ellis
  • Patent number: 9616415
    Abstract: A process for producing a catalyst for the (amm)oxidation of alkanes comprises calcination of a crystalline mixed metal oxide catalyst partially or wholly in the presence of steam.
    Type: Grant
    Filed: March 21, 2012
    Date of Patent: April 11, 2017
    Assignee: ROHM AND HAAS COMPANY
    Inventor: Jinsuo Xu
  • Patent number: 9428454
    Abstract: A process for the complete or partial oxygenation of hydrocarbons comprises contacting a C1-C8 hydrocarbon, molecular oxygen, and hydrogen peroxide, in the presence of water and a heterogeneous catalyst, under conditions suitable to convert the C1-C8 hydrocarbon to at least one corresponding C1-C8 oxygenate product, wherein the heterogeneous catalyst provides confinement and contains both Brønsted-Lowry acid centers and Lewis acid centers. The reaction may be carried out at a temperature ranging from 2° C. to 90° C. The use of molecular oxygen increases the economic attractiveness of the process while also improving yield.
    Type: Grant
    Filed: October 3, 2012
    Date of Patent: August 30, 2016
    Assignee: University College Cardiff Consultants Limited
    Inventors: Graham J. Hutchings, Michael M. Forde, Jose A. Lopez-Sanchez, Nikolaos Dimitratos
  • Patent number: 9144786
    Abstract: A catalyst, its method of preparation and its use for producing aliphatic ketones by subjecting alkanes C3 to C9 to a gas phase catalytic oxidation in the presence of air or oxygen, and, optionally, steam and/or one or more diluting gases. The catalyst comprises a catalytically active mixed metal oxide phase and a suitable support material onto and/or into which the active catalytic phase is dispersed.
    Type: Grant
    Filed: January 22, 2015
    Date of Patent: September 29, 2015
    Assignee: Ever Nu Technology, LLC
    Inventors: Manhua Lin, Xiang Wang, Younghoon Yeom
  • Publication number: 20150148563
    Abstract: A catalyst material for the oxidation and/or oxidative dehydrogenation of hydrocarbons, in particular for the selective oxidation of propane to acrylic acid, is specified, comprising a) molybdenum (Mo), b) vanadium (V), c) niobium (Nb), d) tellurium (Te), e) nickel (Ni), f) tungsten (W) and g) manganese (Mn), in which the molar ratio of at least one element, which is selected from nickel, tungsten and manganese, to molybdenum lies in the range 0.01 to 0.2, more preferably 0.05 to 0.15 and particularly preferably from 0.0025:1 to 0.3:1. Furthermore, a catalyst for the oxidation and/or oxidative dehydrogenation of hydrocarbons, a use of the catalyst material or of the catalyst, a method for producing a catalyst material for the oxidation and/or oxidative dehydrogenation of hydrocarbons and a method for the selective oxidation of propane to acrylic acid is specified.
    Type: Application
    Filed: August 8, 2012
    Publication date: May 28, 2015
    Applicant: CLARIANT PRODUKTE (DEUTSCHLAND) GMBH
    Inventors: Alfred Hagemeyer, Gerhard Mestl, Silvia Neumann, Jozsef Margitfalvi, Andras Tompos, Lajos Istvan Vegvari
  • Patent number: 9024062
    Abstract: The amount of propionic acid produced in the process of oxidizing propane to acrylic acid is reduced by using a reactor with a length/diameter ratio >10 and/or maintaining the difference between the target reaction temperature and the peak temperature within the reactor to less than 20° C.
    Type: Grant
    Filed: December 7, 2011
    Date of Patent: May 5, 2015
    Assignee: Rohm and Haas Company
    Inventors: Scott Han, Christopher Frick, Daniel J. Martenak
  • Patent number: 9000207
    Abstract: A method for producing a silica-supported catalyst comprising Mo, V. Nb, and a component X (Sb and/or Te) to be used in a vapor phase catalytic oxidation or ammoxidation of proprane, comprising the steps of: (I) preparing a raw material mixture solution by mixing Mo, V, Nb, component X, a silica sol, and water; (II) obtaining a dry powder by drying the raw material mixture solution; and (III) obtaining a silica-supported catalyst by calcining the dry powder, wherein the silica sol contains 10 to 270 wt ppm of nitrate ions based on SiO2.
    Type: Grant
    Filed: May 22, 2014
    Date of Patent: April 7, 2015
    Assignee: Asahi Kasei Chemicals Corporation
    Inventors: Yusuke Ishii, Takaaki Kato
  • Publication number: 20150045582
    Abstract: A process comprising catalytically converting ethane to ethylene and acetic acid in the presence of oxygen at a temperature of 450° C. or less in the gas phase wherein the catalyst has the empirical formula MoVaNbbTecZdOn.
    Type: Application
    Filed: February 12, 2013
    Publication date: February 12, 2015
    Inventors: Scott Han, Christopher D. Frick, Daniel J. Martenak
  • Publication number: 20140336411
    Abstract: A catalyst material for the oxidation and/or oxidative dehydrogenation of hydrocarbons, in particular for the selective oxidation of propane to acrylic acid, comprising a) molybdenum (Mo), b) vanadium (V), c) niobium (Nb), d) tellurium (Te), e) manganese (Mn) and cobalt, in which the molar ratio of at least one element, which is selected from manganese and cobalt, to molybdenum lies in the range 0.01 to 0.2. Furthermore, a catalyst for the oxidation and/or oxidative dehydrogenation of hydrocarbons, a use of the catalyst material or of the catalyst, a method for producing a catalyst material for the oxidation and/or oxidative dehydrogenation of hydrocarbons, and a method for the selective oxidation of propane to acrylic acid.
    Type: Application
    Filed: August 9, 2012
    Publication date: November 13, 2014
    Applicant: Clariant Produkte (Deutschland) GmbH
    Inventors: Alfred Hagemeyer, Gerhard Mestl, Silvia Neumann, Andras Tompos, Jozsef Margitfalvi, Lajos Istvan Vegvari
  • Publication number: 20140303400
    Abstract: A process for the complete or partial oxygenation of hydrocarbons comprises contacting a C1-C8 hydrocarbon, molecular oxygen, and hydrogen peroxide, in the presence of water and a heterogeneous catalyst, under conditions suitable to convert the C1-C8 hydrocarbon to at least one corresponding C1-C8 oxygenate product, wherein the heterogeneous catalyst provides confinement and contains both Brønsted-Lowry acid centers and Lewis acid centers. The reaction may be carried out at a temperature ranging from 2° C. to 90° C. The use of molecular oxygen increases the economic attractiveness of the process while also improving yield.
    Type: Application
    Filed: October 3, 2012
    Publication date: October 9, 2014
    Applicant: UNIVERSITY COLLEGE CARDIFF CONSULTANTS LIMITED
    Inventors: Graham J. Hutchings, Michael M. Forde, Jose A. Lopez - Sanchez, Nikolaos Dimitratos
  • Publication number: 20140235893
    Abstract: The invention relates to the development of a catalyst for selectively producing acetic acid from a gaseous feedstock of ethane, ethylene or mixtures thereof and oxygen at a low temperature. Said gaseous feedstock is brought together with a catalyst containing the oxides of Mo, V and Nb and nano metallic Pd optionally together with a hetero-poly acid and/or Sb and Ca. The present catalytic system provides both higher selectivity and yield of acetic with minimal production of side products of ethylene and CO.
    Type: Application
    Filed: February 21, 2013
    Publication date: August 21, 2014
    Applicants: KING ABDULAZIZ CITY FOR SCIENCE AND TECHNOLOGY, KING SAUD UNIVERSITY
    Inventors: Yousef S. Al-Zeghayer, Moustafa A. Soliman, Sulaiman Al-Mayman, Abdulrhman S. Al-Awadi
  • Publication number: 20140031585
    Abstract: A process for producing a catalyst for the (amm)oxidation of alkanes comprises calcination of a crystalline mixed metal oxide catalyst partially or wholly in the presence of steam.
    Type: Application
    Filed: March 21, 2012
    Publication date: January 30, 2014
    Applicant: Rohm and Haas Company
    Inventor: Jinsuo Xu
  • Publication number: 20130338378
    Abstract: The invention relates to a shaped catalyst body for the catalytic conversion of organic and inorganic components in fixed-bed reactors, wherein the shaped catalyst body is formed as cylinder with a base, a cylinder surface, a cylinder axis and at least one continuous opening running parallel to the cylinder axis, and the base of the cylinder has at least four corners.
    Type: Application
    Filed: November 22, 2011
    Publication date: December 19, 2013
    Inventors: Andreas Reitzmann, Willi Michael Brandstädter, Leopold Streifinger, Marvin Estenfelder
  • Publication number: 20130324761
    Abstract: A process for the complete or partial oxidation of hydrocarbons comprises contacting a C1-C8 hydrocarbon and hydrogen peroxide in the presence of a heterogeneous catalyst under conditions suitable to convert the C1-C8 hydrocarbon to at least one corresponding C1-C8 oxygenate product, wherein the heterogeneous catalyst provides confinement and contains both Brønsted-Lowry and Lewis acid centers. Examples include zeolites modified with selected metals or metal oxides. Including copper, either in the catalyst, in a second catalyst of similar description, or as a homogeneous salt, increases both selectivity and activity of the process, particularly where an iron-containing catalyst is used.
    Type: Application
    Filed: February 2, 2011
    Publication date: December 5, 2013
    Applicant: University College Cardiff Consulltants Limited
    Inventors: Graham John Hutchings, Jose Antonio Lopez-Sanchez, Ceri Hammond, Nikolaos Dimitratos, Nicholas Fracois Dummer
  • Publication number: 20130324758
    Abstract: The present invention relates to the selective elimination of propanal in acrolein-rich streams to produce acrolein and/or acrylic acid and/or acrylonitrile and/or methylmercaptopropionaldehyde containing low amount of propanal and/or propionic acid and/or propionitrile. One subject of the present invention is a process for manufacturing acrolein comprising a step of selective elimination of propanal in an acrolein-rich stream in contact with a catalyst comprising at least molybdenum. Another subject of the present invention is a process for manufacturing acrylic acid from glycerol including a step of selective elimination of propanal in an acrolein-rich stream in contact with a catalyst comprising at least molybdenum.
    Type: Application
    Filed: January 26, 2012
    Publication date: December 5, 2013
    Applicant: Arkema France
    Inventors: Jean-Francois Devaux, Jean-Luc Dubois
  • Publication number: 20130317253
    Abstract: The present invention relates to a method and apparatus for continuous recovery of (meth)acrylic acid, and more specifically to a method of continuous recovery of (meth)acrylic acid, including: conducting gas phase oxidation of at least one compound selected from the group consisting of propane, propylene, butane, i-butylene, t-butylene, and (meth)acrolein in the presence of a catalyst to obtain a mixed gas containing (meth)acrylic acid; quenching the (meth)acrylic acid-containing mixed gas to remove high boiling point by-products in the (meth)acrylic acid-containing mixed gas; contacting the high boiling point by-product-free (meth)acrylic acid-containing mixed gas with water or an aqueous solution to obtain an aqueous solution containing (meth)acrylic acid; and purifying the aqueous solution containing (meth)acrylic acid to obtain (meth)acrylic acid.
    Type: Application
    Filed: July 29, 2013
    Publication date: November 28, 2013
    Applicant: LG Chem, Ltd.
    Inventors: Se-Won Baek, Hyun-Kyu Kim, Dong-Hyun Cho, Jun-Seok Ko
  • Publication number: 20130274509
    Abstract: The amount of propionic acid produced in the process of oxidizing propane to acrylic acid is reduced by using a reactor with a length/diameter ratio >10 and/or maintaining the difference between the target reaction temperature and the peak temperature within the reactor to less than 20° C.
    Type: Application
    Filed: December 7, 2011
    Publication date: October 17, 2013
    Inventors: Scott Han, Christopher Frick, Daniel J. Martenak
  • Publication number: 20130267735
    Abstract: Less propionic acid is produced as a by-product in a process for the direct oxidation of propane to acrylic acid, the process comprising the step of contacting under oxidation conditions a gaseous mixture comprising (i) propane, (ii) oxygen, (iii) steam and (iv) a diluent gas, with a propane oxidation catalyst by reducing the steam content of the gaseous mixture.
    Type: Application
    Filed: December 7, 2011
    Publication date: October 10, 2013
    Inventors: Scott Han, Christoher Frick, Daniel J. Martenak, Nelson Quiros
  • Publication number: 20130253217
    Abstract: A method for producing a complex oxide catalyst containing a complex oxide represented by the formula: Mo1VaSbbNbcWdZeOn (wherein a component Z represents an element such as La, Ce, Pr, Yb, Y, Sc, Sr, and Ba; a, b, c, d, e, and n each represent an atomic ratio of an element to one Mo atom; 0.1?a?0.4, 0.1?b?0.4, 0.01?c?0.3, 0?d?0.2, and 0?e?0.1; an atomic ratio a/b is 0.85?a/b<1.0, and an atomic ratio a/c is 1.4<a/c<2.3.
    Type: Application
    Filed: December 27, 2011
    Publication date: September 26, 2013
    Applicant: ASAHI KASEI CHEMICALS CORPORATION
    Inventors: Yusuke Ishii, Takaaki Kato
  • Patent number: 8536374
    Abstract: The present invention relates to a method for preparing dicarboxylic acids from saturated and cycloaliphatic hydrocarbons by oxidation at a reaction temperature comprised in the range of 25 to 300° C. in an autoclave using a solid heterogeneous catalyst. More particularly, the method of the invention relates to a method for preparing adipic acid (AA) from cyclohexane (CH) by selective oxidation.
    Type: Grant
    Filed: October 10, 2011
    Date of Patent: September 17, 2013
    Assignee: King Abdulaziz City for Science and Technology
    Inventors: Ahmad Alshammari, Narayana Venkata Kalevaru, Angela Koeckritz, Andreas Martin
  • Publication number: 20130225862
    Abstract: Disclosed is a process for producing an oxide catalyst for use in the gas-phase catalytic oxidation reaction or the like of propane or the like, the process comprising the steps of: (I) obtaining a preparation containing compounds of Mo, V, Nb, and Sb or Te at the predetermined atomic ratios; (II) drying the preparation to obtain a dry powder; and (III) calcining the dry powder, wherein the step (III) comprises the step of calcining the dry powder in the presence of a compound containing W in the form of a solid to obtain a pre-stage calcined powder or a mainly calcined powder, or the step of calcining the dry powder and calcining the obtained pre-stage calcined powder in the presence of the solid to obtain a mainly calcined powder, the solid satisfies the predetermined conditions, and the oxide catalyst comprises a catalytic component having the predetermined composition.
    Type: Application
    Filed: October 3, 2011
    Publication date: August 29, 2013
    Applicant: ASAHI KASEI CHEMICALS CORPORATION
    Inventors: Eri Tateno, Takeo Ichihara, Takaaki Kato
  • Patent number: 8507626
    Abstract: The invention provides a catalyst for producing acrylic acid at high yield for a long time, in a method for producing acrylic acid by catalytic gas phase oxidation of propane and/or acrolein in the presence of molecular oxygen or a molecular oxygen-containing gas. This catalyst comprises a complex oxide containing molybdenum, vanadium and X component (here the X component is at least one element selected from antimony, niobium and tin) as the essential components, and is characterized in that its main peak as measured by X-ray diffractiometry using K? ray of Cu, d=4.00±0.1 angstrom, and in that the particle size of the X component in the catalyst does not exceed 20 ?m.
    Type: Grant
    Filed: May 28, 2008
    Date of Patent: August 13, 2013
    Assignee: Nippon Shokubai Co., Ltd.
    Inventors: Naohiro Fukumoto, Toshiya Nishiguchi
  • Publication number: 20130203984
    Abstract: In a process for oxidizing a hydrocarbon to a product comprising at least one of the corresponding hydroperoxide, alcohol, ketone, carboxylic acid and dicarboxylic acid, the hydrocarbon is contacted with an oxygen-containing compound in at least one oxidation zone in the presence of a catalyst comprising a cyclic imide having an imide group of formula (I): wherein X represents an oxygen atom, a hydroxyl group, or an acyloxy group and wherein the oxygen-containing compound supplied to said at least one oxidation zone has a water content of less than or equal to 0.6% by weight of the oxygen-containing compound.
    Type: Application
    Filed: August 16, 2011
    Publication date: August 8, 2013
    Inventors: Christopher L. Becker, Jihad M. Dakka, Franisco M. Benitez, Edmund J. Mozeleski
  • Publication number: 20130172577
    Abstract: A process for producing a ringlike oxidic shaped body by mechanically compacting a pulverulent aggregate introduced into the fill chamber of a die, wherein the outer face of the resulting compact corresponds to that of a frustocone.
    Type: Application
    Filed: February 28, 2013
    Publication date: July 4, 2013
    Applicant: BASF SE
    Inventor: BASF SE
  • Publication number: 20130144085
    Abstract: Catalyst compositions including a compound of the following general formula (I): MoVaNbbPtcMdZeOx??(I) a is a number having a value between about 0.15 and about 0.50, b is a number having a value between about 0.05 and about 0.30, c is a number having a value between about 0.0001 and about 0.10, d is a number having a value between about 0.0 and about 0.35, e is a number having a value between about 0 and about 0.10, x is a number depending on the relative amount and valence of the elements different from oxygen in formula (I), M is one or more elements selected from the group consisting of Ag, Te, and Sb, and Z is one or more element selected from Ru, Mn, Sc, Ti, Cr, Fe, Co, Ni, Cu, Zn, Ga, Y, Zr, Rh, Pd, In, Ce, Pr, Nd, Sm, Tb, Ta, W, Re, Ir, Au, Pb, B, and mixtures thereof, where the compositions are capable of simultaneously oxidizing an alkane to a desired product and by-product carbon monoxide to carbon dioxide, with only a minor change in catalyst activity and selectivity.
    Type: Application
    Filed: December 2, 2011
    Publication date: June 6, 2013
    Inventors: Paulette Hazin, Reginald L. Tennyson, Michael E. Huckman
  • Patent number: 8426638
    Abstract: Described herein is a process in which acetic acid is produced by ethane oxidation. One byproduct of the ethane oxidation is water, which is commonly removed from the process in the same stream as the acetic acid process. As described herein, the ethane oxidation reactor effluent is processed in a predehydration tower so as to separately recover water, acetic acid, and a gas stream for recycle back to the ethane oxidation reactor.
    Type: Grant
    Filed: January 30, 2007
    Date of Patent: April 23, 2013
    Assignee: Celanese International Corp.
    Inventors: C. V. McSwain, George C. Seaman
  • Publication number: 20130090495
    Abstract: A process for the complete or partial oxidation of hydrocarbons comprises contacting a C1-C8 hydrocarbon and hydrogen peroxide in the presence of a heterogeneous catalyst under conditions suitable to convert the C1-C8 hydrocarbon to at least one corresponding C1-C8 oxygenate product, wherein the heterogeneous catalyst provides confinement and contains both Brønsted-Lowry and Lewis acid centers. Particularly useful catalysts may include, for example, metal-modified ZSM-5 and other zeolites.
    Type: Application
    Filed: June 25, 2010
    Publication date: April 11, 2013
    Inventors: Graham John Hutchings, Jose Antonio Lopez-Sanchez, Ceri Hammond, Nikolaos Dimitratos, Nicholas Fracois Dummer
  • Patent number: 8338640
    Abstract: A process for heterogeneously catalyzed partial direct oxidation of propane and/or isobutane, in which target product is removed in a workup stage from the product gas mixture obtained in the reaction stage, the remaining residual product gas mixture is divided into two portions of the same composition, one portion is recycled into the reaction stage and the other portion is discharged, and both the reaction stage and the workup stage are operated at elevated pressure.
    Type: Grant
    Filed: April 2, 2004
    Date of Patent: December 25, 2012
    Assignee: BASF Aktiengesellschaft
    Inventors: Otto Machhammer, Sven Crone, Frieder Borgmeier, Klaus Joachim Mueller-Engel, Christoph Adami, Armin Diefenbacher
  • Patent number: 8329942
    Abstract: A method for producing an unsaturated aldehyde and an unsaturated carboxylic acid through gas-phase catalytic oxidation of propylene, isobutylene or tertiary butanol, which is a raw material, with molecular oxygen in the presence of a catalyst comprising a complex oxide including molybdenum, bismuth and iron as essential components, by controlling the molar ratio of oxygen to the raw material such that a rate of reaction of the raw material is kept constant in the temperature range of from (TA-15)° C. to TA° C., where TA° C. is the boundary temperature of the activation energy of the catalyst.
    Type: Grant
    Filed: March 23, 2012
    Date of Patent: December 11, 2012
    Assignee: Mitsubishi Rayon Co., Ltd.
    Inventors: Masahide Kondo, Seiichi Kawato-ku, Toru Kuroda
  • Patent number: 8193387
    Abstract: A one-step vapor phase oxidation process produces an unsaturated carboxylic acid, such as acrylic acid or methacrylic acid, from an alkane, such as propane or isobutane, with a mixed metal oxide catalyst and an excess of alkane relative to oxygen. The unreacted alkane and the byproduct alkene are recycled to the reaction zone without separation. Overall yield and productivity of the unsaturated carboxylic improves for such a process. An analogous method for the preparation of unsaturated nitrites is also disclosed.
    Type: Grant
    Filed: April 16, 2009
    Date of Patent: June 5, 2012
    Assignee: Saudi Basic Industries Corporation
    Inventors: Paulette N. Hazin, Frederick Merrill Galloway, John S. Ledford, Andy H. Nuyen
  • Patent number: 8137591
    Abstract: The present invention relates to a catalyst composition for preparing carbon nanotube containing multi-component support materials of amorphous Si, Mg and Al as well as a bulk scale preparation process for preparing carbon nanotube using said catalyst composition. More specifically, this invention relates to a process for preparing carbon nanotube using the catalyst composition comprising a transition metal catalyst and support materials of amorphous Si, Mg and Al.
    Type: Grant
    Filed: September 29, 2009
    Date of Patent: March 20, 2012
    Assignee: Korea Kumho Petrochemical Co., Ltd.
    Inventors: Dong Hwan Kim, Sang-Hyo Ryu, Wan Sung Lee, Namsun Choi, Hyun-Kyung Sung, Youngchan Jang
  • Publication number: 20110288325
    Abstract: Disclosed is a silica-supported catalyst having excellent wear resistance, by which an object product can be obtained with excellent yield. Specifically disclosed is a method for producing a silica-supported catalyst which contains Mo, V, Nb and component X (that is Sb and/or Te), and is used in a vapor-phase catalytic oxidation reaction or vapor-phase catalytic ammoxidation reaction of propane. The method for producing a silica-supported catalyst comprises: (I) a step wherein Mo, V, Nb, component X, a silica sol and water are mixed, thereby preparing a starting material blended solution; (II) a step wherein the starting material blended solution is dried, thereby obtaining a dried powder; and (III) a step wherein the dried powder is tired, thereby obtaining a silica-supported catalyst. In the method for producing a silica-supported catalyst, the silica sol contains 10-270 ppm by weight of nitrate ions relative to SiO2.
    Type: Application
    Filed: January 21, 2010
    Publication date: November 24, 2011
    Inventors: Yusuke Ishii, Takaaki Kato
  • Patent number: 8013185
    Abstract: The present invention provides a method for preparing unsaturated aldehydes and/or unsaturated fatty acids from olefins using a fixed-bed catalytic partial oxidation reactor, in particular, a start-up method upon packing with catalysts and initiating the reaction, and a process for producing unsaturated aldehydes and/or unsaturated fatty acids with high yield.
    Type: Grant
    Filed: April 3, 2008
    Date of Patent: September 6, 2011
    Assignee: LG Chem, Ltd.
    Inventors: Jun-Seok Ko, Kyoung-Su Ha, Sung-Kyoo Park, Sung-Soo Park, Se-Won Baek, Dong-Hyun Woo, Seong-Jin Kim
  • Publication number: 20110184191
    Abstract: Two zone (11, 12; 21, 22; 31, 32; 41, 42) fluidized bed reactor (10, 20, 30, 40), wherein the upper zone (11, 21, 31, 41) presents a different section than the lower zone (12, 22, 32, 42). In one of the two zones (11, 12; 21, 22; 31, 32; 41, 42), a zone of reducing atmosphere is created and, in the other zone, a zone of oxidising atmosphere is created. In a preferred embodiment, the section of the upper zone (11, 21, 31, 41) is larger than that of the lower zone (12, 22, 32, 42), creating a reducing atmosphere in the upper zone (11, 21, 31, 41) and an oxidising atmosphere in the lower zone (12, 22, 32, 42). Rows of flow distributor tubes exist in the upper zone (11, 21, 31, 41) to avoid the appearance of dead zones.
    Type: Application
    Filed: June 19, 2009
    Publication date: July 28, 2011
    Applicant: UNIVERSIDAD DE ZARAGOZA
    Inventors: Miguel Menéndez Sastre, Javier Herguido Huerta, Carlos Téllez Ariso, Jaime Soler Herrero, Maria Pilar Gimeno Tolosa
  • Publication number: 20110178332
    Abstract: The present invention provides a catalyst for use in gas-phase contact oxidation of hydrocarbon with an improved yield and selectivity, a preparation method thereof, and a method of a gas-phase oxidation of the hydrocarbon using the same. The catalyst comprises a composite metal oxide of Mo, V, Te and Nb; and a tungsten or tungsten oxide attached to the composite metal oxide, wherein an atomic molar ratio of the tungsten attached to the composite metal oxide to the molybdenum contained in the composite metal oxide ranges from 0.00001:1 to 0.02:1.
    Type: Application
    Filed: June 9, 2009
    Publication date: July 21, 2011
    Applicants: LG CHEM, LTD, SNU R&DB FOUNDATION
    Inventors: Jin-Do Kim, Kyong-Yong Cha, Bu-Young Jo, Sang-Heup Moon
  • Publication number: 20110178333
    Abstract: The present invention provides a catalyst for use in gas-phase contact oxidation of hydrocarbon with an improved yield and selectivity, a preparation method thereof, and a method of a gas-phase oxidation of the hydrocarbon using the same. The catalyst comprises a composite metal oxide of Mo, V, Te and Nb; and a palladium or palladium oxide attached to the composite metal oxide, wherein an atomic molar ratio of the palladium attached to the composite metal oxide to the molybdenum contained in the composite metal oxide ranges from 0.00001:1 to 0.02:1.
    Type: Application
    Filed: June 9, 2009
    Publication date: July 21, 2011
    Applicants: LG CHEM, LTD., SNU R&DB FOUNDATION
    Inventors: Jin-Do Kim, Kyong-Yong Cha, Sang-Seop Kum, Sang-Heup Moon
  • Publication number: 20110166384
    Abstract: A catalyst for producing acrylic acid from propane and/or acrolein by gas-phase catalytic oxidation with molecular oxygen-containing gas, comprising a catalytic active component containing molybdenum and vanadium as essential elements, and having a crystallinity T of 5% or more and 20% or less in the 20 range of 5° to 90°, measured by an X-ray diffraction analysis with Cu-K? radiation; and a process for producing acrylic acid by gas-phase catalytic oxidation of propane and/or acrolein with molecular oxygen, comprising the step of conducting the gas-phase catalytic oxidation in the presence of the catalyst. According to the catalyst and the process for producing acrylic acid of the present invention, it is possible to stably produce acrylic acid at a high yield for a long period.
    Type: Application
    Filed: September 25, 2009
    Publication date: July 7, 2011
    Inventors: Michio Tanimoto, Nobuyuki Hakozaki
  • Publication number: 20110150743
    Abstract: The invention relates to a hydrocyanic acid containing bioresource carbon, and to a method for producing a raw material mainly containing the same by reacting ammonia with methane or methanol optionally in the presence of air and/or oxygen, characterized in that at least one of the reagents selected from ammonia, methane and methanol is obtained from a biomass. The invention also relates to the uses of the raw material for producing acetone cyanohydrin, adiponitrile, methionine or methionine hydroxyl-analog, and sodium cyanide.
    Type: Application
    Filed: May 19, 2009
    Publication date: June 23, 2011
    Applicant: Arkema France
    Inventor: Jean-Luc Dubois
  • Publication number: 20110105789
    Abstract: A method for producing a catalyst for the preparation of methacrylic acid comprising a heteropolyacid compound containing phosphorus, molybdenum and an element X selected from the group consisting of potassium, rubidium, cesium and thallium and having an atomic ratio of the element X to molybdenum of 0.5:12 to 2:12, which method comprises the steps of mixing aqueous slurry A containing starting compounds of the heteropolyacid compound in which an atomic ratio of the element X to molybdenum is from 2:12 to 4:12, and aqueous slurry B containing starting compounds of the heteropolyacid compound in which an atomic ratio of the element X to molybdenum is from 0:12 to 0.5:12 to form a slurry mixture; heat-treating the slurry mixture at a temperature of 100° C. or higher; drying the slurry mixture; and calcining the dried mixture.
    Type: Application
    Filed: October 26, 2010
    Publication date: May 5, 2011
    Applicant: SUMITOMO CHEMICAL COMPANY, LIMITED
    Inventors: Toshiaki MIYATAKE, Junji SHIBATA, Eiichi SHIRAISHI
  • Publication number: 20110065953
    Abstract: A process for the long-term operation of a heterogeneously catalyzed partial gas phase oxidation of an organic starting compound, in which the reaction gas input mixture is partially oxidized over a fixed catalyst bed which is accommodated in two successive temperature zones A, B whose temperature is changed with increasing operating time such that the initially lower temperature increases and the difference between the two temperatures decreases.
    Type: Application
    Filed: November 19, 2010
    Publication date: March 17, 2011
    Applicant: BASF Aktiengesellschaft
    Inventors: Ulrich Cremer, Martin Dieterle, Klaus Joachim Müller-Engel
  • Patent number: 7888281
    Abstract: A catalyst, its method of preparation and its use for producing at least one of methacrolein and methacrylic acid, for example, by subjecting isobutane or isobutylene or a mixture thereof to a vapor phase catalytic oxidation in the presence of air or oxygen. In the case where isobutane alone is subjected to a vapor phase catalytic oxidation in the presence of air or oxygen, the product is at least one of isobutylene, methacrolein and methacrylic acid.
    Type: Grant
    Filed: January 18, 2008
    Date of Patent: February 15, 2011
    Assignee: Evernu Technology, LLC
    Inventors: Manhua Lin, Krishnan S. Pillai
  • Patent number: 7880027
    Abstract: The present invention relates to an improved alkane (amm)oxidation process in which sulfur-bearing impurities present in the alkane feedstock are removed upstream from the (amm)oxidation reaction.
    Type: Grant
    Filed: August 20, 2008
    Date of Patent: February 1, 2011
    Assignee: Rohm and Haas Company
    Inventors: Nitin Chadda, Scott Han, Andrew Michael Lemonds
  • Publication number: 20110009666
    Abstract: Process for the selective oxidation of ethane to ethylene and/or acetic acid, and/or the selective oxidation of ethylene to acetic acid, by contacting ethane and/or ethylene with a molecular oxygen-containing gas at elevated temperature in the presence of a spray-dried supported catalyst composition. The supported catalyst composition includes molybdenum, vanadium and niobium metal components, supported on a support comprising alpha-alumina. The supported catalyst is prepared by forming a slurry of the metal components and alpha-alumina support particles or an alpha-alumina support precursor, and spray-drying the slurry.
    Type: Application
    Filed: September 30, 2009
    Publication date: January 13, 2011
    Inventor: Bruce I. Rosen
  • Publication number: 20110009667
    Abstract: Described herein is a process in which acetic acid is produced by ethane oxidation. One byproduct of the ethane oxidation is ethylene. High ethylene content in the recycle gas stream will lead to poor efficiencies and higher losses to the COx byproduct in the acetic acid reactor. In fact, ethylene in the recycle feed competes with the ethane for the limited amount of oxygen feed, resulting in higher inefficiencies to carbon oxides than straight ethane oxidation. Ethylene is removed in this process by a further oxidation reaction at a temperature low enough such that ethane is not reactive, but the ethylene is converted to acetic acid. Either the ethane oxidation reactor effluent or a portion or all of the recycle stream to the ethane oxidation reactor, or any combination of the same, can be processed in this manner to reduce the ethylene content of those streams.
    Type: Application
    Filed: January 30, 2007
    Publication date: January 13, 2011
    Inventors: Debra Ann Ryan, James A. Foster
  • Patent number: 7868201
    Abstract: A process for the oxidation of hydrocarbons comprises contacting the hydrocarbon with an oxygen-containing gas in the presence of a catalyst comprising a microporous solid support, preferably a zeolite, having from 8- to 12-ring open windows and comprising non-framework metal cations selected from manganese, iron, cobalt, vanadium, chromium, copper, nickel, and ruthenium, and mixtures thereof, providing that the oxygen-containing gas does not contain significant amounts of added hydrogen. The catalyst is novel and forms part of the invention. The process may be used for oxidation of alkanes, cycloalkanes, benzene and alkylbenzenes, and is suitable for use in regioselective terminal oxidation of straight chain alkanes and for selective oxidation/separation of p-dialkylbenzenes from an alkylbenzene mixture, for example, p-xylene from an isomeric mixture of xylenes.
    Type: Grant
    Filed: July 1, 2005
    Date of Patent: January 11, 2011
    Assignee: ExxonMobil Research and Engineering Company
    Inventors: Bi-Zeng Zhan, Bjorn Moden, Jihad Dakka, Jose Santiesteban, Sebastian C. Reyes, Enrique Iglesia
  • Patent number: RE43859
    Abstract: Methods for the catalytic production of vinyl acetate monomer from ethane, ethylene or an ethane/ethylene mixture using a first catalyst containing MoVNbPd, MoVLaPdNbX (where X is Al, Ga, Ge or Si) or MoVNbX (where X is P, B, Hf, Te, As or mixtures thereof) in the first step of oxidation and using a conventional VAM catalyst for the second step. The method produces high yields to acetic acid and vinyl acetate without the coproduction of carbon monoxide.
    Type: Grant
    Filed: February 8, 2006
    Date of Patent: December 11, 2012
    Assignee: Saudi Basic Industries Corporation
    Inventors: Khalid Karim, Alaa E. M. Adris
  • Patent number: RE44206
    Abstract: An oxidation process for the production of alkenes and carboxylic acids from a feed comprising alkene and/or alkane, carbon monoxide, a molecular oxygen containing gas and optionally water in the presence of an oxidation catalyst in which the level of carbon monoxide is maintained between 1% and 20% by volume of the total feed to the reactor.
    Type: Grant
    Filed: May 16, 2011
    Date of Patent: May 7, 2013
    Assignee: BP Chemicals Limited
    Inventors: Ewen James Ferguson, Andrew Richard Lucy, Mark Stephen Roberts, Diana Rachel Taylor, Bruce Leo Williams