Iron Containing Patents (Class 502/316)
  • Publication number: 20040266614
    Abstract: A method is described for producing a high temperature shift catalyst, not requiring a reduction step prior to use, by precipitating a composition containing divalent and trivalent iron compounds and a modifier metal selected from trivalent chromium and/or manganese compounds from an aqueous solution containing iron and modifier metal salts with a base, and forming the resultant precipitate into shaped catalyst units, without exposing said precipitate to an oxidising atmosphere at temperatures above 200° C.
    Type: Application
    Filed: August 24, 2004
    Publication date: December 30, 2004
    Inventors: Andrew Mark Ward, Sean Alexander Axon, Paul John Murray
  • Patent number: 6818589
    Abstract: A catalyst and process is disclosed to selectively upgrade a paraffinic feedstock to obtain an isoparaffin-rich product for blending into gasoline. The catalyst comprises a support of a tungstated oxide or hydroxide of a Group IVB (IUPAC 4) metal, a first component of at least one lanthanide element, yttrium or mixtures thereof, which is preferably ytterbium or holmium, and at least one platinum-group metal component which is preferably platinum.
    Type: Grant
    Filed: June 18, 2002
    Date of Patent: November 16, 2004
    Assignee: UOP LLC
    Inventor: Ralph D. Gillespie
  • Patent number: 6802958
    Abstract: The invention pertains to a process for preparing spherical oxide particles comprising the steps of shaping a starting material comprising an oxide hydrate into particles of substantially constant length by leading the material to a set of two rolls rotating towards each other followed by leading the material to a roll equipped with grooves to form rod-type shapes, cutting the rod-type shapes into particles of substantially constant length, converting the thus formed particles into spheres, and heating the particles to convert the oxide hydrate into an oxide. The process results in particles in which there is substantially no difference in density between the core portion and the shell portion of the particles, which results in a high abrasion resistance. The particles prepared by the claimed process are particularly suitable for the preparation of hydroprocessing catalysts, more in particular for the preparation of hydroprocessing catalysts suitable for the hydroprocessing of heavy hydrocarbon feeds.
    Type: Grant
    Filed: November 13, 2000
    Date of Patent: October 12, 2004
    Assignees: Nippon Ketjen Co., Ltd., Akzo Nobel NV
    Inventors: Nobuhito Matsumoto, Eiichi Yano, Masafumi Shimowake, Tetsuro Kamo
  • Patent number: 6797839
    Abstract: Multimetal oxide materials containing molybdenum, vanadium, antimony, one or more of the elements W, Nb, Ta, Cr and Ce and nickel and, if required, one or more of the elements Cu, Zn, Co, Fe, Cd, Mn, Mg, Ca, Sr and Ba and having a 2-component structure are used for the gas-phase catalytic oxidative preparation of acrylic acid.
    Type: Grant
    Filed: October 5, 2000
    Date of Patent: September 28, 2004
    Assignee: BASF Aktiengesellschaft
    Inventors: Hartmut Hibst, Signe Unverricht
  • Patent number: 6770590
    Abstract: An exhaust gas emission purifying catalyst has a catalyst layer (20) supported on a carrier (10). The catalyst layer includes a composite oxide, in which noble metals and occluding agents are mixed in order to inhibit the movement of the occluding agents even at high temperatures and to prevent deterioration of the purifying performance of the catalyst after operation at a high temperature. The composite oxide is comprised of silicon (Si) and at least one of cobalt (Co), zirconium (Zr), iron (Fe), and manganese (Mn).
    Type: Grant
    Filed: June 7, 2002
    Date of Patent: August 3, 2004
    Assignee: Mitsubishi Jidosha Kogyo Kabushiki Kaisha
    Inventor: Tetsuya Watanabe
  • Publication number: 20040133054
    Abstract: A calcined dehydrogenation catalyst composition having iron and potassium supported on alumina has improved selectivity at a given hydrocarbon conversion by the addition of metal ions selected from indium, cerium, sodium, molybdenum and tungsten. A process for preparing the catalyst and for dehydrogenating alkylaromatic hydrocarbon compounds is also provided.
    Type: Application
    Filed: October 29, 2003
    Publication date: July 8, 2004
    Inventors: Joseph E. Pelati, Robert J. Gulotty
  • Publication number: 20040106817
    Abstract: A catalyst comprising a complex of catalytic oxides comprising rubidium, cerium, chromium, iron, bismuth, molybdenum, and at least one of nickel or nickel and cobalt, optionally magnesium, and optionally one of phosphorus, antimony, tellurium, sodium, lithium, potassium, cesium, thallium, boron, germanium, tungsten calcium, wherein the relative ratios of these elements are represented by the following general formula:
    Type: Application
    Filed: November 18, 2003
    Publication date: June 3, 2004
    Inventors: Christos Paparizos, Stephen C. Jevne, Michael J. Seely
  • Patent number: 6740769
    Abstract: A process for producing a molybdenum-bismuth-iron-containing metal oxide fluidized bed catalyst which has a controlled particle diameter and has satisfactory activity and physical properties. In a process for producing a fluidized bed catalyst containing molybdenum-bismuth-iron and silica as a carrier component, dried products formed in a spray drying step and having a particle diameter outside a desired range are pulverized, then the pulverized one is mixed into a slurry before spray drying, the resulting mixture is spray-dried, and the spray-dried particles are subjected to a classification operation to obtain particles having a diameter within the desired range, which are then calcined. The catalyst produced according to the present invention is suitable for producing acrylonitrile by ammoxidation of propylene.
    Type: Grant
    Filed: January 4, 2002
    Date of Patent: May 25, 2004
    Assignee: Mitsubishi Rayon Co., Ltd.
    Inventors: Kouichi Mizutani, Yoshimi Nakamura, Yutaka Sasaki, Kunio Mori
  • Patent number: 6720284
    Abstract: The invention relates to an Au/Fe2O3 catalyst comprised of a particle-shaped, co-catalytically active Fe2O3 supporting material with metallic Au clusters deposited thereupon which have a diameter of less than 4.5 nm. The catalyst materials can be obtained by: a) reacting a water-soluble Fe(III) salt in an aqueous medium with a base; b) impregnating the hydroxide gel which is formed thereby and which is still moist with a solution of a water-soluble Au compound in order to deposit complexed Au clusters on the surface of the hydroxide gel; c) removing water from the suspension of the reaction product formed thereby; d) subjecting the dried reaction product to a calcination at temperatures ranging from 350 and 700° C. The inventive catalyst material is especially suited for selective low-temperature CO oxidation in reformate hydrogen which is used as combustible gas for polymer electrolyte membrane (PEM) fuel cells.
    Type: Grant
    Filed: February 8, 2001
    Date of Patent: April 13, 2004
    Assignee: Zentrum fur Sonnenenergie- und Wasserstoff Forschung Baden-Wurttemberg Gemeinnutizige Stiftung
    Inventor: Vojtech Plzak
  • Patent number: 6706660
    Abstract: A lean NOx catalyst and method of preparing the same is disclosed. The lean NOx catalyst includes a ceramic substrate, an oxide support material, preferably &ggr;-alumina, deposited on the substrate and a metal promoter or dopant introduced into the oxide support material. The metal promoters or dopants are selected from the group consisting of indium, gallium, tin, silver, germanium, gold, nickel, cobalt, copper, iron, manganese, molybdenum, chromium, cerium, vanadium, oxides thereof, and combinations thereof. The &ggr;-alumina preferably has a pore volume of from about 0.5 to about 2.0 cc/g; a surface area of between about 80 to 350 m2/g; an average pore size diameter of between about 3 to 30 nm; and an impurity level of less than or equal to 0.2 weight percent. In a preferred embodiment the &ggr;-alumina is prepared by a sol-gel method, with the metal doping of the &ggr;-alumina preferably accomplished using an incipient wetness impregnation technique.
    Type: Grant
    Filed: December 18, 2001
    Date of Patent: March 16, 2004
    Assignee: Caterpillar Inc
    Inventor: Paul W. Park
  • Patent number: 6696387
    Abstract: A catalyst for the production of carbon fibrils and a method for the manufacture of such a catalyst comprising contacting a fibril-forming catalyst or precursors of a fibril-forming catalyst with an effective amount of a surfactant and/or polyol. The improved carbon fibrils or carbon fibril aggregates produced using the catalyst are free of a continuous carbon thermal overcoat, with graphitic layers substantially parallel to the fibril axis, and have a substantially constant diameter from about 1.0 to 100 nanometers. The improved carbon fibrils possess enhanced dispersion in composite materials and provide enhanced electrical conductivity in those materials.
    Type: Grant
    Filed: June 2, 1995
    Date of Patent: February 24, 2004
    Assignee: Hyperion Catalysis International, Inc.
    Inventors: David Moy, Asif Chishti
  • Publication number: 20040034249
    Abstract: A catalyst suitable for the gas-phase oxidation of organic compounds to &agr;,&bgr;-unsaturated aldehydes and/or carboxylic acids and having an active phase comprising a multimetal oxide material is prepared by a process in which a particulate catalyst precursor which contains oxides and/or compounds of the elements other than oxygen which constitute the multimetal oxide material, which compounds can be converted into oxides, is prepared and said catalyst precursor is converted by calcination into a catalytically active form, wherein a stream of the particulate catalyst precursor is passed at substantially constant speed through at least one calcination zone at constant temperature for calcination.
    Type: Application
    Filed: March 14, 2003
    Publication date: February 19, 2004
    Inventors: Heiko Arnold, Signe Unverricht, Raimund Felder, Klaus Harth, Klaus Joachim Muller-Engel
  • Patent number: 6693059
    Abstract: A process useful for the catalytic gas phase oxidation of alkanes to unsaturated aldehydes or carboxylic acids uses catalysts of particular compositions formed in a particular manner.
    Type: Grant
    Filed: January 4, 2001
    Date of Patent: February 17, 2004
    Assignee: Rohm and Haas Company
    Inventor: Manhua Lin
  • Patent number: 6683024
    Abstract: A sorbent composition is provided which can be used in the desulfurization of a hydrocarbon-containing fluid such as cracked gasoline or diesel fuel. The sorbent composition contains a support component and a promoter component with the promoter component being present as a skin on the support component. Such sorbent composition is prepared by a process of impregnating a support component with a promoter component, wherein the promoter component has been melted under a melting condition, followed by drying, calcining, and reducing to thereby provide the sorbent composition.
    Type: Grant
    Filed: March 15, 2000
    Date of Patent: January 27, 2004
    Assignee: ConocoPhillips Company
    Inventors: Gyanesh P. Khare, Donald R. Engelbert
  • Patent number: 6670515
    Abstract: A material composed of ultrafine particles, comprising at least a metal element M having catalytic properties and at least a metal element M′ having a standard oxidation potential less than that of M, part at least of M′ atoms being in oxidized form, the average size of the particles being less than 50 nm, at least 80% in number of the particles having an average size less than 10 nm. One particle of the material is constituted by at least a metal element M with oxidation level 0, or by at least a metal element M′ in oxidized form, or by at least a metal element M′ with oxidation level 0, or by the combination of at least two species selected from the three previous species. The material is useful as a catalyst for hydrogenation or coupling reactions.
    Type: Grant
    Filed: August 16, 2001
    Date of Patent: December 30, 2003
    Assignee: Centre National de la Recherche Scientifique
    Inventors: Jean-Marie Dubois, Yves Fort, Olivier Tillement
  • Patent number: 6635599
    Abstract: The present invention relates to a process for the preparation of a hydroprocessing catalyst, to the catalyst composition obtainable by said process, and to the use of said catalyst composition in hydroprocessing applications. The process comprises the steps of combining and reacting at least one Group VIII non-noble metal component in solution and at least two Group VIB metal components in solution in a reaction mixture to obtain an oxygen-stable precipitate, and sulfiding the precipitate.
    Type: Grant
    Filed: January 13, 2000
    Date of Patent: October 21, 2003
    Assignee: Exxonmobil Research & Engineering Company
    Inventors: Sonja Eijsbouts, Bob Gerardus Oogjen, Hermannus Willem Homan Free, Marinus Bruce Cerfontain, Kenneth Lloyd Riley, Stuart Leon Soled, Sabato Miseo
  • Patent number: 6632772
    Abstract: A method of coating a catalyst to a support for use in acrolein oxidation reaction. Metallic salt components of the catalyst including molybdate, vanadate and tungstate are dissolved in a liquid to form a suspension of particles of the catalyst. The precipitation of the catalyst particles is controlled by homogenizing the catalyst particles suspended in the liquid. The phase separation between the catalyst particles and the liquid can be substantially slowed down by the homogenization. Then the catalyst is coated on an inert support by applying the suspension of the catalyst particles to the support. In the suspension, the total weight of water is about 0.8 to about 5 times of the total weight of the metallic salts in the catalyst. This method of preparing suspension minimizes the amount of the liquid required to dissolve the metallic salts, which reduces the amount of time and energy to be used in evaporating the liquid from the suspension.
    Type: Grant
    Filed: December 22, 2000
    Date of Patent: October 14, 2003
    Assignee: LG Chemical, Ltd.
    Inventors: Won-Ho Lee, Kyung-Hwa Kang, Dong-Hyun Ko, Young-Chang Byun
  • Patent number: 6620973
    Abstract: A catalyst composition for the production of unsaturated aldehydes by the oxidation of the corresponding olefins, and methods of making and using such catalyst compositions. The catalysts of the present invention include compositions of the formula: MoaPdbBicFedX1eX2fX3gOz, wherein X1 is an element selected from Co, Ni, V, Pt, Rh, or mixtures thereof; X2 is an element selected from Al, Ga, Ge, Mn, Nb, Zn, Ag, P, Si, W, or mixtures thereof; X3 is an element selected from K, Mg, Rb, Ca, Sr, Ba, Na, In, or mixtures thereof; a is 1; b is 0<b<0.3; c is 0<c<0.9; d is 0<d<0.9; e is 0<e<0.9; f is 0<f<0.9; g is 0<g<0.3; and z is an integer representing the number of oxygen atoms required to satisfy the valency of Mo, Pd, Bi, Fe, X1, X2, and X3 in the catalyst composition. Using the methods of the present invention, one may effectively oxidize the desired starting materials at relatively high levels of conversion, selectivity, and productivity, and with minimal side products.
    Type: Grant
    Filed: October 19, 2001
    Date of Patent: September 16, 2003
    Assignee: Saudi Basic Industries Corporation
    Inventors: Khalid Karim, Yajnavalkya Subrai Bhat, Syed Irshad Zaheer, Asad Ahmad Khan
  • Publication number: 20030166465
    Abstract: Novel sorbent systems for the desulfurization of cracked-gasoline and diesel fuels are provided which are comprised of a bimetallic promotor on a particulate support such as that formed of zinc oxide and an inorganic or organic carrier. Such bimetallic promotors are formed of at least two metals of the group consisting of nickel, cobalt, iron, manganese, copper, zinc, molybdenum, tungsten, silver, tin, antimony and vanadium with the valence of same being reduced, preferably to zero. Processes for the production of such sorbents are provided wherein the sorbent is prepared from impregnated particulate supports or admixed to the support composite prior to particulation, drying, and calcination. Further disclosed is the use of such novel sorbents in the desulfurization of cracked-gasoline and diesel fuels whereby there is achieved not only removal of sulfur but also an increase in the olefin retention in the desulfurized product.
    Type: Application
    Filed: January 21, 2003
    Publication date: September 4, 2003
    Inventor: Gyanesh P. Khare
  • Patent number: 6596897
    Abstract: A fluidized-bed catalyst for producing acrylonitrile by the ammoxidation of propylene, which comprises a silica carrier and a composite having the following formula: AaCcDdNafFegBihMiMo12Ox wherein A selected from the group consisting of potassium, rubidium, cesium, samarium, thallium and mixtures thereof; C is selected from the group consisting of phosphorus, arsenic, boron, antimony, chromium and mixtures thereof; D is selected from nickel, cobalt or mixtures thereof; M is selected from tungsten, vanadium or mixtures thereof. The catalyst of the present invention particularly suits the use under higher pressure and higher duties, and still maintains very high single-pass yield of acrylonitrile and a high ammonia conversion. This catalyst particularly suits the requirement for existing acrylonitrile plants to raise capacity. For new plants it can also reduce the investment on the catalyst and the pollution.
    Type: Grant
    Filed: June 30, 2000
    Date of Patent: July 22, 2003
    Assignees: China Petro-Chemical Corporation, Research Institute of Petroleum Processing
    Inventors: Xingya Guan, Xin Chen, Lianghua Wu
  • Patent number: 6566297
    Abstract: Provided is a selective hydrogenation process for producing aminonitriles by contacting the corresponding dinitriles with a hydrogen-containing fluid in the presence of a hydrogenation catalyst, a solvent and tetraalkylammonium hydroxide and/or tetraalkylphosphonium hydroxide additive.
    Type: Grant
    Filed: March 7, 2001
    Date of Patent: May 20, 2003
    Assignee: E. I. du Pont de Nemours and Company
    Inventor: Alex Sergey Ionkin
  • Patent number: 6566296
    Abstract: The present invention pertains to a process for preparing a catalyst composition wherein at least one Group VIII non-noble metal component and at least two Group VIB metal components are combined and reacted in the presence of a protic liquid, after which the resulting composition is isolated and dried, the total of the Group VIII and Group VIB metal components, calculated as oxides, making up at least about 70 wt. % of the catalyst composition, calculated on dry weight. An organic oxygen-containing additive is added prior to, during, or subsequent to the combining and reacting of the metal components in such an amount that the molar ratio of the total amount of additive added to the total amount of Group VIII and Group VIB metal components is at least about 0.01. The invention also pertains to additive-containing catalysts obtained by this process, and to their use in hydroprocessing.
    Type: Grant
    Filed: July 12, 2001
    Date of Patent: May 20, 2003
    Assignee: Akzo Nobel N.V.
    Inventors: Frans Lodewijk Plantenga, Sonja Eijsbouts, Marinus Bruce Cerfontain
  • Patent number: 6559085
    Abstract: A method for regeneration of a molybdenum-containing oxide fluidized bed catalyst which comprises impregnating a fluidized catalyst of a metal oxide containing molybdenum, bismuth and iron which has been deteriorated by being used for a reaction in production of acrylonitrile by ammoxidation of propylene, with a solution of a molybdenum compound and a solution of at least one compound containing at least one element selected from the group consisting of iron, chromium, lanthanum and cerium which are prepared separately or with a previously prepared mixed solution of the above compounds, drying the resulting catalyst and, then, firing the catalyst at a temperature of 500-700° C.
    Type: Grant
    Filed: November 13, 2000
    Date of Patent: May 6, 2003
    Assignee: Mitsubishi Rayon Co., Ltd.
    Inventors: Yutaka Sasaki, Kunio Mori, Yoshimi Nakamura, Akimitsu Morii
  • Publication number: 20030083195
    Abstract: A method for rendering halogenated hydrocarbons harmless, in which the halogenated hydrocarbons in at least one of polluted media, soil, water (groundwater, etc.), and gas are rapidly dehalogenated by the contact with an iron powder carrying an inorganic compound having an electric resistivity of about 1×10−4 &OHgr;·m or less on the surface thereof, is provided. The iron powder for environmental remediation includes an inorganic compound having an electric resistivity of about 1×10−4 &OHgr;·m or less on the surface thereof is also provided.
    Type: Application
    Filed: November 7, 2001
    Publication date: May 1, 2003
    Inventors: Hiroki Nakamaru, Tomoshige Ono, Yoshiei Kato
  • Publication number: 20030073574
    Abstract: A process for the production mixed metal oxide containing catalysts comprising the steps of:
    Type: Application
    Filed: October 7, 2002
    Publication date: April 17, 2003
    Inventors: Keld Johansen, Petru Gordes
  • Patent number: 6534437
    Abstract: The invention pertains to a process for preparing a catalyst composition comprising bulk catalyst particles comprising at least one Group VIII non-noble metal and at least two Group VIB metals. The process comprises combining and reacting at least one Group VIII non-noble metal component with at least two Group VIB metal components in the presence of a protic liquid, with at least one of the metal components remaining at least partly in the solid state during the entire process. The Group VIII and Group VIB metals comprise from about 50 wt. % to about 100 wt. %, calculated as oxides, of the total weight of said bulk catalyst particles, with the solubility of those of the metal components which are at least partly in the solid state during the reaction being less than 0.05 mol/100 ml water at 18° C.
    Type: Grant
    Filed: April 17, 2001
    Date of Patent: March 18, 2003
    Assignee: Akzo Nobel N.V.
    Inventors: Sonja Eijsbouts, Bob Gerardus Oogjen, Harmannus Willem Homan Free, Marinus Bruce Cerfontain, Kenneth Lloyd Riley, Stuart Leon Soled, Sabato Miseo
  • Patent number: 6518218
    Abstract: A catalyst system and method for making carbon fibrils is provided which comprises a catalytic amount of an inorganic catalyst comprising nickel and one of the following substances selected from the group consisting of chromium; chromium and iron; chromium and molybdenum; chromium, molybdenum, and iron; aluminum; yttrium and iron; yttrium, iron and aluminum; zinc; copper; yttrium; yttrium and chromium; and yttrium, chromium and zinc. In a further aspect of the invention, a catalyst system and method is provided for making carbon fibrils which comprises a catalytic amount of an inorganic catalyst comprising cobalt and one of the following substances selected from the group consisting of chromium; aluminum; zinc; copper; copper and zinc; copper, zinc, and chromium; copper and iron; copper, iron, and aluminum; copper and nickel; and yttrium, nickel and copper.
    Type: Grant
    Filed: March 28, 2000
    Date of Patent: February 11, 2003
    Assignee: General Electric Company
    Inventors: Xiao-Dong Sun, Navjot Singh, Lionel Monty Levinson
  • Patent number: 6518219
    Abstract: A catalyst for hydrofining fraction oils, comprises an alumina carrier and at least one metal and/or thereof oxide of Group VIB and at least one metal and/or thereof oxide of Group VIII supported on said alumina carrier. The pore volume of said alumina carrier is not less than 0.35 ml/g, in which the pore volume of the pores having a diameter of 40-100 angstrom accounts for more than 80% of the total pore volume, the alumina carrier is prepared by a special process. The catalyst possesses relatively high hydrogenation activity.
    Type: Grant
    Filed: October 13, 2000
    Date of Patent: February 11, 2003
    Assignees: China Petrochemical Corporation, Research Institute of Petroleum Processing, Sinopec
    Inventors: Qinghe Yang, Bin Liu, Hong Nie, Xuefen Liu, Dadong Li, Yahua Shi, Fucheng Zhuang
  • Patent number: 6514903
    Abstract: An improved catalyst including a compound of the formula (I) AaMmNnXxOo  (I) wherein 0.25<a<0.98, 0.003<m<0.5, 0.003<n<0.5, 0.003<x<0.
    Type: Grant
    Filed: October 22, 1999
    Date of Patent: February 4, 2003
    Assignee: Rohm and Haas Company
    Inventors: Manhua Lin, Michael William Linsen
  • Patent number: 6514901
    Abstract: A process for preparing a catalyst is disclosed. The catalyst is useful for the gas phase oxidation of alkanes to unsaturated aldehydes or carboxylic acids.
    Type: Grant
    Filed: October 22, 1999
    Date of Patent: February 4, 2003
    Assignee: Rohm and Haas Company
    Inventors: Manhua Lin, Michael William Linsen
  • Patent number: 6514902
    Abstract: Disclosed is a process for producing an oxide catalyst for use in producing (meth)acrylonitrile from propane or isobutane by ammoxidation in the gaseous phase, the oxide catalyst comprising a compound oxide containing Mo, V and Sb as essential component elements, which process comprises subjecting a solution or slurry, in water and/or an alcohol, of a raw-material mixture comprising a Mo compound, a V compound and an Sb compound as essential raw materials to a specific oxidation treatment using an oxidizing gas and/or an oxidizing liquid before subjecting the solution or slurry to drying and subsequent calcination. Further, also disclosed is a process for producing a base-treated oxide catalyst by treating the above-mentioned oxide catalyst with an aqueous basic solution.
    Type: Grant
    Filed: November 3, 2000
    Date of Patent: February 4, 2003
    Assignee: Asahi Kasei Kogyo Kabushiki Kaisha
    Inventors: Tomoya Inoue, Hiroshi Ishida
  • Publication number: 20030017944
    Abstract: Disclosed is a process for producing an oxide catalyst comprising, as component elements, molybdenum (Mo), vanadium (V), at least one element selected from the group consisting of the two elements of antimony (Sb) and tellurium (Te), and niobium (Nb), wherein the process comprises providing an aqueous raw material mixture containing compounds of the component elements of the oxide catalyst, and drying the aqueous raw material mixture, followed by calcination, and wherein, in the aqueous raw material mixture, at least a part of the niobium compound as one of the compounds of the component elements is present in the form of a complex thereof with a complexing agent comprising a compound having a hydroxyl group bonded to an oxygen atom or a carbon atom. Also disclosed is a process for producing (meth)acrylonitrile or (meth)acrylic acid, which comprises performing the ammoxidation or oxidation of propane or isobutane in the gaseous phase in the presence of the oxide catalyst.
    Type: Application
    Filed: September 18, 2001
    Publication date: January 23, 2003
    Inventors: Hidenori Hinago, Hiroyuki Yano
  • Patent number: 6489264
    Abstract: A catalyst for oxidation of ammonia is of the general formula (AxByO3z)k (MEmOn)f, wherein: A is a cation of Ca, Sr, Ba, Mg, Be, La or mixtures thereof, B is cations of Mn, Fe, Ni, Co, Cr, Cu, V or mixtures thereof, x=0-2, y=1-2, z=0.8-1.7; MemOn is an aluminum oxide and/or oxide of silicon zirconium, chromium, aluminosilicates, oxides of rare earth elements (REE) or mixtures thereof, m=1-3, n=1-2, k and f are % by weight, with the ratio f/k=0.01-1. The catalyst may be granules of different configuration, including blocks of honeycomb structure. The catalyst is thermally stable, resistant to thermal shocks. There is no water runoff.
    Type: Grant
    Filed: September 10, 1999
    Date of Patent: December 3, 2002
    Assignee: Institut Kataliza Imeni G.K.
    Inventors: Lubov Alexandrovna Isupova, Vladislav Alexandrovich Sadykov, Olga Ivanovna Snegurenko, Evgeny Abramovich Brushtein, Tatyana Viktorovna Telyatnikova, Valery Vasilievich Lunin
  • Patent number: 6479691
    Abstract: A catalyst composition represented by the following empirical formula which is useful in production of unsaturated nitrites by ammoxidation: Mo10BiaFebSbcNidCreFfGgHhKkXxYyOi(SiO2)j wherein F represents at least one element selected from the group consisting of zirconium, lanthanum and cerium, G represents at least one element selected from the group consisting of magnesium, cobalt, manganese and zinc, H represents at least one element selected from the group consisting of vanadium, niobium, tantalum and tungsten, x represents at least one element selected from the group consisting of phosphorus, boron, and tellurium, Y represents at least one element selected from the group consisting of lithium, sodium, rubidium and cesium, the suffixes a-k, x and y represent a ratio of atoms or atomic groups, and a=0.1-3, b=0.3-15, c=0-20, d=3-8, e=0.2-2, f=0.05-1, e/f>1, g=0-5, h=0-3, k=0.
    Type: Grant
    Filed: October 18, 2000
    Date of Patent: November 12, 2002
    Assignee: Mitsubishi Rayon Co., Ltd.
    Inventors: Yutaka Sasaki, Kunio Mori, Yoshimi Nakamura, Takao Shimizu, Yuichi Tagawa, Kenichi Miyaki, Seiichi Kawato
  • Patent number: 6429332
    Abstract: A catalyst for the production of acrylic acid by the vapor-phase catalytic oxidation of acrolein or acrolein-containing gas and a method for the production of acrylic acid by the use of this catalyst are provided. The catalyst of this invention comprises (A) a catalyst having Mo and V as essential components and used for the production of acrylic acid by vapor-phase catalytic oxidation of acrolein and (B) a solid acid having acid strength (Ho) of not more than −11.93. Since this catalyst excels in catalytic activity and service life, it allows acrylic acid to be produced stably at a high yield for a long time.
    Type: Grant
    Filed: May 31, 1995
    Date of Patent: August 6, 2002
    Assignee: Nippon Shokubai Co., Ltd.
    Inventors: Michio Tanimoto, Tatsuya Kawajiri, Hiromi Yunoki, Yukio Aoki
  • Publication number: 20020103077
    Abstract: Complex oxide catalysts represented by the formula,
    Type: Application
    Filed: February 14, 2002
    Publication date: August 1, 2002
    Inventors: Naomasa Kimura, Michio Tanimoto, Hideo Onodera
  • Publication number: 20020087031
    Abstract: The method of the present invention involves the in situ formation of metal-molybdate catalyst particles active for methanol oxidation to formaldehyde, with iron as an example, the catalyst is made by mixing particulate forms of Fe2O3 and MoO3 which form an active Fe2(MoO4)3/MoO3 component inside the reactor during methanol oxidation.
    Type: Application
    Filed: October 31, 2001
    Publication date: July 4, 2002
    Inventors: Israel E. Wachs, Laura E. Briand
  • Patent number: 6407030
    Abstract: A method is provided for producing catalysts useful for synthesizing maleic anhydride by oxidizing saturated and/or unsaturated C4 hydrocarbons. A vanadium (V) compound is reacted with a mixture of phosphorous and phosphoric acids in a particular ratio, in a solvent mixture containing a structure former, and an entrainer and where the water of reaction together with entrainer is distilled off and the resulting precursor is subjected to calcination.
    Type: Grant
    Filed: June 1, 2001
    Date of Patent: June 18, 2002
    Assignee: Consortium für elektrochemische Industrie GmbH
    Inventors: Dirk Groke, Richard Bosch, Joachim Lotz, Hans-Jürgen Eberle
  • Patent number: 6399530
    Abstract: An acidic amorphous silica-amumina has a large specific surface area and a large pore volume. A carrier complex and a hydrotreating catalyst containing acidic amorphous silica-alumina, in particular a hydrocracking catalyst containing acidic amorphous silica-alumina in combination with a modified zeolite-Y, treats petroleum hydrocarbon materials to produce middle distillates. The amorphous silica-alumina has a SiO2 content of 10-50 wt. %, a specific surface area of 300-600 m2/g, a pore volume of 0.8-1.5 ml/g and an IR acidity of 0.25-0.60 mmol/g. The catalyst shows a relatively high activity and mid-distillate selectivity and can be particularly used in hydrocracking process for producing mid-distillates with a higher yield.
    Type: Grant
    Filed: November 12, 1999
    Date of Patent: June 4, 2002
    Assignees: China Petrochemical Corporation, Fushun Research Institute of Petroleum and Petrochemicals, SINOPEC
    Inventors: Song Chen, Tingyu Li, Guangwei Cao, Minghua Guan
  • Publication number: 20020059864
    Abstract: The invention relates to a process for removing sulfur containing compounds such as H2S and COS from a gas stream, comprising contacting the gas stream with an absorbent in a fluidized bed, which absorbent is based on at least one oxide of a first metal selected from the group consisting of Mn, Fe, Co, Ni, Cu and Zn, in combination with at least one oxide of a second metal selected from the group consisting of Cr, Mo and W on a carrier selected from the group consisting of Al2O3, TiO2, or ZrO2 or mixtures thereof, said absorbent being in the form of particles.
    Type: Application
    Filed: October 31, 2001
    Publication date: May 23, 2002
    Applicant: N.V. KEMA
    Inventors: Frans Johan Joseph Gerard Janssen, Ronald Meijer
  • Patent number: 6387248
    Abstract: A catalyst characterized by its ability to hydrotreat a charge hydrocarbon feed containing components boiling above 1000° F., and sediment-formers, sulfur, metals, asphaltenes, carbon residue, and nitrogen is prepared by mulling a porous alumina support with a salt of a Group VIII metal oxide and with a salt of a Group VI-B metal oxide in the presence of an acid to provide a mixture, by extruding the mixture to form an extrudate, by drying the extrudate and by subjecting the dried extrudate to hydrothermal calcination to provide the catalyst.
    Type: Grant
    Filed: November 6, 1997
    Date of Patent: May 14, 2002
    Assignee: Texaco Inc.
    Inventors: David Edward Sherwood, Jr., Pei-Shing Eugene Dai
  • Patent number: 6383974
    Abstract: Hydrorefining catalyst contains 0.1 to 25 wt % in total of at least one hydrogenation active metal element selected from elements of Group 6, Group 8, Group 9, and Group 10 of the Periodic Table, and 0.1 to 3 wt % potassium on a carrier formed of porous inorganic oxide. The concentration distribution of the hydrogenation active metal element is higher in the central part than in the peripheral part of the catalyst, and the concentration distribution of potassium is higher in the peripheral part than in the central part of the catalyst. The pores on the outside surface of the catalyst are not plugged by the metal content of hetero compounds and hetero compounds can be efficiently diffused to inside the catalyst. As a result, long-term retention of a state of high activity is possible.
    Type: Grant
    Filed: February 25, 2000
    Date of Patent: May 7, 2002
    Assignee: Japan Energy Corporation
    Inventors: Katsuaki Ishida, Ryutaro Koide, Koichi Matsushita
  • Patent number: 6383976
    Abstract: The multimetal oxide materials essentially consisting of Mo12BiaX1bFecX2dX3eOy  (I) where: X1 is Co and/or Ni, X2 is Si and/or Al, X3 is an alkali metal, 0.3≦a≦1, 2≦b≦10, 0.5≦c≦10, 0≦d≦10, 0≦e≦0.5 and y is the absolute value of the number which, assuming charge neutrality, is obtained from the sum of the valences and the stoichiometric coefficients of the other elements, the crystalline fractions containing, in addition to &bgr;-X1MoO4 as the main component, Fe2(MoO4)3 as a secondary component and no MoO3.
    Type: Grant
    Filed: December 2, 1999
    Date of Patent: May 7, 2002
    Assignee: BASF Aktiengesellschaft
    Inventors: Heiko Arnold, Klaus Harth, Hans-Peter Neumann, Ulrich Hammon, Raimund Felder
  • Patent number: 6380417
    Abstract: A method and catalyst system for economically producing aromatic carbonates from aromatic hydroxy compounds. In one embodiment, the present invention provides a method of carbonylating aromatic hydroxy compounds by contacting at least one aromatic hydroxy compound with oxygen and carbon monoxide in the presence of a carbonylation catalyst system that includes a catalytic amount of a combination of inorganic co-catalysts containing manganese and nickel; manganese and iron; manganese and chromium; manganese and cerium; manganese and europium; manganese, cerium, and europium; manganese, iron, and europium; or manganese and thorium. In various alternative embodiments, the carbonylation catalyst system can include an effective amount of a palladium source and an effective amount of a halide composition. Further alternative embodiments can include catalytic amounts of various other inorganic co-catalyst combinations.
    Type: Grant
    Filed: September 15, 2000
    Date of Patent: April 30, 2002
    Assignee: General Electric Company
    Inventors: James Lawrence Spivack, Donald Wayne Whisenhunt, Jr., James Norman Cawse, Bruce Fletcher Johnson, Grigorii Lev Soloveichik, John Yaw Ofori, Eric James Pressman
  • Patent number: 6368996
    Abstract: An amorphous alloy catalyst for hydrogenation and its preparation method are disclosed herein. The catalyst essentially consists of nickel ranging between 60 and 98 wt %, iron ranging between 0 and 20 wt %, one doping metal element selected from the group consisting of chromium, cobalt, molybdenum, manganese and tungsten ranging between 0 and 20 wt %, and aluminum ranging between 0.5 and 30 wt % based on the weight of said catalyst, wherein the weight percentages of iron and the doping metal element component may not be zero at the same time; and just one broad diffusion peak appears at about 2 &thgr;=45±1° on the XRD patterns of the catalyst within 2 &thgr; range from 20 to 80°. The catalyst herein can be used in processes for hydrogenation of unsaturated compounds such as olefin, alkyne, aromatics, nitro, carbonyl groups, nitrile and soon, and for hydrorefining of caprolactam in particular.
    Type: Grant
    Filed: April 28, 2000
    Date of Patent: April 9, 2002
    Assignees: China Petroleum Corporation, Research Institute of Petroleum Processing, Sinopec
    Inventors: Xuhong Mu, Baoning Zong, Enze Min, Xuan Wang, Ying Wang, Xiaoxin Zhang, Xingtian Shu
  • Patent number: 6346228
    Abstract: The present invention relates to a novel hydrophobic multicomponent catalyst useful in the direct oxidation of hydrogen to hydrogen peroxide and to a method for the preparation of such catalyst. More specifically, this invention relates to a novel hydrophobic muticomponent catalyst comprising a hydrophobic polymer membrane deposited on a Pd containing acidic catalyst, useful for the direct oxidation of hydrogen by oxygen to hydrogen peroxide, an a method for preparing the same.
    Type: Grant
    Filed: January 19, 2000
    Date of Patent: February 12, 2002
    Assignee: Council of Scientific and Industrial Research
    Inventors: Vasant Ramchandra Choudhary, Subhash Dwarkanath Sansare, Abaji Govind Gaikwad
  • Publication number: 20020010087
    Abstract: Skeletal iron catalysts are prepared and utilized for producing synthetic hydrocarbon products from CO and H2 feeds by Fischer-Tropsch synthesis process. Iron powder is mixed with aluminum, antimony, silicon, tin or zinc powder and 0.01-5 wt. % metal promotor powder to provide 20-80 wt. % iron content, then melted together, cooled to room temperature and pulverized to provide 0.1-10 mm iron alloy catalyst precursor particles. The iron alloy precursor particles are treated with NaOH or KOH caustic solution at 30-95° C. to extract or leach out a major portion of the non-ferrous metal portion from the iron and provide the skeletal iron catalyst material. Such skeletal iron catalyst is utilized with CO+H2 feedstream in either fixed bed or slurry bed type reactor at 200-350° C. temperature, 1.0-3.0 mPa pressure and gas hourly space velocity of 0.5-3.0 L/g Fe/h to produce desired hydrocarbon products.
    Type: Application
    Filed: July 2, 2001
    Publication date: January 24, 2002
    Inventors: Jinglai Zhou, Yijun Lu, Zhixin Zhang, Guohui Li, Linyao Dong, Hairong Wang, Peizheng Zhou, Lap-Keung Lee
  • Publication number: 20020010088
    Abstract: The invention pertains to a process for preparing a catalyst composition comprising bulk catalyst particles comprising at least one Group VIII non-noble metal and at least two Group VIB metals. The process comprises combining and reacting at least one Group VIII non-noble metal component with at least two Group VIB metal components in the presence of a protic liquid, with at least one of the metal components remaining at least partly in the solid state during the entire process. The Group VIII and Group VIB metals comprise from about 50 wt. % to about 100 wt. %, calculated as oxides, of the total weight of said bulk catalyst particles, with the solubility of those of the metal components which are at least partly in the solid state during the reaction being less than 0.05 mol/100 ml water at 18° C.
    Type: Application
    Filed: April 17, 2001
    Publication date: January 24, 2002
    Inventors: Sonja Eijsbouts, Bob Gerardus Oogjen, Harmannus Willem Homan Free, Marinus Bruce Cerfontain, Kenneth Lloyd Riley, Stuart Leon Soled, Sabato Miseo
  • Publication number: 20020010089
    Abstract: The present invention pertains to a catalyst composition comprising at least one non-noble Group VIII metal component, at least two Group VIB metal components, and at least about 1 wt. % of a combustible binder material selected from combustible binders and precursors thereof, the Group VIII and Group VIB metal components making up at least about 50 wt. % of the catalyst composition, calculated as oxides. The invention also pertains to a process for preparing the catalyst, to its use in hydroprocessing and to its recycling. The catalyst according to the invention has a higher strength than corresponding binder-free catalysts, and are easier to recycle than catalysts containing a non-combustible binder.
    Type: Application
    Filed: July 12, 2001
    Publication date: January 24, 2002
    Inventor: Sonja Eijsbouts
  • Publication number: 20020010086
    Abstract: The present invention pertains to a process for preparing a catalyst composition wherein at least one Group VIII non-noble metal component and at least two Group VIB metal components are combined and reacted in the presence of a protic liquid, after which the resulting composition is isolated and dried, the total of the Group VIII and Group VIB metal components, calculated as oxides, making up at least about 50 wt. % of the catalyst composition, calculated on dry weight. An organic oxygen-containing additive is added prior to, during, or subsequent to the combining and reacting of the metal components in such and amount that the molar ratio of the total amount of additive added to the total amount of Group VIII and Group VIB metal components is at least about 0.01. The invention also pertains to additive-containing catalysts obtained by this process, and to their use in hydroprocessing.
    Type: Application
    Filed: July 12, 2001
    Publication date: January 24, 2002
    Inventors: Frans Lodewijk Plantenga, Sonja Eijsbouts, Marinus Bruce Cerfontain