From Nonhydrocarbon Feed Patents (Class 585/638)
  • Patent number: 7342144
    Abstract: The present invention relates to a process for preparing 1-olefins from 1-alkoxyalkanes, in particular to the preparation of 1-octene from 1-alkoxyoctane, by base-catalyzed alcohol cleavage.
    Type: Grant
    Filed: October 28, 2003
    Date of Patent: March 11, 2008
    Assignee: OXENO Olefinchemie GmbH
    Inventors: Alfred Kaizik, Dietrich Maschmeyer, Dirk Roettger, Franz Nierlich, Cornelia Borgmann
  • Publication number: 20080058571
    Abstract: The present invention relates to new crystalline molecular sieve SSZ-75 having STI framework topology prepared using a tetramethylene-1,4-bis-(N-methylpyrrolidinium) dication as a structure-directing agent and its use in catalysts for converting oxygenates, e.g., methanol, to olefins.
    Type: Application
    Filed: June 1, 2007
    Publication date: March 6, 2008
    Inventors: Stacey I. Zones, Allen W. Burton
  • Patent number: 7332636
    Abstract: The invention provides low metal content molecular sieve catalyst compositions, processes for making such catalysts, and processes for using such catalysts in the conversion of an oxygenate into one or more light olefins. Preferably, the catalyst composition comprises a matrix material having a low metal content. By utilizing matrix materials having low metal contents, the amount of metal-catalyzed side reaction byproducts formed in a reaction system, particularly in an oxygenate-to-olefin reaction system, can be advantageously reduced.
    Type: Grant
    Filed: October 16, 2006
    Date of Patent: February 19, 2008
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventors: Teng Xu, Stephen Neil Vaughn, Richard B. Hall, Kenneth Ray Clem, Jack W. Johnson
  • Patent number: 7329790
    Abstract: The economics of a catalytic process using a fluidized conversion zone and a relatively expensive catalyst for converting an oxygenate to light olefins are substantially improved by recovering and recycling effluent contaminating catalyst particles from the product effluent stream withdrawn from the conversion zone which are present despite the use of one or more vapor-solid cyclone separating means to clean up this effluent stream. The contaminating catalyst particles are separated from this product effluent stream using a wet scrubbing zone and an optional dewatering zone to recover a slurry containing the contaminated particles which, quite surprisingly, can be successfully directly recycled to the oxygenate conversion zone or to the associated catalyst regeneration zone without loss of any substantial amount of catalytic activity thereby decreasing the amount of fresh catalyst addition required to make up for this source of catalyst loss.
    Type: Grant
    Filed: April 15, 2004
    Date of Patent: February 12, 2008
    Assignee: Uop LLC
    Inventors: Bradford L. Bjorklund, John Q. Chen
  • Patent number: 7329625
    Abstract: This invention provides a process for making an attrition resistant molecular sieve catalyst composition. The formation of highly attrition resistant catalyst particles is accomplished by initially mixing together catalyst components to form a slurry at a relatively low viscosity and high solids content. Preferably, a slurry having characteristics of high solids content and low viscosity is achieved using a rotor-stator mixer. Once the desired slurry characteristics are obtained, the slurry is dried, preferably by spray drying and calcining, to form a highly attrition resistant catalyst.
    Type: Grant
    Filed: October 27, 2006
    Date of Patent: February 12, 2008
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventor: Yun-feng Chang
  • Patent number: 7319178
    Abstract: The invention relates to a catalyst composition, a method of making the same and its use in the conversion of a feedstock, preferably an oxygenated feedstock, into one or more olefin(s), preferably ethylene and/or propylene. The catalyst composition comprises a molecular sieve and at least one oxide of a metal selected from Group 3 of the Periodic Table of Elements, the Lanthanide series of elements and the Actinide series of elements.
    Type: Grant
    Filed: April 19, 2005
    Date of Patent: January 15, 2008
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventors: Doron Levin, James Clark Vartuli
  • Patent number: 7312369
    Abstract: This invention provides an attrition resistant metalloaluminophosphate molecular sieve catalyst composition, methods of making the catalyst composition and processes for using the catalyst composition. The metalloaluminophosphate molecular sieve catalyst composition is highly attrition resistant in dried as well as fully calcined forms.
    Type: Grant
    Filed: April 28, 2004
    Date of Patent: December 25, 2007
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventors: Yun-Feng Chang, Stephen N. Vaughn, Kenneth R. Clem, Luc R. Martens, Alistair D. Westwood, Jeffery W. Sprinkle
  • Patent number: 7307196
    Abstract: The invention relates to a catalyst composition, a method of making the same and its use in the conversion of a feedstock, preferably an oxygenated feedstock, into one or more olefin(s), preferably ethylene and/or propylene The catalyst composition comprises a molecular sieve and at least one oxide of a metal from Group 4, optionally in combination with at least one metal from Groups 2 and 3, of the Periodic Table of Elements.
    Type: Grant
    Filed: August 3, 2004
    Date of Patent: December 11, 2007
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventors: Doron Levin, James Clark Vartuli
  • Publication number: 20070281875
    Abstract: The invention is directed to a process of decarboxylation of natural fats and oils comprising the use of an activated acidic catalyst essentially free of Group VIII metals. Embodiments of the present process comprise the steps of supplying a feedstock comprising of natural fats, oils and mixtures thereof to a reaction vessel, subjecting the feedstock to an activated acidic catalyst essentially free of Group VIII metals, purging the reaction vessel with an inert gas; and subjecting the feedstock and catalyst to a temperature of from about 250° C. to about 500° C.
    Type: Application
    Filed: May 21, 2007
    Publication date: December 6, 2007
    Inventors: Jeffrey John Scheibel, Randall Thomas Reilman
  • Publication number: 20070282151
    Abstract: Hydrocarbon liquids and olefins can be made from methane with greater efficiency than previously available, by converting methane into methanesulfonic acid (MSA), then converting the MSA into a reactive anhydride called sulfene, H2C?SO2. Sulfene will exothermically form ethylene, an olefin. It also can insert methylene groups (—CH2—) into hydrocarbon liquids, to make heavier and more valuable liquids. Other options are disclosed for improved methods of making MSA (such as by using di(methyl-sulfonyl) peroxide as a radical initiator), for converting MSA into products such as dimethyl ether (DME), and for using DME as a “peak shaving” gas that can be injected into natural gas supply pipelines with no disruptions to end-use burners.
    Type: Application
    Filed: May 19, 2006
    Publication date: December 6, 2007
    Inventor: Alan K. Richards
  • Patent number: 7288692
    Abstract: A process is described for producing olefins from a vapor product stream from an oxygenate to olefin conversion reaction, the vapor product stream comprising C2 to C4 olefins, C5+ hydrocarbons, at least one oxygenate and water. In the process, the vapor product stream is cooled to remove water therefrom and produce a first vapor effluent stream. The first vapor effluent stream is then cooled and compressed to produce a condensed liquid effluent stream comprising C5+ hydrocarbons and at least one oxygenate, and a residual vapor effluent stream comprising C2 to C4 olefins. At least part of the condensed liquid effluent stream is contacted with a liquid water-containing stream in a liquid-liquid contacting device to at least partly separate said condensed liquid effluent stream, or portion thereof, into an aqueous phase rich in said at least one oxygenate and an organic phase rich in said C5+ hydrocarbons.
    Type: Grant
    Filed: July 14, 2004
    Date of Patent: October 30, 2007
    Assignee: ExxonMobil Chemcial Patents Inc.
    Inventors: Keith H. Kuechler, Jeffrey L. Brinen, Philip A. Ruziska
  • Patent number: 7279012
    Abstract: A process for producing olefins comprises providing a vapor product stream from an oxygenate to olefin reaction, the vapor product stream comprising C2 to C4 olefins, C2 to C6 carbonyl compounds and water. The vapor product stream is cooled to provide a first vapor effluent stream comprising no more than 10 wt. % water, and a liquid water-rich stream. The first vapor effluent stream, and a first wash flash vapor stream, are compressed from a first pressure to a second pressure greater than said first pressure to form a second vapor effluent stream, which is then cooled to form a cooled second effluent stream that is at least partially in the vapor state.
    Type: Grant
    Filed: July 1, 2004
    Date of Patent: October 9, 2007
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventors: Keith H. Kuechler, Jeffrey L. Brinen, Philip Andrew Ruziska
  • Publication number: 20070232843
    Abstract: A gas-solids reaction system is provided for improving product recovery in a multiple reactor reaction system. The solids of the product gas-solids flows from the multiple reactors are separated out in a separation vessel having a baffled transition zone. Additional product vapor is stripped from the solids as the solids pass through the baffled transition zone. The solids are then returned to the multiple reactors.
    Type: Application
    Filed: February 14, 2007
    Publication date: October 4, 2007
    Inventors: James H. Beech, Richard E. Walter, Arun K. Sharma, Jeffrey S. Smith
  • Patent number: 7273960
    Abstract: A reactor apparatus and related method for controlling at least one process variable in a circulating fluid bed oxygenates to olefins reactor system comprising a riser are provided. The process variable is selected from at least one of (i) space velocity, (ii) average reaction temperature, (iii) conversion of reactant, and (iv) average coke level on catalyst. Typically, a corresponding set point for at least one process variable is selected from (1) reactant feed rate, (2) feed enthalpy, (3) reactor temperature-related function, e.g., mid-temperature or rate of temperature rise along a portion of the reactor, and (4) catalyst hold-up in the riser of the reactor. A corresponding manipulated variable is selected from (a) feed flow control valve(s), (b) feed preheat rate, (c) activity of the catalyst in the reactor, and (d) amount of catalyst in the reaction zone.
    Type: Grant
    Filed: October 25, 2002
    Date of Patent: September 25, 2007
    Assignee: ExxonMobil Chemical Patents Inc
    Inventor: James R. Lattner
  • Patent number: 7268265
    Abstract: The present invention relates to a process and apparatus for the production of light olefins comprising olefins having from 2 to 3 carbon atoms per molecule from a feedstock containing heavier olefins. An intermediate cut from a fractionation column is used as olefinic feed to an olefin cracking process preferably after undergoing selective hydrogenation of diolefins. In one embodiment, a liquid side draw from a fractionation column is selectively hydrogenated and then returned to the fractionation column from which a vapor side draw containing olefins is cracked in the olefin cracking reactor.
    Type: Grant
    Filed: June 30, 2004
    Date of Patent: September 11, 2007
    Assignee: UOP LLC
    Inventors: Douglas G. Stewart, Joseph E. Zimmermann, Angelo P. Furfaro, Bipin V. Vora
  • Publication number: 20070203381
    Abstract: 1-Ethers may be cracked over untreated ?-alumina having a pore volume of more than 1.0 cc/g and an average pore diameter of more than 150 angstroms (?) at a temperature from 250 to 350° C. and a pressure from 10 to 200 kPa at high conversions and good selectivity to produce the corresponding 1-alkene. The process is particularly useful to produce 1-octene from 1-methoxyoctane.
    Type: Application
    Filed: February 21, 2007
    Publication date: August 30, 2007
    Inventors: Xiaoliang Gao, Andrzej Krzywicki, Stacy David Ross Johnston, Alexandra Kalivoda
  • Patent number: 7259287
    Abstract: The invention is directed to methods of starting up reaction systems. The reaction systems are those that use catalysts that comprise molecular sieves, particularly metalloaluminophosphate molecular sieves, especially metalloaluminophosphate molecular sieves which are susceptible to loss of catalytic activity due to contact with water molecules. The methods provide appropriate mechanisms of heating and loading the activated molecular sieves to protect against loss of catalytic activity that can occur due to contact with water molecules.
    Type: Grant
    Filed: August 15, 2003
    Date of Patent: August 21, 2007
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventors: James H. Beech, Richard E. Walter, Shun Chong Fung, Peter N. Loezos, Marcel Johannes Janssen, Luc Roger Marc Martens, Kenneth Ray Clem, Stephen Neil Vaughn
  • Patent number: 7259286
    Abstract: An attrition resistant precipitated bulk iron catalyst is prepared from iron oxide precursor and a binder by spray drying. The catalysts are preferably used in carbon monoxide hydrogenation processes such as Fischer-Tropsch synthesis. These catalysts are suitable for use in fluidized-bed reactors, transport reactors and, especially, slurry bubble column reactors.
    Type: Grant
    Filed: August 28, 2001
    Date of Patent: August 21, 2007
    Assignees: Research Triangle Institute, The University of Pittsburgh-of the Commonwealth System of Higher Education
    Inventors: Kandaswamy Jothimurugesan, James G. Goodwin, Jr., Santosh K. Gangwal
  • Patent number: 7253331
    Abstract: The invention relates to a molecular sieve catalyst composition, to a method of making or forming the molecular sieve catalyst composition, and to a conversion process using the catalyst composition. In particular, the invention is directed to a conversion process for producing olefin(s), preferably ethylene and/or propylene, from a feedstock, preferably an oxygenate containing feedstock in the presence of a molecular sieve having been synthesized in the presence of a flocculant.
    Type: Grant
    Filed: May 12, 2004
    Date of Patent: August 7, 2007
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventors: Luc R. M. Martens, Marcel J. Janssen, Machteld M. Mertens, An Verberckmoes, Guang Cao
  • Patent number: 7247764
    Abstract: The invention relates to a conversion process for making olefin(s) using a molecular sieve catalyst composition. More specifically, the invention is directed to a process for converting a feedstock comprising an oxygenate in the presence of a molecular sieve catalyst composition, wherein the feedstock is free of or substantially free of metal salts.
    Type: Grant
    Filed: June 16, 2003
    Date of Patent: July 24, 2007
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventors: Marcel J. G. Janssen, Teng Xu, Cor F. Van Egmond, Keith H. Kuechler, Stephen N. Vaughn, James Harding Beech, Jr.
  • Patent number: 7238846
    Abstract: The invention relates to a conversion process for making olefin(s) using a molecular sieve catalyst composition. More specifically, the invention is directed to a process for converting a feedstock comprising an oxygenate in the presence of a molecular sieve catalyst composition, wherein the feedstock is free of or substantially free of metal salts.
    Type: Grant
    Filed: August 14, 2002
    Date of Patent: July 3, 2007
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventors: Marcel J. G. Janssen, Teng Xu, Cor F. Van Egmond, Keith F. Kuechler, Stephen N. Vaughn
  • Patent number: 7235704
    Abstract: Isobutene is prepared by dissociating tert-butanol into isobutene and water over an acid ion-exchange resin arranged as a fixed bed in at least one reactor at a temperature of from 80 to 150° C. and at a pressure of from 5 to 25 bar to obtain a reaction mixture, separating the reaction mixture into isobutene, a by-product, water and at least one mixture of undissociated tert-butanol and water. The reactor is operated pseudo-isothermally, with a temperature difference between inflowing and outflowing streams of less than 15 K.
    Type: Grant
    Filed: June 17, 2004
    Date of Patent: June 26, 2007
    Assignee: Oxeno Olefinchemie GmbH
    Inventors: Gerda Grund, Wilfried Bueschken, Dieter Reusch, Andreas Beckmann
  • Patent number: 7232936
    Abstract: A system and process for producing olefins from oxygenate, e.g., methanol or dimethylether, includes a fluidized bed reaction zone that provide contact between the oxygenate and a molecular sieve catalyst such as ZSM-34 or SAPO-34. Improved ethylene selectivity is realized when the oxygenate is stagewise injected into the fluidized bed at one or more locations along the axial direction of the fluidized bed reaction zone.
    Type: Grant
    Filed: February 22, 2000
    Date of Patent: June 19, 2007
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventor: Sergei Yurchak
  • Patent number: 7214843
    Abstract: This invention is directed to removing contaminants from an oxygenate-containing feedstream for an oxygenate to olefin reaction system. Oxygenate feeds used in the conversion of oxygenates to olefins, and which contain contaminants, are heated to form a vapor stream and a liquid stream. The heating is conducted so that a majority of the metalloaluminophosphate molecular sieve catalyst contaminants is contained in the liquid stream. The vapor stream is separated from the liquid stream, and the separated vapor stream is contacted with the metalloaluminophosphate molecular sieve catalyst to form olefin product. The heating of the feedstream and the separation of the vapor stream can be carried out in one or more stages.
    Type: Grant
    Filed: October 14, 2003
    Date of Patent: May 8, 2007
    Assignee: Exxon Mobil Chemical Patents Inc.
    Inventors: James H. Beech, Jr., Cor. F. Van Egmond, Ronald G. Searle, Michael Peter Nicoletti, David Ritchie Lumgair, Jr.
  • Patent number: 7214846
    Abstract: The present invention provides new highly-efficient separation processes and systems for separating polymerization-grade ethylene and propylene from an initial effluent stream comprising ethane, ethylene, propylene, dimethyl ether, and one or more of propane, acetylene, methyl acetylene, propadiene, methane, hydrogen, carbon monoxide, carbon dioxide and C4+ components. In one embodiment, the initial effluent stream is provided from a methanol-to-olefin reaction system. It has been discovered that an efficient separation of these components is realized when DME is partially removed in a first separation step comprising methanol and water washing steps, followed by separation of the remaining components in additional separation steps.
    Type: Grant
    Filed: August 6, 2003
    Date of Patent: May 8, 2007
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventors: Cornelis F. Van Egmond, David Jon Duhon, John Ernest Asplin
  • Patent number: 7208648
    Abstract: The present invention is directed toward reducing corrosion in a methanol-to-olefin (MTO) effluent processing system, and particularly in the condensate removal system thereof, by injecting a neutralization agent into one or more target regions of the MTO effluent processing system. The neutralization agent ensures that any localized condensation in the MTO effluent processing system, particularly in the condensate removal system, occurs under basic conditions and that any acidic condensable components are neutralized. The invention is also directed to monitoring corrosion in an MTO effluent processing system and to monitoring the pH of localized corrosion sites in order to ensure proper neutralization of any acidic condensation formed therein.
    Type: Grant
    Filed: June 25, 2003
    Date of Patent: April 24, 2007
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventors: David R. Lumgair, Jr., Jeffrey A. Kabin
  • Patent number: 7208650
    Abstract: The present invention provides new highly-efficient separation processes and systems for separating polymerization-grade ethylene and propylene from an initial effluent stream comprising ethane, ethylene, propylene, dimethyl ether, and one or more of propane, acetylene, methyl acetylene, propadiene, methane, hydrogen, carbon monoxide, carbon dioxide and C4+ components. In one embodiment, the initial effluent stream is provided from a methanol-to-olefin reaction system. It has been discovered that an efficient separation of these components is realized when DME is partially removed in a first separation step comprising methanol and water washing steps, followed by separation of the remaining components in additional separation steps.
    Type: Grant
    Filed: July 30, 2004
    Date of Patent: April 24, 2007
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventors: Cor F. Van Egmond, David Duhon, John E. Asplin
  • Patent number: 7205447
    Abstract: The present invention provides a process for removing an oxygenate impurity selected from aldehyde and/or ketone, from an olefinic product stream. A product stream is contacted with a metal oxide-containing catalyst in the presence of a C1 to C6 alcohol under conditions sufficient to convert the oxygenate impurity to an olefin and/or oxygenate of higher carbon number than the aldehyde and/or ketone. The aldehyde can be C2 to C5 aldehyde and the ketone can be C3 to C6 ketone. The metal oxide-containing catalyst typically comprises an oxide of at least one metal selected from the group consisting of Group 2 metals, Group 3 metals (including Lanthanide and Actinide series metals), and Group 4 metals.
    Type: Grant
    Filed: April 9, 2003
    Date of Patent: April 17, 2007
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventors: Doron Levin, James Clark Vartuli
  • Patent number: 7199276
    Abstract: The present invention provides various processes for producing methanol and ethanol, preferably in a mixed alcohol stream. In one embodiment, the invention includes directing syngas to a synthesis zone wherein the syngas contacts a methanol synthesis catalyst and an ethanol synthesis catalyst (either a homologation catalyst or a fuel alcohol synthesis catalyst) under conditions effective to form methanol and ethanol. The methanol and ethanol, in a desired ratio, are directed to an oxygenate to olefin reaction system for conversion thereof to ethylene and propylene in a desired ratio. The invention also relates to processes for varying the weight ratio of ethylene to propylene formed in an oxygenate to olefin reaction system.
    Type: Grant
    Filed: November 19, 2003
    Date of Patent: April 3, 2007
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventors: Jaimes Sher, Cornelis F. Van Egmond, Luc R. M. Martens, Mechilium Johannes Janssen, James R. Lattner, Teng Xu
  • Patent number: 7199278
    Abstract: A process is described for converting an oxygenate-containing feedstock into one or more olefins in a moving bed reactor system operating in countercurrent flow using a catalyst composition comprising a molecular sieve and at least one metal oxide having an uptake of carbon dioxide at 100° C. of at least 0.03 mg/m2 of the metal oxide.
    Type: Grant
    Filed: July 30, 2004
    Date of Patent: April 3, 2007
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventors: Shun Chong Fung, Doron Levin, Jose Santiesteban, Nicolas P. Coute
  • Patent number: 7192987
    Abstract: This invention is directed to processes (i.e., methods) for making methanol compositions, and to processes (i.e., methods) of using the methanol compositions. The methanol compositions contain ethanol and are particularly suitable for contacting with an olefin forming catalyst to form an olefin stream.
    Type: Grant
    Filed: March 5, 2004
    Date of Patent: March 20, 2007
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventors: Cor F. Van Egmond, Teng Xu
  • Patent number: 7186875
    Abstract: A process is described for converting an oxygenate-containing feedstock into one or more olefins in a reactor system including a plurality of fixed bed reactors each containing a catalyst composition comprising a molecular sieve and at least one metal oxide having an uptake of carbon dioxide at 100° C. of at least 0.03 mg/m2 of the metal oxide. Each reactor is sequentially rotated between at least one operating mode, wherein the catalyst composition in the reactor is contacted with the oxygenate-containing feedstock, and a regeneration mode, wherein the catalyst composition in the reactor is contacted with a regeneration medium.
    Type: Grant
    Filed: July 30, 2004
    Date of Patent: March 6, 2007
    Assignee: Exxon Mobil Chemical Patents Inc.
    Inventors: Shun Chong Fung, Doron Levin, Jose Santiesteban, Nicolas P. Coute
  • Patent number: 7173158
    Abstract: The invention relates to a composition of matter comprising at least one metal from Group 3, at least one metal from Group 4, sulfur and oxygen, particularly useful as a catalyst for ether decomposition to alkanols and alkenes.
    Type: Grant
    Filed: May 31, 2005
    Date of Patent: February 6, 2007
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventors: James Clarke Vartuli, Doron Levin, Stephen John McCarthy
  • Patent number: 7166757
    Abstract: A process is described for converting an oxygenate-containing feedstock into one or more olefins in which the feedstock is contacted in a reaction zone with a fluidized bed of a particulate catalyst composition comprising a molecular sieve and at least one metal oxide having an uptake of carbon dioxide at 100° C. of at least 0.03 mg/m2 of the metal oxide whereby at least part of the feedstock is converted into a product stream comprising one or more olefins and a carbonaceous material is deposited on the catalyst composition to produce a coked catalyst composition. The coked catalyst composition is separated from the product stream and divided into at least first and second portions. The first portion of the coked catalyst composition is contacted with a regeneration medium in a regeneration zone under conditions to remove at least part of the carbonaceous material from the coked catalyst composition and produce a regenerated catalyst composition, which is subsequently recycled to the reaction zone.
    Type: Grant
    Filed: July 30, 2004
    Date of Patent: January 23, 2007
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventors: Shun Chong Fung, Doron Levin, Jose Santiesteban, Nicolas P. Coute
  • Patent number: 7151199
    Abstract: Hydrocarbon or oxygenate conversion process in which a feedstock is contacted with a non zeolitic molecular sieve which has been treated to remove most, if not all, of the halogen contained in the catalyst. The halogen may be removed by one of several methods. One method includes heating the catalyst in a low moisture environment, followed by contacting the heated catalyst with air and/or steam. Another method includes steam-treating the catalyst at a temperature from 400° C. to 1000° C. The hydrocarbon or oxygenate conversion processes include the conversion of oxygenates to olefins, the conversion of oxygenates and ammonia to alkylamines, the conversion of oxygenates and aromatic compounds to alkylated aromatic compounds, cracking and dewaxing.
    Type: Grant
    Filed: June 10, 2002
    Date of Patent: December 19, 2006
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventors: Luc Roger Marc Martens, Stephen N. Vaughn, Albert Edward Schweizer, John K. Pierce, Shun Chong Fung
  • Patent number: 7102048
    Abstract: This invention provides a methanol composition, a method of making the composition, and a method of using the composition. The methanol composition of this invention is supplemented with certain additional alcohols and/or aldehydes, and serves as a particularly desirable feed stream for use in the manufacture of olefins such as ethylene and propylene. Such feed streams result in increased production of ethylene or in the increased production of both ethylene and propylene.
    Type: Grant
    Filed: December 17, 2002
    Date of Patent: September 5, 2006
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventors: Cor F. Van Egmond, Teng Xu
  • Patent number: 7102050
    Abstract: The present invention is directed to a hydrocarbon conversion apparatus. The apparatus comprises the following: a plurality of riser reactors, each of the riser reactors having a first end into which a catalyst can be fed and a second end through which the catalyst can exit the riser reactor; a separation zone into which the second ends of the riser reactors extend, the separation zone being provided to separate the catalyst from products of a reaction conducted in the hydrocarbon conversion apparatus; and at least one catalyst return in fluid communication with the separation zone and the first ends of the riser reactors, the catalyst return being provided to transfer the catalyst from the separation zone to the first ends of the riser reactors.
    Type: Grant
    Filed: May 4, 2000
    Date of Patent: September 5, 2006
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventors: James R. Lattner, Jeffrey S. Smith, Nicolas P. Coute, Keith H. Kuechler
  • Patent number: 7102051
    Abstract: This invention is directed to a molecular sieve composition or a catalyst containing molecular sieve which has a relatively high residual silica index, preferably at least about 1.5. The molecular sieve or catalyst can be made by contacting a template-containing molecular sieve with a silicon containing material having an average kinetic diameter that is larger than the average pore diameter of the sieve or catalyst, and heating to leave residual silica at the sieve or catalyst surface. The molecular sieve or catalyst is particularly effective in making an olefin product from an oxygenate feedstock.
    Type: Grant
    Filed: August 3, 2004
    Date of Patent: September 5, 2006
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventors: Stephen N. Vaughn, John Di-Yi Ou, Jar-Lin Kao, Hsiang-Ning Sun
  • Patent number: 7078578
    Abstract: A process for the conversion of oxygenates to hydrocarbons comprising contacting a feed stream comprising oxygenates with a catalyst containing a microporous material under oxygenate conversion conditions, wherein the catalyst contains a crystalline microporous material with intra-crystalline mesopores. The invention also includes a composition for use in the above process.
    Type: Grant
    Filed: May 7, 2004
    Date of Patent: July 18, 2006
    Assignee: Haldor Topsoe A/S
    Inventors: Ton V. W. Janssens, Søren Dahl, Claus Hviid Christensen
  • Patent number: 7060866
    Abstract: Disclosed is a method of removing dimethyl ether from an ethylene and/or propylene containing stream. Dimethyl ether is removed at a high pressure, preferably in a distillation column. The high pressure separation has the benefit of providing a relatively low bottoms temperature separation, while allowing for recovery of a highly concentrated ethylene and/or propylene stream.
    Type: Grant
    Filed: April 18, 2002
    Date of Patent: June 13, 2006
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventors: Cor F. Van Egmond, Jeffrey L. Brinen, James R. Lattner, Michael Peter Nicoletti
  • Patent number: 7053260
    Abstract: The present invention provides a process for making an olefin product from an oxygenate feedstock which comprises: a) contacting the feedstock in a reaction zone with a catalyst comprising i) a molecular sieve having defined pore openings and ii) a CO oxidation metal, under conditions effective to convert the feedstock into an olefin product stream comprising C2–C3 olefins and to form carbonaceous deposits on the catalyst so as to provide a carbon-containing catalyst; b) contacting at least a portion of the carbon-containing catalyst with a regeneration medium comprising oxygen in a regeneration zone comprising a fluid bed regenerator having a dense fluid phase and a dilute fluid phase under conditions effective to obtain a regenerated catalyst portion, wherein the difference between the temperature of the dilute phase and the temperature of the dense phase is no greater than 100° C.; c) introducing said regenerated catalyst portion into said reaction zone; and d) repeating steps a)–c).
    Type: Grant
    Filed: June 13, 2002
    Date of Patent: May 30, 2006
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventors: Teng Xu, Paul N. Chisholm, Stephen Neil Vaughn, Shun Chong Fung, Keith Holroyd Kuechler, James R. Lattner, Kenneth Ray Clem, Patrick J. Maher, Dean C. Draemel
  • Patent number: 7034196
    Abstract: Disclosed is a method and apparatus for reducing the amount of metal catalyzed side-reaction byproducts formed in the feed vaporization and introduction system of a methanol to olefin reactor system by monitoring and/or maintaining the temperature of at least a portion of the feed vaporization and introduction system and/or of the feedstock contained therein below about 400° C., 350° C., 300° C., 250° C., 200° C. or below about 150° C. The temperature can be maintained in the desired range by jacketing at least a portion of the feed vaporization and introduction system, such as at least a portion of the feed introduction nozzle, with a thermally insulating material or by implementing a cooling system.
    Type: Grant
    Filed: June 19, 2002
    Date of Patent: April 25, 2006
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventors: Kenneth Ray Clem, Stephen N. Vaughn, Teng Xu, Jeffrey L. White
  • Patent number: 7030284
    Abstract: Disclosed is a method and reactor system for converting oxygenate and/or olefin contaminants in a methanol to olefin reactor system product effluent to hydrocarbons, including paraffin compounds, preferably over a sulphided catalyst of the type Nickel or Cobalt combined with Molybdenum or Tungsten. In one embodiment, the oxygenate-containing stream to be hydrogenated comprises one or more of the following streams, alone or in combination: a quench tower bottoms stream, a water absorption unit bottoms stream, a C4+ stream, and/or a C5+ stream.
    Type: Grant
    Filed: August 20, 2002
    Date of Patent: April 18, 2006
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventor: John Richard Shutt
  • Patent number: 7026523
    Abstract: The invention provides a process for the telomerization of acyclic olefins having at least two conjugated double bonds (I) or mixtures comprising such olefins by means of nucleophiles (II) using a palladium-carbene complex as catalyst.
    Type: Grant
    Filed: May 4, 2002
    Date of Patent: April 11, 2006
    Assignee: OXENO Olefinchemie GmbH
    Inventors: Dirk Röttger, Matthias Beller, Ralf Jackstell, Holger Klein, Klaus-Diether Wiese
  • Patent number: 7015369
    Abstract: A process for producing propylene from methanol, wherein methanol vapor is reacted on a first catalyst to obtain a first vapor mixture containing dimethyl ether (DME), which is reacted on a form-selective zeolite catalyst disposed as bed in at least two series-connected shaft reactors to produce a product mixture containing propylene.
    Type: Grant
    Filed: May 22, 2001
    Date of Patent: March 21, 2006
    Assignee: MG Technologies AG
    Inventors: Markus Hack, Ulrich Koss, Peter König, Martin Rothaemel, Hans-Dieter Holtmann
  • Patent number: 7005555
    Abstract: The present invention is a process for producing olefin(s) from oxygenate(s). The process removes oxygenate(s) including carbon dioxide in the bottoms of the quench stream and recycles the oxygenate(s) back to the reactor. Carbon dioxide is removed from the quench bottoms before returning oxygenate(s) in the quench bottoms stream to the reactor.
    Type: Grant
    Filed: June 25, 2003
    Date of Patent: February 28, 2006
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventors: Zhong Yi Ding, James Richardson Lattner, Paul N. Chisholm, Jeffrey Alan Kabin
  • Patent number: 6989470
    Abstract: The invention is directed to a method for modifying a microporous metalloaluminophosphate molecular sieve, the method comprising the steps of a) introducing a metal hydride compound within the cages of said microporous molecular sieve, and b) reacting said metal hydride compound with the acid groups located in the cages of the molecular sieve, wherein the metal hydride compound is selected from the group consisting of hydrides of metals of Groups 1 and 2 of the Periodic Table, compounds of formula M1M2H4 and mixtures thereof. M1 being a metal belonging to Group 13 of the Periodic Table and M2 being a metal belonging to Group 1 of the Periodic Table. The invention also relates to modified metalloaluminophosphate molecular sieves, to catalyst particles containing them and the use of the modified metalloaluminophosphate molecular sieves in catalytic processes.
    Type: Grant
    Filed: August 3, 2004
    Date of Patent: January 24, 2006
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventor: Kun Wang
  • Patent number: 6979756
    Abstract: Disclosed is a method of heat treating a molecular sieve. The method comprises providing a template-containing molecular sieve, heating the molecular sieve under conditions effective to remove a portion of the template from the molecular sieve, and cooling the heated molecular sieve to leave an amount of template effective to cover catalytic sites within the molecular sieve. A catalyst composition is also provided which comprises a molecular sieve having a microporous structure and a binder, wherein between 10 and 90 vol % of the microporous structure is occupied by a material, the material comprising a template or a carbonaceous residue of a template, and the catalyst composition exhibits a Davison Index of not greater than 30.
    Type: Grant
    Filed: October 28, 2002
    Date of Patent: December 27, 2005
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventors: Shun C. Fung, Marcel J. G. Janssen, Stephen N. Vaughn, Machteld M. Mertens, Albert Edward Schweizer, Cornelius W. M. Van Oorschot, Luc R. M. Martens, Richard B. Hall, Wilfried J. Mortier, Ronald G. Searle, Yi-Gang Xiong
  • Patent number: 6965057
    Abstract: The invention relates to a process for converting an oxygenate feedstock into an olefin product stream comprising (a) contacting an oxygenate feedstock with a molecular sieve catalyst in a reactor under conditions effective to convert the feedstock into an olefin product stream and to form carbonaceous deposits on the catalyst; (b) contacting at least a portion of the catalyst having said carbonaceous deposits with an oxygen containing gas under conditions effective to obtain a regenerated catalyst having a reduced carbonaceous deposit level and having an increased molecular oxygen content; (c) removing at least 60% by volume of said molecular oxygen from the regenerated catalyst based upon the total volume of molecular oxygen; (d) returning said regenerated catalyst to said reactor; and (e) repeating steps (a)–(d).
    Type: Grant
    Filed: March 24, 2004
    Date of Patent: November 15, 2005
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventors: James H. Beech, Jr., Cor F. Van Egmond, Teng Xu, James R. Lattner
  • Patent number: 6953767
    Abstract: The present invention relates to a silicoaluminophosphate molecular sieve comprising at least one intergrown phase of molecular sieves having AEI and CHA framework types, wherein said intergrown phase has an AEI/CHA ratio of from about 5/95 to 40/60 as determined by DIFFaX analysis, using the powder X-ray diffraction pattern of a calcined sample of said silicoaluminophosphate molecular sieve. It also relates to methods for its preparation and to its use in the catalytic conversion of methanol to olefins.
    Type: Grant
    Filed: March 7, 2002
    Date of Patent: October 11, 2005
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventors: Marcel J. G. Janssen, An Verberckmoes, Machteld M. Mertens, Antonie Jan Bons, Wilfried J. Mortier