Patents Represented by Attorney Jeremy J. Kliebert
  • Patent number: 8344184
    Abstract: Improved methods of introducing promoters to catalysts are described. The present invention provides a convenient method of uniformly distributing a catalyst promoter, to provide for intimate contact between the promoter and the active catalyst sites. This intimate contact can enhance the activity and/or product selectivity of the promoted catalyst. In some embodiments, the method includes reacting an alkali metal with an alcohol in a non-aqueous medium, contacting the resulting solution with a starting catalyst, and depositing the alkali metal onto the starting catalyst to form an alkali-promoted catalyst.
    Type: Grant
    Filed: December 9, 2009
    Date of Patent: January 1, 2013
    Assignee: Albemarle Corporation
    Inventor: Ronald C. Stites
  • Patent number: 8318986
    Abstract: The invention herein provides methods of activating a catalyst composition. These methods include annealing a catalyst with an inert gas, under effective conditions, and then contacting the annealed catalyst with syngas to produce an activated catalyst. These steps can also be reversed. The activated catalysts can be employed to convert syngas into products, such as alcohols, with improved selectivities and yields.
    Type: Grant
    Filed: September 24, 2009
    Date of Patent: November 27, 2012
    Assignee: Albemarle Corporation
    Inventors: Patrick J. Alsum, Esther M. Wilcox, Jesse E. Hensley, Karl Kharas
  • Patent number: 8288594
    Abstract: The present invention provides processes for selectively producing ethanol from syngas. In some variations, the process comprises converting biomass-derived syngas to dimethyl ether, carbonylating the dimethyl ether to methyl acetate, hydrogenating the methyl acetate to methanol and ethanol, and recovering the ethanol product. The methanol is preferably recycled by converting to hydrogen and carbon monoxide for introduction back into the process at distinct points. In certain variations of this invention, fresh syngas feed is introduced downstream of the first unit operation in the sequence. High yields of ethanol from biomass can be achieved according to the disclosed processes.
    Type: Grant
    Filed: November 22, 2010
    Date of Patent: October 16, 2012
    Assignee: Albemarle Corporation
    Inventors: Ronald C. Stites, Shakeel Tirmizi, Jerrod Hohman, Stephen Deutch
  • Patent number: 8273831
    Abstract: Brominated styrenic polymer is recovered from solution in a vaporizable solvent by converting the solution in a devolatilization extruder into a brominated styrenic polymer melt or flow and a separate vapor phase comprised predominately of vaporizable solvent, recovering the melt or flow from the devolatilization extruder, and allowing or causing the melt or flow to solidify. The solidified brominated styrenic polymer can be subdivided into a powder or pelletized form. Pellets so made have improved hardness and/or crush strength properties along with reduced formation of fines. Brominated anionic styrenic polymer is preferably used in the process.
    Type: Grant
    Filed: July 18, 2007
    Date of Patent: September 25, 2012
    Assignee: Albemarle Corporation
    Inventors: Charles H. Kolich, John F. Balhoff, Douglas W. Luther, Robert C. Herndon, Jr., Ronny W. Lin, Bruce C. Peters, Arthur G. Mack, David A. Lee
  • Patent number: 8263812
    Abstract: The present invention describes improved methods of introducing promoters to catalysts. This invention provides a method for dispersal of a promoter onto a solid surface. A catalyst material and a deliquescent material can together be contacted with a gas phase comprising a solvent under conditions effective for deliquescence whereby the promoter is dispersed onto the solid surface. This invention combines practical benefits of dry-mixing with the enhanced dispersion that can be realized by solvent-based methods.
    Type: Grant
    Filed: July 17, 2009
    Date of Patent: September 11, 2012
    Assignee: Albemarle Corporation
    Inventor: George Meitzner
  • Patent number: 8217207
    Abstract: High assay, reaction-derived decabromodiphenylethane product is prepared by feeding (i) diphenylethane or (ii) partially brominated diphenylethane having an average bromine number less than about two, or (iii) both of (i) and (ii), into the liquid confines of a reaction mixture. Such reaction mixture is (a) formed from components comprised of excess liquid bromine and aluminum-based Lewis acid bromination catalyst, and (b) maintained at one or more elevated reaction temperatures of from about 45°-90° C., and at least when elevated pressure is needed to keep a liquid state in the reaction mixture at the temperature(s) used, the reaction mixture is at such an elevated pressure, whereby ar-bromination occurs. The feeding is conducted at a rate slow enough to form high assay reaction-derived decabromodiphenylethane product, which is an effective flame retardant.
    Type: Grant
    Filed: August 5, 2011
    Date of Patent: July 10, 2012
    Assignee: Albemarle Corporation
    Inventors: Saadat Hussain, Arthur G. Mack
  • Patent number: 8168723
    Abstract: Preparing brominated styrenic polymer by maintaining a mixture formed from (i) brominating agent, (ii) a solvent solution of styrenic polymer, and (iii) aluminum halide catalyst, at ?20 to +20° C., and terminating bromination in 20 minutes or less. New brominated anionic styrenic polymers have better melt flow and/or lower initial ?E values than the best previously-known brominated anionic styrenic polymers. Other features of such new polymers include high thermal stabilities at 320° C. and/or very low initial color values. Brominated styrenic polymers, especially brominated anionic styrenic polymers, are useful as flame retardants for thermoplastic polymers.
    Type: Grant
    Filed: December 4, 2009
    Date of Patent: May 1, 2012
    Assignee: Albemarle Corporation
    Inventors: Charles H. Kolich, Jeffrey Todd Aplin, John F. Balhoff
  • Patent number: 8163969
    Abstract: An improved alkylation process utilizing a solid-acid catalyst comprising a rare earth containing zeolite and a hydrogenation metal is disclosed.
    Type: Grant
    Filed: January 28, 2008
    Date of Patent: April 24, 2012
    Assignee: Albemarle Netherlands B.V.
    Inventors: Emanuel Hermanus Van Broekhoven, Mark Hendrikus Harte, Gijsbertus Klaver, Jan Nieman
  • Patent number: 8071688
    Abstract: Concurrently fed into a reaction zone held at about 10° C. or less are brominating agent, aluminum halide catalyst, and a solution of anionic styrenic polymer having a GPC Mn about 2000-30,000. The components are in at least two separate feed streams. The feeds are proportioned to maintain (a) the amount of aluminum halide being fed at about 0.8 mole percent or less based on the amount of aromatic monomeric units in the polymer being fed, and (b) amounts of brominating agent and unbrominated polymer in the reaction zone that produce a final washed and dried polymer product containing about 60-71 wt % bromine. The catalyst is deactivated, bromide ions and catalyst residues are washed away from the reaction mixture, and the brominated anionic styrenic polymer is recovered and dried. The dried polymer has a volatile bromobenzene content of about 600 ppm (wt/wt) or less as well as other beneficial properties.
    Type: Grant
    Filed: December 11, 2009
    Date of Patent: December 6, 2011
    Assignee: Albemarle Corporation
    Inventors: Charles H. Kolich, John F. Balhoff, Martin B. Berdon, Ronny W. Lin
  • Patent number: 8067088
    Abstract: Despite the frangibility of additive-free granules of brominated anionic styrenic polymer, pellets of unadulterated brominated anionic styrenic polymer are provided having 50 wt % or more bromine content, in which 70 wt % or more of the pellets are retained on a US No. 40 sieve and no more than 30 wt % are retained on a US No. 5 sieve. These pellets contain no binding agent and they do not break apart or revert to small particles and finely divided powder, typically called “fines” when subjected to ordinary handling. More specifically, no more than about 5 wt %, preferably no more than about 3 wt %, and more preferably no more than about 1 wt % of these pellets as formed and packaged are fines or dusts that can pass through a US No. 40 sieve.
    Type: Grant
    Filed: August 7, 2009
    Date of Patent: November 29, 2011
    Assignee: Albemarle Corporation
    Inventor: Douglas W. Luther
  • Patent number: 8067331
    Abstract: The invention relates to a nickel tungsten bulk catalyst, to a process for the manufacture of said catalyst and to the use of said catalyst for the hydrotreatment, in particular the hydrodesulphurisation and hydrodenitrogenation of hydrocarbon feedstock. The catalyst comprises nickel tungsten metal oxidic particles obtainable by a process comprising forming a slurry of a first solid metal compound comprising Group VNI metal nickel and a second solid metal compound comprising Group VIB metal tungsten in a protic liquid, reacting the first and second solid metal compounds at elevated temperature whereby the first and second solid metal compounds remain at least partly in the solid state during the entire reaction to form the nickel tungsten oxidic bulk catalyst.
    Type: Grant
    Filed: October 25, 2006
    Date of Patent: November 29, 2011
    Assignee: Albemarle Netherlands B.V.
    Inventors: Sona Eijsbouts-Spickova, Robertus Gerardus Leliveld, Marinus Bruce Cerfontain, Frans L. Plantenga, Eelco Titus Carel Vogt, Jacobus Nicolaas Louwen, Stuart Leon Soled, Sabato Miseo, Kenneth L. Riley
  • Patent number: 8057763
    Abstract: The invention relates to a process for recovering Group VIB metals from a catalyst, in particular a spent bulk catalyst, comprising one or more Group VIB metals and one or more Group VIII metals. Further, the invention relates to a solid Group VIB metal compound obtainable by the process according to the invention having the general formula H2XO4, wherein X=W1-yMoy, wherein y is between 0 and 1 and to its use in a process for the manufacture of a fresh catalyst.
    Type: Grant
    Filed: September 14, 2007
    Date of Patent: November 15, 2011
    Assignee: Albemarle Netherlands B.V.
    Inventors: Bob Gerardus Oogjen, Harmannus Willem Homan Free, Johannes Cornelis Sitters
  • Patent number: 8034986
    Abstract: Solid-state highly brominated compounds such as solid brominated flame retardants with bromine contents of at least about 60 wt % often contain occluded bromine. Because of their high bromine contents, such compounds have relatively low solubility in common organic solvents. Despite this low solubility, the content of occluded bromine in such solid brominated compounds is effectively reduced by agitating a concentrated agitated slurry of the compound in an inert solvent at a suitable temperature for at least about 1 hour. Thereafter, solids with reduced content of occluded bromine are isolated or recovered from the slurry. Novel products having substantially reduced or eliminated occluded bromine contents and other very desirable characteristics are also provided.
    Type: Grant
    Filed: August 17, 2007
    Date of Patent: October 11, 2011
    Assignee: Albemarle Corporation
    Inventors: Saadat Hussain, Arthur G. Mack
  • Patent number: 8012343
    Abstract: The present invention pertains to a process for the hydroprocessing of heavy hydrocarbon feeds, preferably in an ebullating bed process, by contacting the feed with a mixture of two hydroprocessing catalysts meeting specified pore size distribution requirements. The process combines high contaminant removal with high conversion, low sediment formation, and high process flexibility.
    Type: Grant
    Filed: December 5, 2003
    Date of Patent: September 6, 2011
    Inventors: Frans Lodewijk Plantenga, Katsuhisa Fujita, Satoshi Abe
  • Patent number: 7994373
    Abstract: High assay, reaction-derived decabromodiphenylethane product is prepared by feeding (i) diphenylethane or (ii) partially brominated diphenylethane having an average bromine number less than about two, or (iii) both of (i) and (ii), into the liquid confines of a reaction mixture. Such reaction mixture is (a) formed from components comprised of excess liquid bromine and aluminum-based Lewis acid bromination catalyst, and (b) maintained at one or more elevated reaction temperatures of from about 45°-90° C., and at least when elevated pressure is needed to keep a liquid state in the reaction mixture at the temperature(s) used, the reaction mixture is at such an elevated pressure, whereby ar-bromination occurs. The feeding is conducted at a rate slow enough to form high assay reaction-derived decabromodiphenylethane product, which is an effective flame retardant.
    Type: Grant
    Filed: August 17, 2007
    Date of Patent: August 9, 2011
    Assignee: Albemarie Corporation
    Inventors: Saadat Hussain, Arthur G. Mack
  • Patent number: 7964528
    Abstract: The invention relates to a process for the preparation of a shaped bulk catalyst comprising metal oxide particles comprising one or more Group VIII metals and two or more Group VIB metals which process comprises the steps of providing first metal oxidic particles comprising one or more first Group VIII metals and one or more first Group VIB metals, providing separately prepared second metal oxidic particles comprising one or more second Group VIII metals and one or more second Group VIB metals, wherein the composition of Group VIB and Group VIII metals in the first and second metal oxidic particles are different, combining the first and second metal oxidic particles before and/or during shaping and shaping the combined first and second metal oxide particles to form a shaped bulk catalyst. The invention further relates to the shaped bulk catalyst obtainable with the process In sulphided or unsulphided form and the use thereof in hydroprocessing.
    Type: Grant
    Filed: October 25, 2006
    Date of Patent: June 21, 2011
    Assignee: Albemarle Netherlands, B.V.
    Inventors: Sona Eijsbouts-Spickova, Robertus Gerardus Leliveld, Johannes Cornelis Sitters, Marinus Bruce Cerfontain, Bob Gerardus Oogjen
  • Patent number: 7956000
    Abstract: The invention pertains to a process for activating an hydrotreating catalyst comprising a Group VIB metal oxide and a Group VIII metal oxide which process comprises contacting the catalyst with an acid and an organic additive which has a boiling point in the range of 80-500° C. and a solubility in water of at least 5 grams per liter (20° C., atmospheric pressure), optionally followed by drying under such conditions that at least 50% of the additive is maintained in the catalyst. The hydrotreating catalyst may be a fresh hydrotreating catalyst or a used hydrotreating catalyst which has been regenerated.
    Type: Grant
    Filed: September 30, 2004
    Date of Patent: June 7, 2011
    Assignees: Albemarle Europe, SPRL, Nippon Ketjen Co., Ltd.
    Inventors: Marcel Adriaan Jansen, Franciscus Wilhelmus Van Houtert, Toshiyuki Ado, Tetsuro Kamo, Naohiro Nishimoto
  • Patent number: 7951741
    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: Grant
    Filed: November 10, 2005
    Date of Patent: May 31, 2011
    Assignee: Albemarle Netherlands, B.V.
    Inventor: Sonja Eijsbouts
  • Patent number: 7922894
    Abstract: The present invention pertains to a process for hydroprocessing a heavy hydrocarbon oil, comprising contacting a heavy hydrocarbon oil in the presence of hydrogen with a mixture of hydroprocessing catalyst I and hydroprocessing catalyst II. The process of the invention combines high contaminant removal with high conversion, low sediment formation, and high process flexibility.
    Type: Grant
    Filed: December 8, 2003
    Date of Patent: April 12, 2011
    Assignees: Albemarle Netherlands, B.V., Nippon Ketjen Co., Ltd.
    Inventors: Frans Lodewijk Plantenga, Katsuhisa Fujita, Satoshi Abe
  • Patent number: 7871547
    Abstract: This invention provides a process for reducing the amount of soluble halide in a solution comprising a liquid organic medium, at least one viscosity reducing agent, at least one dihydrocarbylmagnesium compound, and an initial amount of soluble halide. The process comprises mixing at least one alkali metal with the solution at a mole ratio of alkali metal to magnesium of less than about 1:2.5, thereby forming precipitated soluble halides. Also provided by this invention is a process for reducing the amount of soluble halide in a slurry comprising a liquid organic medium, at least one viscosity reducing agent, at least one dihydrocarbylmagnesium compound, solids from the formation of said dihydrocarbylmagnesium compound, and an initial amount of soluble halide. This process comprises mixing at least one alkali metal with the slurry at a mole ratio of alkali metal to magnesium of less than about 1:1.25, thereby forming precipitated soluble halides.
    Type: Grant
    Filed: November 12, 2004
    Date of Patent: January 18, 2011
    Assignee: Albemarle Corporation
    Inventors: Milind M. Pradhan, Chi Hung Cheng, Rajeev S. Mathur, Richard A. Holub, Donald W. Imhoff