Patents Assigned to Exxon Research & Engineering Company
  • Patent number: 6241952
    Abstract: A reactor for reacting liquid petroleum or chemical streams wherein the liquid stream flows countercurrent to the flow of a treat gas, such as a hydrogen-containing gas. The reactor is comprised of at least one vertically disposed reaction zone, each containing a bed of catalyst, wherein each reaction zone may contain vapor bypass means, and wherein each reaction zone is immediately preceded by a non-reaction zone, and wherein each non-reaction zone contains a gas/liquid contacting zone for stripping gaseous by-products, such as NH3 and H2S, from the liquid stream.
    Type: Grant
    Filed: August 12, 1999
    Date of Patent: June 5, 2001
    Assignee: Exxon Research and Engineering Company
    Inventors: Edward S. Ellis, Ramesh Gupta
  • Patent number: 6238550
    Abstract: Disclosed are silicoaluminophosphates (SAPOs) having unique silicon distributions, a method for their preparation and their use as catalysts for the hydroprocessing of hydrocarbon feedstocks. More particularly, the new SAPOs have a high silica:alumina ratio, and may be prepared from single phase synthesis solutions or from microemulsions containing surfactants.
    Type: Grant
    Filed: May 20, 1999
    Date of Patent: May 29, 2001
    Assignee: Exxon Research and Engineering Company
    Inventors: Karl G. Strohmaier, David E. W. Vaughan, William J. Murphy, Ian A. Cody, Sandra J. Linek
  • Patent number: 6239082
    Abstract: Petroleum quench oils effective for high speed cooling of heated metals and metal hardening are disclosed. The petroleum quench oils contain natural or synthetic base oils having a minimum flash point of about 120° C. and a combination of poly(iso)alkylene and poly(iso)alkylene succinic anhydride or succinic acid. A method for cooling heated metal to harden it, improve the metallurgical consistency, improve machinability and reduce residue on quenched metal parts is also disclosed comprising quenching the heated metal part in a quench oil containing natural or synthetic base oils having a minimum flash point of about 120° C. and a combination of poly(iso)alkylene and poly(iso)alkylene succinic anhydride or succinic acid.
    Type: Grant
    Filed: April 3, 1998
    Date of Patent: May 29, 2001
    Assignee: Exxon Research and Engineering Company
    Inventors: William Donald Hewson, Gerald Keith Gerow
  • Patent number: 6239085
    Abstract: A grease of enhanced thermal stability and improved soap utilization comprises a major amount of a base oil comprising polyalphaolefin, alkyl aromatic synthetic fluid and white oil and a minor amount of soap thickener.
    Type: Grant
    Filed: October 23, 1998
    Date of Patent: May 29, 2001
    Assignee: Exxon Research and Engineering Company
    Inventor: David Anthony Slack
  • Patent number: 6235687
    Abstract: Lubricating oils exhibiting anti rust properties are obtained by adding to the lubricating oil an acidic anti rust additive and an acid scavenger such as carbodiimide, in a specific sequence.
    Type: Grant
    Filed: September 21, 1999
    Date of Patent: May 22, 2001
    Assignee: Exxon Research and Engineering Company
    Inventors: Todd Timothy Nadasdi, William Nelson Hayter
  • Patent number: 6231753
    Abstract: Selective and deep desulfurization of a high sulfur content mogas naphtha, with reduced product mercaptans and olefin loss, is achieved by a two stage, vapor phase hydrodesulfurization process with interstage separation of at least 80 vol. % of the H2S formed in the first stage from the first stage, partially desulfurized naphtha vapor effluent fed into the second stage. At least 70 wt. % of the sulfur is removed in the first stage and at least 80 wt. % of the remaining sulfur is removed in the second stage, to achieve a total at least 95 wt. % feed desulfurization, with no more than a 60 vol. % feed olefin loss. The second stage temperature and space velocity are preferably greater than in the first. The hydrodesulfurization catalyst preferably contains a low metal loading of Co and Mo metal catalytic components on an alumina support.
    Type: Grant
    Filed: November 24, 1999
    Date of Patent: May 15, 2001
    Assignee: Exxon Research and Engineering Company
    Inventors: Craig A. McKnight, Thomas R. Halbert, John P. Greeley, Garland B. Brignac, Richard A. Demmin, William E. Winter, Jr., Bruce R. Cook
  • Patent number: 6231754
    Abstract: A high temperature naphtha desulfurization process with reduced olefin saturation employs a partially spent and low metals content hydrodesulfurization catalyst having from 2-40% the activity of a new catalyst. The catalytic metals preferably include Co and Mo in an atomic ratio of from 0.1 to 1. The catalyst is preferably at least partially regenerable, has less than 500 wppm of a total of one or more of nickel, iron and vanadium and preferably has no more than 12 wt. % catalytic metal calculated as the oxide. This permits selective deep desulfurization, with reduced olefin saturation, low product mercaptan levels and little or need for downstream mercaptan removal.
    Type: Grant
    Filed: December 6, 1999
    Date of Patent: May 15, 2001
    Assignee: Exxon Research and Engineering Company
    Inventors: Garland B. Brignac, John P. Greeley, Thomas R. Halbert, Craig A. McKnight, Richard A. Demmin, Janet R. Clark
  • Patent number: 6232279
    Abstract: Lubricant compositions suitable for use in automotive engines, especially internal combustion engines, the lubricant having a kinematic viscosity at 100° C. of less than 12.5 mm2/s and a high temperature, high shear dynamic viscosity (i.e. at a temperature of 150° C. and a shear rate of 106/s) of at least 2.9 mPa.s, and comprising (a) 70 to 99.5 wt. % of a base oil, preferably a mixture of poly-alpha-olefin and ester, having a kinematic viscosity at 100° C. of 2 to 8 mm2/s and a viscosity index of at least 120, and (b) 0.5 to 3 wt. % of an alkenylarene-conjugated diene copolymer, preferably styrene/butadiene copolymer, as a viscosity index improver. The lubricant provides an improvement in fuel economy performance whilst maintaining effective lubrication of the engine under operating conditions.
    Type: Grant
    Filed: June 25, 1999
    Date of Patent: May 15, 2001
    Assignee: Exxon Research and Engineering Company
    Inventor: Edgar Andreas Steigerwald
  • Patent number: 6228239
    Abstract: In one embodiment, the invention is related to a process for desalting crude oil that requires less wash water than conventional desalting methods. In the preferred embodiment of the invention, a chemical demulsifier formulation comprising an emulsion-breaking chemical and a solvent carrier is added to the crude oil. Wash water is then added to the crude oil until the volume of water in the oil ranges from about 0.1 to about 3 vol. %. Subsequently, the mixture of crude oil, wash water, and chemical demulsifier formulation is subjected to opposed-flow mixing. Chemical emulsion-breakers useful in the invention have a hydrophobic tail group and a hydrophilic head group. Preferably, the emulsion breaker has the formula: x ranges from 1 to 5, y ranges from 0 to 2, and R is an alkyl group having 4-9 carbon atoms, and n ranges from 3 to 9.
    Type: Grant
    Filed: February 26, 1999
    Date of Patent: May 8, 2001
    Assignee: Exxon Research and Engineering Company
    Inventors: Pacifico V. Manalastas, Ramesh Varadaraj, David W. Savage, Guido Sartori, Ramesh R. Hemrajani, Cornelius Hendrick Brons
  • Patent number: 6224770
    Abstract: The invention is a system and a method for bioremediating hydrocarbon-contaminated groundwater. The method comprises contacting the hydrocarbon-contaminated groundwater with a source of microbial nutrients and then aerating the nutriated water with air or oxygen, the aeration being conducted under substantially bubble-free conditions.
    Type: Grant
    Filed: March 19, 1999
    Date of Patent: May 1, 2001
    Assignee: Exxon Research and Engineering Company
    Inventors: David William Savage, Win-Sow Winston Ho, Peter Calcavecchio, Evelyn Nobles Drake
  • Patent number: 6224749
    Abstract: A three stage hydroprocessing process includes two liquid and one vapor reaction stages, both of which produce an effluent comprising liquid and vapor. Both vapor effluents comprise vaporized hydrocarbonaceous material. Fresh hydrogen is used for the hydroprocessing in both liquid stages. The second stage liquid effluent comprises the product liquid. The first stage liquid effluent is the feed for the second stage. The first stage vapor effluent is hydroprocessed in the vapor stage and then cooled to condense and recover at least a portion of the processed vapor as additional product liquid.
    Type: Grant
    Filed: May 6, 1998
    Date of Patent: May 1, 2001
    Assignee: Exxon Research and Engineering Company
    Inventors: Ramesh Gupta, Henry Jung, Edward S. Ellis, Gerald E. Markley
  • Patent number: 6225255
    Abstract: An additive catalyst for the cracking of heavy oil, characterized in that the additive catalyst includes: (i) a mixed metal oxide composed of an acidic metal oxide and a basic metal oxide, in which the proportion of the basic metal oxide is from 5 to 50 mole %, (ii) clay, and (iii) silica.
    Type: Grant
    Filed: June 8, 1998
    Date of Patent: May 1, 2001
    Assignee: Exxon Research and Engineering Company
    Inventors: Masato Shibasaki, Nobuo Ootake, Kaori Nakamura
  • Patent number: 6221240
    Abstract: A process for the hydrodesulfurization (HDS) of multiple condensed ring heterocyclic organosulfur compounds present in petroleum and petrochemical streams and the saturation of aromatics over noble metal-containing catalysts under relatively mild conditions. The noble metal is selected from Pt, Pd, Ir, Rh and polymetallics thereof. The catalyst system also contains a hydrogen sulfide sorbent material.
    Type: Grant
    Filed: June 7, 1999
    Date of Patent: April 24, 2001
    Assignee: Exxon Research and Engineering Company
    Inventors: Darryl P. Klein, Michele S. Touvelle, Edward S. Ellis, Carl W. Hudson, Sylvain Hantzer, Jingguang Chen, David E. W. Vaughan, Michel Daage, James J. Schorfheide, William C. Baird, Jr., Gary B. McVicker
  • Patent number: 6223133
    Abstract: The present invention is a method for optimizing multivariate calibrations such as those used on FT-IR analyzers. The method involves the selection of an optimum subset of samples to use in the calibration from a larger set of available samples. The subset selection is done so as to minimize the bias of the resulting calibration while simultaneously maintaining acceptable standard errors and ensuring maximal range for the model.
    Type: Grant
    Filed: May 14, 1999
    Date of Patent: April 24, 2001
    Assignee: Exxon Research and Engineering Company
    Inventor: James M. Brown
  • Patent number: 6217771
    Abstract: A method for removing corrosive contaminants from a polar extraction solvent comprises adding water to the solvent to provide a mixture. Then the mixture is contacted with a basic ion exchanger resin to remove the corrosive contaminants. The solvent is recovered and may be reused.
    Type: Grant
    Filed: October 15, 1999
    Date of Patent: April 17, 2001
    Assignee: Exxon Research and Engineering Company
    Inventors: Joseph P. Boyle, David C. Hager, Alan R. Katritzky
  • Patent number: 6214776
    Abstract: An oil composition useful as a high stress electrical oil and especially as a transformer load tap changer oil is provided. The composition comprises a major amount of a paraffinic oil having a low viscosity of less than about 20 cSt @ 40° C. and an effective amount of an additive system including at least one hindered phenolic antioxidant and a benzotriazole metal deactivator.
    Type: Grant
    Filed: May 21, 1999
    Date of Patent: April 10, 2001
    Assignee: Exxon Research and Engineering Company
    Inventors: Jacob B. Angelo, Christopher Jeffrey Still Kent, Frederick Michael Gragg
  • Patent number: 6211252
    Abstract: The invention is a method for forming a solid carbonaceous material into a pumpable fluid by combining the solid with an aqueous treatment solution and then subjecting the mixture to shearing forces. The solid carbonaceous material can be deasphalter unit rock (“DAU rock”), coke, and mixtures of DAU rock and coke. Aqueous treatment solutions contain a water soluble polymer.
    Type: Grant
    Filed: July 9, 1999
    Date of Patent: April 3, 2001
    Assignee: Exxon Research and Engineering Company
    Inventors: Ramesh Varadaraj, Cornelius Hendrick Brons, David William Savage
  • Patent number: 6210560
    Abstract: The present invention is a method for mitigating the fouling from thermally cracked oils by minimizing the residence time at the temperature when the fouling is highest.
    Type: Grant
    Filed: June 11, 1999
    Date of Patent: April 3, 2001
    Assignee: Exxon Research and Engineering Company
    Inventors: Irwin A. Wiehe, Glen B Brons, Linda S. Cronin
  • Patent number: 6210559
    Abstract: The present invention is a process for producing a distillate fuel heavier than gasoline. The process is a Fischer-Tropsch (hydrocarbon synthesis) process that includes using 13C NMR to measure cetane number and a cold flow property in order to optimize the process. Cold flow properties include cold filter plugging point, cloud point and pour point.
    Type: Grant
    Filed: August 13, 1999
    Date of Patent: April 3, 2001
    Assignee: Exxon Research and Engineering Company
    Inventors: Bruce R. Cook, Paul J. Berlowitz, Bernard G. Silbernagel, Debra A. Sysyn
  • Patent number: 6210564
    Abstract: Sulfur-containing petroleum feeds are desulfurized by contacting the feeds with staged addition of sodium metal at temperatures of at least about 250° C. in the presence of excess hydrogen to sodium metal. The formation of Na2S is substantially suppressed and the formation of NaSH is promoted in the desulfurization process.
    Type: Grant
    Filed: May 28, 1997
    Date of Patent: April 3, 2001
    Assignee: Exxon Research and Engineering Company
    Inventors: Glen Brons, Ronald Damian Myers, Roby Bearden, Jr., John Brenton MacLeod