Patents Examined by Juan C Valencia
  • Patent number: 11779908
    Abstract: The invention concerns a method for rejuvenating an at least partially used catalyst originating from a hydroprocessing and/or hydrocracking process, the at least partially used catalyst being derived from a fresh catalyst comprising at least one group VIII metal (in particular, Co), at least one group VIB metal (in particular, Mo), an oxide support, and optionally phosphorus, the method comprising the steps: ?a) regenerating the at least partially used catalyst in a gas stream containing oxygen at a temperature between 300° C. and 550° C. so as to obtain a regenerated catalyst, ?b) then placing the regenerated catalyst in contact with phosphoric acid and an organic acid, each having acidity constant pKa greater than 1.5, ?c) performing a drying step at a temperature less than 200° C. without subsequently calcining it, so as to obtain a rejuvenated catalyst.
    Type: Grant
    Filed: December 10, 2019
    Date of Patent: October 10, 2023
    Assignee: IFP Energies nouvelles
    Inventor: Elodie Devers
  • Patent number: 11773338
    Abstract: According to embodiments described herein, a method of processing a whole crude oil feed stream may include passing a whole crude oil feed stream into a fluid catalytic cracking unit and contacting the whole crude oil feed stream with an adsorbent material and a cracking catalyst. The adsorbent material may adsorb at least a portion of the sulfur of the whole crude oil feed stream and at least a portion of the whole crude oil feed stream may be catalytically cracked to produce coke disposed on the cracking catalyst. The method may further include passing the adsorbent material and the cracking catalyst to a regenerator, wherein the adsorbent material and the cracking catalyst contact an oxygen-containing gas at a temperature sufficient to remove at least a portion of the sulfur on the adsorbent material and combust at least a portion of the coke on the catalyst.
    Type: Grant
    Filed: November 3, 2022
    Date of Patent: October 3, 2023
    Assignee: Saudi Arabian Oil Company
    Inventors: Sufeng Cao, Douglas P. Theberge, Brian Hanna, Michael J. Forte
  • Patent number: 11773337
    Abstract: The invention relates to a process for the hydrodesulfurization of a sulfur-containing olefinic gasoline cut in which said gasoline cut, hydrogen and a rejuvenated catalyst are brought into contact, said hydrodesulfurization process being carried out at a temperature of between 200° C. and 400° C., a total pressure of between 1 and 3 MPa, an hourly space velocity, defined as being the flow rate by volume of feedstock relative to the volume of catalyst, of between 1 and 10 h?1 and a hydrogen/gasoline feedstock ratio by volume of between 100 and 1200 Sl/l, said rejuvenated catalyst resulting from a hydrotreating process and comprises at least one metal from group VIII, at least one metal from group VIb, an oxide support and at least one organic compound containing oxygen and/or nitrogen and/or sulfur.
    Type: Grant
    Filed: December 10, 2019
    Date of Patent: October 3, 2023
    Assignee: IFP Energies nouvelles
    Inventors: Elodie Devers, Etienne Girard, Philibert Leflaive
  • Patent number: 11767478
    Abstract: According to one or more embodiments described herein, a method for processing a hydrocarbon feedstock may include contacting a mixed feed with a solvent in a deasphalting system to form residue and deasphalted oil, contacting the deasphalted oil with supercritical water to form an upgraded oil, separating the upgraded oil into at least a light fraction and a heavy fraction, and combining at least a portion of the heavy fraction with the hydrocarbon feedstock to form the mixed feed.
    Type: Grant
    Filed: October 26, 2022
    Date of Patent: September 26, 2023
    Assignee: Saudi Arabian Oil Company
    Inventors: Ki-Hyouk Choi, Young-Kyoung Ahn, Abdullah Tariq AlAbdulhadi, Saad Abdullah AlShahrani, Chang-Woo Son
  • Patent number: 11767479
    Abstract: The present invention is based on the use of a two-step hydrocracking process for the production of naphtha, comprising a step of hydrogenation placed downstream of the second hydrocracking step, the hydrogenation step treating the effluent resulting from the second hydrocracking step in the presence of a specific hydrogenation catalyst. Furthermore, the hydrogenation step and the second hydrocracking step are performed under specific operating conditions and in particular under quite specific temperature conditions.
    Type: Grant
    Filed: January 2, 2020
    Date of Patent: September 26, 2023
    Assignee: IFP Energies Nouvelles
    Inventors: Emmanuelle Guillon, Anne-Claire Dubreuil, Antoine Daudin
  • Patent number: 11767480
    Abstract: This disclosure relates to methods of upgrading hydrocarbon feed stream, which can include separating the hydrocarbon feed stream into a heavy fraction and a light fraction, hydrotreating an aromatic feed stream with at least a first catalyst in a first reactor comprising hydrogen to produce a first product effluent, combining the heavy fraction with at least a portion of the first product effluent to form a mixed stream, and hydrotreating the mixed stream with one or more second catalysts in a second reactor comprising hydrogen to produce a second product effluent.
    Type: Grant
    Filed: October 25, 2022
    Date of Patent: September 26, 2023
    Assignee: Saudi Arabian Oil Company
    Inventors: Lianhui Ding, Saad Al-Bogami, Sameer A. Al-Ghamdi, Duhaiman Yami
  • Patent number: 11760944
    Abstract: This disclosure relates to a procedure, which through the application of a catalyst in homogeneous phase, allows the transformation of heavy hydrocarbons (vacuum residue, atmospheric residue, heavy and extra-heavy crudes) into hydrocarbons of lower molecular weight, characterized because after its application, the hydrocarbons obtain greater API gravity, lower kinematic viscosity and different composition by hydrocarbon families (SARA) that increases the proportion of saturated and aromatic resins and asphalts. The sulphur and nitrogen content is also reduced, resulting in higher yields to high commercial value distillates and a lighter product as compared to the original crude.
    Type: Grant
    Filed: July 17, 2020
    Date of Patent: September 19, 2023
    Assignee: INSTITUTO MEXICANO DEL PETROLEO
    Inventors: Persi Schacht Hernandez, Jose Manuel Dominguez Esquivel, Benjamin Portales Martinez, Ismael Soto Escalante
  • Patent number: 11761681
    Abstract: A liquid-gas heat exchanger for use in a heat exchange system using solar energy has an insulated chamber adapted to allow hot air to pass therethrough. A coil member extends through the insulated chamber and is adapted to allow a heat transfer liquid to pass into and then out of the insulated chamber. The spacing between the windings of the coil are predefined and the coil is in a predetermined position inside the insulated chamber, so as to force the air to pass in between the coil windings and increase the air contact with the coil and provide a large heat exchange. Several baffle members are placed each side of the coil member and an interior area of the insulated chamber and force air to circulate multiple times through the coil member, thereby allowing for an efficient exchange from the hot air to the heat transfer liquid.
    Type: Grant
    Filed: October 12, 2022
    Date of Patent: September 19, 2023
    Inventor: Gilles Savard
  • Patent number: 11739271
    Abstract: A method for forming mesophase pitch can include applying a stimulus to a first amount of coal tar to form a first amount of mesophase pitch. The stimulus can include one or more of an electromagnetic field (“EMF”) or a magnetic field. The method can further include evaluating a characteristic of the first amount of mesophase pitch, changing a parameter of the stimulus in response to evaluating the characteristic of the first amount of mesophase pitch, and applying the stimulus exhibiting the changed parameters to a second amount of coal tar to form mesophase pitch.
    Type: Grant
    Filed: July 12, 2022
    Date of Patent: August 29, 2023
    Assignee: CARBON HOLDINGS INTELLECTUAL PROPERTIES, LLC
    Inventor: Charles Agee Atkins
  • Patent number: 11713421
    Abstract: A process for continuously upgrading heavy oil to produce light hydrocarbon gases which are recycled in the process as a carrier gas used in spark-discharge hydrocarbon cracking within the process. The process also produces light hydrocarbon liquids which are used to upgrade the heavy oil. An apparatus for continuously upgrading heavy oil to produce light hydrocarbon gases which are recycled in the as a carrier gas used in spark-discharge hydrocarbon cracking within the apparatus. The apparatus also produces light hydrocarbon liquids which are used to upgrade the heavy oil.
    Type: Grant
    Filed: April 19, 2019
    Date of Patent: August 1, 2023
    Assignee: The Texas A&M University System
    Inventors: Howard Jemison, David Staack, Kunpeng Wang
  • Patent number: 11708537
    Abstract: A process for producing light olefins comprising thermal cracking. Hydrocracked streams are thermally cracked to produce light olefins. A pyrolysis gas stream is separated into a light pyrolysis gas stream and a heavy pyrolysis gas stream. A light pyrolysis gas stream is separated into a normal paraffins stream and a non-normal paraffins stream. A normal paraffins stream is thermally cracked. The integrated process may be employed to obtain olefin products of high value from a crude stream.
    Type: Grant
    Filed: September 15, 2022
    Date of Patent: July 25, 2023
    Assignee: UOP LLC
    Inventors: Stanley S. Carp, Alan K. Bedell, David M. Banks, Keith Allen Couch, Gregory Funk, Cora Wang Ploentham, Stanley Joseph Frey
  • Patent number: 11707698
    Abstract: Processes and systems for controlling operation of a commercial refinery distillation column and/or splitter operable to separate hydrocarbons. An automated process controller (APC) receives signal from at least one analyzer that provides information about the concentration of at least a first chemical in a first fraction and a second chemical in a second fraction obtained from the distillation column. The APC comprises programming in the form of an algorithm that calculates real-time monetary values for the first chemical and the second chemical and alters the operation of the distillation column to change either the percentage of the first chemical in the second fraction or the percentage of the second chemical in the first fraction, thereby maximizing overall operational profit for the distillation column.
    Type: Grant
    Filed: November 30, 2022
    Date of Patent: July 25, 2023
    Assignee: Phillips 66 Company
    Inventor: Yangdong Pan
  • Patent number: 11697776
    Abstract: A method for the treatment of heavy crude oil with magnetized oxygen/air micro nano bubble water, comprising the steps of generating micro nano bubbles water from treated water by a depressurization process; pumping heavy crude oil and oxygen with the micro nano bubbles water at an injection port; injecting via the injection port a mixture of heavy crude oil and oxygen micro nano bubbles water into a first magnetic unit; subjecting the mixture to a magnetic field under static mixing conditions in the first magnetic unit; injecting the mixture into an interim tank; pressurizing the heavy crude oil and water exiting the interim tank via a slurry pump; pumping the heavy crude oil and water through a second magnetic unit before routing to a first hydrocyclone unit; and routing an overflow of the heavy crude oil for refinery purposes.
    Type: Grant
    Filed: November 13, 2022
    Date of Patent: July 11, 2023
    Inventor: Gulab Khan
  • Patent number: 11692206
    Abstract: Device and process for the conversion of a feedstock of aromatic compounds, in which the feedstock is treated notably by means of a fractionation train (4-7), a xylene separation unit (10) and an isomerization unit (11), and in which a pyrolysis unit (13) treats a second hydrocarbon feedstock, produces a pyrolysis effluent feeding the feedstock, and produces a pyrolysis gas comprising CO, CO2 and H2; a reverse water gas shift RWGS reaction section (50) treats the pyrolysis gas and produces an RWGS gas enriched in CO and in water; a fermentation reaction section (52) treats the RWGS gas enriched in CO and in water, to produce ethanol and recycle the ethanol to the inlet of the pyrolysis unit.
    Type: Grant
    Filed: September 24, 2021
    Date of Patent: July 4, 2023
    Assignee: IFP Energies Nouvelles
    Inventors: Jean-Francois Joly, Frederic Feugnet
  • Patent number: 11692140
    Abstract: A method of converting a liquid hydrocarbon stream to lower boiling point hydrocarbons may include converting the liquid hydrocarbon stream to an aerosolized hydrocarbon particle stream, and subjecting the aerosolized hydrocarbon particle stream to reaction conditions. Reaction conditions may include a temperature from 25° C. to 1,000° C. and a pressure from 1 bar to 15 bar. The method may further include forming the lower boiling point hydrocarbons in the aerosolized hydrocarbon particle stream and separating the lower boiling point hydrocarbons from the aerosolized hydrocarbon particle stream. The lower boiling point hydrocarbons may comprise at least C2-C4 olefins.
    Type: Grant
    Filed: July 11, 2022
    Date of Patent: July 4, 2023
    Assignee: Saudi Arabian Oil Company
    Inventors: Brian Hanna, Michele Louisa Ostraat, Sergio Fernandez, Timothy Kucharski
  • Patent number: 11692146
    Abstract: A system for upgrading heavy hydrocarbon feeds, such as crude oil, include a hydrotreating unit, a hydrotreated effluent separation system, a solvent-assisted adsorption system, and a hydrocracking unit. Processes for upgrading heavy hydrocarbon feeds include hydrotreating the hydrocarbon feed to produce a hydrotreated effluent that includes asphaltenes, separating the hydrotreated effluent into a lesser boiling hydrotreated effluent and a greater boiling hydrotreated effluent comprising the asphaltenes, combining the greater boiling hydrotreated effluent with a light paraffin solvent to produce a combined stream, adsorbing the asphaltenes from the combined stream to produce an adsorption effluent, and hydrocracking the lesser boiling hydrotreated effluent and at least a portion of the adsorption effluent to produce a hydrocracked effluent with hydrocarbons boiling less than 180° C. The systems and processes increase the hydrocarbon conversion and yield of hydrocarbons boiling less than 180° C.
    Type: Grant
    Filed: January 3, 2022
    Date of Patent: July 4, 2023
    Assignee: Saudi Arabian Oil Company
    Inventors: Lianhui Ding, Sameer A. Al-Ghamdi, Faisal Alotaibi
  • Patent number: 11680214
    Abstract: A process for producing a base oil composition from a deasphalted oil (DAO) feed, where the DAO feed undergoes hydrotreating, hydrocracking, catalytically dewaxing, hydrofinishing, and fractionating to generate the base oil composition. The base oil composition includes a hazy-free at 0° C. heavy base oil comprising (a) a kinetic viscosity ranging from 15 to 21 cSt at 100° C., (b) a 5 viscosity index of at least 95, (c) a pour point of less than ?12° C., (d) a cloud point of less than ?18° C., and (e) a total aromatics content of 2 wt % or less, where the hazy-free at 0° C. heavy base oil maintains a hazy-free appearance when stored undisturbed at 0° C. during a test period.
    Type: Grant
    Filed: August 28, 2019
    Date of Patent: June 20, 2023
    Assignee: SHELL USA, INC.
    Inventors: Nariman Boumendjel, Ralf Gunnar Meister, Cornelis Hyacinthus Maria Van Der Hulst, Nicolaas Van Dijk
  • Patent number: 11679994
    Abstract: An atomizer for use in a water treatment system includes an influent inlet, to receive a flow of fluid containing contaminants a gas flow inlet, to receive a flow of gas to be mixed with the fluid in a mixing zone, an airflow controlling component, including an array of vanes disposed between the gas flow inlet and the mixing zone to impart a rotational component to a direction of flow of the gas. A channel receives the flow of fluid containing contaminants, and conducts the flow of fluid containing contaminants to the mixing zone, wherein radially outwardly flowing fluid containing contaminants is mixed with radially inwardly flowing gas to atomize the fluid containing contaminants, and an outlet.
    Type: Grant
    Filed: April 1, 2021
    Date of Patent: June 20, 2023
    Assignee: MICRONIC TECHNOLOGIES, INC.
    Inventor: Kelly Rock
  • Patent number: 11674095
    Abstract: A process of reforming a diesel feedstock to convert diesel to a gasoline blending component may include desulfurizing and denitrogenizing the diesel feedstock to reduce the sulfur and nitrogen content; and then hydrocracking the diesel feedstock over a metal containing zeolitic catalyst to produce an isomerate fraction. The diesel feedstock may have boiling points ranging from 200 to 360° C.
    Type: Grant
    Filed: March 7, 2022
    Date of Patent: June 13, 2023
    Assignee: SAUDI ARABIAN OIL COMPANY
    Inventors: Omer Refa Koseoglu, Ashok Kumar Punetha
  • Patent number: 11676061
    Abstract: This disclosure provides an apparatus and method for harnessing machine learning and data analytics for a real-time predictive model for a FCC pre-treatment unit. The method includes collecting operating parameters of a pre-treatment unit and fluid catalytic cracking (FCC) unit; evaluating an independent variable of the operating parameters; and adjusting an input to the pre-treatment unit to control the independent variable within specifications in an output of the FCC unit.
    Type: Grant
    Filed: October 3, 2018
    Date of Patent: June 13, 2023
    Assignee: Honeywell International Inc.
    Inventors: Soumendra Mohan Banerjee, Deepak Bisht, Krishna Mani, Priyesh Jayendrakumar Jani, Gautam Pandey