Patents by Inventor Isidro MEJIA CENTENO

Isidro MEJIA CENTENO has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20220056236
    Abstract: The present invention is related to a catalytic process, which includes catalytic compositions for depolymerisation and deoxygenation of lignin contained in the biomass for obtaining aromatic hydrocarbons. The catalytic composition consists of at least one non-noble element from group VIIIB of the periodic table supported on a mesoporous matrix composed of an inorganic oxide, which can be alumina surface-modified with a second inorganic oxide with the object of inhibiting the interaction between the active component and the support. The process of lignin depolymerisation consists of dissolving lignin in a mixture of protic liquids, reacting it I a reaction system by batch or in continuous flow at inert and/or reducing atmosphere, at a temperature of between 60 to 320° C. and a pressure of from 5 to 90 kg/cm2.
    Type: Application
    Filed: November 1, 2021
    Publication date: February 24, 2022
    Inventors: Jose Antonio TOLEDO ANTONIO, Maria Antonia CORTES JACOME, Isidro MEJIA CENTENO, Jorge Alberto GARCIA MARTINEZ, Jose ESCOBAR AGUILAR, Esteban LOPEZ SALINAS, Maria de Lourdes Araceli MOSQUEIRA MONDRAGON, Miguel PEREZ LUNA, Carlos ANGELES CHAVEZ, Jaime SANCHEZ VALENTE, Maria de Lourdes Alejandra GUZMAN CASTILLO, Ana Karina MEDINA MENDOZA
  • Patent number: 11180628
    Abstract: The present invention is related to a catalytic process, which includes catalytic compositions for depolymerisation and deoxygenation of lignin contained in the biomass for obtaining aromatic hydrocarbons. The catalytic composition consists of at least one non-noble element from group VIIIB of the periodic table supported on a mesoporous matrix composed of an inorganic oxide, which can be alumina surface-modified with a second inorganic oxide with the object of inhibiting the interaction between the active component and the support. The process of lignin depolymerisation consists of dissolving lignin in a mixture of protic liquids, reacting it|a reaction system by batch or in continuous flow at inert and/or reducing atmosphere, at a temperature of between 60 to 320° C. and a pressure of from 5 to 90 kg/cm2.
    Type: Grant
    Filed: December 15, 2017
    Date of Patent: November 23, 2021
    Assignee: INSTITUTO MEXICANO DEL PETROLEO
    Inventors: Jose Antonio Toledo Antonio, Maria Antonia Cortes Jacome, Isidro Mejia Centeno, Jorge Alberto Garcia Martinez, Jose Escobar Aguilar, Esteban Lopez Salinas, Maria de Lourdes Araceli Mosqueira Mondragon, Miguel Perez Luna, Carlos Angeles Chavez, Jaime Sanchez Valente, Maria de Lourdes Alejandra Guzman Castillo, Ana Karina Medina Mendoza
  • Patent number: 10751700
    Abstract: The present invention is directed to a nanostructured binary oxide TiO2—Al2O3 with high acidity and its synthesis process via the sol-gel method, hydrotreating and thermal activation. The nanostructured binary oxide TiO2—Al2O3 with high acidity consists basically of titanium oxide and aluminum oxide with the special characteristic of being obtained as nanostructures, in their nanocrystal-nanotube evolution, which provides special physicochemical properties such as high specific area, purity and phase stability, acidity stability and different types of active acid sites, in addition to the capacity to disperse and stabilize active metal particles with high activity and selectivity mainly in catalytic processes.
    Type: Grant
    Filed: December 14, 2016
    Date of Patent: August 25, 2020
    Assignee: INSTITUTO MEXICANO DEL PETROLEO
    Inventors: Salvador Castillo Cervantes, Isidro Mejia Centeno, Jesus Marin Cruz, Roberto Camposeco Solis
  • Patent number: 10456773
    Abstract: The present invention is directed to a process for obtaining a nanostructured titania catalyst with stabilized acidity through the sol-gel method and hydrotreatment and thermal activation; constituted basically by titanium oxide, specially characterized of being as nanostructures in its evolution nanocrystals-nanotubes-nanocrystals, that gives special physicochemical properties such as high specific area, purity and phases stability, acidity stability and different types of active acid sites, such as a capacity to disperse and stabilize metallic particles with high activity mainly in catalytic processes.
    Type: Grant
    Filed: September 25, 2014
    Date of Patent: October 29, 2019
    Assignee: INSTITUTO MEXICANO DEL PELTROLEO
    Inventors: Salvador Castillo Cervantes, Isidro Mejia Centeno, Jesus Marin Cruz, Policarpo Galicia Gómez, Roberto Camposeco Solis
  • Publication number: 20180258251
    Abstract: The present invention is related to a catalytic process, which includes catalytic compositions for depolymerisation and deoxygenation of lignin contained in the biomass for obtaining aromatic hydrocarbons. The catalytic composition consists of at least one non-noble element from group VIIIB of the periodic table supported on a mesoporous matrix composed of an inorganic oxide, which can be alumina surface-modified with a second inorganic oxide with the object of inhibiting the interaction between the active component and the support. The process of lignin depolymerisation consists of dissolving lignin in a mixture of protic liquids, reacting it|a reaction system by batch or in continuous flow at inert and/or reducing atmosphere, at a temperature of between 60 to 320° C. and a pressure of from 5 to 90 kg/cm2.
    Type: Application
    Filed: December 15, 2017
    Publication date: September 13, 2018
    Inventors: Jose Antonio TOLEDO ANTONIO, Maria Antonia CORTES JACOME, Isidro MEJIA CENTENO, Jorge Alberto GARCIA MARTINEZ, Jose ESCOBAR AGUILAR, Esteban LOPEZ SALINAS, Maria de Lourdes Araceli MOSQUEIRA MONDRAGON, Miguel PEREZ LUNA, Carlos ANGELES CHAVEZ, Jaime SANCHEZ VALENTE, Maria de Lourdes Alejandra GUZMAN CASTILLO, Ana Karina MEDINA MENDOZA
  • Patent number: 10017397
    Abstract: A semiconductor material basically consists of titanium oxide, with the special feature of being like nanostructures, which gives special physicochemical properties, with ability to disperse and stabilize metal particles with high activity and selectivity in catalytic processes mainly. The process of producing the semiconductor material includes adding a titanium alkoxide to an alcoholic solution, adding an acid to the alcoholic solution, controlling the pH from 1 to 5; subjecting the acidic solution to agitation and reflux conditions at 70 to 80° C.; stabilizing the medium and adding bidistilled water in a water/alkoxide molar ratio of 1-2/0.100-0.150, continuing with reflux until gelation; aging the gel for 1 to 24 hours for complete formation of the titania; drying the titania nanostructured at of 50 to 80° C. for about 1 to 24 hours, and subjecting the dried titania to a calcination step at 200 to 600° C. for 1 to 12 hours.
    Type: Grant
    Filed: January 5, 2017
    Date of Patent: July 10, 2018
    Assignee: INSTITUTO MEXICANO DEL PETROLEO
    Inventors: Salvador Castillo Cervantes, Isidro Mejia Centeno, Roberto Camposeco Solis, Florencia Marina Moran Pineda, Juan Navarrete Bolanos, J. Ascension Montoya De La Fuente, Alfredo Vargas Escudero
  • Publication number: 20170183239
    Abstract: A semiconductor material basically consists of titanium oxide, with the special feature of being like nanostructures, which gives special physicochemical properties, with ability to disperse and stabilize metal particles with high activity and selectivity in catalytic processes mainly. The process of producing the semiconductor material includes adding a titanium alkoxide to an alcoholic solution, adding an acid to the alcoholic solution, controlling the pH from 1 to 5; subjecting the acidic solution to agitation and reflux conditions at 70 to 80° C.; stabilizing the medium and adding bidistilled water in a water/alkoxide molar ratio of 1-2/0.100-0.150, continuing with reflux until gelation; aging the gel for 1 to 24 hours for complete formation of the titania; drying the titania nanostructured at of 50 to 80° C. for about 1 to 24 hours, and subjecting the dried titania to a calcination step at 200 to 600° C. for 1 to 12 hours.
    Type: Application
    Filed: January 5, 2017
    Publication date: June 29, 2017
    Inventors: Salvador CASTILLO CERVANTES, Isidro MEJIA CENTENO, Roberto CAMPOSECO SOLIS, Florencia Marina MORAN PINEDA, Juan NAVARRETE BOLANOS, J. Ascension MONTOYA DE LA FUENTE, Alfredo VARGAS ESCUDERO
  • Publication number: 20170165640
    Abstract: The present invention is directed to a nanostructured binary oxide TiO2—Al2O3 with high acidity and its synthesis process via the sol-gel method, hydrotreating and thermal activation. The nanostructured binary oxide TiO2—Al2O3 with high acidity consists basically of titanium oxide and aluminum oxide with the special characteristic of being obtained as nanostructures, in their nanocrystal-nanotube evolution, which provides special physicochemical properties such as high specific area, purity and phase stability, acidity stability and different types of active acid sites, in addition to the capacity to disperse and stabilize active metal particles with high activity and selectivity mainly in catalytic processes.
    Type: Application
    Filed: December 14, 2016
    Publication date: June 15, 2017
    Inventors: Salvado CASTILLO CERVANTES, Isidro MEJIA CENTENO, Jesus MARIN CRUZ, Roberto CAMPOSECO SOLIS
  • Patent number: 9580332
    Abstract: A nanostructured titania semiconductor material termed TSG-IMP having a predetermined crystal size is produced by a sol-gel method by adding a titanium alkoxide to an alcoholic solution, adding an acid to the alcoholic solution, subjecting the acidic solution to agitation under reflux conditions; stabilizing the medium and adding bidistilled water under reflux until gelation; subjecting the gel to aging until complete formation of the titania which is dried and calcined.
    Type: Grant
    Filed: June 20, 2013
    Date of Patent: February 28, 2017
    Assignee: INSTITUTO MEXICANO DEL PETROLEO
    Inventors: Salvador Castillo Cervantes, Isidro Mejia Centeno, Roberto Camposeco Solis, Florencia Marina Moran Pineda, Juan Navarrete Bolanos, J. Ascension Montoya De La Fuente, Alfredo Vargas Escudero
  • Publication number: 20150087506
    Abstract: The present invention is directed to a process for obtaining a nanostructured titania catalyst with stabilized acidity through the sol-gel method and hydrotreatment and thermal activation; constituted basically by titanium oxide, specially characterized of being as nanostructures in its evolution nanocrystals-nanotubes-nanocrystals, that gives special physicochemical properties such as high specific area, purity and phases stability, acidity stability and different types of active acid sites, such as a capacity to disperse and stabilize metallic particles with high activity mainly in catalytic processes.
    Type: Application
    Filed: September 25, 2014
    Publication date: March 26, 2015
    Inventors: Salvador CASTILLO CERVANTES, Isidro MEJIA CENTENO, Jesus MARIN CRUZ, Policarpo GALICIA GÓMEZ, Roberto CAMPOSECO SOLIS
  • Publication number: 20140037929
    Abstract: A nanostructured titania semiconductor material termed TSG-IMP having a predetermined crystal size is produced by a sol-gel method by adding a titanium alkoxide to an alcoholic solution, adding an acid to the alcoholic solution, subjecting the acidic solution to agitation under reflux conditions: stabilizing the medium and adding bidistilled water under reflux until gelation; subjecting the gel to aging until complete formation of the titania which is dried and calcined.
    Type: Application
    Filed: June 20, 2013
    Publication date: February 6, 2014
    Inventors: Salvador CASTILLO CERVANTES, Isidro MEJIA CENTENO, Roberto CAMPOSECO SOLIS, Florencia Marina MORAN PINEDA, Juan NAVARRETE BOLANOS, J. Ascension MONTOYA DE LA FUENTE, Alfredo VARGAS ESCUDERO