Patents by Inventor Sebastian C. Reyes

Sebastian C. Reyes 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).

  • Patent number: 9097445
    Abstract: A process for generating refrigeration, electricity or work utilizing a sorption system is disclosed. The sorption system includes a sorbent material and a fluid, in which the sorbent material and fluid in combination have a pressure index of at least 1.2.
    Type: Grant
    Filed: September 18, 2012
    Date of Patent: August 4, 2015
    Assignee: EXXONMOBIL RESEARCH AND ENGINEERING COMPANY
    Inventors: Bhupender S. Minhas, Ian A Cody, Don E. Stratton, Sebastian C. Reyes, Charanjit S. Paur, Erick D. Gamas-Castellanos, Mohsen S. Yeganeh, Thomas F. Degnan
  • Patent number: 8545602
    Abstract: The removal of one or more of the gases CO2, N2 and H2S from gas mixtures containing at least one of said gases with use of an 8-ring zeolite having a Si:Al ratio from about 1:1 to about 1000:1. The preferred gas mixture is a natural gas feedstream and the preferred 8-ring zeolite is DDR.
    Type: Grant
    Filed: April 4, 2008
    Date of Patent: October 1, 2013
    Assignee: ExxonMobil Research and Engineering Company
    Inventors: Ronald R. Chance, Sebastian C. Reyes, Harry W. Deckman, Gregory J. DeMartin, Bruce T. Kelley, Paul S. Northrop, Eugene R. Thomas
  • Patent number: 8529663
    Abstract: The present invention relates the separation of a target gas from a mixture of gases through the use of engineered structured adsorbent contactors in pressure swing adsorption and thermal swing adsorption processes. Preferably, the contactors contain engineered and substantially parallel flow channels wherein 20 volume percent or less of the open pore volume of the contactor, excluding the flow channels, is in the mesopore and macropore range.
    Type: Grant
    Filed: April 4, 2008
    Date of Patent: September 10, 2013
    Assignee: ExxonMobil Research and Engineering Company
    Inventors: Sebastian C. Reyes, Harry W. Deckman, Ronald R. Chance, Gregory J. DeMartin, Frank Hershkowitz, Eugene R. Thomas, Paul S. Northrop, Bruce T. Kelley, Edward W. Corcoran, Jr.
  • Patent number: 8444750
    Abstract: The present invention relates to the separation of one or more of CO2, N2, and H2S gas components from a gas mixture containing at least a second gas using a swing adsorption process unit. The adsorbent contactors of the swing adsorption process unit are engineered structured adsorbent contactors having a plurality of flow channels wherein 20 volume percent or less of the open pore volume of the contactors is in the mesopore and macropore range.
    Type: Grant
    Filed: April 4, 2008
    Date of Patent: May 21, 2013
    Assignee: ExxonMobil Research and Engineering Company
    Inventors: Harry W. Deckman, Ronald R. Chance, Sebastian C. Reyes, Gregory J. DeMartin, Eugene R. Thomas, Paul S. Northrop, Bruce T. Kelley, Edward W. Corcoran, Jr.
  • Patent number: 8425674
    Abstract: A sorption system is disclosed that includes a sorbent material and a fluid, in which the sorbent material and fluid in combination have a pressure index of at least 1.2.
    Type: Grant
    Filed: October 21, 2009
    Date of Patent: April 23, 2013
    Assignee: ExxonMobil Research and Engineering Company
    Inventors: Bhupender S. Minhas, Ian A. Cody, Don E. Stratton, Sebastian C. Reyes, Charanjit S. Paur, Erick D. Gamas-Castellanos, Mohsen S. Yeganeh, Thomas F. Degnan
  • Publication number: 20120255377
    Abstract: The identification, synthesis, and use of an isomorphously substituted molecular sieve material having structural frameworks substituted with a preselected substitution element for a framework element of the molecular sieve material can result in a preferred transport controlling window size range for the optimal separation of a target gas component from a gaseous mixture containing said target gas component.
    Type: Application
    Filed: April 5, 2012
    Publication date: October 11, 2012
    Applicant: EXXONMOBIL RESEARCH AND ENGINEERING COMPANY
    Inventors: Preeti Kamakoti, Edward W. Corcoran, Ronald R. Chance, Sebastian C. Reyes
  • Patent number: 8192709
    Abstract: The present invention relates to the selective separation of methane (“CH4”) from higher carbon number hydrocarbons (“HHC”s) in streams containing both methane and higher carbon number hydrocarbons (e.g. ethylene, ethane, propylene, propane, etc.) utilizing a zeolitic imidazolate framework (“ZIF”) material. Preferably, the stream to be separated is fed to the present process in a substantially gaseous phase. In preferred embodiments, the current invention is utilized in a process to separate methane from higher carbon number hydrocarbons in natural gas streams.
    Type: Grant
    Filed: January 30, 2009
    Date of Patent: June 5, 2012
    Assignee: ExxonMobil Research and Engineering Company
    Inventors: Sebastian C. Reyes, Jose G. Santiesteban, legal representative, Zheng Ni, Charanjit S. Paur, Pavel Kortunov, John Zengel, Harry W. Deckman
  • Patent number: 8142746
    Abstract: The present invention relates to the selective separation of carbon dioxide (“CO2”) from methane (“CH4”) in streams containing both carbon dioxide and methane utilizing a zeolitic imidazolate framework (“ZIF”) material. Preferably, the stream to be separated is fed to the present process in a substantially gaseous phase. In preferred embodiments, the current invention is utilized in a process to separate carbon dioxide from natural gas streams preferably for sequestration of at least a portion of the carbon dioxide present in the natural gas.
    Type: Grant
    Filed: January 23, 2009
    Date of Patent: March 27, 2012
    Assignee: ExxonMobil Research and Engineering Company
    Inventors: Sebastian C. Reyes, Jose G. Santiesteban, legal representative, Zheng Ni, Charanjit S. Paur, Pavel Kortunov, John Zengel, Harry W. Deckman
  • Patent number: 8142745
    Abstract: The present invention relates to the selective separation of carbon dioxide (“CO2”) from nitrogen (“N2”) in streams containing both carbon dioxide and nitrogen utilizing a zeolitic imidazolate framework (“ZIF”) material. Preferably, the stream to be separated is fed to the present process in a substantially gaseous phase. In preferred embodiments, the current invention is utilized in a process to separate carbon dioxide from combustion gas (e.g., flue gas) streams preferably for sequestration of at least a portion of the carbon dioxide produced in combustion processes.
    Type: Grant
    Filed: January 23, 2009
    Date of Patent: March 27, 2012
    Assignee: Exxonmobil Research and Engineering Company
    Inventors: Sebastian C. Reyes, Jose G. Santiesteban, legal representative, Zheng Ni, Charanjit S. Paur, Pavel Kortunov, John Zengel, Harry W. Deckman
  • Patent number: 8071063
    Abstract: The present invention relates to the selective separation of hydrogen (“H2”) hydrocarbons in streams containing both hydrogen and hydrocarbons (e.g. methane, ethylene, ethane, propylene, propane, etc.) utilizing a zeolitic imidazolate framework (“ZIF”) material. Preferably, the stream to be separated is fed to the present process in a substantially gaseous phase. In preferred embodiments, the current invention is utilized in either a pressure swing adsorption process, a temperature swing adsorption process, or a membrane separations process to separate hydrogen from hydrocarbons present in hydrogen production streams or petrochemical/petroleum refining product streams and intermediate streams.
    Type: Grant
    Filed: January 30, 2009
    Date of Patent: December 6, 2011
    Assignee: ExxonMobile Research and Engineering Company
    Inventors: Sebastian C. Reyes, Jose G. Santiesteban, legal representative, Zheng Ni, Charanjit S. Paur, Pavel Kortunov, John Zengel, Harry W. Deckman
  • Patent number: 7868201
    Abstract: A process for the oxidation of hydrocarbons comprises contacting the hydrocarbon with an oxygen-containing gas in the presence of a catalyst comprising a microporous solid support, preferably a zeolite, having from 8- to 12-ring open windows and comprising non-framework metal cations selected from manganese, iron, cobalt, vanadium, chromium, copper, nickel, and ruthenium, and mixtures thereof, providing that the oxygen-containing gas does not contain significant amounts of added hydrogen. The catalyst is novel and forms part of the invention. The process may be used for oxidation of alkanes, cycloalkanes, benzene and alkylbenzenes, and is suitable for use in regioselective terminal oxidation of straight chain alkanes and for selective oxidation/separation of p-dialkylbenzenes from an alkylbenzene mixture, for example, p-xylene from an isomeric mixture of xylenes.
    Type: Grant
    Filed: July 1, 2005
    Date of Patent: January 11, 2011
    Assignee: ExxonMobil Research and Engineering Company
    Inventors: Bi-Zeng Zhan, Bjorn Moden, Jihad Dakka, Jose Santiesteban, Sebastian C. Reyes, Enrique Iglesia
  • Patent number: 7837979
    Abstract: A process for synthesizing the porous crystalline material ITQ-12 is disclosed and employs an organic directing agent having the formula: where n is an integer from 1 to 3 and Q? is an anion. The resultant ITQ-12 is useful in as a catalyst in chemical conversion reactions and as an adsorbent for gas separation.
    Type: Grant
    Filed: October 5, 2007
    Date of Patent: November 23, 2010
    Assignee: ExxonMobil Research and Engineering Company
    Inventors: Guang Cao, Matu J. Shah, Sebastian C. Reyes
  • Publication number: 20100132359
    Abstract: A sorption system is disclosed that includes a sorbent material and a fluid, in which the sorbent material and fluid in combination have a pressure index of at least 1.2.
    Type: Application
    Filed: October 21, 2009
    Publication date: June 3, 2010
    Applicant: ExxonMobil Research and Engineering Company
    Inventors: Bhupender S. Minhas, Ian A. Cody, Don E. Stratton, Sebastian C. Reyes, Charanjit S. Paur, Erick D. Gamas-Castellanos, Mohsen S. Yeganeh, Thomas F. Degnan
  • Patent number: 7683233
    Abstract: In a process for producing a para-xylene enriched product from a gaseous mixture comprising at least para-xylene, meta-xylene and ortho-xylene, the gaseous mixture is contacted with an adsorbent capable of selectively adsorbing para-xylene and comprising a crystalline molecular sieve having an average crystal size between about 0.5 micron and about 20 microns. The contacting is conducted at a temperature and pressure such that at least part of the para-xylene in the mixture is adsorbed by the adsorbent to produce a para-xylene-depleted effluent stream. The para-xylene is then desorbed from said adsorbent and collected to form a para-xylene enriched stream. The adsorption and desorption steps are repeated for a plurality of cycles, such that the time between successive contacting steps is no more than 10 seconds.
    Type: Grant
    Filed: August 20, 2007
    Date of Patent: March 23, 2010
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventors: John Di-Yi Ou, Sebastian C. Reyes, Bal K. Kaul, Wenyih Frank Lai, Brenda A. Raich, Charanjit S. Paur
  • Publication number: 20090211440
    Abstract: The present invention relates to the selective separation of hydrogen (“H2”) hydrocarbons in streams containing both hydrogen and hydrocarbons (e.g. methane, ethylene, ethane, propylene, propane, etc.) utilizing a zeolitic imidazolate framework (“ZIF”) material. Preferably, the stream to be separated is fed to the present process in a substantially gaseous phase. In preferred embodiments, the current invention is utilized in either a pressure swing adsorption process, a temperature swing adsorption process, or a membrane separations process to separate hydrogen from hydrocarbons present in hydrogen production streams or petrochemical/petroleum refining product streams and intermediate streams.
    Type: Application
    Filed: January 30, 2009
    Publication date: August 27, 2009
    Inventors: Sebastian C. Reyes, Jose G. Santiesteban, Zheng Ni, Charanjit S. Paur, Pavel Kortunov, John Zengel, Harry W. Deckman
  • Publication number: 20090214407
    Abstract: The present invention relates to the selective separation of carbon dioxide (“CO2”) from nitrogen (“N2”) in streams containing both carbon dioxide and nitrogen utilizing a zeolitic imidazolate framework (“ZIF”) material. Preferably, the stream to be separated is fed to the present process in a substantially gaseous phase. In preferred embodiments, the current invention is utilized in a process to separate carbon dioxide from combustion gas (e.g., flue gas) streams preferably for sequestration of at least a portion of the carbon dioxide produced in combustion processes.
    Type: Application
    Filed: January 23, 2009
    Publication date: August 27, 2009
    Inventors: Sebastian C. Reyes, Jose G. Santiesteban, Zheng Ni, Charanjit S. Paur, Pavel Kortunov, John Zengel, Harry W. Deckman
  • Publication number: 20090211441
    Abstract: The present invention relates to the selective separation of carbon dioxide (“CO2”) from methane (“CH4”) in streams containing both carbon dioxide and methane utilizing a zeolitic imidazolate framework (“ZIF”) material. Preferably, the stream to be separated is fed to the present process in a substantially gaseous phase. In preferred embodiments, the current invention is utilized in a process to separate carbon dioxide from natural gas streams preferably for sequestration of at least a portion of the carbon dioxide present in the natural gas.
    Type: Application
    Filed: January 23, 2009
    Publication date: August 27, 2009
    Inventors: Sebastian C. Reyes, Zheng Ni, Charanjit S. Paur, Pavel Kortunov, John Zengel, Harry W. Deckman, Jose G. Sentiesteben
  • Publication number: 20090216059
    Abstract: The present invention relates to the selective separation of methane (“CH4”) from higher carbon number hydrocarbons (“HHC”s) in streams containing both methane and higher carbon number hydrocarbons (e.g. ethylene, ethane, propylene, propane, etc.) utilizing a zeolitic imidazolate framework (“ZIF”) material. Preferably, the stream to be separated is fed to the present process in a substantially gaseous phase. In preferred embodiments, the current invention is utilized in a process to separate methane from higher carbon number hydrocarbons in natural gas streams.
    Type: Application
    Filed: January 30, 2009
    Publication date: August 27, 2009
    Inventors: Sebastian C. Reyes, Jose G. Santiesteban, Zheng Ni, Charanjit S. Paur, Pavel Kortunov, John Zengel, Harry W. Deckman
  • Publication number: 20080282886
    Abstract: The present invention relates the separation of a target gas from a mixture of gases through the use of engineered structured adsorbent contactors in pressure swing adsorption and thermal swing adsorption processes. Preferably, the contactors contain engineered and substantially parallel flow channels wherein 20 volume percent or less of the open pore volume of the contactor, excluding the flow channels, is in the mesopore and macropore range.
    Type: Application
    Filed: April 4, 2008
    Publication date: November 20, 2008
    Inventors: Sebastian C. Reyes, Harry W. Deckman, Ronald R. Chance, Gregory J. DeMartin, Frank Hershkowitz, Eugene R. Thomas, Paul S. Northrop, Bruce T. Kelley, Edward W. Corcoran, JR.
  • Publication number: 20080282885
    Abstract: The present invention relates to the separation of one or more of CO2, N2, and H2S gas components from a gas mixture containing at least a second gas using a swing adsorption process unit. The adsorbent contactors of the swing adsorption process unit are engineered structured adsorbent contactors having a plurality of flow channels wherein 20 volume percent or less of the open pore volume of the contactors is in the mesopore and macropore range.
    Type: Application
    Filed: April 4, 2008
    Publication date: November 20, 2008
    Inventors: Harry W. Deckman, Ronald R. Chance, Sebastian C. Reyes, Gregory J. DeMartin, Eugene R. Thomas, Paul S. Northrop, Bruce T. Kelley, Edward W. Corcoran, JR.