Patents by Inventor Johnathan T. Gorke
Johnathan T. Gorke 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).
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Patent number: 10174258Abstract: The present disclosure relates generally to a two-stage biomass pyrolysis processes that maximize pyrolysis vapor yield from a lignocellulosic biomass while being conducive to commercial-scale throughput of biomass. A lignocellulosic feedstock is first pyrolyzed in a reactor first stage comprising at least one auger at a temperature and residence time that produces pyrolysis vapors derived predominantly from cellulose and hemi-cellulose fractions of the feedstock. Partially-pyrolyzed feedstock from the reactor first stage is then pyrolyzed in a reactor second stage at a higher temperature for an additional residence time to produce additional pyrolysis vapors that are predominantly derived from lignin. Certain embodiments arrange multiple reactor first stages around a single reactor second stage.Type: GrantFiled: February 17, 2017Date of Patent: January 8, 2019Assignee: Phillips 66 CompanyInventors: Dustin L. Dalluge, Steven E. Lusk, Samuel T. Jones, Johnathan T. Gorke
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Patent number: 10160912Abstract: This disclosure relates to the fast pyrolysis of organic matter. More specifically, it relates to the catalytic modification of vapors created during the fast pyrolysis of organic matter to create transportation fuel or a transportation fuel component. At least a first portion of pyrolysis vapors is catalytically stabilized or converted, then combined with a portion of raw, unconverted bio-derived pyrolysis vapors at a temperature and pressure sufficient for molecules of the combined vapors to react and produce hydrocarbons of increased molecular weight that are suitable for use as a hydrocarbon transportation fuel or component thereof.Type: GrantFiled: August 22, 2014Date of Patent: December 25, 2018Assignee: Phillips 66 CompanyInventors: Johnathan T. Gorke, Edgar Lotero
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Patent number: 9908092Abstract: The present disclosure relates generally to two-stage biomass pyrolysis systems configured to maximize pyrolysis vapor yield from a lignocellulosic biomass while being conducive to commercial-scale throughput of lignocellulosic biomass. The system includes a reactor first stage comprising at least one auger pyrolyzes a lignocellulosic feedstock at a temperature and residence time that produces pyrolysis vapors derived predominantly from cellulose and hemi-cellulose fractions of the feedstock. A reactor second stage is configured to partially-pyrolyzed feedstock from the reactor first stage at a higher temperature for an additional residence time to produce additional pyrolysis vapors that are predominantly derived from of lignin. Certain embodiments arrange multiple reactor first stages around a single reactor second stage.Type: GrantFiled: February 17, 2017Date of Patent: March 6, 2018Assignee: PHILLIPS 66 COMPANYInventors: Dustin L. Dalluge, Steven E. Lusk, Samuel T. Jones, Johnathan T. Gorke
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Patent number: 9816040Abstract: The present disclosure relates generally to novel biomass pyrolysis processes and systems that decrease entrainment of char and other contaminants with the pyrolysis vapors as a direct consequence of the biomass feedstock comprising particles that are larger than a defined minimum diameter. The biomass feedstock may optionally be compressed to form feedstock pellets that are larger than a defined minimum diameter.Type: GrantFiled: September 9, 2013Date of Patent: November 14, 2017Assignee: Phillips 66 CompanyInventors: Daren E. Daugaard, Samuel T. Jones, Johnathan T. Gorke
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Publication number: 20170239634Abstract: The present disclosure relates generally to two-stage biomass pyrolysis systems configured to maximize pyrolysis vapor yield from a lignocellulosic biomass while being conducive to commercial-scale throughput of lignocellulosic biomass. The system includes a reactor first stage comprising at least one auger pyrolyzes a lignocellulosic feedstock at a temperature and residence time that produces pyrolysis vapors derived predominantly from cellulose and hemi-cellulose fractions of the feedstock. A reactor second stage is configured to partially-pyrolyzed feedstock from the reactor first stage at a higher temperature for an additional residence time to produce additional pyrolysis vapors that are predominantly derived from of lignin. Certain embodiments arrange multiple reactor first stages around a single reactor second stage.Type: ApplicationFiled: February 17, 2017Publication date: August 24, 2017Applicant: PHILLIPS 66 COMPANYInventors: Dustin L. DALLUGE, Steven E. LUSK, Samuel T. JONES, Johnathan T. GORKE
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Publication number: 20170240814Abstract: The present disclosure relates generally to a two-stage biomass pyrolysis processes that maximize pyrolysis vapor yield from a lignocellulosic biomass while being conducive to commercial-scale throughput of biomass. A lignocellulosic feedstock is first pyrolyzed in a reactor first stage comprising at least one auger at a temperature and residence time that produces pyrolysis vapors derived predominantly from cellulose and hemi-cellulose fractions of the feedstock. Partially-pyrolyzed feedstock from the reactor first stage is then pyrolyzed in a reactor second stage at a higher temperature for an additional residence time to produce additional pyrolysis vapors that are predominantly derived from lignin. Certain embodiments arrange multiple reactor first stages around a single reactor second stage.Type: ApplicationFiled: February 17, 2017Publication date: August 24, 2017Applicant: PHILLIPS 66 COMPANYInventors: Dustin L. DALLUGE, Steven E. LUSK, Samuel T. JONES, Johnathan T. GORKE
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Publication number: 20150073181Abstract: This disclosure relates to the fast pyrolysis of organic matter. More specifically, it relates to the catalytic modification of vapors created during the fast pyrolysis of organic matter to create transportation fuel or a transportation fuel component. At least a first portion of pyrolysis vapors is catalytically stabilized or converted, then combined with a portion of raw, unconverted bio-derived pyrolysis vapors at a temperature and pressure sufficient for molecules of the combined vapors to react and produce hydrocarbons of increased molecular weight that are suitable for use as a hydrocarbon transportation fuel or component thereof.Type: ApplicationFiled: August 22, 2014Publication date: March 12, 2015Applicant: PHILLIPS 66 COMPANYInventors: Johnathan T. Gorke, Edgar Lotero
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Publication number: 20150071836Abstract: This disclosure relates to systems for the fast pyrolysis of organic matter. More specifically, it relates to systems for the catalytic modification of vapors created during the fast pyrolysis of organic matter to create transportation fuel or a transportation fuel component. The inventive systems either catalytically stabilize or convert at least a first portion of pyrolysis vapors, then combine them with a portion of raw, unconverted bio-derived pyrolysis vapors at a temperature and pressure sufficient for molecules of the combined vapors to react and produce hydrocarbons of increased molecular weight that are suitable for use as a hydrocarbon transportation fuel or component thereof.Type: ApplicationFiled: August 22, 2014Publication date: March 12, 2015Applicant: PHILLIPS 66 COMPANYInventors: Johnathan T. Gorke, Edgar Lotero
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Publication number: 20140069799Abstract: The present disclosure relates generally to novel biomass pyrolysis processes and systems that decrease entrainment of char and other contaminants with the produced pyrolysis vapors.Type: ApplicationFiled: September 10, 2013Publication date: March 13, 2014Applicant: Phillips 66 CompanyInventors: Johnathan T. Gorke, Samuel T. Jones, Mark A. Hughes, J. Scott McQueen, Cory B. Phillips
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Publication number: 20140069797Abstract: The present disclosure relates generally to novel biomass pyrolysis processes and systems that decrease entrainment of char and other contaminants with the pyrolysis vapors as a direct consequence of the biomass feedstock comprising particles that are larger than a defined minimum diameter. The biomass feedstock may optionally be compressed to form feedstock pellets that are larger than a defined minimum diameter.Type: ApplicationFiled: September 9, 2013Publication date: March 13, 2014Applicant: PHILLIPS 66 COMPANYInventors: Daren E. Daugaard, Samuel T. Jones, Johnathan T. Gorke
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Publication number: 20140069012Abstract: The present disclosure relates generally to novel biomass pyrolysis processes and systems that decrease entrainment of char and other contaminants with the produced pyrolysis vapors.Type: ApplicationFiled: September 10, 2013Publication date: March 13, 2014Applicant: Phillips 66 CompanyInventors: Johnathan T. Gorke, Samuel T. Jones, Mark A. Hughes, J. Scott McQueen, Cory B. Phillips
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Publication number: 20140069010Abstract: The present disclosure relates generally to novel biomass pyrolysis processes and systems that decrease entrainment of char and other contaminants with the pyrolysis vapors. In certain embodiments, the present disclosure provides methods and systems to prevent entrainment of particles of char and heat carrier with pyrolysis vapors leaving a reactor, while allowing rapid upgrading of the vapors by catalyst(s) that are held in a an upgrading reactor and protected from contact with the char.Type: ApplicationFiled: September 9, 2013Publication date: March 13, 2014Applicant: Phillips 66 CompanyInventors: Mark A. Hughes, Tie-Pan Shi, Richard D. Sadok, Samuel T. Jones, Johnathan T. Gorke, Natalie A. Rebacz, Liang Zhang, Martin L. Perkins
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Publication number: 20140073823Abstract: The present disclosure relates generally to novel biomass pyrolysis processes and systems that decrease entrainment of char and other contaminants with the pyrolysis vapors.Type: ApplicationFiled: September 9, 2013Publication date: March 13, 2014Applicant: Phillips 66 CompanyInventors: Mark A. Hughes, Johnathan T. Gorke, Samuel T. Jones, Tie-Pan Shi, Natalie A. Rebacz, Edgar Lotero
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Patent number: 8247198Abstract: It has surprisingly been discovered that it is possible to use enzymes in deep eutectic solvents (DES). DES's are mixtures of a nitrogen salt or a metal salt and a strong hydrogen bond donor that can be mixed in proportions that form a eutectic point.Type: GrantFiled: September 22, 2008Date of Patent: August 21, 2012Assignee: Friedrich SriencInventors: Johnathan T. Gorke, Romas J. Kazlauskas, Friedrich Srienc
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Publication number: 20120190905Abstract: An improved ionic liquid membrane and its preparation for separation of olefins/paraffins is described. The membrane comprises an ionic liquid with a metal salt. The ionic liquid includes a choline salt, selected from choline, chloride/hydroxide/bitratrate, phosphatidylcholine and is a deep eutectic liquid. The metal salt selected from silver, copper, gold, mercury, cadmium, zinc with choloride, nitrate, tetrafluoroborate, triflate, cyanide, thiocyanide, tetraphenylborate as anion. The ionic liquid is eutectic or a so-called deep eutectic liquid. The experimental examples use choline chloride, urea and silver nitrate/chloride and are tested for methane/ethene separation.Type: ApplicationFiled: September 16, 2010Publication date: July 26, 2012Applicant: DOW GLOBAL TECHNOLOGIES LLCInventors: Johnathan T. Gorke, Shawn D. Feist, Scott T. Matteucci, Peter N. Nickias
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Publication number: 20090117628Abstract: It has surprisingly been discovered that it is possible to use enzymes in deep eutectic solvents (DES). DES's are mixtures of a nitrogen salt or a metal salt and a strong hydrogen bond donor that can be mixed in proportions that form a eutectic point.Type: ApplicationFiled: September 22, 2008Publication date: May 7, 2009Inventors: Johnathan T. Gorke, Romas J. Kazlauskas, Friedrich Srienc