Patents by Inventor Arvind V. Harinath

Arvind V. Harinath 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: 11764365
    Abstract: The present disclosure generally relates to a fuel cell electrode having a patterned microporous layer and method of fabricating the same.
    Type: Grant
    Filed: February 7, 2022
    Date of Patent: September 19, 2023
    Assignee: HYDROGENICS CORPORATIONS
    Inventors: Udit N. Shrivastava, Arvind V. Harinath, Jennie Eastcott
  • Publication number: 20230246201
    Abstract: A fuel cell including a catalyst layer configured to generate liquid water in response to a reactant being in contact therewith. The fuel cell includes a microporous layer having a first region with a first pore size and a second region disposed adjacent to the first region having a second pore size. The first pore size being greater than the second pore size. The microporous layer being configured to transfer the liquid water away from the catalyst layer, such that the liquid water from the catalyst layer enters the first region in response to a capillary pressure of the liquid water being greater than a first capillary pressure. The liquid water enters the second region in response to a capillary pressure of the liquid water being greater than a second capillary pressure. The first capillary pressure being different from the second capillary pressure.
    Type: Application
    Filed: January 20, 2023
    Publication date: August 3, 2023
    Inventors: Ellsworth William BELL, Udit N. SHRIVASTAVA, Arvind V. HARINATH
  • Publication number: 20230191319
    Abstract: The present disclosure generally relates to systems and methods of purifying hydrogen, comprising humidifying, oxygenating, and purifying an impure gas stream to produce hydrogen in an electrochemical pump stack. The purified hydrogen is segregated and dispelled from the electrochemical pump stack.
    Type: Application
    Filed: December 13, 2022
    Publication date: June 22, 2023
    Inventors: Udit N. SHRIVASTAVA, Arvind V. HARINATH, Jennie EASTCOTT, Qing NI, Richard J. ANCIMER, Frank VAN DEN BOSCH
  • Publication number: 20220352524
    Abstract: The present disclosure generally relates to a fuel cell electrode having a patterned microporous layer and method of fabricating the same.
    Type: Application
    Filed: February 7, 2022
    Publication date: November 3, 2022
    Inventors: Udit N. Shrivastava, Arvind V. Harinath, Jennie Eastcott
  • Patent number: 11148129
    Abstract: An aftertreatment system comprises an aftertreatment component. An outlet sensor is positioned downstream of the aftertreatment component. A controller is communicatively coupled to the outlet sensor. The controller is configured to interpret an outlet signal from the outlet sensor. The outlet signal is indicative of a performance of the aftertreatment component. The controller determines if the aftertreatment component has deactivated. In response to determining that the aftertreatment component has deactivated, the controller provides a catalyst active material to at least a portion of the aftertreatment component. The catalyst active material coats at least the portion of the aftertreatment component so as to remanufacture the aftertreatment component.
    Type: Grant
    Filed: January 20, 2017
    Date of Patent: October 19, 2021
    Assignee: Cummins Emission Solutions Inc.
    Inventors: Arvind V. Harinath, Behnam Bahrami
  • Patent number: 11141696
    Abstract: A selective catalytic reduction system may include a single housing defining a single centerline axis. The selective catalytic reduction system may also include a diesel particulate filter disposed within the single housing and having a DPF center axis aligned with the single centerline axis. The selective catalytic reduction system may also include an SCR catalyst disposed within the single housing and having a center axis aligned with the single centerline axis. In some implementations, the diesel particulate filter may include one or more SiC filters. In some implementations, the SCR catalyst may include one or more extruded SCR catalysts.
    Type: Grant
    Filed: August 20, 2020
    Date of Patent: October 12, 2021
    Assignee: CUMMINS EMISSION SOLUTIONS, INC.
    Inventors: Randolph G. Zoran, Ryan M. Johnson, David M. Sarcona, A. Carl McDonald, Jr., Kenneth R. Federle, John G. Buechler, Scott Lubenow, Arvind V. Harinath
  • Publication number: 20210170388
    Abstract: An aftertreatment system comprises an aftertreatment component. An outlet sensor is positioned downstream of the aftertreatment component. A controller is communicatively coupled to the outlet sensor. The controller is configured to interpret an outlet signal from the outlet sensor. The outlet signal is indicative of a performance of the aftertreatment component. The controller determines if the aftertreatment component has deactivated. In response to determining that the aftertreatment component has deactivated, the controller provides a catalyst active material to at least a portion of the aftertreatment component. The catalyst active material coats at least the portion of the aftertreatment component so as to remanufacture the aftertreatment component.
    Type: Application
    Filed: January 20, 2017
    Publication date: June 10, 2021
    Applicant: Cummins Emission Solutions Inc.
    Inventors: Arvind V. Harinath, Behnam Bahrami
  • Patent number: 10989096
    Abstract: An aftertreatment system includes a filtration and reduction unit. The filtration and reduction unit comprises a housing defining an internal volume. A filter is disposed in the internal volume and is configured to substantially remove particulates from the exhaust gas. A selective catalytic reduction system is disposed in the internal volume downstream of the filter and is configured to selectively reduce a portion of the exhaust gas. A first catalyst is formulated to oxidize at least a portion of the exhaust gas. An intake pipe is disposed upstream of the filtration and reduction unit and configured to communicate the exhaust gas o the filtration and reduction unit. The first catalyst is disposed in the intake pipe. An exhaust pipe is disposed downstream of the filtration and reduction unit.
    Type: Grant
    Filed: July 29, 2019
    Date of Patent: April 27, 2021
    Assignee: Cummins Emission Solutions, Inc.
    Inventors: Yi Liu, Qiang Liu, Arvind V. Harinath, Changsheng C. Su, Behnam Bahrami, A. Carl McDonald, Stephen M. Holl
  • Publication number: 20190353077
    Abstract: An aftertreatment system includes a filtration and reduction unit. The filtration and reduction unit comprises a housing defining an internal volume. A filter is disposed in the internal volume and is configured to substantially remove particulates from the exhaust gas. A selective catalytic reduction system is disposed in the internal volume downstream of the filter and is configured to selectively reduce a portion of the exhaust gas. A first catalyst is formulated to oxidize at least a portion of the exhaust gas. An intake pipe is disposed upstream of the filtration and reduction unit and configured to communicate the exhaust gas o the filtration and reduction unit. The first catalyst is disposed in the intake pipe. An exhaust pipe is disposed downstream of the filtration and reduction unit.
    Type: Application
    Filed: July 29, 2019
    Publication date: November 21, 2019
    Applicant: Cummins Emission Solutions, Inc.
    Inventors: Yi Liu, Qiang Liu, Arvind V. Harinath, Changsheng C. Su, Behnam Bahrami, A. Carl McDonald, Stephen M. Holl
  • Patent number: 10436097
    Abstract: An aftertreatment system includes a filtration and reduction unit. The filtration and reduction unit comprises a housing defining an internal volume. A filter is disposed in the internal volume and is configured to substantially remove particulates from the exhaust gas. A selective catalytic reduction system is disposed in the internal volume downstream of the filter and is configured to selectively reduce a portion of the exhaust gas. A first catalyst is formulated to oxidize at least a portion of the exhaust gas. An intake pipe is disposed upstream of the filtration and reduction unit and configured to communicate the exhaust gas to the filtration and reduction unit. The first catalyst is disposed in the intake pipe. An exhaust pipe is disposed downstream of the filtration and reduction unit.
    Type: Grant
    Filed: December 22, 2015
    Date of Patent: October 8, 2019
    Assignee: Cummins Emission Solutions Inc.
    Inventors: Yi Liu, Qiang Liu, Arvind V. Harinath, Changsheng C. Su, Behnam Bahrami, A. Carl McDonald, Stephen M. Holl
  • Patent number: 10364725
    Abstract: Systems and methods for an aftertreatment system configured for use with a dual-fuel engine system are described. The method comprises determining an operating mode of the dual-fuel engine. Upon determining that the dual-fuel engine is operating in a dual-fuel mode or a natural gas mode, the dual-fuel engine operates in a stoichiometric operating condition, and the exhaust is received into a three-way catalyst communicatively connected to a selective catalytic reduction catalyst. Upon determining that the dual-fuel engine is not operating in the dual-fuel mode or the natural gas mode, the engine operates in a lean operating condition.
    Type: Grant
    Filed: October 16, 2014
    Date of Patent: July 30, 2019
    Assignee: Cummins Emission Solutions Inc.
    Inventors: Yi Liu, Arvind V. Harinath, Arpad Somogyvari
  • Patent number: 10301988
    Abstract: A process for recovering performance of a component of an aftertreatment system. The component includes an inlet and an outlet. The inlet is positioned upstream relative to an exhaust gas flow through the aftertreatment system, and the outlet is positioned downstream relative to the exhaust gas flow through the aftertreatment system. The process includes removing the component from the aftertreatment system. The process also includes regenerating the component, such as subjecting the component to an acid wash and/or heat treating the component. The process further includes reinstalling the component into the aftertreatment system with the inlet positioned downstream relative to the exhaust gas flow through the aftertreatment system and the outlet positioned upstream relative to the exhaust gas flow through the aftertreatment system.
    Type: Grant
    Filed: April 22, 2016
    Date of Patent: May 28, 2019
    Assignee: Cummins Emission Solutions, Inc.
    Inventors: Qiang Liu, Ying Yuan, Zheng Liu, Arvind V. Harinath
  • Patent number: 10247070
    Abstract: An aftertreatment system comprises a SCR system including a catalyst formulated to decompose constituents of an exhaust gas passing therethrough. A filter is positioned upstream of the SCR system. The filter comprises a sulfur suppressing compound formulated to reduce an amount of SOx gases included in the exhaust gas flowing through the aftertreatment system. In particular embodiments, the filter comprises a filter housing and a filter element positioned within the filter housing. The filter element comprises the sulfur suppressing compound.
    Type: Grant
    Filed: February 14, 2017
    Date of Patent: April 2, 2019
    Assignee: Cummins Emission Solutions Inc.
    Inventors: Arvind V. Harinath, Matthew P. Henrichsen
  • Patent number: 10145343
    Abstract: A timing-based method for regenerating a DOC included in an aftertreatment system fluidly coupled to a dual-fuel engine comprises performing at least one of the following: a temperature of the DOC is varied while flowing a mixed exhaust gas, which comprises a mixture of a diesel-only exhaust gas and a natural gas exhaust gas, generated by the dual-fuel engine through the DOC; alternately the method includes flowing (a) the mixed exhaust gas generated by the dual-fuel engine and (b) a diesel-only exhaust gas generated by the dual-fuel engine through the DOC.
    Type: Grant
    Filed: May 13, 2015
    Date of Patent: December 4, 2018
    Assignee: CUMMINS EMISSION SOLUTIONS, INC.
    Inventors: Yi Liu, Justin Kruer, Rahul B. Kallurwar, Arvind V. Harinath, Zheng Liu
  • Patent number: 10099212
    Abstract: An oxidation catalyst may include hydrocarbon storage material. One implementation relates to a diesel oxidation catalyst that includes a catalyst having a front zone and a rear zone and a gradient of hydrocarbon storage material on the catalyst extending from the front zone to the rear zone. The gradient of hydrocarbon storage material, may comprise a linear gradient, a step gradient, a parabolic gradient, a logarithmic gradient, or other forms thereof.
    Type: Grant
    Filed: March 14, 2017
    Date of Patent: October 16, 2018
    Assignee: Cummins Emission Solutions Inc.
    Inventors: Shirish S. Punde, Arvind V. Harinath, Changsheng C. Su, Aravindh K. Kanakamedala
  • Publication number: 20180266300
    Abstract: An aftertreatment system includes a filtration and reduction unit. The filtration and reduction unit comprises a housing defining an internal volume. A filter is disposed in the internal volume and is configured to substantially remove particulates from the exhaust gas. A selective catalytic reduction system is disposed in the internal volume downstream of the filter and is configured to selectively reduce a portion of the exhaust gas. A first catalyst is formulated to oxidize at least a portion of the exhaust gas. An intake pipe is disposed upstream of the filtration and reduction unit and configured to communicate the exhaust gas o the filtration and reduction unit. The first catalyst is disposed in the intake pipe. An exhaust pipe is disposed downstream of the filtration and reduction unit.
    Type: Application
    Filed: December 22, 2015
    Publication date: September 20, 2018
    Applicant: Cummins Emission Solutions, Inc.
    Inventors: Yi Liu, Qiang Liu, Arvind V. Harinath, Changsheng C. Su, Behnam Bahrami, A. Carl McDonald, Stephen M. Holl
  • Publication number: 20170284253
    Abstract: Systems and methods for an aftertreatment system configured for use with a dual-fuel engine system are described. The method comprises determining an operating mode of the dual-fuel engine. Upon determining that the dual-fuel engine is operating in a dual-fuel mode or a natural gas mode, the dual-fuel engine operates in a stoichiometric operating condition, and the exhaust is received into a three-way catalyst communicatively connected to a selective catalytic reduction catalyst. Upon determining that the dual-fuel engine is not operating in the dual-fuel mode or the natural gas mode, the engine operates in a lean operating condition.
    Type: Application
    Filed: October 16, 2014
    Publication date: October 5, 2017
    Applicant: Cummins Emission Solutions, Inc.
    Inventors: Yi Liu, Arvind V. Harinath, Arpad Somogyvari
  • Patent number: D809577
    Type: Grant
    Filed: April 17, 2017
    Date of Patent: February 6, 2018
    Assignee: CUMMINS EMISSION SOLUTIONS INC.
    Inventors: Carl A. McDonald, Arvind V. Harinath, John G. Buechler, Ryan M. Johnson, Randolph G. Zoran
  • Patent number: D831083
    Type: Grant
    Filed: January 9, 2018
    Date of Patent: October 16, 2018
    Assignee: CUMMINS EMISSION SOLUTIONS INC.
    Inventors: Carl A. McDonald, Arvind V. Harinath, John G. Buechler, Ryan M. Johnson, Randolph G. Zoran
  • Patent number: D855090
    Type: Grant
    Filed: September 25, 2018
    Date of Patent: July 30, 2019
    Assignee: Cummins Emission Solutions Inc.
    Inventors: Carl A. McDonald, Arvind V. Harinath, John G. Buechler, Ryan M. Johnson, Randolph G. Zoran