DOE Patents title logo U.S. Department of Energy
Office of Scientific and Technical Information

Title: Electrochemical device for converting carbon dioxide to a reaction product

Abstract

An electrochemical device converts carbon dioxide to a reaction product. The device includes an anode and a cathode, each comprising a quantity of catalyst. The anode and cathode each has reactant introduced thereto. A polymer electrolyte membrane is interposed between the anode and the cathode. At least a portion of the cathode catalyst is directly exposed to gaseous carbon dioxide during electrolysis. The average current density at the membrane is at least 20 mA/cm.sup.2, measured as the area of the cathode gas diffusion layer that is covered by catalyst, and CO selectivity is at least 50% at a cell potential of 3.0 V. In some embodiments, the polymer electrolyte membrane comprises a polymer in which a constituent monomer is (p-vinylbenzyl)-R, where R is selected from the group consisting of imidazoliums, pyridiniums and phosphoniums. In some embodiments, the polymer electrolyte membrane is a Helper Membrane comprising a polymer containing an imidazolium ligand, a pyridinium ligand, or a phosphonium ligand.

Inventors:
; ; ;
Issue Date:
Research Org.:
Dioxide Materials, Inc. Boca Raton, FL (United States)
Sponsoring Org.:
USDOE
OSTI Identifier:
1330700
Patent Number(s):
9481939
Application Number:
14/704,934
Assignee:
Dioxide Materials, Inc. (Boca Raton, FL)
Patent Classifications (CPCs):
B - PERFORMING OPERATIONS B01 - PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL B01J - CHEMICAL OR PHYSICAL PROCESSES, e.g. CATALYSIS OR COLLOID CHEMISTRY
C - CHEMISTRY C25 - ELECTROLYTIC OR ELECTROPHORETIC PROCESSES C25B - ELECTROLYTIC OR ELECTROPHORETIC PROCESSES FOR THE PRODUCTION OF COMPOUNDS OR NON-METALS
DOE Contract Number:  
AR0000345; SC0004453
Resource Type:
Patent
Resource Relation:
Patent File Date: 2015 May 05
Country of Publication:
United States
Language:
English
Subject:
37 INORGANIC, ORGANIC, PHYSICAL, AND ANALYTICAL CHEMISTRY; 30 DIRECT ENERGY CONVERSION

Citation Formats

Masel, Richard I., Chen, Qingmei, Liu, Zengcai, and Kutz, Robert. Electrochemical device for converting carbon dioxide to a reaction product. United States: N. p., 2016. Web.
Masel, Richard I., Chen, Qingmei, Liu, Zengcai, & Kutz, Robert. Electrochemical device for converting carbon dioxide to a reaction product. United States.
Masel, Richard I., Chen, Qingmei, Liu, Zengcai, and Kutz, Robert. Tue . "Electrochemical device for converting carbon dioxide to a reaction product". United States. https://www.osti.gov/servlets/purl/1330700.
@article{osti_1330700,
title = {Electrochemical device for converting carbon dioxide to a reaction product},
author = {Masel, Richard I. and Chen, Qingmei and Liu, Zengcai and Kutz, Robert},
abstractNote = {An electrochemical device converts carbon dioxide to a reaction product. The device includes an anode and a cathode, each comprising a quantity of catalyst. The anode and cathode each has reactant introduced thereto. A polymer electrolyte membrane is interposed between the anode and the cathode. At least a portion of the cathode catalyst is directly exposed to gaseous carbon dioxide during electrolysis. The average current density at the membrane is at least 20 mA/cm.sup.2, measured as the area of the cathode gas diffusion layer that is covered by catalyst, and CO selectivity is at least 50% at a cell potential of 3.0 V. In some embodiments, the polymer electrolyte membrane comprises a polymer in which a constituent monomer is (p-vinylbenzyl)-R, where R is selected from the group consisting of imidazoliums, pyridiniums and phosphoniums. In some embodiments, the polymer electrolyte membrane is a Helper Membrane comprising a polymer containing an imidazolium ligand, a pyridinium ligand, or a phosphonium ligand.},
doi = {},
journal = {},
number = ,
volume = ,
place = {United States},
year = {Tue Nov 01 00:00:00 EDT 2016},
month = {Tue Nov 01 00:00:00 EDT 2016}
}

Works referenced in this record:

Trifluorostyrene sulfonic acid membranes
patent, September 1978


Three layer laminate
patent, June 1984


Conversion of carbon dioxide to organic products
patent, November 2012


CO2 utilization in electrochemical systems
patent, January 2013


Method for reducing carbon dioxide
patent, April 2013


Purification of carbon dioxide from a mixture of gases
patent, August 2013


Electrochemical production of urea from NOx and carbon dioxide
patent, September 2013


Polymerizable ionic liquid comprising aromatic carboxylate anion
patent, October 2013


Process for making formic acid
patent, October 2013


Heterocycle catalyzed carbonylation and hydroformylation with carbon dioxide
patent, October 2013


Reduction of carbon dioxide to carboxylic acids, glycols, and carboxylates
patent, November 2013


Carbon dioxide capture and conversion to organic products
patent, February 2014


Conversion of carbon dioxide to organic products
patent, March 2014


Method for reducing carbon dioxide
patent, April 2014


Electrochemical production of synthesis gas from carbon dioxide
patent, May 2014


Poly(ionic liquid)s as new materials for co2 separation and other applications
patent-application, October 2009


Reducing Carbon Dioxide To Products
patent-application, May 2011


Gas Phase Electrochemical Reduction Of Carbon Dioxide
patent-application, July 2012


Imidazolium-Based Room-Temperature Ionic Liquids, Polymers, Monomers, And Membranes Incorporating Same
patent-application, July 2012


Conversion Of Carbon Dioxide To Organic Products
patent-application, October 2012


System and High Surface Area Electrodes for the Electrochemical Reduction of Carbon Dioxide
patent-application, May 2013


Membrane Reactor
patent-application, June 2013


Integrated Process for Producing Carboxylic Acids from Carbon Dioxide
patent-application, July 2013


Reducing Carbon Dioxide to Products
patent-application, July 2013


Reducing Carbon Dioxide to Products
patent-application, August 2013


Humidity-sensitive properties of new polyelectrolytes based on the copolymers containing phosphonium salt and phosphine function
journal, May 2003


Water-Retention Effect of Composite Membranes with Different Types of Nanometer Silicon Dioxide
journal, January 2008


Composite blend polymer membranes with increased proton selectivity and lifetime for vanadium redox flow batteries
journal, June 2013


The electrochemical reduction of CO2 to CH4 and C2H4 at Cu/Nafion electrodes (solid polymer electrolyte structures)
journal, January 1988


Electrochemical conversion of carbon dioxide to methane in aqueous NaHCO3 solution at less than 273 K
journal, November 2002


Poly(ionic liquid)s as new materials for CO2 absorption
journal, January 2005


Design of an Electrochemical Cell Making Syngas  (CO + H2)  from CO2 and H2O Reduction at Room Temperature
journal, January 2008


Electrochemical Conversion of Carbon Dioxide to Formate in Alkaline Polymer Electrolyte Membrane Cells
journal, January 2011


Ionic Liquid-Mediated Selective Conversion of CO2 to CO at Low Overpotentials
journal, September 2011


Effect of solid polymer electrolyte on electrochemical reduction of CO2
journal, June 2012


In Situ Spectroscopic Examination of a Low Overpotential Pathway for Carbon Dioxide Conversion to Carbon Monoxide
journal, July 2012


Effect of cationic and anionic solid polymer electrolyte on direct electrochemical reduction of gaseous CO2 to fuel
journal, December 2013


Anion exchange membranes: Current status and moving forward
journal, October 2013

  • Hickner, Michael A.; Herring, Andrew M.; Coughlin, E. Bryan
  • Journal of Polymer Science Part B: Polymer Physics, Vol. 51, Issue 24, p. 1727-1735
  • https://doi.org/10.1002/polb.23395

Alkaline Stable C2-Substituted Imidazolium-Based Anion-Exchange Membranes
journal, April 2013


Electrochemical reduction of CO2 over Sn-Nafion® coated electrode for a fuel-cell-like device
journal, February 2013


Water Enhancement of CO2 Conversion on Silver in 1-Ethyl-3-Methylimidazolium Tetrafluoroborate
journal, November 2012


Methanol generation by CO2 reduction at a Pt–Ru/C electrocatalyst using a membrane electrode assembly
journal, October 2013


Effect of Cations on the Electrochemical Conversion of CO2 to CO
journal, November 2012


Efficient Electrochemical Flow System with Improved Anode for the Conversion of CO2 to CO
journal, January 2014


A novel electrolysis cell for CO2 reduction to CO in ionic liquid/organic solvent electrolyte
journal, August 2014


Anion-exchange membranes in electrochemical energy systems
journal, January 2014


Influence of dilute feed and pH on electrochemical reduction of CO2 to CO on Ag in a continuous flow electrolyzer
journal, June 2015


A Concept of Supported Amino Acid Ionic Liquids and Their Application in Metal Scavenging and Heterogeneous Catalysis
journal, November 2007


Thermal and ion transport properties of hydrophilic and hydrophobic polymerized styrenic imidazolium ionic liquids
journal, July 2011


Alkaline imidazolium- and quaternary ammonium-functionalized anion exchange membranes for alkaline fuel cell applications
journal, January 2012


Vinyl-Functionalized Poly(imidazolium)s: A Curable Polymer Platform for Cross-Linked Ionic Liquid Gel Synthesis
journal, January 2014


Compact dynamic hydrogen electrode unit as a reference electrode for PEMFCs
journal, June 2006


A test method of a PEFC single cell with reference electrodes
journal, July 2010


A comprehensive review on PEM water electrolysis
journal, April 2013