Characterization of solid oxide fuel cell electrodes after exposure
EMSL Project ID
25601
Abstract
The purpose of this project is to gain understanding how the fuel electrode chemistry and microstructure is affected by exposure to coal gas contaminants. This is of importance to operating solid oxide fuel cells (SOFC) on gasified coal, in support of DOE-FEs Solid State Energy Conversion Alliance (SECA) Coal-Based System Program.
Project Details
Project type
Large-Scale EMSL Research
Start Date
2007-05-31
End Date
2010-09-30
Status
Closed
Released Data Link
Team
Principal Investigator
Team Members
Related Publications
Interaction of coal-derived synthesis gas impurities with solid oxide fuel cell metallic components
Marina OA, LR Pederson, CA Coyle, DJ Edwards, YS Chou, and CN Cramer. 2010. "Interaction of coal-derived synthesis gas impurities with solid oxide fuel cell metallic components." Journal of Power Sources 196(2):636-643. doi:10.1016/j.jpowsour.2010.07.081
Electrochemical, structural and surface characterization of nickel/zirconia solid oxide fuel cell anodes in coal gas containing antimony
Marina OA, LR Pederson, CA Coyle, EC Thomsen, P Nachimuthu, and DJ Edwards. 2011. "Electrochemical, Structural and Surface Characterization of Nickel/Zirconia Solid Oxide Fuel Cell Anodes in Coal Gas Containing Antimony." Journal of Power Sources 196(11):4911-4922. doi:10.1016/j.jpowsour.2011.02.027
SOFC Ohmic Resistance Reduction by HCl-Induced Removal of Manganese at the Anode/Electrolyte Interface
Marina OA, LR Pederson, EC Thomsen, DJ Edwards, CA Coyle, and CN Cramer. 2010. "SOFC Ohmic Resistance Reduction by HCl-Induced Removal of Manganese at the Anode/Electrolyte Interface." Electrochemical and Solid-State Letters 13(6):B63-B67. doi:10.1149/1.3380668
Interactions of nickel/zirconia solid oxide fuel cell anodes with coal gas containing arsenic
Coyle CA, OA Marina, EC Thomsen, DJ Edwards, CN Cramer, GW Coffey, and LR Pederson. 2009. "Interactions of nickel/zirconia solid oxide fuel cell anodes with coal gas containing arsenic." Journal of Power Sources 193(2):730-738. doi:10.1016/j.jpowsour.2009.04.042