Nickel Alloy Catalysts for the Anode of a High Temperature PEM Direct Propane Fuel Cell

Author:

Vafaeyan Shadi12ORCID,St-Amant Alain3,Ternan Marten4ORCID

Affiliation:

1. Chemical and Biological Engineering, University of Ottawa, Ottawa, ON, Canada K1N 6N5

2. Centre for Catalysis Research and Innovation, University of Ottawa, Ottawa, ON, Canada K1N 6N5

3. Department of Chemistry, University of Ottawa, Ottawa, ON, Canada K1N 6N5

4. EnPross Inc., 147 Banning Road, Ottawa, ON, Canada K2L 1C5

Abstract

High temperature polymer electrode membrane fuel cells that use hydrocarbon as the fuel have many theoretical advantages over those that use hydrogen. For example, nonprecious metal catalysts can replace platinum. In this work, two of the four propane fuel cell reactions, propane dehydrogenation and water dissociation, were examined using nickel alloy catalysts. The adsorption energies of both propane and water decreased as the Fe content of Ni/Fe alloys increased. In contrast, they both increased as the Cu content of Ni/Cu alloys increased. The activation energy for the dehydrogenation of propane (a nonpolar molecule) changed very little, even though the adsorption energy changed substantially as a function of alloy composition. In contrast, the activation energy for dissociation of water (a molecule that can be polarized) decreased markedly as the energy of adsorption decreased. The different relationship between activation energy and adsorption energy for propane dehydrogenation and water dissociation alloys was attributed to propane being a nonpolar molecule and water being a molecule that can be polarized.

Funder

Canadian Government’s Natural Sciences and Engineering Research Council

Publisher

Hindawi Limited

Subject

General Chemistry

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