Effect of sulfur and its compounds on the performance of graphite electrooxidation in molten carbonate

Direct carbon fuel cells are promising power sources with their performance significantly depending on the electrooxidation activity of carbon fuel. The impurities in the carbon fuel may affect the anode reactions. Sulfur and some of its inorganic compounds (CaSO sub(4), K sub(2)SO sub(3), K sub(2)S...

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Veröffentlicht in:Journal of power sources 2015-01, Vol.274, p.71-76
Hauptverfasser: Liu, Jia, Ye, Ke, Du, Mengmeng, Yin, Jinling, Cao, Dianxue, Wang, Guiling
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Sprache:eng
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Zusammenfassung:Direct carbon fuel cells are promising power sources with their performance significantly depending on the electrooxidation activity of carbon fuel. The impurities in the carbon fuel may affect the anode reactions. Sulfur and some of its inorganic compounds (CaSO sub(4), K sub(2)SO sub(3), K sub(2)S, FeS sub(2)) were added in molten carbonate and their effect on graphite electrooxidation was investigated. Cyclic voltammograms of gold electrode with addition of these sulfur compounds showed CaSO sub(4) was stable and other compounds were electrochemically oxidized to high valence state sulfur compounds at operating voltage range. Linear sweep voltammetry of graphite with addition of sulfur compounds exhibited enhanced current density compared to pure graphite electrooxidation. Chronoamperometry was carried out to examine steady-state test of graphite electrooxidation in presence of sulfur compounds and the results indicated the enhanced current densities were caused by improved Boudouard reaction for CaSO sub(4) and sulfur electrooxidation for other compounds, respectively. These inorganic sulfur compounds had no impact on electrooxidation process of graphite.
ISSN:0378-7753
DOI:10.1016/j.jpowsour.2014.10.012