Methane conversion to higher value-added product and energy co-generation using anodes OF PdCu/C in a solid electrolyte reactor: alkaline fuel cell type monitored by differential mass spectroscopy

Pd x Cu y /C catalysts combinations were employed to CH 4 partial oxidation in mild condition using a solid electrolyte reactor—alkaline fuel cell type. The differential mass spectroscopy on line method was used to monitor the oxidation products obtained as methanol, dimethyl ether, methyl formate a...

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Veröffentlicht in:Research on chemical intermediates 2021-02, Vol.47 (2), p.743-757
Hauptverfasser: Godoi, C. M., Santos, M. C. L., Silva, A. J., Tagomori, T. L., Ramos, A. S., de Souza, R. F. B., Neto, A. Oliveira
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Sprache:eng
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Zusammenfassung:Pd x Cu y /C catalysts combinations were employed to CH 4 partial oxidation in mild condition using a solid electrolyte reactor—alkaline fuel cell type. The differential mass spectroscopy on line method was used to monitor the oxidation products obtained as methanol, dimethyl ether, methyl formate and potassium formate. It was observed that as the electrical potential of the reactor increases, the generation of products decreases. The best results for conversion of methane into methanol and energy co-generation was obtained from Pd 90 Cu 10 /C and Pd 50 Cu 50 /C due to better H 2 O activation effects and adsorption site for CH 4 oxidation.
ISSN:0922-6168
1568-5675
DOI:10.1007/s11164-020-04296-4