Methane to Methanol Conversion Using Proton-Exchange Membrane Fuel Cells and PdAu/Antimony-Doped Tin Oxide Nanomaterials

Methane Pub Date : 2023-06-25 DOI:10.3390/methane2030017
Victoria A. Maia, J. Nandenha, Marlon H. Gonçalves, R. D. de Souza, A. O. Neto
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Abstract

This study investigates the use of Au-doped Pd anodic electrocatalysts on ATO support for the conversion of methane to methanol. The study uses cyclic voltammetry, in situ Raman spectra, polarization curves, and FTIR analysis to determine the optimal composition of gold and palladium for enhancing the conversion process. The results demonstrate the potential for utilizing methane as a feedstock for producing sustainable energy sources. The Pd75Au25/ATO electrode exhibited the highest OCP value, and Pd50Au50/ATO had the highest methanol production value at a potential of 0.05 V. Therefore, it can be concluded that an optimal composition of gold and palladium exists to enhance the conversion of methane to methanol. The findings contribute to the development of efficient and sustainable energy sources, highlighting the importance of exploring alternative ways to produce methanol.
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利用质子交换膜燃料电池和PdAu/锑掺杂氧化锡纳米材料将甲烷转化为甲醇
本研究研究了在ATO载体上使用Au掺杂的Pd阳极电催化剂将甲烷转化为甲醇。该研究使用循环伏安法、原位拉曼光谱、极化曲线和FTIR分析来确定用于增强转化过程的金和钯的最佳组成。研究结果证明了利用甲烷作为原料生产可持续能源的潜力。Pd75Au25/ATO电极表现出最高的OCP值,Pd50Au50/ATO在0.05V的电势下具有最高的甲醇生产值。因此,可以得出结论,金和钯的最佳组成存在以提高甲烷向甲醇的转化。这些发现有助于开发高效和可持续的能源,突出了探索生产甲醇的替代方法的重要性。
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