Production of Methanol on PdCu/ATO in a Polymeric Electrolyte Reactor of the Fuel Cell Type from Methane

Methane Pub Date : 2022-09-09 DOI:10.3390/methane1030018
C. Godoi, Isabely M. Gutierrez, Paulo V. R. Gomes, Jéssica F. Coelho, Priscilla J. Zambiazi, L. Otubo, A. O. Neto, R. D. de Souza
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引用次数: 2

Abstract

The search for alternatives for converting methane into value-added products has been of great interest to scientific, technological, and industrial society. An alternative to this could be the use of copper-doped palladium catalysts with different proportions supported on metal oxides, such as Sb2O5.SnO2 (ATO) catalysts. These combinations were employed to convert the methane-to-methanol in mild condition using a fuel cell polymer electrolyte reactor. The catalysts prepared presents Pd, CuO, and Sb2O5.SnO2 phases with a mean particle size of about 9 nm. In activity experiments, the Pd80Cu20/ATO indicated maximum power density and maximum rate reaction for methanol production when compared to other PdCu/ATO materials. The use of ATO as a support favored the production of methanol from methane, while PdCu with high copper content demonstrated the production of more oxidized compounds, such as carbonate and formate.
燃料电池型聚合电解质反应器中PdCu/ATO制甲醇的研究
寻找将甲烷转化为增值产品的替代品引起了科学、技术和工业社会的极大兴趣。对此的替代方案可以是使用负载在金属氧化物上的具有不同比例的铜掺杂钯催化剂,例如Sb2O5.SnO2(ATO)催化剂。使用燃料电池聚合物电解质反应器在温和条件下使用这些组合将甲烷转化为甲醇。所制备的催化剂呈现Pd、CuO和Sb2O5.SnO2相,平均粒径为约9nm。在活性实验中,与其他PdCu/ATO材料相比,Pd80Cu20/ATO显示出甲醇生产的最大功率密度和最大反应速率。ATO作为载体的使用有利于从甲烷中生产甲醇,而具有高铜含量的PdCu则表明可以生产更多氧化的化合物,如碳酸盐和甲酸盐。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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