首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Combustion of methane,ethane and propane and of mixtures of methane with ethane or propane on Pd/gamma-Al2O3 catalysts
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Combustion of methane,ethane and propane and of mixtures of methane with ethane or propane on Pd/gamma-Al2O3 catalysts

机译:在Pd /γ-Al2O3催化剂上燃烧甲烷,乙烷和丙烷以及甲烷与乙烷或丙烷的混合物

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摘要

In a first step,the catalytic combustion of methane,ethane and propane on a Pd(2 wt.%)/gamma-Al2O3 catalyst was investigated.The order of reactivity of these three gases is propane > ethane > methane.In a second step,the influence of adding ethane or propane in the feed during the catalytic combustion of methane was studied.At low temperature,the addition of ethane or propane inhibits the ignition of methane.This inhibition could be explained by a competition for the surface oxygen species on the surface of palladium.At high temperature,the same competitive effect would explain the inhibition observed at high ethane concentration.In the presence of propane,a thermal effect seems to have an important role.This effect is minor in the presence of ethane.In all cases,palladium particles sinter during reaction and their surface is more oxidized after test than before running the reaction.However,when ethane or propane is added in the methane feed,palladium seems to be slightly less oxidized than in the presence of pure methane.In this last case the sintering effect seems to be more pronounced.The migration of oxygen species from the bulk seems to play an important role in the oxidation of palladium.These results support previous studies using H2-assisted methane combustion.Implications of the presence of ethane and propane in the combustion of natural gas are also discussed.
机译:第一步,研究了Pd(2 wt%)/γ-Al2O3催化剂上甲烷,乙烷和丙烷的催化燃烧。这三种气体的反应顺序为丙烷>乙烷>甲烷。在低温下,乙烷或丙烷的加入会抑制甲烷的着火。这种抑制作用可以通过对表面氧物种的竞争来解释。在高温下,相同的竞争效应可以解释在高乙烷浓度下观察到的抑制作用。在丙烷存在下,热效应似乎起着重要作用。在乙烷存在下这种作用很小。在所有情况下,钯颗粒在反应过程中都会烧结,并且经过测试后其表面的氧化程度要比进行反应之前更高。但是,在甲烷进料中添加乙烷或丙烷时,钯的氧化程度似乎略有降低在最后一种情况下,烧结效果似乎更为明显,氧从大块中的迁移似乎在钯的氧化中起着重要作用,这些结果支持了以前使用H2辅助的研究。还讨论了乙烷和丙烷的存在对天然气燃烧的影响。

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