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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Total oxidation of methane at low temperature over Pd/TiO2/Al2O3:effects of the support and residual chlorine ions
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Total oxidation of methane at low temperature over Pd/TiO2/Al2O3:effects of the support and residual chlorine ions

机译:Pd / TiO2 / Al2O3上甲烷在低温下的总氧化:载体和残留氯离子的影响

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摘要

A novel catalyst,Pd supported on TiO_2/Al_2O_3 has been investigated for the total oxidation of methane.Static reaction between CH_4 and ~(18)O_2 in the presence of catalyst was performed to investigate the reaction pathway and a redox mechanism with Pd-PdO as the active species was suggested.The TPR and ~(18)O-isotope exchange experiments were carried out to characterize the catalysts to reveal the key factors influencing the activity.It was shown that addition of titania into alumina enhanced the reduction as well as the oxygen mobility of palladium oxide and thus generated catalyst with much higher activity for the reaction.It was also found that the existence of residual chlorine ions on the catalyst surface would lower the oxygen mobility and reducibility of the supported palladium oxide and consequently inhibit the activity of the catalyst for methane total oxidation.
机译:研究了负载在TiO_2 / Al_2O_3上的新型Pd对甲烷的完全氧化作用。研究了CH_4与〜(18)O_2在催化剂存在下的静态反应,探讨了Pd-PdO的反应途径和氧化还原机理。通过TPR和〜(18)O-同位素交换实验表征了催化剂,揭示了影响活性的关键因素。氧化钯的氧迁移率,因此生成的催化剂具有更高的反应活性。还发现,催化剂表面残留氯离子会降低氧的迁移率和负载型氧化钯的还原性,从而抑制活性甲烷完全氧化的催化剂

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