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Effect of hydrogen sulphide on nitric oxide adsorption and decomposition on Cu-containing molecular sieves

机译:硫化氢对一氧化氮在含铜分子筛上吸附和分解的影响

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NO adsorption and decomposition were studied on suiphided and suiphated copper-exchanged ZSM-5, A1MCM-41 and NbMCM-4 I molecular sieves. FTIR, temperature-programmed reduction (H2-TPR) techniques, adsorption, and catalytic measurements were applied. H2S adsorption drastically decreases the activity of copper-containing micro- and mesoporous materials studied in NO decomposition due to their sulphidation. This decrease is higher than that observed after SO2 treatment and is assigned to the formation of sulphide species. H2S is strongly chemisorbed on all copper active sites. Oxidation of sulphide species leading to the formation of sulphates does not increase the activity in the decomposition of NO, suggesting that some suiphided species are not oxidised.
机译:研究了硫化和硫化的铜交换的ZSM-5,AlMCM-41和NbMCM-4 I分子筛对NO的吸附和分解。应用了FTIR,程序升温还原(H2-TPR)技术,吸附和催化测量。 H2S吸附会由于硫化而极大地降低NO分解中研究的含铜微孔和中孔材料的活性。该降低高于SO 2处理后观察到的降低,并且归因于硫化物物种的形成。 H2S强烈化学吸附在所有铜活性位点上。导致形成硫酸盐的硫化物物种的氧化并不会增加NO分解的活性,这表明某些硫化的物种并未被氧化。

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