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Multitechnique study of the interaction of SO2 with alumina-supported SnO2 catalysts for lean NOx abatement

机译:SO2与氧化铝负载的SnO2催化剂相互作用以减少贫NOx的综合技术研究

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摘要

This study deals with the physicochemical characterization of SO2-treated alumina-supported tin dioxide surfaces as a function of the tin oxide loading. Three analysis techniques were used: Fourier transform infrared spectroscopy (FTIR), XPS and adsorption calorimetry, The two types of spectroscopies allowed the identification of the nature of the sulphur-containing species after SO2 adsorption. The determination of the quantities of adsorbed sulphur-containing species was made possible by adsorption calorimetry and XPS, At 353 K the SO2 uptake was minimum for 8 wt,% Sn and the major species were SO32-, When increasing the Sn Loading, the weakly adsorbed SO2 species vanished whereas the amounts of sulphite species increased. Above 12 wt,% Sn, the presence of sulphate species increased, with a maximum for bulk SnO2, After desorption at 673 K, the SO2 uptake was considerably decreased and each sample presented more SO42- than SO32- species, Copyright (C) 2000 John Wiley & Sons, Ltd. [References: 19]
机译:这项研究处理了SO2处理的氧化铝负载的二氧化锡表面的物理化学特征,它是氧化锡含量的函数。使用了三种分析技术:傅里叶变换红外光谱(FTIR),XPS和吸附量热法。两种光谱法可以确定SO2吸附后含硫物质的性质。通过吸附量热法和XPS可以确定所吸附的含硫物质的数量,在353 K时,对于8 wt%的Sn,SO 2的吸收最小,而主要的物种为SO32-。吸附的SO2种类消失了,而亚硫酸盐种类的数量却增加了。锡含量高于12 wt%时,硫酸盐物质的存在增加,而最大的SnO2含量最大。在673 K下解吸后,SO2的吸收量显着降低,并且每个样品呈现的SO42-比SO32-多,版权(C)2000 John Wiley&Sons,Ltd. [参考:19]

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