首页> 外文期刊>Journal of environmental sciences >Effect of SiO2 addition on NH4HSO4 decomposition and SO2 poisoning over V(2)O(5)eMoO(3)/TiO(2)eCeO(2) catalyst
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Effect of SiO2 addition on NH4HSO4 decomposition and SO2 poisoning over V(2)O(5)eMoO(3)/TiO(2)eCeO(2) catalyst

机译:SiO2加入对NH4HSO4分解的影响和SO2中毒对V(2)O(5)emoo(3)/ TiO(2)Eceo(2)催化剂

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摘要

The deposition of NH4HSO4 and the poisoning effect of SO2 on SCR catalyst are the main obstacles that restrict the industrial application of CeO2-doped SCR catalysts. In this work, deposited NH4HSO4 decomposition behavior and SO2 poisoning over V(2)O(5)eMoO3/TiO2 catalysts modified with CeO2 and SiO2 were investigated. By the means of characterization analysis, it was found that the addition of SiO2 into VMo/TieCe had an impact on the interaction existed between catalyst surface atoms and NH4HSO4. Temperatureprogrammed methods and in situ diffused reflectance infrared Fourier transform spectroscopy (DRIFTS) experiments indicated that the doping of SiO2 promoted the decomposition of deposited NH4HSO4 on VMo/TieCe catalyst surface by reducing the thermal stability of NH4HSO4 and enhancing the NH4HSO4 reactivity with NO in low temperature. And this improvement may be the reason for the better catalytic activity than VMo/TieCe in the case of NH4HSO4 deposition. Accompanied with cerium sulfate species generated over catalyst surface, the conversion of SO2 to SO3 was inhibited in SiCe mixed catalyst. The addition of SiO2 could promote the decomposition of cerium sulfate, which may be a potential strategy to enhance the resistance of SO2 poisoning over CeO2-modifed catalysts. (C) 2020 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
机译:NH4HSO4的沉积和SO2对SCR催化剂的中毒作用是限制CeO2掺杂SCR催化剂的工业应用的主要障碍。在这项工作中,研究了用CeO2和SiO 2改性的V(2)O(5)o(5)o(5)o(5)o(5)o(5)oO13 / TiO2催化剂的NH4HSO4分解行为和SO2中毒。通过表征分析的方法,发现将SiO 2加入VMO /粒度对催化剂表面原子和NH4HSO4之间存在的相互作用产生影响。温度预编程的方法和原位扩散反射率红外傅里叶变换光谱(漂移)实验表明,通过降低NH4HSO4的热稳定性并在低温下提高NH 4 H 4 O 4反应性,促进SiO 2的掺杂促进沉积的NH4HSO4对VMO /纺织催化剂表面的分解。并且这种改进可能是在NH4HSO4沉积的情况下比VMO /诱变更好的催化活性的原因。伴随在催化剂表面上产生的硫酸铈物种,在混合催化剂中抑制SO2至SO 3的转化。加入SiO 2可以促进硫酸铈的分解,这可能是增强SO2中毒对CeO 2-改性催化剂的潜在策略。 (c)2020中国科学院生态环境科学研究中心。 elsevier b.v出版。

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