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Fourier transform IR study of NOx adsorption on a CuZSM-5 DeNOx catalyst

机译:CuZSM-5 DeNOx催化剂吸附NOx的傅里叶变换红外光谱研究

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摘要

The adsorption and coadsorption of selective catalytic reduction (SCR) reactants and reaction products on CuZSM-5-37 containing 11 wt.-% CuO have been studied by FTIR spectroscopy. The catalyst surface is characterized by both weak acidity and weak basicity as revealed by testing with probe molecules (CO2, NH3, H2O). NO2 adsorption results in formation of different kinds of nitrates. The same species are formed when NO is coadsorbed with oxygen at 180°C. NO adsorption at ambient temperature also leads to formation of nitrates as well as of Cu2+---NO species. In the presence of oxygen the latter are converted according to the scheme: NO → N2O3 → N2O4 → NO2 → NO3. It is concluded that the surface nitrates are important intermediates in the SCR process. They are thermally stable and resistant towards interaction with CO2, N2, O2, and are only slightly affected by H2O and NO. However, they posses a high oxidation ability and are fully reduced by propane at 180°C. It is concluded that one of the most important roles of oxygen in SCR by hydrocarbons is to convert NOx into highly active surface nitrates.
机译:通过FTIR光谱研究了选择性催化还原(SCR)反应物和反应产物在含有11重量%CuO的CuZSM-5-37上的吸附和共吸附。通过用探针分子(CO2,NH3,H2O)进行测试可以看出,催化剂的表面具有弱酸性和弱碱性的特征。 NO 2吸附导致形成不同种类的硝酸盐。当NO在180°C与氧气共吸附时,会形成相同的物种。在环境温度下NO的吸附也会导致形成硝酸盐以及Cu2 + --- NO物种。在氧气存在下,后者按照以下方案转化:NO→N2O3→N2O4→NO2→NO3。结论是,表面硝酸盐是SCR过程中的重要中间体。它们具有热稳定性,并且耐与CO2,N2,O2相互作用,并且仅受到H2O和NO的轻微影响。然而,它们具有高氧化能力,并在180℃下被丙烷完全还原。结论是,碳氢化合物在SCR中氧气的最重要作用之一是将NOx转化为高活性的表面硝酸盐。

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