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Mechanistic study of the low temperature activity of transition metal exchanged zeolite SCR catalysts

机译:过渡金属交换沸石SCR催化剂低温活性的机理研究

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Reactor activity measurements and FTIR spectroscopy were applied to study the transient and steady state behavior of Cu and Fe exchanged zeolite catalysts for the selective catalytic reduction (SCR) of nitrogen oxides (NOx) with NH3 at 200 °C. Different surface NOx adsorption complexes were observed on the two catalysts. IR bands assigned to surface nitrateitrite groups were apparent on the Cu catalyst under most testing conditions. On the Fe catalyst, IR bands assigned to surface nitro groups were also observed, in addition to nitrateitrite groups. Both the nitrateitrite and the nitro group showed high reactivity with NH3, which explained similar initial transient SCR activity of the two catalysts. The presence of NH3 was found to block the Fe sites from catalyzing the oxidation of NO and severely inhibited the overall SCR activity when there was no NO2 in the gas mixture. Addition of NO2 improved the low temperature SCR activity of both catalysts. The higher SCR activity on the Fe catalyst at the optimum NO:NO2 -1:1 was attributed to the high intrinsic activity of the nitro groups formed on the Fe catalyst.
机译:应用反应器活性测量和FTIR光谱研究了Cu和Fe交换沸石催化剂的瞬态和稳态行为,以在200°C下用NH3选择性氧化还原氮氧化物(NOx)。在两种催化剂上观察到不同的表面NOx吸附络合物。在大多数测试条件下,分配给表面硝酸盐/亚硝酸盐基团的红外波段在铜催化剂上很明显。在Fe催化剂上,除硝酸盐/亚硝酸盐基团外,还观察到分配给表面硝基的IR谱带。硝酸盐/亚硝酸盐和硝基均显示出与NH3的高反应性,这解释了两种催化剂的相似的初始瞬时SCR活性。当混合气中没有NO2时,发现NH3的存在会阻止Fe部位催化NO的氧化,并严重抑制了总体SCR活性。 NO 2的添加改善了两种催化剂的低温SCR活性。在最佳NO:NO2 -1:1的条件下,对Fe催化剂的较高SCR活性归因于在Fe催化剂上形成的硝基的高固有活性。

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