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首页> 外文期刊>International Journal of Quantum Chemistry >Selective catalytic reduction of nitric oxide with ammonia: A theoretical ab initio study
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Selective catalytic reduction of nitric oxide with ammonia: A theoretical ab initio study

机译:氨选择性催化还原一氧化氮的理论从头算研究

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Ab initio quantum chemical studies at the HF/Lanl2dz level were carried out to investigate the interaction of ammonia, NO, and a mixture of the two with vanadia/titania. It was found that the replacement of Ti-6c by V-6c is the only feasible way to form highly dispersed vanadia over the titania. The V=O species thus formed will be in octahedral symmetry with the axial distortions, and no tetrahedrally coordinated V species can be formed. Ammonia fully covers the catalyst surface either through the associative interaction with the Lewis acid site of Ti-5c or the dissociative adsorption channels. The dissociation of ammonia on the O site bridging the Ti-6c and V-6c octahedra and on the V=O group can proceed with the highest gain in energy. The formation of an adsorbed ammonium ion was found to be an energetically highly unfavorable process. The V=O group is no longer expected to play a major role in the stabilization of the surface ammonium ion. NO can be activated on the Ti-5c site of the catalyst containing predissociated ammonia on the bridging O site and V=O group. It can be expected that the SCR reaction products are formed through the reactions of both adsorbed NO and NH2 or the desorbed NH2 group with NO in the gas phase. (C) 2001 John Wiley & Sons, Inc. [References: 22]
机译:从头开始进行了HF / Lanl2dz水平的量子化学研究,以研究氨,NO以及二者与钒/二氧化钛的混合物的相互作用。发现用V-6c代替Ti-6c是在二氧化钛上形成高度分散的钒的唯一可行方法。这样形成的V = O物种将具有轴向畸变的八面体对称性,并且不能形成四面体配位的V物种。氨通过与Ti-5c的路易斯酸位的缔合相互作用或解离吸附通道完全覆盖催化剂表面。在桥接Ti-6c和V-6c八面体的O位以及V = O基团上,氨的离解可以以最高的能量增益进行。发现吸附的铵离子的形成在能量上是非常不利的过程。不再期望V = O基团在表面铵离子的稳定化中起主要作用。在桥接的O位和V = O基团上含有预离解的氨的催化剂的Ti-5c位上,NO可以被活化。可以预期,SCR反应产物是通过吸附的NO和NH2或脱附的NH2基团与气相中的NO的反应形成的。 (C)2001 John Wiley&Sons,Inc. [参考:22]

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