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Understanding the dynamic behavior of acid sites on TiO2-supported vanadia catalysts via operando DRIFTS under SCR-relevant conditions

机译:在SCR相关条件下,通过Operando漂移了解TiO2支持的钒催化剂对TiO2支持的钒催化剂的动态行为

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The mechanisms of the selective catalytic reduction of NO with NH3 are under debate, especially in terms of the participation of Bronsted and Lewis acid sites on V2O3/TiO2 catalyst. Our results elucidated the dynamic nature of transformation between Bronsted and Lewis sites on V2O5/TiO2 occurring in SCR-relevant conditions through a series of operando DRIFTS experiments. The reversible change between the two acid sites occurred not only by hydration in the presence of water but also by changing the redox state of the catalyst. We proposed that under reducing conditions, the reduced vanadium sites coordinated with ammonia to serve as additional Lewis acid sites; as a result, the reducing environment enriched the surface with Lewis sites, while the oxidizing environment gave the catalyst surface more Bronsted sites. This in turn suggested that the equilibria between the two acid sites, that is, the B/L ratio, differ depending on the reactants contained in the reaction gas. In a simulated transient SCR reaction, the instantaneous change of the gaseous environment resulted in the redistribution of ammonia on both acid sites, which occurred much more quickly than the reaction with NO. Such observations emphasize the importance of clarifying a NH3-equilibrated surface under reaction conditions when measuring rates of ammonia consumption. (C) 2020 Elsevier Inc. All rights reserved.
机译:选择性催化减少NH3的选择性催化还原机制是在辩论中,特别是在V2O3 / TiO 2催化剂上的伪装和路易斯酸位点的参与方面。我们的结果阐明了通过一系列Operando漂移实验在SCR相关条件下发生的勃朗斯特和Lewis位点之间的动态性质。两种酸部位之间的可逆变化不仅发生在水存在下的水合,而且通过改变催化剂的氧化还原状态而发生。我们提出,在还原条件下,降低的钒位点与氨配位,作为额外的路易斯酸部位;结果,还原环境富含路易斯位点,而氧化环境使催化剂表面更加抗稳定位点。这反过来表明,两种酸位点之间的平衡,即B / L比,根据反应气体所含的反应物而不同。在模拟的瞬态SCR反应中,气态环境的瞬时变化导致两种酸部位上的氨的再分布,这比与NO反应更快地发生得多。这种观察结果强调在测量氨消耗率时在反应条件下澄清NH 3平衡表面的重要性。 (c)2020 Elsevier Inc.保留所有权利。

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