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第一性原理对硒在选择性催化还原催化剂上吸附和相互作用机制的研究

First-principles insights into the adsorption and interaction mechanism of selenium on selective catalytic reduction catalyst.

机构信息

National Engineering Laboratory for Biomass Power Generation Equipment, North China Electric Power University, Beijing, 102206, China.

National Engineering Laboratory for Biomass Power Generation Equipment, North China Electric Power University, Beijing, 102206, China.

出版信息

Chemosphere. 2021 Jul;275:130057. doi: 10.1016/j.chemosphere.2021.130057. Epub 2021 Feb 22.

Abstract

Selenium (Se) species can deposit in selective catalytic reduction (SCR) system during the denitrification process, which is harmful to the catalyst. To improve the Se-poisoning resistance of SCR catalysts, the influence mechanism of Se species on vanadium-titanium-based catalysts should be elucidated from an atomic scale. In this paper, theoretical calculations were conducted to reveal the adsorption and interaction mechanism of Se species on VO-WO(MoO)/TiO surface based on the first-principles. The impact of Se species on the electronic structure of the catalyst was investigated from electron transfer, bond formation, and VO site activity. The results show that the adsorption of elementary Se (Se) belongs to chemisorption, while SeO can undergo both physisorption and chemisorption. For the chemisorption of Se species, obvious charge transfer with the catalyst is observed and Se-O bond is formed, which enhances the oxidation activity of the catalyst, triggers the reaction of Se and SeO with the catalyst components to generate SeVO and SeW(Mo)O. The active sites are thereby damaged and the SCR performance is reduced. The above conclusions are mutually confirmed with the previous experimental research. By studying the correlation with the adsorption energies of Se species, descriptors manifesting the Se species adsorption were initially investigated to unveil the relationship between the electronic structure and the adsorption energy. Finally, the influence of temperature on Se adsorption was investigated. The adsorption can only proceed spontaneously below 500 K and is inhibited at high temperatures.

摘要

硒(Se)物种在脱硝过程中会沉积在选择性催化还原(SCR)系统中,这对催化剂有害。为了提高 SCR 催化剂的抗硒中毒能力,应从原子尺度阐明硒物种对钒钛基催化剂的影响机制。本文采用第一性原理理论计算,揭示了 Se 物种在 VO-WO(MoO)/TiO 表面的吸附和相互作用机制。从电子转移、键形成和 VO 位活性研究了 Se 物种对催化剂电子结构的影响。结果表明,元素硒(Se)的吸附属于化学吸附,而 SeO 可以发生物理吸附和化学吸附。对于 Se 物种的化学吸附,观察到与催化剂的明显电荷转移并形成 Se-O 键,这增强了催化剂的氧化活性,引发 Se 和 SeO 与催化剂成分的反应,生成 SeVO 和 SeW(Mo)O。因此,活性位被破坏,SCR 性能降低。上述结论与先前的实验研究相互证实。通过研究与 Se 物种吸附能的相关性,初步研究了表现 Se 物种吸附的描述符,以揭示电子结构与吸附能之间的关系。最后,考察了温度对 Se 吸附的影响。吸附只能在 500 K 以下自发进行,在高温下受到抑制。

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