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化学官能团对元素汞在碳质表面上吸附的影响。

Effects of chemical functional groups on elemental mercury adsorption on carbonaceous surfaces.

机构信息

State Key Laboratory of Coal Combustion, Huazhong University of Science and Technology, Wuhan, China.

出版信息

J Hazard Mater. 2011 Feb 15;186(1):108-13. doi: 10.1016/j.jhazmat.2010.10.089. Epub 2010 Nov 2.

Abstract

A systematic theoretical study using density functional theory is performed to provide molecular-level understanding of the effects of chemical functional groups on mercury adsorption on carbonaceous surfaces. The zigzag and armchair edges were used in modeling the carbonaceous surfaces to simulate different adsorption sites. The edge atoms on the upper side of the models are unsaturated to simulate active sites. All calculations (optimizations, energies, and frequencies) were made at B3PW91 density functional theory level, using RCEP60VDZ basis set for mercury and 6-31G(d) pople basis set for other atoms. The results indicate that the embedding of halogen atom can increase the activity of its neighboring site which in turn increases the adsorption capacity of the carbonaceous surface for Hg(0). The adsorption belongs to chemisorptions, which is in good agreement with the experimental results. For the effects of oxygen functional groups, lactone, carbonyl and semiquinone favor Hg(0) adsorption because they increase the neighboring site's activity for mercury adsorption. On the contrary, phenol and carboxyl functional groups show a physisorption of Hg(0), and reduce Hg capture. This result can explain the seemingly conflicting experimental results reported in the literature concerning the influence of oxygen functional groups on mercury adsorption on carbonaceous surface.

摘要

采用密度泛函理论进行了系统的理论研究,为了解化学官能团对碳质表面上汞吸附的影响提供了分子水平的认识。在建模碳质表面时使用了锯齿形和扶手椅边缘来模拟不同的吸附位。模型上侧的边缘原子不饱和以模拟活性位。所有计算(优化、能量和频率)均在 B3PW91 密度泛函理论水平上进行,汞采用 RCEP60VDZ 基组,其他原子采用 6-31G(d)pople 基组。结果表明,卤素原子的嵌入可以增加其相邻位的活性,从而增加碳质表面对 Hg(0)的吸附能力。吸附属于化学吸附,这与实验结果吻合良好。对于含氧官能团的影响,内酯、羰基和半醌有利于 Hg(0)的吸附,因为它们增加了相邻位对汞吸附的活性。相反,酚和羧基官能团对 Hg(0)表现出物理吸附,降低了 Hg 的捕获。这一结果可以解释文献中关于含氧官能团对碳质表面上汞吸附影响的看似相互矛盾的实验结果。

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