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DFT 分析在大气和水环境中二甲基苯醌的去除:·OH 引发的氧化和被(TiO)簇(n=1-6)捕获。

DFT analysis on the removal of dimethylbenzoquinones in atmosphere and water environments: ·OH-initiated oxidation and captured by (TiO) clusters (n=1-6).

机构信息

Institute of Catalysis for Energy and Environment, College of Chemistry and Chemical Engineering, Shenyang Normal University, Shenyang, 110034, People's Republic of China.

National & Local United Engineering Lab for Power Battery, Faculty of Chemistry, Northeast Normal University, Changchun, 130024, People's Republic of China.

出版信息

J Hazard Mater. 2020 Mar 15;386:121636. doi: 10.1016/j.jhazmat.2019.121636. Epub 2019 Nov 7.

Abstract

The elimination mechanisms and the dynamics of 2,5-dimethylbenzoquinone/2,6-dimethylbenzoquinone are performed by DFT under the presence of ·OH radical and TiO-clusters. The rate coefficients, calculated within the atmospheric and combustion temperature range of 200-2000 K, agree well with the experimental data. The subsequent reactions including the bond cleavage of quinone ring, O addition or abstraction, the reactions of peroxy radical with NO yielding the precursor of organic aerosol are studied. Gaseous water molecule plays an important role in the transformation of alkoxy radical and exhibits a catalytic performance in the enol-ketone tautomerism. The lifetimes of 2,5-dimethylbenzoquinone/2,6-dimethylbenzoquinone are about 12.04-12.86 h at 298 K, which are in favor of the medium range transport of them in the atmosphere. Significantly, the water environment plays a negative role on the ·OH-degradation of dimethylbenzoquinone. Compared to the quinone ring, 2,5-dimethylbenzoquinone onto (TiO) clusters (n = 1-6) is easier to be absorbed by TiO-clusters through its oxygen site because of its strong chemisorption, which indicates that TiO-clusters are capable of trapping dimethylbenzoquinones effectively. The water environment could weaken the adsorption of 2,5-dimethylbenzoquinone onto (TiO) clusters (n = 1-6) by increasing the adsorption energy. This work reveals the removal of dimethylbenzoquinones and the formation of organic aerosol under polluted environments.

摘要

在·OH 自由基和 TiO 团簇的存在下,通过 DFT 对 2,5-二甲基苯醌/2,6-二甲基苯醌的消除机制和动力学进行了研究。在 200-2000 K 的大气和燃烧温度范围内计算的速率系数与实验数据吻合良好。随后研究了包括醌环键断裂、O 加成或抽提、过氧自由基与 NO 反应生成有机气溶胶前体等后续反应。气态水分子在烷氧基自由基的转化中起着重要作用,并在烯醇-酮互变异构中表现出催化性能。在 298 K 下,2,5-二甲基苯醌/2,6-二甲基苯醌的寿命约为 12.04-12.86 h,有利于它们在大气中的中程传输。重要的是,水环境对·OH 降解二甲基苯醌起到了负面作用。与醌环相比,2,5-二甲基苯醌更容易通过其氧位与 TiO 团簇(n=1-6)发生强烈的化学吸附而被 TiO 团簇吸收,这表明 TiO 团簇能够有效地捕获二甲基苯醌。水环境可以通过增加吸附能来削弱 2,5-二甲基苯醌在(TiO)团簇(n=1-6)上的吸附。这项工作揭示了在污染环境下二甲基苯醌的去除和有机气溶胶的形成。

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