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多氯联苯光脱氯机理的理论研究。

Theoretical investigation on photodechlorination mechanism of polychlorinated biphenyls.

机构信息

State Key Laboratory of Fine Chemicals, Dalian University of Technology, Dalian 116024, China.

出版信息

Chemosphere. 2014 Jan;95:200-5. doi: 10.1016/j.chemosphere.2013.08.066. Epub 2013 Sep 20.

Abstract

Photodechlorination is a key process affecting the fate and effect of polychlorinated biphenyls (PCBs) in the environment. However, there are still numerous gaps in our knowledge, which become apparent in photodechlorination mechanism of PCBs. We investigated the conformations of 35 PCB congeners in the ground state and the first triplet excited state (T1), and predicted the photodechlorination pathway of the PCBs by calculating bond dissociation energies of the C-Cl bonds and activation energies of the C-Cl bond dissociation in the excited T1 state. Results show that the torsional degree of the two benzene rings of the PCBs depends on the number of ortho chlorines because of steric effect in the ground state. The two benzene rings of the PCBs with low photoreactivity tend to be coplanar and their torsional degree becomes lower in the excited T1 state compared with those in the ground state. The serious deformation and non-coplane of the benzene rings of some PCBs (e.g. PCB138) in the excited T1 state reduces the conjugation between the two benzene rings, implying that these PCBs have high photoreactivity. The dissociation of the C-Cl bond is the rate-determining step in the photodechlorination reactions of PCBs when the hydrogen donor is methanol. The main photodechlorination pathways predicted in this study are in good agreement with previous experimental results. Our results have provided new insights into mechanism of PCBs photodechlorination, which could be useful in the future in utilizing quantum chemistry calculation in investigating the environmental behavior and fate of organic pollutants.

摘要

光氯化作用是影响多氯联苯(PCBs)在环境中归宿和效应的关键过程。然而,我们对其机制的认识仍存在许多空白,这在光氯化作用的 PCBs 机制中表现得尤为明显。我们研究了 35 种 PCB 同系物在基态和第一激发三重态(T1)中的构象,并通过计算 C-Cl 键的键离解能和激发 T1 态下 C-Cl 键离解的活化能,预测了 PCBs 的光氯化途径。结果表明,由于位阻效应,PCBs 两个苯环的扭转程度取决于邻位氯原子的数量。低光反应活性的 PCBs 的两个苯环在激发 T1 态下趋于共面,与基态相比,其扭转程度降低。一些 PCBs(如 PCB138)的苯环在激发 T1 态下严重变形且不共面,导致两个苯环之间的共轭作用减弱,表明这些 PCBs 具有较高的光反应活性。当供氢体为甲醇时,C-Cl 键的解离是 PCBs 光氯化反应的速控步骤。本研究预测的主要光氯化途径与先前的实验结果吻合较好。我们的研究结果为 PCBs 光氯化机制提供了新的见解,这对于未来利用量子化学计算研究有机污染物的环境行为和归宿可能具有重要意义。

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