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氯化模式对C₁₀短链氯化石蜡热力学参数和环境降解性的影响:基于虚拟组合库的量子化学计算

Chlorination pattern effect on thermodynamic parameters and environmental degradability for C₁₀-SCCPs: Quantum chemical calculation based on virtual combinational library.

作者信息

Sun Yuzhen, Pan Wenxiao, Lin Yuan, Fu Jianjie, Zhang Aiqian

机构信息

State Key Laboratory of Environmental Chemistry and Ecotoxicology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 10085, China.

State Key Laboratory of Environmental Chemistry and Ecotoxicology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 10085, China.

出版信息

J Environ Sci (China). 2016 Jan;39:184-197. doi: 10.1016/j.jes.2015.10.013. Epub 2015 Dec 30.

Abstract

Short-chain chlorinated paraffins (SCCPs) are still controversial candidates for inclusion in the Stockholm Convention. The inherent mixture nature of SCCPs makes it rather difficult to explore their environmental behaviors. A virtual molecule library of 42,720 C10-SCCP congeners covering the full structure spectrum was constructed. We explored the structural effects on the thermodynamic parameters and environmental degradability of C10-SCCPs through semi-empirical quantum chemical calculations. The thermodynamic properties were acquired using the AM1 method, and frontier molecular orbital analysis was carried out to obtain the E(HOMO), E(LUMO) and E(LUMO)-E(HOMO) for degradability exploration at the same level. The influence of the chlorination degree (N(Cl)) on the relative stability and environmental degradation was elucidated. A novel structural descriptor, μ, was proposed to measure the dispersion of the chlorine atoms within a molecule. There were significant correlations between thermodynamic values and N(Cl), while the reported N(Cl)-dependent pollution profile of C10-SCCPs in environmental samples was basically consistent with the predicted order of formation stability of C10-SCCP congeners. In addition, isomers with large μ showed higher relative stability than those with small μ. This could be further verified by the relationship between μ and the reactivity of nucleophilic substitution and OH attack respectively. The C10-SCCP congeners with less Cl substitution and lower dispersion degree are susceptible to environmental degradation via nucleophilic substitution and hydroxyl radical attack, while direct photolysis of C10-SCCP congeners cannot readily occur due to the large E(LUMO)-E(HOMO) values. The chlorination effect and the conclusions were further checked with appropriate density functional theory (DFT) calculations.

摘要

短链氯化石蜡(SCCPs)仍是《斯德哥尔摩公约》中颇具争议的纳入候选物质。SCCPs的固有混合物性质使其环境行为的研究颇具难度。构建了一个包含42720种C10 - SCCP同系物、涵盖完整结构谱的虚拟分子库。我们通过半经验量子化学计算探究了结构对C10 - SCCPs热力学参数和环境降解性的影响。使用AM1方法获取热力学性质,并进行前沿分子轨道分析以在同一水平获得用于降解性探索的E(HOMO)、E(LUMO)和E(LUMO)-E(HOMO)。阐明了氯化度(N(Cl))对相对稳定性和环境降解的影响。提出了一种新的结构描述符μ来衡量分子内氯原子的分散程度。热力学值与N(Cl)之间存在显著相关性,而环境样品中报道的C10 - SCCPs的N(Cl)依赖性污染分布与C10 - SCCP同系物形成稳定性的预测顺序基本一致。此外,μ值大的异构体比μ值小的异构体具有更高的相对稳定性。这可以分别通过μ与亲核取代反应性和OH攻击反应性之间的关系进一步验证。Cl取代较少且分散程度较低的C10 - SCCP同系物易通过亲核取代和羟基自由基攻击发生环境降解,而由于E(LUMO)-E(HOMO)值较大,C10 - SCCP同系物的直接光解不易发生。用适当的密度泛函理论(DFT)计算进一步检验了氯化效应和所得结论。

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