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溶解有机质对非均相体系中十氯联苯(PCB-209)光降解的影响:实验分析和激发态理论计算。

Effect of Dissolved Organic Matter on the Photodegradation of Decachlorobiphenyl (PCB-209) in Heterogeneous Systems: Experimental Analysis and Excited-State Theory Calculations.

机构信息

State Key Laboratory of Pollution Control and Resources Reuse, School of the Environment, Nanjing University, Nanjing 210023, Jiangsu, P. R. China.

出版信息

Environ Sci Technol. 2024 Aug 13;58(32):14450-14459. doi: 10.1021/acs.est.4c02816. Epub 2024 Aug 1.

Abstract

Dissolved organic matter (DOM) can affect the transformation of pollutants through photosensitization, but most current research focuses on hydrophilic pollutants, making it such that less attention is paid to hydrophobic pollutants. In this paper, the effect and action mechanism of coexisting DOM on the photodegradation of decachlorobiphenyl (PCB-209) on suspended particles collected from the Yellow River were systematically investigated in a heterogeneous system using DOM standards and model compounds. Through molecular probe experiments, mass spectrometry analysis and theoretical calculations, we found that the excited triplet state of DOM (DOM*) could excite PCB-209 to undergo dechlorination reaction. Due to the different modes of electron transition, the presence of carbonyl groups decreased the energy of DOM*, whereas the electron-donating groups made the energy of DOM* higher. DOM containing phenolic hydroxyl groups led to a higher steady-state concentration of OH, and DOM containing phenyl ketone structures had a stronger ability to produce O. Compared with aqueous OH, O produced from hydrophobic microregions could react more readily with PCB-209. This study deepens the understanding of the role of different functional groups of DOM in the photosensitized transformation of hydrophobic compounds.

摘要

溶解有机质 (DOM) 可以通过光敏化作用影响污染物的转化,但目前大多数研究都集中在亲水性污染物上,因此对疏水性污染物的关注较少。本文采用 DOM 标准品和模型化合物,在非均相体系中系统研究了共存 DOM 对黄河悬浮颗粒物上采集的十氯联苯 (PCB-209) 光降解的影响及其作用机制。通过分子探针实验、质谱分析和理论计算,发现 DOM 的激发三重态(DOM*)可以激发 PCB-209 发生脱氯反应。由于电子跃迁模式的不同,羰基的存在降低了 DOM的能量,而供电子基团使 DOM的能量更高。含有酚羟基的 DOM 导致更高的 OH 稳态浓度,而含有苯甲酮结构的 DOM 具有更强的产生 O 的能力。与水相 OH 相比,疏水区产生的 O 与 PCB-209 更易发生反应。本研究加深了对 DOM 不同官能团在疏水性化合物光催化转化中作用的认识。

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