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高温条件下氯(硫)酚与O(P)完整系列反应的机理及动力学性质

Mechanism and kinetic properties for the complete series reactions of chloro(thio)phenols with O(P) under high temperature conditions.

作者信息

Teng Zhuochao, Zhao Xianwei, Wang Hetong, Li Ying, Han Yanan, Sun Yanhui, Xu Fei

机构信息

Environment Research Institute, Shandong University Qingdao 266237 P. R. China

College of Environment and Safety Engineering, Qingdao University of Science & Technology Qingdao 266042 P. R. China.

出版信息

RSC Adv. 2021 May 14;11(29):17683-17693. doi: 10.1039/d1ra02407h. eCollection 2021 May 13.

Abstract

Polychlorinated dibenzo--dioxins/dibenzofurans (PCDD/Fs) and polychlorinated dibenzothiophenes/thianthrenes (PCDT/TAs) are two groups of dioxin-like compounds with oxygen and sulfur substitution, respectively. Chlorophenols (CPs) and chlorothiophenols (CTPs) are direct precursors in PCDD/F and PCDT/TA formation. The formation of chlorophenoxy radicals (CPRs) and chlorothiophenoxy radicals (CTPRs) from chlorophenols (CPs) and chlorothiophenols (CTPs) with O(P) is an important initial step for the formation of PCDD/Fs and PCDT/TAs, respectively. In this paper, the formation of CPRs/CTPRs from the complete series reactions of 19 CP/CTP congeners with O(P) was studied using the density functional theory (DFT) method. The rate constants of each reaction were calculated using canonical variational transition state (CVT) theory along with a small-curvature tunneling (SCT) contribution over a wide temperature range of 600-1200 K. The effect of the chlorine substitution pattern on the structural parameters, thermochemical properties and rate constants in both CPs and CTPs was discussed. This study shows that the reactions between CPs and O(P) can be affected by the chlorine substitution at the -position, and the reactions between CTPs and O(P) are mostly influenced by both -substitutions. The thiophenoxyl-hydrogen abstraction from CTPs by O(P) is more likely to occur than the phenoxyl-hydrogen abstraction from CPs by O(P). Comparison of the reactivity of CP/CTPs with O(P) with our previous work on CP/CTPs with H and OH shows that the order for phenoxyl-hydrogen abstraction potential is CP + OH > CP + O(P) > CP + H, and the order for thiophenoxyl-hydrogen abstraction potential is CTP + O(P) > CTP + H > CTP + OH.

摘要

多氯代二苯并 - 二噁英/二苯并呋喃(PCDD/Fs)和多氯代二苯并噻吩/噻蒽(PCDT/TAs)是两组分别具有氧和硫取代基的类二噁英化合物。氯酚(CPs)和氯硫酚(CTPs)分别是PCDD/F和PCDT/TA形成过程中的直接前体。氯酚(CPs)和氯硫酚(CTPs)与O(P)反应生成氯苯氧基自由基(CPRs)和氯硫苯氧基自由基(CTPRs),分别是PCDD/Fs和PCDT/TAs形成的重要初始步骤。本文采用密度泛函理论(DFT)方法研究了19种CP/CTP同系物与O(P)的完整系列反应中CPRs/CTPRs的形成。使用正则变分过渡态(CVT)理论并结合小曲率隧道效应(SCT)贡献,在600 - 1200 K的宽温度范围内计算了每个反应的速率常数。讨论了氯取代模式对CPs和CTPs的结构参数、热化学性质和速率常数的影响。该研究表明,CPs与O(P)之间的反应会受到邻位氯取代的影响,而CTPs与O(P)之间的反应主要受邻位和对位取代的共同影响。O(P)从CTPs中夺取噻吩氧基氢比从CPs中夺取苯氧基氢更易发生。将CP/CTPs与O(P)的反应活性与我们之前关于CP/CTPs与H和OH的研究进行比较,结果表明苯氧基氢夺取势的顺序为CP + OH > CP + O(P) > CP + H,噻吩氧基氢夺取势的顺序为CTP + O(P) > CTP + H > CTP + OH。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f4f7/9033228/afd9837788e0/d1ra02407h-f1.jpg

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