Key Laboratory of Colloid and Interface Chemistry, Ministry of Education, Institute of Theoretical Chemistry, Shandong University , Jinan, 250100, PR China.
Environ Sci Technol. 2013 Aug 6;47(15):8489-98. doi: 10.1021/es400632j. Epub 2013 Jul 10.
Chlorophenols are known as precursors of polychlorinated dibenzo-p-dioxins and dibenzofurans (PCDD/Fs). The widely accepted formation mechanism of PCDD/Fs always assumes chlorophenoxy radicals as key and important intermediates. Based on the results of density functional theory calculations, the present work reports new insight into the formation mechanism of PCDD/Fs from chlorophenol precursors. Using 2-chlorophenol as a model compound of chlorophenols, we find that apart from the chlorinated phenoxy radical, the chlorinated phenyl radical and the chlorinated α-ketocarbene also have great potential for PCDD/F formation, which has scarcely been considered in previous literature. The calculations on the self- and cross-coupling reactions of the chlorophenoxy radical, the chlorinated phenyl radical and the chlorinated α-ketocarbene show that the formations of 1-MCDD, 1,6-DCDD, 4,6-DCDF, and 4-MCDF are both thermodynamically and kinetically favorable. In particular, some pathways involving the chlorinated phenyl radicals and the chlorinated α-ketocarbene are even energetically more favorable than those involving the chlorophenoxy radical. The calculated results may improve our understanding for the formation mechanism of PCDD/Fs from chlorophenol precursors and be informative to environmental scientists.
氯酚被认为是多氯二苯并对二恶英和多氯二苯并呋喃(PCDD/Fs)的前体。广泛接受的 PCDD/Fs 形成机制始终假设氯苯氧基自由基是关键和重要的中间体。基于密度泛函理论计算的结果,本工作对氯酚前体形成 PCDD/Fs 的机制提出了新的见解。以 2-氯苯酚为氯酚的模型化合物,我们发现除了氯化苯氧基自由基外,氯化苯自由基和氯化α-酮卡宾也具有很大的形成 PCDD/F 的潜力,这在以前的文献中很少被考虑。对氯苯氧基自由基、氯化苯自由基和氯化α-酮卡宾的自偶联和交叉偶联反应的计算表明,1-MCDD、1,6-DCDD、4,6-DCDF 和 4-MCDF 的形成在热力学和动力学上都是有利的。特别是,一些涉及氯化苯自由基和氯化α-酮卡宾的途径甚至在能量上比涉及氯苯氧基自由基的途径更有利。计算结果可能会提高我们对氯酚前体形成 PCDD/Fs 的机制的理解,并为环境科学家提供信息。