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理论研究 2-氯苯酚在脱水和羟基化硅烷簇上的反应。

Theoretical study of the reactions of 2-chlorophenol over the dehydrated and hydroxylated silica clusters.

机构信息

Key Lab of Colloid and Interface Chemistry, Ministry of Education, Institute of Theoretical Chemistry, Shandong University, Jinan, 250100, People's Republic of China.

出版信息

J Phys Chem A. 2012 Jan 12;116(1):430-6. doi: 10.1021/jp208571d. Epub 2011 Dec 22.

Abstract

Silica is the main component of combustion-generated fly ash and is expected to have an important impact on the formation of polychlorinated dibenzo-p-dioxins (PCDDs) and polychlorinated dibenzofurans (PCDFs) in municipal waste incinerators. In this work, we theoretically studied the reactions of 2-chlorinated phenol (2-CP) over the clusters (SiO(2))(3) and (SiO(2))(3)O(2)H(4), which mimic the dehydrated and hydroxylated silica structures, respectively. The dehydrated cluster is much more active toward the attack of 2-CP to form highly stable 2-chlorophenolate than the hydroxylated silica cluster. The further dissociation of chlorophenolates to form CP radicals (CPRs) is calculated to be very difficult. The calculated energy barrier of the reaction of 2-CP over the dehydrated (SiO(2))(3) cluster and IR data are in good agreement with early experimental observations. On the basis of the calculated results, we propose that the formation of PCDD/Fs from CPs over silica surfaces may not involve CPRs, but be relevant to the further conversion of chlorophenolates over silica surfaces. This mechanism is very different from the corresponding reactions mediated by transition metal oxides. The results presented here may be helpful to understand the chemisorption mechanism of CPs on silica surfaces in real waste combustion.

摘要

二氧化硅是燃烧生成的飞灰的主要成分,预计对城市垃圾焚烧炉中二恶英(PCDDs)和呋喃(PCDFs)的形成有重要影响。在这项工作中,我们从理论上研究了 2-氯苯酚(2-CP)在(SiO2)(3)和(SiO2)(3)O2H4 团簇上的反应,分别模拟了脱水和羟基化的二氧化硅结构。脱水团簇比羟基化的二氧化硅团簇更活跃,能更有效地攻击 2-CP 形成高度稳定的 2-氯苯氧离子。进一步将氯苯氧离子离解形成 CP 自由基(CPRs)被计算为非常困难。2-CP 在脱水(SiO2)(3)团簇上的反应的计算能垒和 IR 数据与早期的实验观察结果非常吻合。基于计算结果,我们提出,在二氧化硅表面上从 CPs 形成 PCDD/Fs 可能不涉及 CPRs,而是与二氧化硅表面上氯苯氧离子的进一步转化有关。这种机制与过渡金属氧化物介导的相应反应非常不同。这里提出的结果可能有助于理解在实际废物燃烧中 CPs 在二氧化硅表面上的化学吸附机制。

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