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在氮气流中对氯甲烷及其混合物进行直接真空紫外光解。

Direct VUV photolysis of chlorinated methanes and their mixtures in a nitrogen stream.

作者信息

Alapi T, Van Craeynest K, Van Langenhoeve H, Dewulf J, Dombi A

机构信息

Department of Inorganic and Analytical Chemistry, University of Szeged, P.O. Box 440, H-6701 Szeged, Hungary.

出版信息

Chemosphere. 2007 Jan;66(1):139-44. doi: 10.1016/j.chemosphere.2006.04.090. Epub 2006 Jun 13.

Abstract

The gas-phase decomposition of CCl(4), CHCl(3) and CH(2)Cl(2) and their binary mixtures was studied in a flow-type reactor in a nitrogen gas stream, using a low-pressure mercury vapour lamp covered with a high-purity silica quartz sleeve. The 184.9 nm vacuum-ultraviolet (VUV) light emitted is able to rupture the C-Cl bond in these target substances. For H-containing compounds, the decomposition takes place not only by direct photolysis, but also by H abstraction by .Cl formed during the direct photolysis of the target substances. The relative contributions of direct photolysis and .Cl-sensitized reactions to the decomposition were estimated at different initial concentrations. The addition of CCl(4) to CHCl(3) or CH(2)Cl(2) increased their decomposition rates via increase of the .Cl concentration, whereas the addition of CH(2)Cl(2) to CHCl(3) decreased its degradation rate, suggesting that CH(2)Cl(2) acts as a .Cl radical scavenger. The variation of the product distribution confirms the effect of the composition of the irradiated gas mixtures on the relative contributions of .Cl-sensitized reactions and direct photolysis.

摘要

在氮气气流中的流动型反应器中,使用覆盖有高纯度石英套管的低压汞蒸气灯,研究了四氯化碳、三氯甲烷和二氯甲烷及其二元混合物的气相分解。所发射的184.9纳米真空紫外(VUV)光能够断裂这些目标物质中的碳氯键。对于含氢化合物,分解不仅通过直接光解发生,还通过目标物质直接光解过程中形成的氯原子夺取氢原子而发生。在不同初始浓度下估算了直接光解和氯原子敏化反应对分解的相对贡献。向三氯甲烷或二氯甲烷中添加四氯化碳,通过提高氯原子浓度增加了它们的分解速率,而向三氯甲烷中添加二氯甲烷则降低了其降解速率,这表明二氯甲烷起到了氯自由基清除剂的作用。产物分布的变化证实了辐照气体混合物的组成对氯原子敏化反应和直接光解相对贡献的影响。

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