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首页> 外文期刊>Journal of environmental sciences >Conversion characteristics and mechanism analysis of gaseous dichloromethane degraded by a VUV light in different reaction media
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Conversion characteristics and mechanism analysis of gaseous dichloromethane degraded by a VUV light in different reaction media

机译:VUV光在不同反应介质中降解气态二氯甲烷的转化特性及机理分析

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摘要

The photodegradation of gaseous dichloromethane (DCM) by a vacuum ultraviolet (VUV) light in a spiral reactor was investigated with different reaction media and initial concentrations. Through the combination of direct photolysis, O_3 oxidation and HO· oxidation, DCM was ultimately mineralized into inorganic compounds (such as HCl, CO_2, H_2O, etc.) in the air with relative humidity (RH) of 75%-85%. During the photodegradation process, some small organic acids (including formic acid, acetic acid) were also detected and the intermediates were more soluble than DCM, providing a possibility for its combination with subsequent biodegradation. Based on the detected intermediates and the confirmed radicals, a photodegradation pathway of DCM by VUV was proposed. With RH 75%-80% air as the reaction medium, the DCM removal followed the second-order kinetic model at inlet concentration of 100-1000 mg/m~3. Kinetic analysis showed that the reaction media affected the kinetic constants of DCM conversion by a large extent, and RH 80% air could cause a much lower half-life for its conversion. Such results supported the possibility that VUV photodegradation could be used not only for the mineralization of DCM but also as a pretreatment before biodegradation.
机译:在不同的反应介质和初始浓度下,研究了螺旋反应器中真空紫外(VUV)光对气态二氯甲烷(DCM)的光降解作用。通过直接光解,O_3氧化和HO·氧化的组合,DCM最终在相对湿度(RH)为75%-85%的空气中矿化为无机化合物(例如HCl,CO_2,H_2O等)。在光降解过程中,还检测到一些小的有机酸(包括甲酸,乙酸),并且中间体比DCM更易溶,为其与后续生物降解的组合提供了可能性。基于检测到的中间体和确定的自由基,提出了VUV对DCM的光降解途径。以RH 75%-80%空气为反应介质,在入口浓度为100-1000 mg / m〜3的条件下,DCM的去除遵循二级动力学模型。动力学分析表明,反应介质在很大程度上影响DCM转化的动力学常数,相对湿度80%的RH可能导致其转化的半衰期低得多。这样的结果支持了VUV光降解不仅可以用于DCM的矿化,而且还可以用作生物降解之前的预处理的可能性。

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