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使用臭氧、紫外线、过氧化氢及其组合销毁硫芥。

Sulfur mustard destruction using ozone, UV, hydrogen peroxide and their combination.

作者信息

Popiel Stanisław, Witkiewicz Zygfryd, Chrzanowski Michał

机构信息

Institute of Chemistry, Military University of Technology, Warsaw, Poland.

出版信息

J Hazard Mater. 2008 May 1;153(1-2):37-43. doi: 10.1016/j.jhazmat.2007.08.041. Epub 2007 Aug 21.

Abstract

Numerous methods are used for destruction of sulfur mustard. Oxidation is one of those methods. There have been only limited data concerning application of the advanced oxidation technologies (AOTs) for mustard destruction available before. In this study sulfur mustard oxidation rate depending on kind of the oxidative system and process parameters used was assessed using selected AOT. The following were selected for mustard oxidation: ozone (O(3)), UV light (UV), hydrogen peroxide (H(2)O(2)); double systems: UV/O(3), UV/H(2)O(2), and O(3)/H(2)O(2); a triple system: O(3)/H(2)O(2)/UV and Fenton reaction. Effectiveness of the selected AOT methods has been evaluated and the most suitable one for mustard destruction was chosen. Using ozone in various combinations with hydrogen peroxide and UV radiation mustard can be destroyed much quicker comparing to the classical oxidizers. Fast mustard oxidation (a few minutes) occurred in those systems where ozone alone was used, or in the following combinations: O(3)/H(2)O(2), O(3)/UV and O(3)/H(2)O(2)/UV. When those advanced oxidation technologies are used, mustard becomes destroyed mainly in course of the direct oxidation with ozone, and reactions of mustard with radicals formed due to ozone action play a secondary role. Rate of sulfur mustard oxidation in the above mentioned ozone-containing oxidative systems decreases with pH value increasing from 2 to 12. Only when pH value of reaction solutions is close to pH 5, mustard oxidation rate is minimal, probably due to "disappearance" of radicals participating in oxidation in this pH. Sulfur mustard can be most effectively destroyed using just ozone in pH 7. In that case mustard destruction rate is only slightly lower than the rate achieved in optimal conditions, and the system is the simplest.

摘要

有多种方法可用于销毁硫芥。氧化就是其中一种方法。此前,关于采用高级氧化技术(AOTs)销毁芥子气的应用数据非常有限。在本研究中,使用选定的AOT评估了硫芥氧化速率与所用氧化系统类型和工艺参数的关系。选择了以下用于芥子气氧化的物质:臭氧(O(3))、紫外线(UV)、过氧化氢(H(2)O(2));双重系统:UV/O(3)、UV/H(2)O(2)和O(3)/H(2)O(2);三重系统:O(3)/H(2)O(2)/UV和芬顿反应。对选定的AOT方法的有效性进行了评估,并选择了最适合销毁芥子气的方法。与传统氧化剂相比,将臭氧与过氧化氢和紫外线辐射以各种组合使用时,芥子气的销毁速度要快得多。在单独使用臭氧或以下组合的系统中会快速发生芥子气氧化(几分钟):O(3)/H(2)O(2)、O(3)/UV和O(3)/H(2)O(2)/UV。当使用这些高级氧化技术时,芥子气主要在与臭氧的直接氧化过程中被销毁,而芥子气与因臭氧作用形成的自由基的反应起次要作用。在上述含臭氧的氧化系统中,硫芥的氧化速率随pH值从2增加到12而降低。只有当反应溶液的pH值接近pH 5时,芥子气的氧化速率最小,这可能是由于参与该pH值下氧化反应的自由基“消失”所致。在pH 7时仅使用臭氧就能最有效地销毁硫芥。在这种情况下,芥子气的销毁速率仅略低于在最佳条件下达到的速率,并且该系统是最简单的。

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