化学
硝基苯
羟基自由基
臭氧
激进的
超纯水
碳氢化合物
反应速率常数
光化学
水处理
羟基值
自由基反应
有机化学
动力学
催化作用
化学工程
环境工程
多元醇
量子力学
物理
聚氨酯
工程类
作者
Fernando J. Beltrán,J.M. Encinar,M. Alonso
摘要
Single ozonation of two nitroaromatic hydrocarbons (nitrobenzene and 2,6-dinitrotoluene) under different experimental conditions (ozone feed rate, pH, temperature, hydroxyl radical scavengers) has been studied. The absence of hydroxyl radical scavengers, pHs 7−9, and temperatures below 30 °C are optimum conditions for nitroaromatic removal. Due to the importance of hydroxyl radical reactions, removal rates in natural water are much lower than those observed in laboratory ultrapure water. Rate constants of the direct reaction between ozone and nitroaromatic hydrocarbons at 20 °C have been found to be lower than 6 M -1 s -1 . More than 99% of nitroaromatic removal is due to hydroxyl radical oxidation. Single ozonation of nitroaromatics can then be classified as a real advanced oxidation technology. Nitrophenols, compounds very reactive toward ozone and hydroxyl radicals, and 2,6-dinitrobenzaldehyde, identified in the single ozonation of nitrobenzene and 2,6-dinitrotoluene, respectively, are some of the first intermediates of single ozonation.
科研通智能强力驱动
Strongly Powered by AbleSci AI