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Ozonation combined with electrolysis of 1,4-dioxane using a two-compartment electrolytic flow cell with solid electrolyte

机译:使用带固体电解质的两室电解流通池进行臭氧氧化和1,4-二恶烷的电解

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Ozonation combined with electrolysis (ozone-electrolysis) is a new advanced oxidation process for water treatment. The advantages of ozone-electrolysis are (1) that reagents such as hydrogen peroxide or ferrous salts are unnecessary, (2) there is less influence from chromaticity, and (3) electric power is only required for operation. However, electrolysis has a serious limitation, in that it requires electrical conductivity (EC). This research is aimed at developing an ozone-electrolysis reactor that is applicable to wastewater with low EC using a cation exchange membrane as solid electrolyte. Moreover, experimental evidence of hydroxyl radical (·OH) generation via the cathodic reduction of ozone was obtained. Competitive kinetics analysis, based on the experimental data from the ozone-electrolysis of a mixed solution of 1,4-dioxane and tert-butyl alcohol, revealed that ·OH contributed to 1,4-dioxane degradation. The ozone-electrolysis reactor was successfully applicable to degradation of 1,4-dioxane in both 1,4-dioxane solution (EC: less than 0.30 μS/cm) and a landfill leachate treated by a low-pressure reverse osmosis membrane (EC: 0.06 mS/cm). The use of a solid electrolyte was also very effective in reducing the electric power required for electrolysis.
机译:臭氧结合电解(臭氧电解)是一种用于水处理的新型先进氧化工艺。臭氧电解的优点是:(1)不需要诸如过氧化氢或亚铁盐之类的试剂;(2)色度影响较小;(3)仅需要电力。然而,电解具有严重的局限性,因为它需要电导率(EC)。这项研究旨在开发一种臭氧电解反应器,该反应器适用于使用阳离子交换膜作为固体电解质的低EC废水。此外,获得了通过臭氧的阴极还原产生羟基自由基(·OH)的实验证据。竞争动力学分析基于1,4-二恶烷和叔丁醇混合溶液的臭氧电解实验数据,表明·OH导致1,4-二恶烷降解。臭氧电解反应器成功地适用于在1,4-二恶烷溶液(EC:小于0.30μS/ cm)和通过低压反渗透膜处理的垃圾渗滤液(EC: 0.06 mS / cm)。固体电解质的使用在降低电解所需的电功率方面也是非常有效的。

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