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Degradation of triethylene glycol dimethyl ether by ozonation combined with UV irradiation or hydrogen peroxide addition

机译:臭氧结合紫外辐射或过氧化氢降解三甘醇二甲醚

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Ozonation of pure aqueous solutions of the polar aliphatic refractory triethylene glycol dimethyl ether (TEGDME) which is a typical representative of organic solutes of oil reclaiming wastewaters does not lead to effective mineralization unless high ozone doses are applied. Small doses of UV irradiation do not markedly increase TEGDME mineralization by ozonation, but transformation to more oxidized products (mainly carboxylic acids containing methoxy and/or ethoxy groups) which are biodegradable to a higher degree than TEGDME. Addition of high concentrations of hydrogen peroxide during ozonation results in efficient increase of TEGDME mineralization, however. The presence of humic acids - which is a consequence of biological treatment of wastewaters containing biodegradable organic constituents - has a beneficial effect on transformation of TEGDME during ozonation or ozone/UV treatment because hydrogen peroxide is formed during ozonation of humic acid C-C double bonds.
机译:极性脂肪族难熔三甘醇二甲醚(TEGDME)的纯水溶液的臭氧化是石油再生废水有机溶质的典型代表,除非应用高剂量的臭氧,否则不会导致有效的矿化。小剂量的紫外线照射并不能通过臭氧化显着增加TEGDME的矿化作用,而是可以转化为更多的氧化产物(主要是含有甲氧基和/或乙氧基的羧酸),与TEGDME相比,其可生物降解的程度更高。然而,在臭氧化过程中添加高浓度的过氧化氢导致TEGDME矿化的有效增加。腐殖酸的存在-这是对含有可生物降解的有机成分的废水进行生物处理的结果-在臭氧化或臭氧/紫外线处理期间对TEGDME的转化具有有益作用,因为在腐殖酸C-C双键的臭氧化过程中会形成过氧化氢。

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