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首页> 外文期刊>Science of the total environment >Peracids - New oxidants in advanced oxidation processes: The use of peracetic acid, peroxymonosulfate, and persulfate salts in the removal of organic micropollutants of emerging concern - A review
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Peracids - New oxidants in advanced oxidation processes: The use of peracetic acid, peroxymonosulfate, and persulfate salts in the removal of organic micropollutants of emerging concern - A review

机译:peracids - 晚期氧化过程中的新氧化剂:使用过乙酸,过氧键硫酸盐和过硫酸盐盐在去除新兴关注的有机微量渗症中 - 审查

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In recent years, there has been increasing interest in using of advanced oxidation processes in water and wastewater decontamination. As a new oxidants peracids, mainly peracetic acid (PAA) and peracid salts, i.e. peroxymonosulfate (PMS) and persulfate (PS) are used. The degradation process of organic compounds takes place with the participation of radicals, including hydroxyl ('OH) and sulfate (SOJ) radicals derived from the peracids activation processes. Peracids can be activated in homogeneous systems (UV radiation, d-electron metal ions, e.g. Fe~(2+), Co~(2+), Mn~(2+), base, ozonolysis, thermolysis, radiolysis), or using heterogeneous activation (metals with zero oxidation state, metal oxides, quinones, activated carbon, semiconductors). As a result of oxidation, products of a lower mass than the parent compounds, less toxic, and more susceptible to biodegradation are formed. An important task is to investigate the effect of the peracid activation method and matrix composition on the efficiency of contamination removal. The article presents the latest information about the application of peracids in the removal of organic micropollutants of emerging concern (mainly focuses on endocrine disrupted compounds). The most important information on peracetic acid, peroxymonosulfate and persulfate salts, and methods of their activation are presented. Current uses of these oxidants in organic micropollutants removal are also described. Information was collected on the factors influencing the oxidation process and the effectiveness of pollutant removal. This paper compares PAA, PMS and PS-based processes for the first time in terms of kinetics and efficiency.
机译:近年来,在水和废水去污中使用高级氧化过程越来越兴趣。作为新的氧化剂,主要是过乙酸(PAA)和过酸盐,即过氧键硫酸盐(PMS)和过硫酸盐(PS)。有机化合物的降解过程随着自由基的参与而发生,包括衍生自过酸活化方法的羟基('OH)和硫酸盐(SOJ)基团。 peracIds可以在均匀系统中激活(UV辐射,D-电子金属离子,例如Fe〜(2+),Co〜(2+),Mn〜(2+),碱,臭氧溶解,热解,放射性),或使用异质活化(金属氧化态,金属氧化物,醌,活性炭,半导体)。形成氧化的结果,形成比母体化合物更低,毒性较小,更容易生物降解。重要任务是探讨白藜布活化方法和基质组合物对污染效率的影响。本文介绍了关于哌酸在除去新兴担忧的有机微拷贝中的应用的最新信息(主要侧重于内分泌破坏化合物)。提出了关于过乙酸,过氧核糖硫酸盐和过硫酸盐盐的最重要的信息以及其活化的方法。还描述了这些氧化剂在有机微渗透剂中去除的目前用途。收集了影响氧化过程的因素和污染物去除的有效性的信息。本文在动力学和效率方面,将PAA,PMS和PS和PS的流程进行了比较。

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