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Trace Organic Compound Removal from Wastewater Reverse-Osmosis Concentrate by Advanced Oxidation Processes with UV/O3/H2O2

机译:通过UV / O3 / H2O2高级氧化工艺去除废水反渗透浓缩液中的痕量有机化合物

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摘要

Advanced technologies, such as reverse osmosis (RO), allow the reuse of treated wastewater for direct or indirect potable use. However, even highly efficient RO systems produce ~10–15% highly contaminated concentrate as a byproduct. This wastewater RO concentrate (WWROC) is very rich in metal ions, nutrients, and hard-to-degrade trace organic compounds (TOrCs), such as pharmaceuticals, plasticizers, flame retardants, and detergents, which must be treated before disposal. WWROC could be up to 10 times more concentrated than secondary effluent. We examined the efficiency of several advanced oxidation processes (AOPs) on TOrC removal from a two-stage WWROC matrix in a pilot wastewater-treatment facility. WWROC ozonation or UV irradiation, with H O addition, demonstrated efficient removal of TOrCs, varying between 21% and over 99% degradation, and indicating that radical oxidation (by HO·) is the dominant mechanism. However, AOPs are not sufficient to fully treat the WWROC, and thus, additional procedures are required to decrease metal ion and nutrient concentrations. Further biological treatment post-AOP is also highly important, to eliminate the degradable organic molecules obtained from the AOP.
机译:反渗透(RO)等先进技术可将处理后的废水重新用于直接或间接饮用。但是,即使是高效的反渗透系统,也会产生约10-15%的高污染精矿副产品。该废水反渗透浓缩液(WWROC)富含金属离子,养分和难降解的微量有机化合物(TOrC),例如药物,增塑剂,阻燃剂和清洁剂,必须在处理前对其进行处理。 WWROC的浓缩度可能是二级污水的十倍。我们检查了中试废水处理设施中两步WWROC基质中几种高级氧化工艺(AOP)去除TOrC的效率。 WWROC臭氧化或紫外线照射,加上H O,证明有效去除TOrC,降解范围在21%到99%以上,并且表明自由基氧化(通过HO·)是主要机理。但是,AOP不足以完全处理WWROC,因此,需要其他程序来降低金属离子和营养物浓度。 AOP后的进一步生物处理对于消除从AOP获得的可降解有机分子也非常重要。

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