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(00766)Micro-pollutants, Oxidants, Catalysts and the Water Matrix: A Harmonic Quartet or the War of the Roses?

机译:(00766)微污染物,氧化剂,催化剂和水基质:谐波四重奏或玫瑰的战争?

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Advanced oxidation processes (AOPs, e.g. heterogeneous and homogeneous photocatalysis, electrochemical oxidation, ozonation, ultrasound irradiation, Fenton and alike reactions, and many more)have been investigated for the treatment of emerging pollutants over the past 20 years (Klavarioti et al., 2009). In particular, the occurrence of persistence micro-pollutants in various water matrices, such as pharmaceuticals and personal care products, raises serious environmental concerns since these xenobiotics can re-enter the water cycle, i.e. escaping intact from the conventional wastewater treatment plants and finally ending up in surface and ground waters (Verlicchi et al., 2012).AOPs can effectively degrade organic pollutants typically found in environmental matrices (secondary treated effluents, surface waters, ground waters)at concentrations ranging from the ng/L to low mg/L level. This said, the specific treatment cost (i.e. the cost per unit mass of removed pollutant and/or per unit volume of effluent), as well as the environmental footprint are generally high; both are usually related to the treatment performance, which, in turn, depends on the specific treatment conditions and the quality of the water matrix.
机译:已经研究了先进的氧化方法(AOP,例如异均匀和均匀的光催化,电化学氧化,臭氧化,超声辐照,芬顿和相似的反应,以及更多)在过去20年中治疗新出现的污染物(Klavarioti等,2009 )。特别地,在各种水矩阵(例如药物和个人护理产品)中的持久性微污染物的发生提高了严重的环境问题,因为这些仇指生物可以重新进入水循环,即逃离常规废水处理厂的完整,最后结束在地面和地面水域(Verlicchi等,2012,2012).aops可以有效降解通常在环境基质(次要处理的污水,地面水)的有机污染物,以Ng / L至低mg / L的浓度等级。这表示,具体治疗成本(即,每单位污染物和/或每单位流出物的每单位质量的成本)以及环境足量通常很高;两者通常与治疗性能有关,反过来依赖于具体的治疗条件和水基质的质量。

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