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Evaluation of a biologically-based filtration water reclamation plant for removing emerging contaminants: A pilot plant study

机译:评估以生物为基础的滤水回收厂以去除新出现的污染物:中试工厂研究

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The effect of hydraulic retention time (HRT), solar radiation and seasonality on the removal efficiency of 18 emerging contaminants has been studied in a biological filtration pilot plant based on Daphnia sp. The pilot plant consisted of a homogenization tank and two lines, A and B, each with four 1m ~3 tanks. One of these lines was directly exposed to sunlight whereas the other line was covered. Our results suggest that biodegradation and photodegradation are the most important removal pathways, whereas sorption makes a minor contribution. The removal efficiency ranged from no detectable removal to more than 90%. The kinetics of the degradation process was fit to a first order kinetic, with half-lives from 0.6 to 42days, depending on the particular compound. However, a scaling effect comes into play as the pilot plant was found to be more efficient than a similar full-scale polishing pond.
机译:在基于Daphnia sp。的生物过滤试验工厂中,研究了水力停留时间(HRT),太阳辐射和季节变化对18种新兴污染物的去除效率的影响。中试工厂由一个均质罐和两条管线A和B组成,每条管线均带有四个1m〜3罐。其中一条线直接暴露在阳光下,而另一条线被遮盖。我们的结果表明,生物降解和光降解是最重要的去除途径,而吸附的贡献很小。去除效率的范围是从无法检测到的去除率到超过90%。降解过程的动力学符合一级动力学,其半衰期为0.6至42天,具体取决于特定的化合物。但是,由于发现中试工厂比类似的全尺寸抛光池更有效,因此产生了结垢效应。

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