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The use of a hybrid Sequential Biofiltration System for the improvement of nutrient removal and PCB control in municipal wastewater

机译:混合序贯生物滤光系统在市政废水中提高营养去除和PCB控制的用途

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摘要

Abstract This article aims to evaluate the efficiency of an innovative hybrid Sequential Biofiltration System (SBS) for removing phosphorus and nitrogen and polychlorinated biphenyls (PCBs) from original municipal wastewater produced by a Wastewater Treatment Plant under authentic operating conditions. The hybrid SBS was constructed with two barriers, a geochemical (filtration beds with limestone, coal and sawdust) and a biological barrier (wetlands with Glyceria, Acorus, Typha, Phragmites), operating in parallel. Significant differences were found between inflow and outflow from the SBS with regard to wastewater contaminant concentrations, the efficiency of removal being 16% (max. 93%) for Total Phosphorus (TP), 25% (max. 93%) for Soluble Reactive Phosphorus (SRP), 15% (max. 97%) for Total Nitrogen (TN), 17% (max. 98%) for NO3 –N, and 21% for PCB equivalency (PCB EQ). In the case of PCB EQ concentration, the highest efficiency of 43% was obtained using beds with macrophytes. The SBS removed a significant load of TP (0.415 kg), TN (3.136 kg), and PCB EQ (0.223 g) per square meter per year. The use of low-cost hybrid SBSs as a post-treatment step for wastewater treatment was found to be an effective ecohydrological biotechnology that may be used for reducing point source pollution and improving water quality.
机译:抽象本文旨在评估一个创新的混合顺序生物过滤系统(SBS)的效率除去磷,氮和从真实的操作条件下通过一个污水处理厂产生的原始城市废水多氯联苯(PCBs)。的混合SBS与两种障碍,地球化学(过滤床,石灰石,煤和锯屑)和生物屏障(有甜茅属,菖蒲,香蒲,芦苇湿地)构造,在并行操作。从SBS的流入和流出之间发现显著差异对于废水污染物浓度,去除为16%的效率(最大93%)为总磷(TP),25%(最大93%)为可溶性活性磷(SRP),15%(最大97%)总氮(TN),17%(最大98%)为NO3-N,以及用于印刷电路板等同性(PCB EQ)21%。在PCB EQ浓度的情况下,使用床,水生植物,获得43%的最高效率。在SBS除去TP(0.415公斤),TN(3.136公斤),并且每年每平方米PCB EQ(0.223克)的显著负载。作为用于废水处理的后处理工序中的使用成本低廉的混合SBSS的发现是,可以使用用于减少点源污染和改善水质的有效生态水文生物技术。

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