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Characterizing phosphorus removal from polluted urban river water by steel slags in a vertical flow constructed wetland

机译:垂直流人工湿地中钢渣去除城市污水中磷的特征

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Phosphorus (P) removal in constructed wetlands (CWs) is often low unless special substrates with high sorption capacities are used. However, the use of special substrates in vertical flow (VF) CWs has not been proved to enhance P sorption. Thus, two VF wetlands were designed to evaluate the potential for enhanced P removal from polluted urban river water, one with slag as substrate and the other as a control with gravel as substrate. Findings from batch experiments showed P sorption capacities of 3.15 gP/kg and 0.81 gP/kg, respectively, for steel slag and gravel. Different organic matter fractions played different roles in P sorption, the effects of which were significant only at high concentrations. Over a 220 days' operation, the VF-slag removed 76.0% of the influent total phosphorus (TP) at 0.159 g/m(2).d and PO4-P of 70.9% at 0.063 g/m(2).d, whereas the VF-gravel removed 65.0% at 0.136 g/m(2).d and 48.6% at 0.040 g/m(2).d, respectively. Therefore, the merit of using a steel slag substrate in VF wetlands can be significant for the removal of PO4-P.
机译:除非使用具有高吸附能力的特殊基质,人工湿地(CW)中的磷(P)去除率通常较低。但是,尚未证明在垂直流(VF)CW中使用特殊的底物可以增强P的吸附。因此,设计了两个VF湿地来评估从受污染的城市河水中提高P去除的潜力,一个以矿渣为底物,另一个以砾石为底物作为对照。分批实验的结果表明,钢渣和砾石的P吸附量分别为3.15 gP / kg和0.81 gP / kg。不同的有机物组分在磷的吸附中起不同的作用,仅在高浓度下其作用才显着。在220天的运行中,VF渣以0.159 g / m(2).d去除了76.0%的进水总磷(TP),以0.063 g / m(2).d去除了70.9%的PO4-P,而VF-砾石在0.136 g / m(2).d时去除了65.0%,在0.040 g / m(2).d时去除了48.6%。因此,在VF湿地中使用钢渣基质的优点对于去除PO4-P可能很重要。

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