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Comparative research on phosphorus removal by pilot-scale vertical flow constructed wetlands using steel slag and modified steel slag as substrates

机译:以钢渣和改性钢渣为基质的中试垂直流人工湿地除磷的比较研究

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This research mainly focused on the phosphorus removal performance of pilot-scale vertical flow constructed wetlands with steel slag (SS) and modified steel slag (MSS). First, bench-scale experiments were conducted to evaluate the phosphorus adsorption capacity. Results showed that the Langmuir model could better describe the adsorption characteristics of the two materials; the maximum adsorption of MSS reached 12.7 mg/g, increasing by 34% compared to SS (9.5 mg/g). Moreover, pilot-scale constructed wetlands with SS and MSS were set up outdoors. Then, the influence of hydraulic retention time (HRT) and phosphorus concentration in phosphorus removal for two wetlands were investigated. Results revealed that better performance of the two systems could be achieved with an HRT of 2 d and phosphorus concentration in the range of 3-4.5 mg/L; the system with MSS had a better removal efficiency than the one with SS in the same control operation. Finally, the study implied that MSS could be used as a promising substrate for wetlands to treat wastewater with a high phosphorus concentration. However, considering energy consumption, SS could be regarded as a better alternative for substrate when treating sewage with a low phosphorus concentration.
机译:这项研究主要集中在具有钢渣(SS)和改性钢渣(MSS)的中试规模垂直流人工湿地的除磷性能上。首先,进行实验室规模的实验以评估磷的吸附能力。结果表明,Langmuir模型可以更好地描述两种材料的吸附特性。 MSS的最大吸附量达到12.7 mg / g,比SS(9.5 mg / g)增加了34%。此外,在室外设置了具有SS和MSS的中试规模湿地。然后,研究了水力停留时间(HRT)和磷浓度对两个湿地除磷的影响。结果表明,在2 d的HRT和3-4.5 mg / L的磷浓度下,可以实现两个系统的更好性能。在相同的控制操作下,具有MSS的系统比具有SS的系统具有更好的去除效率。最后,该研究表明,MSS可用作湿地处理高磷浓度废水的有前途的基质。但是,考虑到能源消耗,当处理低磷浓度的污水时,SS可以被视为基材的更好替代品。

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