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Development and performance evaluation of low-cost wastewater treatment plant

机译:低成本废水处理厂的开发与绩效评价

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摘要

A pilot-scale wastewater treatment plant was developed for the purpose of treating wastewaters in south-western Nigeria. The plant, mounted on a roller frame was divided into three sections, viz. wastewater holder, purification chamber and treated water collector. The purification chamber contained three sets of strainers with locally sourced materials which include Azolla pinnata fern, fine sand, chlorine pellets, alum cubes and palm kernel shell charcoal (PKSC). The performance of the treatment plant was evaluated using four different wastewater (WW) sources which were industrial (IW), municipal (MW), domestic (DW) and aquaculture (AW) wastewaters. Sixteen physicochemical parameters and ten metals were monitored in the four WW samples which included temperature, turbidity, electrical conductivity (EC), pH, total suspended solids (TSS), total dissolved solids (TDS), total solid (TS), acidity as CaCO_3, total hardness, total phosphorus (TP), total nitrogen (TN), ammoniacal nitrogen, dissolved oxygen (DO), chemical oxygen demand (COD), biochemical oxygen demand (BOD_5), fecal coliform, Escherichia coli and total coliform count. The metals were Na, K, Ca, Mg, Zn, Fe, Pb, Cu, Cd, and Mn. Water quality analysis was done using standard laboratory procedures and results obtained were subjected to statistical analysis. From the results, 100% removal efficiencies were obtained in some heavy metals such as cadmium (Cd) and manganese (Mn) and in parameters such as turbidity, TP, and TN after passing through the treatment plant. The presence of pathogens and microorganisms that were also reduced does not in any way affect its use for agricultural purposes. All other parameters reduced appreciably with results which were statistically significant at P<0.05. This indicated the high efficiency of the treatment plant in the removal of the water pollutant and heavy metals from the four WW sources considered.
机译:为治疗尼日利亚西南部治疗废水的目的而开发了一台试验规模的废水处理厂。安装在滚子框架上的植物分为三个部分,viz。污水架,净化室和处理的水收集器。净化室含有三套过滤器,局部采购材料包括Azolla Pinnata蕨类植物,细砂,氯颗粒,明矾立方体和棕榈仁壳木炭(PKSC)。使用工业(IW),市(MW),国内(DW)和水产养殖(AW)废水的四种不同废水(WW)来源评估治疗厂的性能。在四个WW样品中监测十六个物理化学参数和十种金属,包括温度,浊度,导电性(EC),pH,总悬浮固体(TSS),总溶解固体(TDS),总固体(TS),酸度为Caco_3 ,总硬度,总磷(TP),总氮(TN),氨氮,溶解氧(DO),化学需氧量(COD),生物化学需氧量(BOD_5),粪大肠癌,大肠杆菌和总大肠杆菌计数。金属是Na,K,Ca,Mg,Zn,Fe,Pb,Cu,Cd和Mn。使用标准实验室程序进行水质分析,并进行统计分析所获得的结果。从结果中,在一些重金属中获得100%的去除效率,例如镉(Cd)和锰(Mn)和通过处理厂之后的浊度,TP和Tn等参数。病原体和微生物的存在也没有以任何方式影响其用于农业目的的用途。所有其他参数的结果明显降低,结果在P <0.05时统计学意义。这表明治疗厂的高效率在去除来自四个WW源的水污染物和重金属中的含量高效率。

著录项

  • 来源
    《Sustainable Water Resources Management》 |2019年第3期|1217-1226|共10页
  • 作者单位

    Department of Agricultural and Environmental Engineering Federal University of Technology Akure Nigeria Department of Agricultural and Bio Systems Engineering Landmark University Omu Aran Nigeria;

    Department of Agricultural and Environmental Engineering Federal University of Technology Akure Nigeria;

    Department of Agricultural and Bio Systems Engineering Landmark University Omu Aran Nigeria;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Wastewaters; Treatment plant; Low cost; Metals; Pollutants;

    机译:废水;治疗厂;低成本;金属;污染物;

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