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首页> 外文期刊>Water science & technology >Urban stormwater runoff treatment of Nainital Lake's catchment: an application of ballasted sand flocculation technology
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Urban stormwater runoff treatment of Nainital Lake's catchment: an application of ballasted sand flocculation technology

机译:纳纳利湖集水区的城市雨水径流处理:镇流砂絮凝技术的应用

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摘要

Stormwater runoffs are one of the primary causes for deteriorating water quality in the Nainital Lake, India - a prominent tourist attraction and the sole drinking water source for the habitants of Nainital City. Treatment of fluctuating runoffs and contaminant influxes before mixing with the lake's water by conventional methods would require a large land footprint, which is a big constraint in the Nainital because of the hilly region. Ballasted sand flocculation (BSF) technology requires much less land footprint; a full-scale 1 MLD capacity pilot plant was applied for treatment of stormwater runoffs of the Nainital Lake. Twenty-eight storm events were monitored for runoff characterization and for evaluating the performance of BSF technology. The runoff water showed marked variation especially for total suspended solids (TSS), total phosphorus (TP), chemical oxygen demand (COD), biochemical oxygen demand (BOD), total coliform (TC) and fecal coliform (FC) with maximum concentrations of 964 mg/l, 2.35 mg/l, 520 mg/l, 299 mg/l, 21 x 10(5) MPN/100 ml and 14 x 10(4) MPN/100 ml. The performance analyses results of the pilot plant revealed that the contaminants including trace metals in the stormwater runoff were reduced appreciably and the pollutant removal efficiencies were found to be largely unaffected by fluctuation of the influent contaminants' concentration.
机译:雨水径流是纳纳托湖,印度水质劣化的主要原因之一 - 这是一个突出的旅游景点和纳纳托市居民的唯一饮用水来源。通过常规方法将波动径流和污染物涌入的污染物涌入的处理需要大的土地占地面积,这是由于丘陵地区的奈尼工具中的一个大限制。压载砂絮凝(BSF)技术需要较少的土地占地面积;全尺寸的1个MLD容量试验工厂用于治疗纳纳托湖的雨水径流。监测二十八场风暴事件以进行径流表征,并用于评估BSF技术的性能。径流水显示出显着的变化,特别是对于总悬浮固体(TS),总磷(TP),化学需氧量(COD),生物化学需氧量(BOD),总大疱(TC)和粪便大肠菌菌(FC),具有最大浓度964 mg / L,2.35mg / L,520 mg / L,299 mg / L,21×10(5)mPn / 100ml和14×10(4)mPn / 100ml。试验工厂的性能分析结果表明,在雨水径流中的痕量金属在内的污染物明显降低,发现污染物去除效率大大不受影响的污染物浓度波动的影响。

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