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Improvement of drinking water quality by using plant biomass through household biosand filter - A decentralized approach

机译:通过家用生物砂过滤器利用植物生物质来改善饮用水质量-一种分散式方法

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摘要

The removal of microbial and physico-chemical contaminants was investigated using an innovative biosand filter (BSF) containing three combinations of coniferous pinus bark biomass (CPBB), i.e. 1 cm (treatment 2), 2.5 cm (treatment 3) and 5 cm (treatment 4). The efficiency of BSF was assessed in batch mode experiments and the comparative reductions of contaminants were monitored over the control treatment (1) at temperature range of 1-15℃ for 90days. Standard methods were used to analyze 9 operating, physico-chemicals and biological water quality parameters of pre-and post-water filtration samples after 15 days interval. The results showed mean 93 ± 2% and 95 ± 3% reductions of Eischerichia coli and total coliforms, respectively, for BSF containing the highest depth of CPBB (5 cm), whereby 100% removal was observed during the treatment time T30 to T45 days. The general affinity sequence for E. coli, total coliforms and turbidity removal in the four treatments was: BSF with 5 cm CPBB > BSF with 2.5 cm CPBB > BSF with 1 cm CPBB > Control. It was concluded that modified BSF with additional adsorbent of locally available CPBB is a very good decentralized treatment option for drinking water.
机译:使用创新的生物砂滤池(BSF)研究了微生物和理化污染物的去除,该滤池包含针叶松树皮生物量(CPBB)的三种组合,即1 cm(处理2),2.5 cm(处理3)和5 cm(处理) 4)。在分批模式实验中评估了BSF的效率,并在1-15℃的温度范围内对对照处理(1)监测了90天的污染物相对减少量。在间隔15天后,使用标准方法分析了水过滤前后样品的9种操作,理化和生物水质参数。结果显示,对于含有最大CPBB深度(5厘米)的BSF,大肠杆菌和大肠菌群的平均减少量分别为93±2%和95±3%,从而在治疗时间T30至T45天观察到100%的去除率。四种处理中对大肠杆菌,总大肠菌群和混浊去除的一般亲和力顺序为:5 cm CPBB的BSF> 2.5 cm CPBB的BSF> 1 cm CPBB的BSF>对照。得出的结论是,改性的BSF与局部可用的CPBB的附加吸附剂是饮用水的很好的分散处理方法。

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