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Enhancement of the Performance of a Biosand Filter Using Pumice Media and Natural Coagulant Dosing

机译:使用浮石培养基和天然凝血剂量增强Biosand过滤器的性能

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Biosand filters (BSF) are an effective point of use technology for drinking water treatment. However, drawbacks of BSFs include slow ripening and high head losses. This paper discusses two modifications that address these drawbacks: (1) use of pumice to enhance hydraulic performance, and (2) dosing of Moringa oleifera to expedite ripening. Three filter columns with sand, pumice, and a pumice/sand beds were studied for over 3 months. Head loss, filtration rate and water quality parameters were monitored. In the first few cycles, the pumice and the dual media columns had 2-3 times greater filter run lengths compared with the sand column. The pumice column consistently had the lowest product water turbidity (< 0.23 NTU). On the other hand, the sand column had the highest organic removal (about 14.7%). The study showed that pumice had better hydraulic performance while achieving better turbidity removal. M. oleifera dosed columns ripened faster, however, continuous dosing resulted in excessive growth of biofilms, which shortened filter run times. The improvements in hydraulic performance and ripening due to the modifications can help improve acceptability of the technology by users. Further studies are necessary to find optimum doses and duration of M. oleifera application. Hydraulic modelling of the BSF showed that the experimental results (head loss and filtration rate) from the sand BSF corresponded well with model results. For pumice; however, the experimental results did not fit the model curves. This may be explained by the fact that internal pore spaces in pumice are not accounted for in the model.
机译:Biosand过滤器(BSF)是用于饮用水处理技术的有效技术。然而,BSF的缺点包括慢的成熟和高头损耗。本文讨论了解决这些缺点的两个修改:(1)使用浮石以增强液压性能,(2)辣木的剂量加快成熟。 3个月内研究了三个带有沙子,浮石和浮石/沙床的过滤柱。监测头部损失,过滤率和水质参数。在前几个循环中,与砂柱相比,浮石和双介质柱具有2-3倍的过滤器运行长度。浮石柱始终如一的产品水浊度(<0.23 NTU)。另一方面,砂柱具有最高的有机化物(约14.7%)。该研究表明,浮石具有更好的液压性能,同时实现更好的浊度去除。 M. oleifera剂量柱更快成熟,但是,连续给药导致生物膜的过度生长,缩短过滤器运行时间。由于修改而导致的液压性能和成熟的改进可以帮助提高用户的可接受性。进一步的研究是寻找最佳剂量和M.Oleifera应用的最佳剂量和持续时间。 BSF的液压建模显示,来自砂BSF的实验结果(头部损耗和过滤率)与模型结果相对应。对于浮石;但是,实验结果不适合模型曲线。这可以解释:在模型中没有占浮石中的内部孔隙空间。

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