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首页> 外文期刊>Water science & technology >Low cost and sustainable surface water purification methods using Moringa seeds and scallop powder followed by bio-sand filtration
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Low cost and sustainable surface water purification methods using Moringa seeds and scallop powder followed by bio-sand filtration

机译:低成本和可持续的地表水净化方法,使用辣木种子和扇贝粉,然后进行生物砂过滤

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摘要

A simple and inexpensive water purification method was developed using natural coagulant (Moringa seed powder) and antibacterial agents (scallop powder) followed by bio-sand filtration. In this study, surface water from different sources (e.g. pond, canal, lake and river) treated with combined Moringa seed powder, and scallop powder (MOSP) at a ratio of 2:1 for 10 minutes showed a clear water layer at the top and a sediment layer at the bottom. The clear water was then passed through an eight-fold sari cloth and/or natural bio-sand filtration and the resulting water was found drinkable. The microbiological and physico-chemical quality of this water showed non-significant differences compared to the US EPA drinking water quality parameters. Moreover, no cytotoxic effect of MOSP with BHK-21 and HeLa cells, nor any bacterial endotoxins were observed, indicating use of MOSP does not pose any adverse health effect. Furthermore, the quality of 6 months stored water at room temperature was found acceptable, indicating the usefulness of this technology for drinking water purposes. On the other hand, the sediment or sludge produced in this process could be used in agricultural fields after proper composting. Therefore, this simple, inexpensive and ecofriendly method could be used in drinking water scarcity areas of the world.
机译:开发了一种简单而便宜的净水方法,该方法使用天然凝结剂(辣木种子粉末)和抗菌剂(扇贝粉末),然后进行生物砂过滤。在这项研究中,用辣木籽粉和扇贝粉(MOSP)以2:1的比例混合处理10分钟后,来自不同来源(例如池塘,运河,湖泊和河流)的地表水在顶部显示了透明的水层。底部有一层沉积物。然后使清水通过八折纱布和/或天然生物砂过滤,发现所得水可饮用。与美国EPA饮用水水质参数相比,该水的微生物学和理化质量没有显着差异。此外,未观察到MOSP对BHK-21和HeLa细胞的细胞毒性作用,也未观察到任何细菌内毒素,表明使用MOSP不会对健康产生任何不利影响。此外,发现在室温下储存6个月的水的质量可以接受,这表明该技术可用于饮用水。另一方面,此过程中产生的沉积物或污泥经适当的堆肥后可用于农业领域。因此,这种简单,廉价和环保的方法可用于世界饮用水短缺地区。

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