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Contaminants Removal by Bentonite Amended Slow Sand Filter

机译:膨润土改良慢砂滤池去除污染物

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摘要

Earlier studies have indicated that variability in size, surface texture and charge greatly influence the contaminant removal process in granular media. Based on surface characteristics of montmoril-lonite, it is anticipated that small addition of this clay would increase adhesion sites for bacterial growth and extracellular polymer production in the slow sand filter and thereby enhance its contaminant removal ability. Experiments were performed by permeating groundwater contaminated with pathogens (total coliform and E. Coli) and inorganic contaminants through the bentonite amended slow sand filter (BASSF). Surprisingly, the BASSF retained inorganic contaminants besides pathogens. Water-leach tests (pH of water leachate ranged from 2 to 9) with spent BASSF specimen indicated that the inorganic contaminants are irreversibly adsorbed to a large extent. It is considered that the combined effects of enhanced-organic matter mediated adhesion sites and increased hydraulic retention time enables the BASSF specimen to retain inorganic contaminants. It is envisaged that BASSF filters could find use in treating contaminated groundwater for potable needs at household and community level.
机译:早期的研究表明,尺寸,表面质地和电荷的变化会极大地影响颗粒介质中污染物的去除过程。基于蒙脱土-长石的表面特性,预计少量添加该粘土将增加慢速砂滤器中细菌生长和细胞外聚合物产生的粘附位点,从而提高其污染物去除能力。通过膨润土改良慢砂滤池(BASSF)渗透被病原体(大肠菌群和大肠杆菌)和无机污染物污染的地下水进行实验。令人惊讶的是,BASSF除病原体外还保留了无机污染物。用过的BASSF标本进行水浸试验(浸出水的pH值范围为2至9)表明,无机污染物在很大程度上被不可逆地吸附。可以认为,增强的有机物介导的粘附位点和增加的水力停留时间的共同作用使BASSF样品能够保留无机污染物。据设想,BASSF过滤器可用于处理污染的地下水,以满足家庭和社区的饮用水需求。

著录项

  • 来源
    《Journal of water chemistry and technology》 |2013年第1期|23-23|共1页
  • 作者单位

    Department of Civil Engineering and Chairman Centre for Sustainable Technologies, Bangalore, India;

    Department of Civil Engineering and Chairman Centre for Sustainable Technologies, Bangalore, India;

    Department of Civil Engineering and Chairman Centre for Sustainable Technologies, Bangalore, India;

    Enviroment Research Division Institute of Science and Technology, Seoul, Korea;

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

    environment; granular materials; pollution.;

    机译:环境;粒状材料;污染。;

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