首页> 外文期刊>The Science of the Total Environment >Reduction of Escherichia Coli using ceramic disk filter decorated by nano-TiO_2: A low-cost solution for household water purification
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Reduction of Escherichia Coli using ceramic disk filter decorated by nano-TiO_2: A low-cost solution for household water purification

机译:使用纳米TiO_2装饰的陶瓷圆盘过滤器减少大肠埃希氏菌:一种家用净水的低成本解决方案

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摘要

AbstractLack of access to safe water is a challenge in many developing countries, especially in rural areas. It is urgent to develop cost-effective water purification technologies to guarantee drinking water safety in these areas. The present study investigated the reduction ofEscherichia coli(E. coli) using ceramic disk filters (CDFs) decorated by nano-TiO2.The production of CDFs coated with nano-TiO2in terms of rice-husk ratio, rice-husk particle size, heating hold time and nano-TiO2mass fraction was optimized. The results show that the optimum conditions for CDFs with nano-TiO2coating included rice-husk ratio of 29.03%, rice-husk particle size of 0.28mm, heating hold time of 1.41h and nano-TiO2mass fraction of 2.21%. Additionally, the morphological and crystal phase characteristics of CDFs were revealed after the decoration by nano-TiO2. The effects of temperature, influentE. coliconcentration, lamp power and their interactions were explored via factorial analysis. InfluentE. coliconcentration and lamp power had significant effects onE. coliremoval efficiency. This study provided the solid theoretical support for understanding the production and bacteria inactivation relevant to CDFs impregnated with nano-TiO2. The results have important implications for finding a safe and cost-effective approach to solve drinking water problems in developing countries.Graphical abstractDisplay OmittedHighlightsReduction ofE. coliusing ceramic disk filters (CDFs) decorated by nano-TiO2The production of modified CDFs was optimized using surface response methodology.The morphological and crystal phase characteristics of CDFs were characterized.Operation factors and their interactions were explored via factorial analysis.Safe and cost-effective water purification technology for developing countries
机译: 摘要 在许多发展中国家,特别是在农村地区,缺乏安全饮用水是一个挑战。迫切需要开发具有成本效益的水净化技术,以保证这些地区的饮用水安全。本研究利用纳米TiO 大肠杆菌大肠杆菌)的方法。 :inf loc =“ post”> 2。就稻壳比例而言,纳米TiO 2 包覆的CDF的生产,优化了稻壳的粒径,保温时间和纳米TiO 2 质量分数。结果表明,纳米TiO 2 涂层的CDFs的最佳条件为:稻壳比例为29.03%,稻壳粒径为0.28mm,加热保持时间为1.41h,纳米TiO 2 质量分数为2.21%。另外,纳米TiO 2 修饰后,揭示了CDFs的形貌和晶相特征。温度的影响,进水 E。通过因子分析研究了大肠杆菌的浓度,灯功率及其相互作用。进水 E。大肠杆菌浓度和灯功率对大肠杆菌具有显着影响。大肠杆菌去除效率。该研究为理解与纳米TiO 2 浸渍的CDF相关的生产和细菌灭活提供了坚实的理论支持。该结果对于寻找一种安全,经济高效的方法来解决发展中国家的饮用水问题具有重要意义。 图形摘要 省略显示 突出显示 减少 E。大肠杆菌使用由纳米TiO 2 装饰的陶瓷圆盘过滤器(CDF) 使用表面响应方法优化了修饰CDF的生产。 对CDF的形态和晶体相特征进行了表征。 通过因子分析研究了运营因素及其相互作用。 适用于发展中国家的安全且经济高效的净水技术 < / ce:list-item>

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  • 来源
    《The Science of the Total Environment》 |2018年第3期|1628-1637|共10页
  • 作者单位

    Institute for Energy, Environment and Sustainability Research, UR-NCEPU, North China Electric Power University;

    Institute for Energy, Environment and Sustainability Research, UR-NCEPU, North China Electric Power University;

    Institute for Energy, Environment and Sustainable Communities, University of Regina;

    Institute for Energy, Environment and Sustainability Research, UR-NCEPU, North China Electric Power University;

    Institute for Energy, Environment and Sustainable Communities, University of Regina;

    Institute for Energy, Environment and Sustainable Communities, University of Regina;

    Institute for Energy, Environment and Sustainable Communities, University of Regina;

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

    Water safety; Ceramic disk filter; E. coliremoval; Filtration; Process optimization; Factorial analysis;

    机译:水安全性;陶瓷盘式过滤器;E.去除大肠菌;过滤;工艺优化;成分分析;

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