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Particle Shapes in the Drinking Water Filtration Process

机译:饮用水过滤过程中的颗粒形状

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摘要

Depth filtration is still one of the most important water treatment processes. It remains difficult to model mathematically because of the complexity of the process and the impact of numerous suspension parameters. The shape of the grains and suspension particles or floes are among these parameters. The results of theoretical calculations suggest their visible impact on nitration. The shape of the media grain is relatively easy to measure. The shapes of the floes or suspension particles, which are commonly not perfectly spherical, are much more difficult to predict. However, a few apparatuses developed lasting recent years make this possible. The FPIA 3000, manufactured by Malvern Instruments, uses flow particle image analysis method to measure 26 shape parameters of the suspension particles. Experimental measurement of suspension particle shape after flocculation and after depth filtration has allowed us to answer the question regarding the possible application of this measuring technique in water filtration technology. The experiments have also provided us with detailed information about the shape of floes and suspension particles in filtered water. High number of particles characterized by circularity lower than 0.8 was detected in flocculated water inflowing to the filter. The particles remained in the outflow was characterized by visibly higher circularity than the particles inflowing to the filter. The results revealed much better removal of the particles characterized by lower circularity during filtration, whereas relation between convexity of the particles and their removal efficiency was not so evident.
机译:深度过滤仍然是最重要的水处理过程之一。由于过程的复杂性和众多悬架参数的影响,仍然很难进行数学建模。这些参数包括晶粒和悬浮颗粒或絮状物的形状。理论计算的结果表明它们对硝化作用有明显影响。介质颗粒的形状相对容易测量。通常不是完美球形的絮状物或悬浮颗粒的形状很难预测。然而,最近几年发展的一些设备使得这成为可能。由Malvern Instruments制造的FPIA 3000使用流动颗粒图像分析方法测量悬浮颗粒的26个形状参数。絮凝后和深度过滤后悬浮颗粒形状的实验测量使我们能够回答有关该测量技术在水过滤技术中可能应用的问题。实验还为我们提供了有关过滤水中的絮状物和悬浮颗粒形状的详细信息。在流入过滤器的絮凝水中检测到大量圆形度低于0.8的颗粒。留在流出物中的颗粒的特征是圆形度明显高于流入过滤器的颗粒。结果表明,在过滤过程中以较低的圆形度为特征的颗粒的去除效果更好,而颗粒的凸度与其去除效率之间的关系不是很明显。

著录项

  • 来源
    《Clean》 |2011年第11期|p.941-946|共6页
  • 作者

    Michat Zielina;

  • 作者单位

    Water Supply and Environmental Protection Institute, Cracow University of Technology, ul. Warszawska 24, Cracow, Poland;

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

    floes; particle shape; rapid filtration; water treatment;

    机译:絮颗粒形状快速过滤;水处理;

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