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An innovative hydrodynamic separation technology (HDS) for water pretreatment: harvesting neutrally buoyant particles effectively

机译:用于水预处理的创新水力分离技术(HDS):有效收集中性浮力颗粒

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摘要

This paper describes the feasibility and application of a fluidic-based technology, called hydrodynamic separation (HDS), to separate suspended particles from liquid. It uses customized fluid flow patterns in a curved channel to create a pair of Dean vortexes that focus particles into a concentrated band near one channel wall. A splitter at the end of the channel divides the flow into a clean effluent stream and a concentrate stream. The focusing of particles is primarily due to a combination of hydrodynamic forces (drag, virtual mass, and shear), which causes a size rather than density dependent separation. This enables separation of particles with densities identical or close to that of their surrounding fluid, allowing this technology to be especially useful in situations where traditional methods are challenged, such as removal of buoyant particulates from primary clarifiers or separation of unsettleable activated sludge in secondary clarifiers. We tested HDS-based separators with samples that include neutrally buoyant polystyrene beads, activated sludge, primary clarifier effluent and powdered activated carbon to demonstrate its efficacy. In each case, high separation efficiency was achieved which reaffirmed our commitments to evolve HDS technology into an effective pretreatment solution. activated sludge; HDS; hydrodynamic separation; neutrally buoyant; wastewater
机译:本文描述了称为流体动力分离(HDS)的基于流体的技术从液体中分离悬浮颗粒的可行性和应用。它在弯曲的通道中使用定制的流体流动模式来创建一对迪安涡流,这些涡流将粒子聚焦到一个通道壁附近的集中带中。通道末端的分流器将流分成干净的流出物流和浓缩物流。粒子的聚焦主要是由于流体动力(阻力,虚拟质量和剪切力)的结合,这会导致尺寸大小,而不是取决于密度的分离。这使得能够分离密度与周围流体相同或接近的液体颗粒,从而使该技术在挑战传统方法的情况下尤其有用,例如从一级澄清池中去除浮力颗粒或在二级澄清池中分离出未沉降的活性污泥。 。我们用包括中性浮力聚苯乙烯珠,活性污泥,一级澄清池出水和粉末状活性炭在内的样品测试了基于HDS的分离器,以证明其功效。在每种情况下,都实现了高分离效率,这再次证明了我们将HDS技术发展为有效的预处理解决方案的承诺。活性污泥HDS;水力分离中性浮力;废水

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  • 来源
    《Water science & technology》 |2013年第2期|524-530|共7页
  • 作者单位

    Palo Alto Research Center,3333 Coyote Hill Rd,Palo Alto,CA 94304,USA;

    Palo Alto Research Center,3333 Coyote Hill Rd,Palo Alto,CA 94304,USA;

    Palo Alto Research Center,3333 Coyote Hill Rd,Palo Alto,CA 94304,USA;

    Palo Alto Research Center,3333 Coyote Hill Rd,Palo Alto,CA 94304,USA;

    Palo Alto Research Center,3333 Coyote Hill Rd,Palo Alto,CA 94304,USA;

    Palo Alto Research Center,3333 Coyote Hill Rd,Palo Alto,CA 94304,USA;

  • 收录信息 美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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