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Investigation of geometric properties of media particles and operating conditions on floating media filtration

机译:悬浮介质过滤中介质颗粒的几何特性和运行条件的研究

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Filtration is an effective process in removing particles that are present in water. Floating medium filter has been used in direct filtration because of its flexibility, cost savings gained by less land requirements, and less water and energy required for backwashing. The aim of this work was to investigate the effect of geometric properties of a floating medium in upflow filtration mode. A pilot plant was designed and constructed to evaluate the filtration process. Effect of physical parameters on filtration performance was also investigated. The experiments were carried out using a commonly available polypropylene floating medium. Four median grain sizes (2.28, 3.03, 3.30, and 4.07 mm) of polypropylene plastic pellets were used. Two media shapes (cubic and disc) were evaluated. Bentonite (250 mg/L approximate to 60 NTU) was used to make up the raw feed water. Three parameters that could influence the filtration performance were identified, namely: filtration velocity, media depth, and coagulant dose. The results showed that the best conditions to remove turbidity were found to be: low filtration rate (36.8 L/m(2) min), longer media depth (600 mm) and optimum coagulant dose (23 mg/L). The results also indicated that the smaller plastic medium (2.28 mm) was more efficient in terms of turbidity removal than the larger medium. However, headloss development associated with smaller media was higher (109 mm of water) than that associated with larger medium (42 mm of water).
机译:过滤是去除水中存在的颗粒的有效方法。浮动介质过滤器因其灵活性,土地需求减少以及反冲洗所需的水和能源减少而被用于直接过滤。这项工作的目的是研究在上流过滤模式下漂浮介质的几何特性的影响。设计并建造了一个中试工厂以评估过滤过程。还研究了物理参数对过滤性能的影响。使用常用的聚丙烯漂浮介质进行实验。使用了四个聚丙烯塑料粒料的中值粒径(2.28、3.03、3.30和4.07毫米)。评价了两种介质形状(立方和盘状)。膨润土(250 mg / L约60 NTU)用于补足原水。确定了可能影响过滤性能的三个参数,即:过滤速度,介质深度和凝结剂剂量。结果表明,去除混浊的最佳条件是:低过滤率(36.8 L / m(2)min),较长的介质深度(600 mm)和最佳混凝剂剂量(23 mg / L)。结果还表明,较小的塑料介质(2.28 mm)在去除浊度方面比较大的介质更有效。但是,与较小的介质(42毫米水)相比,与较小的介质有关的头部损失增加(109毫米水)。

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