Optimization of water use in a rapid filtration system: A case study

Fernando García-Ávila , César Zhindón-Arévalo , Robert Álvarez- Ochoa , Silvana Donoso-Moscoso , María D. Tonon-Ordoñez , Lisveth Flores del Pino
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引用次数: 12

Abstract

The objective of this research was to reduce water use during the operation of anthracite-sand filters used for treating drinking water. The variables that affect the saturation of the filter bed were evaluated, using procedures proposed by the Pan American Center for Sanitary Engineering and Environmental Sciences (CEPIS). The following were evaluated: filtration velocity, initial filtration quality, filtration runs duration, filter bed expansion, duration of the washing process, washing velocity, granulometry, and mud balls. The results obtained were compared with the design parameters recommended by CEPIS. Maximum turbidity of 0.5 NTU was obtained. Filtration runs were in the lower limit of the range indicated by CEPIS. The filter medium expansion in five of the eight filters was lower than recommended by CEPIS. The optimal washing time was 18 min. The washing velocity was low producing little filter bed expansion. The granulometric result indicated that the effective size and the anthracite uniformity coefficient were different between filters. The results also presented significant improvements in the filtration process and the amount of water saved once the filter washing process was optimized. The results also demonstrated that measuring filters performance could improve the filtration system efficiency and ensure the drinking water quality.

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快速过滤系统用水的优化:一个案例研究
本研究的目的是减少无烟煤-砂过滤器在处理饮用水过程中的用水量。采用泛美卫生工程与环境科学中心(CEPIS)提出的程序,对影响过滤床饱和度的变量进行了评估。评估了以下指标:过滤速度、初始过滤质量、过滤运行时间、过滤床膨胀、洗涤过程持续时间、洗涤速度、粒度和泥球。计算结果与CEPIS推荐的设计参数进行了比较。最大浊度为0.5 NTU。过滤运行在CEPIS指示范围的下限。在8个过滤器中,有5个过滤器的过滤介质膨胀率低于CEPIS的推荐值。最佳洗涤时间为18 min,洗涤速度较低,滤床膨胀小。粒度测定结果表明,不同过滤器的有效粒径和无烟煤均匀系数不同。结果还表明,过滤过程和过滤器洗涤过程优化后的节水效果也有显著改善。实验结果还表明,对过滤系统的性能进行测量可以提高过滤系统的效率,保证饮用水的质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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