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DETERMINATION OF THE HYDRAULIC RESIDENCE TIME IN A TRICKLING BIOFILTER FILLED WITH ORGANIC MATTER

机译:填充有机物的滴滤生物滤池中水合停留时间的测定

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摘要

Biofiltration process using peat as media has been shown to be efficient for the treatment of agroindustrial, chemical, and municipal effluents. However, determining the hydraulic retention time of this process is difficult due to many factors. Generally tracer techniques are used, but they measure the molecular retention time instead of the hydraulic retention time; and depending on the case, the results can be wrong. Jn order to contribute to solving this problem, the objective of this research was to find a trustworthy and adequate technique to determine the hydraulic retention time for a process using a very adsorbent filter bed material (peat). An overview of the hydraulic behaviour of a peat bed filter related to their particular structural composition is presented. Then, based on these characteristics, two different techniques to determine the hydraulic retention time were developed and tested. The first, an indirect modified tracing technique and, the second, a direct one which determines the volume of liquid in treatment into the filter bed through the establishment of a relation between the volume of porosity and the volume of empty spaces (or not occupied by liquid) into the filter bed. The results obtained showed that the proposed techniques gave similar results and proved adequate.
机译:使用泥炭作为介质的生物过滤过程已显示出对农业工业,化学和市政污水的有效处理。但是,由于许多因素,很难确定该过程的水力停留时间。通常使用示踪技术,但是它们测量分子保留时间而不是水力保留时间。根据情况,结果可能是错误的。为了有助于解决这个问题,本研究的目的是找到一种值得信赖且适当的技术,以确定使用吸附性极强的滤床材料(豌豆)的工艺的水力停留时间。概述了泥炭床过滤器的水力性能与其特定的结构组成有关。然后,基于这些特性,开发并测试了两种确定水力停留时间的不同技术。第一种是间接修改的跟踪技术,第二种是直接的技术,它通过在孔隙率的体积和空白空间(或未被空间占用)之间建立关系来确定进入滤床的处理液量。液体)进入滤床。获得的结果表明,所提出的技术给出了相似的结果并且证明是足够的。

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