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The Effect of Hydraulic Loading Rate and Influent Source on the Binding Capacity of Phosphorus Filters

机译:水力负荷率和进水源对磷滤池结合能力的影响

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摘要

Sorption by active filter media can be a convenient option for phosphorus (P) removal and recovery from wastewater for on-site treatment systems. There is a need for a robust laboratory method for the investigation of filter materials to enable a reliable estimation of their longevity. The objectives of this study were to (1) investigate and (2) quantify the effect of hydraulic loading rate and influent source (secondary wastewater and synthetic phosphate solution) on P binding capacity determined in laboratory column tests and (3) to study how much time is needed for the P to react with the filter material (reaction time). To study the effects of these factors, a 22 factorial experiment with 11 filter columns was performed. The reaction time was studied in a batch experiment. Both factors significantly (α = 0.05) affected the P binding capacity negatively, but the interaction of the two factors was not significant. Increasing the loading rate from 100 to 1200 L m−2 d−1 decreased P binding capacity from 1.152 to 0.070 g kg−1 for wastewater filters and from 1.382 to 0.300 g kg−1 for phosphate solution filters. At a loading rate of 100 L m−2 d−1, the average P binding capacity of wastewater filters was 1.152 g kg−1 as opposed to 1.382 g kg−1 for phosphate solution filters. Therefore, influent source or hydraulic loading rate should be carefully controlled in the laboratory. When phosphate solution and wastewater were used, the reaction times for the filters to remove P were determined to be 5 and 15 minutes, respectively, suggesting that a short residence time is required. However, breakthrough in this study occurred unexpectedly quickly, implying that more time is needed for the P that has reacted to be physically retained in the filter.
机译:对于现场处理系统,通过活性过滤介质进行吸附可以是去除废水中的磷(P)和回收的一种方便选择。需要一种用于过滤材料研究的可靠的实验室方法,以能够可靠地估计其寿命。这项研究的目的是(1)研究和(2)量化水力加载速率和进水源(二次废水和合成磷酸盐溶液)对实验室色谱柱测试中确定的P结合能力的影响,以及(3)研究多少P与过滤材料发生反应所需的时间(反应时间)。为了研究这些因素的影响,我们进行了11个过滤柱进行2 2 析因实验。在分批实验中研究反应时间。两种因素均显着(α= 0.05)对P结合能力有负面影响,但两种因素的相互作用不显着。负载率从100 L增加到1200 L m −2 d −1 使对废水的磷结合能力从1.152降低到0.070 g kg −1 过滤器,磷酸盐溶液过滤器的重量为1.382至0.300 g kg -1 。在100 L m -2 d -1 的加载速率下,废水过滤器的平均P吸附量为1.152 g kg -1 与磷酸盐溶液过滤器的1.382 g kg -1 相反。因此,在实验室中应仔细控制进水源或水力负荷率。当使用磷酸盐溶液和废水时,过滤器去除P的反应时间分别确定为5分钟和15分钟,这表明需要较短的停留时间。但是,这项研究的突破出乎意料地迅速发生,这意味着反应后的P需要更多的时间才能物理保留在过滤器中。

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