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Considerations in Selecting a (Bio)filtration Media to Optimize Lifespan and Pollutant Removal

机译:选择(生物)过滤介质以优化寿命和污染物去除的考虑

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Many research studies have been published regarding the treatment efficiency of bioretention for a wide variety of pollutants found in urban stormwater runoff. However, limited information is available on predicting the treatability of these pollutants between media and between sites. Predicting the treatment ability of bioretention/infiltration/filtration media is a function of both soil and water chemistry. This paper begins that meta-analysis of pollutant removal as a function of chemistry. The results presented here are from a single project evaluating candidate bioretention media to meet numeric effluent limits and are based on a limited number of samples. As additional data becomes available in the spring, the analysis will be expanded. The preliminary results indicate that the media that appear to have the best removal ability for a wide range of metallic pollutants are those that have both cation exchange ability and comparatively high organic matter content. For metals, this also may require a lower media pH because of the generally increased solubility of metals at lower pHs. Lower pHs and higher organic matter contents, however, must be evaluated further if phosphorus removal is also desired since phosphorus is removed better at higher pHs and lower organic matter contents. These results also highlight the trade-offs in pollutant capture versus export when using ion-exchange media.
机译:许多研究研究已经发表了在城市雨水径流中发现的各种污染物的生物处理效率。然而,有限的信息可用于预测媒体和地点之间这些污染物的可治工。预测生物或浸润/过滤介质的治疗能力是土壤和水化学的函数。本文从化学函数开始逐渐分析污染物去除。此处呈现的结果来自单个项目评估候选生物培养基以满足数值流出限额,并基于有限数量的样品。随着额外数据在弹簧中可用,分析将扩展。初步结果表明,似乎具有各种金属污染物的最佳去除能力的介质是具有阳离子交换能力和相对高的有机质含量的介质。对于金属,这也可能需要较低介质pH,因为金属在较低的pH下通常增加了溶解度。然而,如果还需要磷去除,因此必须进一步评估低pHS和更高的有机质含量,因为在更高的pHS和较低的有机物质含量上更好地除去磷来磷去除。这些结果还突出了使用离子交换介质时污染物捕获与出口的权衡。

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