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Evaluation of pre-treatment technologies for phosphorous removal from drinking water to mitigate membrane biofouling

机译:评价饮用水中磷去除磷去处理的预处理技术,减轻膜生物污水

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Membranes are widely used for the treatment of various solutions. However, membrane fouling remains the limiting factor for their usage, setting biofouling as the most severe type of it. Therefore, the production of biologically stable water prior to membranes is important. Since lack of phosphorus may hinder the growth of microorganisms, the aim of this research is to evaluate the effect of microbially available phosphorus (MAP) removal via affordable water pre-treatment methods (adsorption, biofiltration, electrocoagulation) on bacterial growth. Four cylindrical reactors were installed at an artificially recharged groundwater station. Further temperature influence and carbon limitation were tested for biofiltration technology. The amount of MAP and total cell count was measured by flow cytometry. The results showed that at lower temperatures electrocoagulation performed the best, resulting in complete MAP removal (detection limit 6.27x10~(-3)|xg P1~(-1)). Sorbent demonstrated MAP removal of 70-90%. Biomass did not have any noteworthy results at +8°C, however, at +19°C MAP removal of around 80% was achieved. Main conclusions obtained within this study are: (i) tested technologies effectively eliminate MAP levels; (ii) temperature has a significant effect on MAP removal in a bioreactor, (iii) multi-barrier approach might be necessary for better P limitation that might prolong operating time of a membrane.
机译:膜广泛用于治疗各种溶液。然而,膜污染仍然是它们使用的限制因素,将生物缠绕作为最严重的类型。因此,在膜之前生产生物稳定的水很重要。由于缺少磷可能阻碍微生物的生长,本研究的目的是评估通过实惠的水预处理方法(吸附,生物滤光,电凝)对细菌生长的微生物磷(MAP)去除的影响。在人工再充电地下水站安装四个圆柱形反应器。对生物滤光技术进行了进一步的温度影响和碳限制。通过流式细胞术测量地图和总细胞计数。结果表明,在较低的温度下,电凝最佳,导致完整的地图去除(检测限6.27x10〜(-3)| xg p1〜(-1))。吸附剂展示了70-90%的地图去除。生物量在+ 8℃下没有任何值得注意的结果,然而,在+ 19°C地图中达到约80%的地图。本研究中获得的主要结论是:(i)经过测试的技术有效消除地图水平; (ii)温度对生物反应器中的地图去除具有显着影响,(iii)可能需要多屏障方法,以便更好的P限制可能延长膜的操作时间。

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