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Investigating the role of adsorption and biodegradation in the removal of organic micropollutants during biological activated carbon filtration of treated wastewater

机译:研究吸附和生物降解在处理废水的生物活性炭过滤过程中去除有机微量污染物中的作用

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摘要

Municipal water recycling may expose humans and the environment to trace organic contaminants. We assessed biological activated carbon (BAC) filtration for removal of organic micropollutants (MPs). Adsorption experiments were carried out in batch reactors containing secondary effluent and new granular activated carbon (GAC) and preloaded BAC media. Results show that BAC has good potential for removal of dissolved organic carbon (40%) and MPs (60-95%). The primary objective was to better understand removal mechanisms of representative MPs at environmentally relevant concentrations. Adsorption and biodegradation of 20 compounds of varying physico-chemical properties were investigated by inhibiting the biomass with azide. Average removal of compounds by adsorption on GAC was 88 ± 5% with no influence of azide. Average BAC removal was 72 ± 15%, reduced to 59 ± 20% after azide addition, showing that biological activity is important for MP removal. Comparison of MP removal by BAC and BAC + azide showed a more important impact of the inhibition on the removal of negatively charged compounds. Sustained removal of recalcitrant compounds showed that BAC maintained sorption capacity. These results highlight the advantage of a combination of adsorption and biodegradation as compared to other biofiltration techniques for the long-term attenuation of MPs.
机译:市政水循环利用可能使人类和环境暴露于痕量有机污染物。我们评估了生物活性炭(BAC)过滤以去除有机微量污染物(MPs)。吸附实验是在间歇式反应器中进行的,该反应器中包含次级流出物,新的颗粒活性炭(GAC)和预装的BAC介质。结果表明,BAC具有去除溶解有机碳(40%)和MPs(60-95%)的良好潜力。主要目的是更好地了解具有环境相关浓度的代表性国会议员的清除机制。通过用叠氮化物抑制生物量来研究20种具有不同理化性质的化合物的吸附和生物降解。通过吸附在GAC上的化合物平均去除率为88±5%,不受叠氮化物的影响。 BAC的平均去除率为72±15%,加入叠氮化物后降低至59±20%,表明生物学活性对于MP去除很重要。 BAC和BAC +叠氮化物去除MP的比较显示,抑制作用对带负电荷化合物的去除具有更重要的影响。持续去除顽固性化合物表明BAC保持了吸附能力。这些结果突出了与其他生物过滤技术相比,吸附和生物降解相结合的优势,可长期减少MP。

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