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Operational impacts of heavy metals on activated sludge systems: the need for improved monitoring

机译:重金属对活性污泥系统的运行影响:需要改进监测

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摘要

Biological nutrient removal is highly reliant on maintaining a heterogeneous, balanced, and metabolically active microbial community that can adapt to the fluctuating composition of influent wastewater and encompassing environmental conditions. Maintaining this balance can be challenging in municipal wastewater systems that sporadically receive wastewater from industrial facilities due to the impact of heavy metals and other contaminants on the microbial ecology of the activated sludge. A thorough understanding of the impacts of heavy metals on activated sludge and of practical monitoring options is needed to support decision-making at the wastewater utility level. This paper is divided into two parts. In the first part, the review explains what happens when heavy metals interact with activated sludge systems by highlighting biosorption and bioaccumulation processes, and when an activated sludge system switches from bioaccumulation to toxic shock. Here, it also summarizes the impacts of heavy metal exposure on plant performance. In the second part, the review summarizes practical approaches that can be used at the plant outside the realm of traditional toxicological bioassays testing to determine the possible impacts of influent heavy metal concentrations on the BNR process. These approaches include the following: monitoring operational parameters for major shifts; respirometry; microscopy; ATP; chemical analyses of heavy metals with a focus on synergistic impacts and inhibitory limits; and other novel approaches, such as EPS chemical analyses, molecular techniques, and quorum sensing.
机译:生物营养去除是高度依赖的,在维持异质,平衡和代谢活性的微生物群体,该群体可以适应流入废水的波动组合物和包括环境条件。维持这种余额在市政废水系统中可能具有挑战性,由于重金属和其他污染物对活性污泥的微生物生态的影响,从工业设施施用废水。彻底了解重金属对活性污泥和实际监测选项的影响,以支持废水实用水平的决策。本文分为两部分。在第一部分中,审查解释了重金属通过突出生物吸附和生物累积过程与活性污泥系统相互作用时会发生什么,以及当活化的污泥系统从生物累积切换到有毒休克时。在这里,它还总结了重金属暴露对植物性能的影响。在第二部分中,审查总结了可在传统毒理学生物测定试验领域以外的工厂使用的实用方法,以确定流入的重金属浓度在BNR过程中的可能影响。这些方法包括以下内容:监测主要班次的操作参数;呼吸测定;显微镜; ATP;重点融合的化学分析,重点是协同影响和抑制限制;和其他新颖的方法,例如EPS化学分析,分子技术和批量传感。

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