AI Article Synopsis

  • Contaminants of emerging concern (CECs) are not effectively removed by conventional wastewater treatment methods, and inappropriate sampling can lead to misleading removal estimates.
  • This study used a "fractionated approach" to analyze the removal of 26 CECs in a municipal wastewater treatment plant throughout its various treatment stages, revealing that the most significant removal occurred during activated sludge treatment, with much lower removals in primary clarifiers and tertiary treatment.
  • Mass balance calculations indicated that (bio)degradation was responsible for a substantial portion of CEC removal, particularly in activated sludge, and that transformations between CECs and their metabolites contributed to the observed negative removals.

Article Abstract

Contaminants of emerging concern (CECs) are often poorly removed from wastewater using conventional treatment technologies and there is limited understanding of their fate during treatment. Inappropriate sampling strategies lead to inaccuracies in estimating removals of CECs. In this study, we used the "fractionated approach" that accounts for the residence time distribution (RTD) in treatment units to investigate the fate of 26 target CECs in a municipal wastewater treatment plant (WWTP) that includes primary, secondary and tertiary treatment steps. Prior hydraulic calibration of each treatment unit was performed. Wastewater and sludge samples were collected at different locations along the treatment train and the concentrations of target CECs were measured by liquid chromatography mass spectrometry. The most substantial aqueous removal occurred during activated sludge treatment (up to 99%). Removals were <50% in the primary clarifier and tertiary rotating biological contactors (RBCs) and up to 70% by sand filtration. Mass balance calculations demonstrated that (bio)degradation accounted for up to 50% of the removal in the primary clarifier and 100% in activated sludge. Removal by sorption to primary and secondary sludge was minimal for most CECs. Analysis of the selected metabolites demonstrated that negative removals obtained could be explained by transformations between the parent compound and their metabolites. This study contributes to the growing literature by applying the fractionated approach to calculate removal of different types of CECs across each wastewater treatment step. An additional level of understanding of the fate of CECs was provided by mass balance calculations in primary and secondary treatments.

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http://dx.doi.org/10.1016/j.scitotenv.2016.08.073DOI Listing

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