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PMID: 28880814 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Investigation of full-scale ozonation at a municipal wastewater treatment plant using a toxicity-based evaluation concept.

Journal of toxicology and environmental health. Part A ·Vol. 80 ·No. 23-24 ·2017-00-00 ·页码 1242-1258

Itzel F, Gehrmann L, Bielak H, Ebersbach P, Boergers A, Herbst H, Maus C, Simon A, Dopp E, Hammers-Wirtz M, Schmidt TC, Tuerk J

Abstract

Effluents from municipal wastewater treatment plants (WWTPs) are known to be point sources of micropollutants for surface waters. The aim of this study was to examine a reconstructed full-scale ozonation equipped with a pump-injector system for ozone (O3) dosage and a fluidized moving-bed reactor as biological posttreatment at a municipal WWTP utilizing an effect-directed approach. This approach consists of chemical analysis in combination with toxicological tests for the assessment of treatment efficiency of the plant. Chemical analysis showed elimination rates > 80% for pharmaceuticals and industrial chemicals. Analysis of endocrine disruptors was limited due to substance concentrations below the limit of detection (LOD). Estrogenic activity was detected by the Arxula Adeninivorans yeast estrogen screen (A-YES) at low concentrations (pg to ng EEQ/l range). Estrogenic activity was reduced by more than 90% after ozonation. In contrast, androgenic activity (measured in the Adeninivorans yeast androgen screen, A-YAS) was still found after O3 treatment and after biological posttreatment, which is consistent with the data obtained by chemical analysis. Furthermore, no marked genotoxic or cytotoxic effects were observed after ozonation using the alkaline comet and 3-(4,5-Dimethylthiazol-2-yl)-2,5-diphenyltetrazoliumbromid (MTT) assays, respectively. Results suggest that the applied specific O3 dose of 0.4 mgO3/mgDOC is a safe operation setup in terms of toxicologically relevant transformation products. In addition, no adverse effects on primary producers, as evidenced by algae growth inhibition tests, were detected. The monitored biofilm growth in the biological posttreatment exhibited a steady state after one month. Based on computational fluid dynamics (CFD) simulations and biomass, one might conclude that O3 did not apparently enter biological posttreatment to a great extent and that hydraulic retention time in the O3 reactor was sufficient. Our data demonstrate the effectiveness of a full-scale O3 treatment in combination with a fluidized moving-bed reactor as biological posttreatment for the reduction of a majority of micropollutants without the release of relevant toxic transformation products as assessed by a chemical and toxicity-based approach.

MeSH 主题词
Endocrine Disruptors/analysis Environmental Monitoring Ozone/chemistry Waste Disposal, Fluid/methods Waste Water/analysis Water Pollutants, Chemical/analysis Yeasts/chemistry
化学物质
Endocrine Disruptors Waste Water Water Pollutants, Chemical Ozone
作者与单位
共 12 位作者,点击展开单位 / ORCID
Itzel Fabian
a Department of Environmental Hygiene & Micropollutants , Institut für Energie- und Umwelttechnik e. V. (IUTA, Institute of Energy and Environmental Technology) , Duisburg , Germany. | b Instrumental Analytical Chemistry (IAC), Faculty of Chemistry , University of Duisburg-Essen , Essen , Germany. | c Centre for Water and Environmental Research (ZWU) , University of Duisburg-Essen , Essen , Germany.
Gehrmann Linda
a Department of Environmental Hygiene & Micropollutants , Institut für Energie- und Umwelttechnik e. V. (IUTA, Institute of Energy and Environmental Technology) , Duisburg , Germany.
Bielak Helena
c Centre for Water and Environmental Research (ZWU) , University of Duisburg-Essen , Essen , Germany. | d Department of Toxicology , IWW Zentrum Wasser , Mülheim an der Ruhr , Germany.
Ebersbach Paul
a Department of Environmental Hygiene & Micropollutants , Institut für Energie- und Umwelttechnik e. V. (IUTA, Institute of Energy and Environmental Technology) , Duisburg , Germany. | e Department for CARS-Microscopy , Leibniz-Institut für Analytische Wissenschaften - ISAS - e.V ., Dortmund , Germany.
Boergers Andrea
a Department of Environmental Hygiene & Micropollutants , Institut für Energie- und Umwelttechnik e. V. (IUTA, Institute of Energy and Environmental Technology) , Duisburg , Germany.
Herbst Heinrich
f Department of Process Engineering Water , Sweco GmbH , Cologne , Germany.
Maus Christian
f Department of Process Engineering Water , Sweco GmbH , Cologne , Germany.
Simon Anne
c Centre for Water and Environmental Research (ZWU) , University of Duisburg-Essen , Essen , Germany. | d Department of Toxicology , IWW Zentrum Wasser , Mülheim an der Ruhr , Germany.
Dopp Elke
c Centre for Water and Environmental Research (ZWU) , University of Duisburg-Essen , Essen , Germany. | d Department of Toxicology , IWW Zentrum Wasser , Mülheim an der Ruhr , Germany.
Hammers-Wirtz Monika
g Department of Ecotoxicology , GAIAC, Forschungsinstitut für Ökosystemanalyse und -bewertung e.V ., Aachen , Germany.
Schmidt Torsten C
b Instrumental Analytical Chemistry (IAC), Faculty of Chemistry , University of Duisburg-Essen , Essen , Germany. | c Centre for Water and Environmental Research (ZWU) , University of Duisburg-Essen , Essen , Germany. | d Department of Toxicology , IWW Zentrum Wasser , Mülheim an der Ruhr , Germany.
Tuerk Jochen
a Department of Environmental Hygiene & Micropollutants , Institut für Energie- und Umwelttechnik e. V. (IUTA, Institute of Energy and Environmental Technology) , Duisburg , Germany. | c Centre for Water and Environmental Research (ZWU) , University of Duisburg-Essen , Essen , Germany.
Article Info
Journal
Journal of toxicology and environmental health. Part A
Abbr.
J Toxicol Environ Health A
ISSN
1528-7394
Published
2017-00-00
电子出版
2017-00-07
页码
1242-1258
Language
English
Country/Region
England
NLM ID
100960995
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