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Integrated Exposure and Algal Ecotoxicological Assessments of Effluents from Secondary and Advanced‐Tertiary Wastewater‐Treatment Plants

The great concern over the environmental impact of wastewaters has led to the designing of advanced treatment processes to upgrade conventional treatment plants and achieve a significant reduction of contaminants in receiving waters. In the present study we combined chemical and ecotoxicological ana...

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Autores principales: Palumbo, Maria Teresa, Russo, Simona, Polesello, Stefano, Guzzella, Licia, Roscioli, Claudio, Marziali, Laura, Valsecchi, Lucia, Cappelli, Francesca, Pascariello, Simona, Tasselli, Stefano, Villa, Sara, Peruzzo, Massimo, Culatina, Stefano, Bellotti, Giovanni, Turolla, Andrea, Antonelli, Manuela, Malpei, Francesca, Valsecchi, Sara
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9804270/
https://www.ncbi.nlm.nih.gov/pubmed/35781318
http://dx.doi.org/10.1002/etc.5424
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author Palumbo, Maria Teresa
Russo, Simona
Polesello, Stefano
Guzzella, Licia
Roscioli, Claudio
Marziali, Laura
Valsecchi, Lucia
Cappelli, Francesca
Pascariello, Simona
Tasselli, Stefano
Villa, Sara
Peruzzo, Massimo
Culatina, Stefano
Bellotti, Giovanni
Turolla, Andrea
Antonelli, Manuela
Malpei, Francesca
Valsecchi, Sara
author_facet Palumbo, Maria Teresa
Russo, Simona
Polesello, Stefano
Guzzella, Licia
Roscioli, Claudio
Marziali, Laura
Valsecchi, Lucia
Cappelli, Francesca
Pascariello, Simona
Tasselli, Stefano
Villa, Sara
Peruzzo, Massimo
Culatina, Stefano
Bellotti, Giovanni
Turolla, Andrea
Antonelli, Manuela
Malpei, Francesca
Valsecchi, Sara
author_sort Palumbo, Maria Teresa
collection PubMed
description The great concern over the environmental impact of wastewaters has led to the designing of advanced treatment processes to upgrade conventional treatment plants and achieve a significant reduction of contaminants in receiving waters. In the present study we combined chemical and ecotoxicological analyses, aiming to evaluate the reduction of toxicity effects associated with the removal of micropollutants and to define the contribution of the detected compounds to the overall toxicity of the mixtures in a series of wastewater effluents collected from a secondary treatment (OUT 2) and from a tertiary activated carbon treatment (OUT 3) plant. The target compounds were selected after a screening procedure among pharmaceuticals, musk fragrances, and trace metals. The classical algal growth inhibition test was conducted on the original effluent samples and on different fractions obtained by solid‐phase extraction (SPE) treatment. A good accordance was found between the removal of toxicity (30%–80%) and organic compounds (70%–80%) after the tertiary treatment, suggesting its high efficiency to improve the wastewater quality. The discrepancy between the contribution to the overall toxicity of the nonadsorbable compounds (i.e., inorganic or very polar organic compounds) as experimentally measured by the SPE bioassays (18%–76%) and calculated by the concentration addition approach (>97%) could be mitigated by including the bioavailability correction in metal‐toxicity modeling of wastewater mixtures. For the organic compounds, the toxic equivalency method enabled us to quantify the portion of toxicity explained by the detected chemicals in both OUT 2 (82%–104%) and OUT 3 (5%–57%), validating the selection of the target molecules. The applied integrating approach could be implemented by the inclusion of both additional target chemicals and toxicity endpoints. Environ Toxicol Chem 2022;41:2404–2419. © 2022 The Authors. Environmental Toxicology and Chemistry published by Wiley Periodicals LLC on behalf of SETAC.
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spelling pubmed-98042702023-01-03 Integrated Exposure and Algal Ecotoxicological Assessments of Effluents from Secondary and Advanced‐Tertiary Wastewater‐Treatment Plants Palumbo, Maria Teresa Russo, Simona Polesello, Stefano Guzzella, Licia Roscioli, Claudio Marziali, Laura Valsecchi, Lucia Cappelli, Francesca Pascariello, Simona Tasselli, Stefano Villa, Sara Peruzzo, Massimo Culatina, Stefano Bellotti, Giovanni Turolla, Andrea Antonelli, Manuela Malpei, Francesca Valsecchi, Sara Environ Toxicol Chem Environmental Toxicology The great concern over the environmental impact of wastewaters has led to the designing of advanced treatment processes to upgrade conventional treatment plants and achieve a significant reduction of contaminants in receiving waters. In the present study we combined chemical and ecotoxicological analyses, aiming to evaluate the reduction of toxicity effects associated with the removal of micropollutants and to define the contribution of the detected compounds to the overall toxicity of the mixtures in a series of wastewater effluents collected from a secondary treatment (OUT 2) and from a tertiary activated carbon treatment (OUT 3) plant. The target compounds were selected after a screening procedure among pharmaceuticals, musk fragrances, and trace metals. The classical algal growth inhibition test was conducted on the original effluent samples and on different fractions obtained by solid‐phase extraction (SPE) treatment. A good accordance was found between the removal of toxicity (30%–80%) and organic compounds (70%–80%) after the tertiary treatment, suggesting its high efficiency to improve the wastewater quality. The discrepancy between the contribution to the overall toxicity of the nonadsorbable compounds (i.e., inorganic or very polar organic compounds) as experimentally measured by the SPE bioassays (18%–76%) and calculated by the concentration addition approach (>97%) could be mitigated by including the bioavailability correction in metal‐toxicity modeling of wastewater mixtures. For the organic compounds, the toxic equivalency method enabled us to quantify the portion of toxicity explained by the detected chemicals in both OUT 2 (82%–104%) and OUT 3 (5%–57%), validating the selection of the target molecules. The applied integrating approach could be implemented by the inclusion of both additional target chemicals and toxicity endpoints. Environ Toxicol Chem 2022;41:2404–2419. © 2022 The Authors. Environmental Toxicology and Chemistry published by Wiley Periodicals LLC on behalf of SETAC. John Wiley and Sons Inc. 2022-08-24 2022-10 /pmc/articles/PMC9804270/ /pubmed/35781318 http://dx.doi.org/10.1002/etc.5424 Text en © 2022 The Authors. Environmental Toxicology and Chemistry published by Wiley Periodicals LLC on behalf of SETAC. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Environmental Toxicology
Palumbo, Maria Teresa
Russo, Simona
Polesello, Stefano
Guzzella, Licia
Roscioli, Claudio
Marziali, Laura
Valsecchi, Lucia
Cappelli, Francesca
Pascariello, Simona
Tasselli, Stefano
Villa, Sara
Peruzzo, Massimo
Culatina, Stefano
Bellotti, Giovanni
Turolla, Andrea
Antonelli, Manuela
Malpei, Francesca
Valsecchi, Sara
Integrated Exposure and Algal Ecotoxicological Assessments of Effluents from Secondary and Advanced‐Tertiary Wastewater‐Treatment Plants
title Integrated Exposure and Algal Ecotoxicological Assessments of Effluents from Secondary and Advanced‐Tertiary Wastewater‐Treatment Plants
title_full Integrated Exposure and Algal Ecotoxicological Assessments of Effluents from Secondary and Advanced‐Tertiary Wastewater‐Treatment Plants
title_fullStr Integrated Exposure and Algal Ecotoxicological Assessments of Effluents from Secondary and Advanced‐Tertiary Wastewater‐Treatment Plants
title_full_unstemmed Integrated Exposure and Algal Ecotoxicological Assessments of Effluents from Secondary and Advanced‐Tertiary Wastewater‐Treatment Plants
title_short Integrated Exposure and Algal Ecotoxicological Assessments of Effluents from Secondary and Advanced‐Tertiary Wastewater‐Treatment Plants
title_sort integrated exposure and algal ecotoxicological assessments of effluents from secondary and advanced‐tertiary wastewater‐treatment plants
topic Environmental Toxicology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9804270/
https://www.ncbi.nlm.nih.gov/pubmed/35781318
http://dx.doi.org/10.1002/etc.5424
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