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Evaluation of the presence of drugs in sewage treatment station sludge before and after the bioremediation process by composting

Dados Bibliográficos

ID3085759
AutoresSuzete Maria Lenzi Caminada (0000-0002-0402-2739, Universidade de São Paulo), Miriam Moreira Bocchiglieri (0000-0002-1149-9201, Companhia de Saneamento Básico do Estado de São Paulo, Brasil), Edivaldo Domingues Velini (0000-0003-0431-5942, Universidade Estadual Paulista (Unesp)), Wanderley Da Silva Paganini (0000-0002-8270-4452, Universidade de São Paulo)
Ano2023
Volume32
Fascículo2
Data de publicação2023-01-01
Peer ReviewedSim
Open AccessSim
TipoARTICLE
PeriódicoSaúde e Sociedade (JOURNAL)
Identificadores do periódicoISSN: 0104-1290 • E-ISSN: 1984-0470
EditoraFapUNIFESP (SciELO) (PUBLISHER)
DOI10.1590/s0104-12902023220535en
OpenAlexW4385629578
IdiomaEN
Referências citadas13

The presence of residual drugs in the environment is a growing global issue, with many studies seeking to quantify it. However, its behavior and effects, both on the environment and on humans are still mostly unknown. In this study, seven drugs were evaluated: Atenolol, Carbamazepine, Clonazepam, Ibuprofen, Paracetamol, Simvastatin, and Fluoxetine, from samples of sludge from a sewage treatment plant of the public system. The extraction of the compounds from the matrix was based on the leaching of the compounds in water and the analytical quantification was determined by an ultra-performance liquid chromatograph system, coupled to the mass spectrometer. The data indicate the possible movement of some drugs from aqueous to solid phase. We observed that the composting of the sludge could favor the biodegradation or mobilization of the compounds since there was a significant reduction in the concentrations, when comparing the values obtained before and after the composting process. The non-detection of a compound does not necessarily mean that it has been fully degraded by microorganisms; however, past studies reached similar results, which corroborates the adequacy of the methodological proposal and the adopted procedures, contributing to the production of reliable results

Atenolol · Biodegradation · Leaching (pedology) · Sawdust · Sewage sludge · Sewage treatment · Soil water · Waste management · Analytical chemistry methods development · Chemistry · Engineering · Environmental Chemistry · Environmental Engineering · Environmental Science · Medicine · Pharmaceutical and Antibiotic Environmental Impacts · SARS-CoV-2 detection and testing

  • Safeguarding human health in the Anthropocene epoch

    Open Access•Sarah Whitmee, Anna Haines et al.•The Lancet•2015

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