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1.
Environ Sci Pollut Res Int ; 28(32): 43747-43762, 2021 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-33837946

RESUMO

The growth of two species of macrophytes (Lemna minor and Salvinia auriculata) under the effect of a mixture of amoxicillin, caffeine, carbamazepine, dipyrone, ibuprofen, losartan, omeprazole, and tenivastatin was investigated by bioassay. Three concentration levels were utilized in this study (10, 200, and 500 µg L-1) using a growth inhibition test based on the OECD 221/2006 guidelines. The frond number, total area, and chlorophyll a level were selected as suitable end points. For L. minor, at all concentrations, a significant difference in the total frond number was observed and the growth inhibition varied from 30 to 70% at the low and high concentrations, respectively. No significant growth change was observed to S. auriculata exposed to the mixture of drugs. Thus, individual drug tests were performed for L. minor which demonstrated stimulation in growth, when exposed to most drugs individually, except tenivastatin which was identified as the drug responsible for the significant growth inhibition seen in the mixture. The L. minor enhanced growth was probably caused by N molecule transformation to ammonium and nitrate, essential nutrients for plants.


Assuntos
Araceae , Preparações Farmacêuticas , Poluentes Químicos da Água , Clorofila A , Ibuprofeno , Nitratos
2.
Ecotoxicol Environ Saf ; 192: 110258, 2020 Apr 01.
Artigo em Inglês | MEDLINE | ID: mdl-32036097

RESUMO

Membrane bioreactors (MBRs) are one of the treatment technologies with the potential to remove emerging compounds from wastewater. The present work evaluated the efficiency of an MBR pilot system in removing amoxicillin from synthetic wastewater using a continuous flow pre-denitrification MBR (A/O-MBR) pilot unit. The system operated in three phases: (1) synthetic wastewater and hydraulic retention time (HRT) of 40 h; (2) adding amoxicillin 100 µg L-1 to the influent, and (3) varying flowrate to HRT of 20 h. Liquid chromatography coupled to high resolution mass spectrometry analysis confirmed the presence of five amoxicillin degradation by-products in the effluent. The addition of amoxicillin did not affect chemical oxygen demand (COD) or dissolved organic carbon (DOC) removal efficiencies. Respirometry showed that amoxicillin level did not inhibit heterotrophic bacteria metabolism. The change in HRT reduced the DOC removal (from 84% to 66%) but did not influence COD (>94%) or total nitrogen (>72%). The amoxicillin and by-products removal decreased from 80% to 54% with HRT change. Adsorption and biodegradation represented the largest removed fraction of the antibiotic in the A/O-MBR system (68%). Ecotoxicity assays showed P. fluorescens was more resistant and E. coli less resistant to amoxicillin residues at effluent sample matrix.


Assuntos
Amoxicilina/metabolismo , Antibacterianos/metabolismo , Eliminação de Resíduos Líquidos/métodos , Águas Residuárias/química , Bactérias/metabolismo , Biodegradação Ambiental , Análise da Demanda Biológica de Oxigênio , Reatores Biológicos , Desnitrificação , Farmacorresistência Bacteriana , Escherichia coli/efeitos dos fármacos , Membranas Artificiais , Nitrogênio/análise , Pseudomonas fluorescens/efeitos dos fármacos
3.
Ecotoxicol Environ Saf ; 192: 110207, 2020 Apr 01.
Artigo em Inglês | MEDLINE | ID: mdl-32032860

RESUMO

Many studies have been conducted on the evaluation and monitoring of micropollutants and by-products in wastewater treatment plants. Considering the increase in the production and consumption of emerging contaminants, such as drugs, personal care products, and plasticisers, it is necessary to conduct studies that support the elaboration of laws and regulations that promote the environmentally sustainable use of sludge and effluents. In this work, the biological degradation of amoxicillin was studied under two anaerobic conditions: i) using a 6 L reactor operated under semi-continuous flow; and ii) a batch system with 100 mL sealed glass syringes. According to the statistical analysis, amoxicillin was completely removed from the systems, but biogas production inhibition was observed (p < 0.05). Liquid chromatography-high-resolution mass spectrometry analysis identified amoxicillin penicilloic acid, amoxilloic acid, amoxicillin diketopiperazine and phenol hydroxypyrazine as by-products under anaerobic conditions. Ecotoxicity tests on effluent treated under the batch conditions showed that the addition of higher amounts of amoxicillin inhibited the target species Aliivibrio fischeri and Raphidocelis subcaptata, causing functional decreases of 28.5% and 22.2% when the antibiotic concentration was 2500 µg L-1. A. fischeri was the most sensitive organism to effluent treated under semi-continuous flow conditions; a continuous reduction in bioluminescence of up to 88.8% was observed after 39 days of feeding, which was associated with by-products accumulation due to unbalanced conditions during anaerobic digestion. Changes in the physico-chemical characteristics of the effluent caused the accumulation and removal of AMX-DKP IV and modified the toxicity to Lactuca sativa and R. subcapitata.


Assuntos
Amoxicilina/metabolismo , Antibacterianos/metabolismo , Águas Residuárias/química , Poluentes Químicos da Água/metabolismo , Aliivibrio fischeri/efeitos dos fármacos , Amoxicilina/toxicidade , Anaerobiose , Antibacterianos/toxicidade , Biocombustíveis/análise , Ecotoxicologia , Eliminação de Resíduos Líquidos/métodos , Poluentes Químicos da Água/toxicidade
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