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1.
Ecotoxicology ; 21(5): 1550-69, 2012 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-22555811

RESUMO

The ecological impact of the dithiocarbamate fungicide metiram was studied in outdoor freshwater microcosms, consisting of 14 enclosures placed in an experimental ditch. The microcosms were treated three times (interval 7 days) with the formulated product BAS 222 28F (Polyram®). Intended metiram concentrations in the overlying water were 0, 4, 12, 36, 108 and 324 µg a.i./L. Responses of zooplankton, macroinvertebrates, phytoplankton, macrophytes, microbes and community metabolism endpoints were investigated. Dissipation half-life (DT50) of metiram was approximately 1-6 h in the water column of the microcosm test system and the metabolites formed were not persistent. Multivariate analysis indicated treatment-related effects on the zooplankton (NOEC(community) = 36 µg a.i./L). Consistent treatment-related effects on the phytoplankton and macroinvertebrate communities and on the sediment microbial community could not be demonstrated or were minor. There was no evidence that metiram affected the biomass, abundance or functioning of aquatic hyphomycetes on decomposing alder leaves. The most sensitive populations in the microcosms comprised representatives of Rotifera with a NOEC of 12 µg a.i./L on isolated sampling days and a NOEC of 36 µg a.i./L on consecutive samplings. At the highest treatment-level populations of Copepoda (zooplankton) and the blue-green alga Anabaena (phytoplankton) also showed a short-term decline on consecutive sampling days (NOEC = 108 µg a.i./L). Indirect effects in the form of short-term increases in the abundance of a few macroinvertebrate and several phytoplankton taxa were also observed. The overall community and population level no-observed-effect concentration (NOEC(microcosm)) was 12-36 µg a.i./L. At higher treatment levels, including the test systems that received the highest dose, ecological recovery of affected measurement endpoints was fast (effect period < 8 weeks).


Assuntos
Ditiocarb/toxicidade , Água Doce/química , Fungicidas Industriais/toxicidade , Resíduos de Praguicidas/toxicidade , Rotíferos/efeitos dos fármacos , Poluentes Químicos da Água/toxicidade , Animais , Cianobactérias/efeitos dos fármacos , Cianobactérias/metabolismo , Ditiocarb/análise , Relação Dose-Resposta a Droga , Ecossistema , Determinação de Ponto Final , Monitoramento Ambiental/métodos , Fungicidas Industriais/análise , Meia-Vida , Análise Multivariada , Resíduos de Praguicidas/análise , Fitoplâncton/efeitos dos fármacos , Fitoplâncton/metabolismo , Medição de Risco , Rotíferos/metabolismo , Poluentes Químicos da Água/análise , Zooplâncton/efeitos dos fármacos , Zooplâncton/metabolismo
2.
Environ Pollut ; 130(3): 403-26, 2004 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-15182972

RESUMO

Three different risk assessment procedures are described that aim to protect freshwater habitats from risks of the photosynthesis-inhibiting herbicides metribuzin and metamitron. These procedures are (1) the first-tier approach, based on standard toxicity tests and the application of an assessment factor, (2) the Species Sensitivity Distribution (SSD) approach, based on laboratory tests with a wider array of species and the application of a statistical model to calculate the HCx (the Hazardous Concentration for x% of the species), and (3) the model ecosystem approach, based on the evaluation of treatment-related effects in field enclosures. A comparison of the risk assessment procedures reveals that the first-tier approach is the most conservative for metamitron and metribuzin, and that HC5 values (and even HC10 values) based on acute EC50 values of algae and aquatic vascular plants may be used to derive maximum permissible concentrations for single applications. For both compounds these HC5 values were very similar to the ecological threshold concentrations in the enclosure studies. In contrast to model ecosystem experiments, however, HCx values based on lab toxicity tests do not provide information on the recovery potential of sensitive endpoints and on indirect effects, which may be important for regulatory decision-making. In the enclosure study, indirect effects of metribuzin on invertebrate populations were observed at an exposure concentration that was approximately 20 times lower than the corresponding HC5 value based on lab toxicity data for aquatic invertebrates.


Assuntos
Herbicidas/toxicidade , Fotossíntese/efeitos dos fármacos , Triazinas/toxicidade , Poluentes Químicos da Água/toxicidade , Animais , Relação Dose-Resposta a Droga , Ecossistema , Água Doce , Invertebrados/efeitos dos fármacos , Plâncton/efeitos dos fármacos , Medição de Risco/métodos , Especificidade da Espécie , Testes de Toxicidade/métodos
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