An adaptable mesocosm platform for performing integrated assessments of nanomaterial risk in complex environmental systems View Full Text


Ontology type: schema:ScholarlyArticle      Open Access: True


Article Info

DATE

2015-05

AUTHORS

Mélanie Auffan, Marie Tella, Catherine Santaella, Lenka Brousset, Christine Paillès, Mohamed Barakat, Benjamin Espinasse, Ester Artells, Julien Issartel, Armand Masion, Jérôme Rose, Mark R. Wiesner, Wafa Achouak, Alain Thiéry, Jean-Yves Bottero

ABSTRACT

Physical-chemists, (micro)biologists, and ecologists need to conduct meaningful experiments to study the environmental risk of engineered nanomaterials with access to relevant mechanistic data across several spatial and temporal scales. Indoor aquatic mesocosms (60L) that can be tailored to virtually mimic any ecosystem appear as a particularly well-suited device. Here, this concept is illustrated by a pilot study aimed at assessing the distribution of a CeO₂-based nanomaterial within our system at low concentration (1.5 mg/L). Physico-chemical as well as microbiological parameters took two weeks to equilibrate. These parameters were found to be reproducible across the 9-mesocosm setup over a 45-day period of time. Recovery mass balances of 115 ± 18% and 60 ± 30% of the Ce were obtained for the pulse dosing and the chronic dosing, respectively. This demonstrated the relevance of our experimental approach that allows for adequately monitoring the fate and impact of a given nanomaterial. More... »

PAGES

5608

Identifiers

URI

http://scigraph.springernature.com/pub.10.1038/srep05608

DOI

http://dx.doi.org/10.1038/srep05608

DIMENSIONS

https://app.dimensions.ai/details/publication/pub.1038178917

PUBMED

https://www.ncbi.nlm.nih.gov/pubmed/25001877


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