Abstract
In aquatic environments, transformation of pollutants by association with functionalized carbon-based nanoparticles can dramatically change their cycling pathways. The present study quantified the uptake and depuration behavior of cadmium and zinc bound with functionalized fullerene nanoparticles (f-nC60) in a freshwater cladoceran, Daphnia magna, in a well-dispersed medium. Metal uptake proceeded with a linear pattern during the 8-h exposure period, and the uptake rate constants (ku) were 1.3-fold to 1.4-fold higher for Cd or comparable for Zn bound with f-nC60 than those of the free ones. The assimilation efficiencies of Cd and Zn bound with f-nC60 were significantly enhanced when compared with those metals bound with algal food. Furthermore, the depuration of metals bound with f-nC60 was relatively slower compared to the depuration of metals bound with carbon nanotubes. A longer exposure to f-nC60 resulted in an even slower depuration of metals. The authors conclude that metal binding with f-nC60 as modified nanoparticles could serve as a new pathway for the elevated metal accumulation in Daphnia. © 2014 SETAC.
| Original language | English |
|---|---|
| Pages (from-to) | 1122-1128 |
| Journal | Environmental Toxicology and Chemistry |
| Volume | 33 |
| Issue number | 5 |
| Online published | 16 Jan 2014 |
| DOIs | |
| Publication status | Published - May 2014 |
| Externally published | Yes |
Research Keywords
- Biokinetics
- Cadmium
- Daphnia
- Functionalized fullerene
- Zinc
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