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富勒烯(nC60)在天然淡水中的命运及其毒性影响的筛选研究。

A screening study on the fate of fullerenes (nC60 ) and their toxic implications in natural freshwaters.

机构信息

Department of Biology, University of Eastern Finland, Joensuu, Finland.

出版信息

Environ Toxicol Chem. 2013 Jun;32(6):1224-32. doi: 10.1002/etc.2175. Epub 2013 Apr 15.

Abstract

Increasing usage of fullerenes (C60 ) increases their opportunities to be released into the environment. For risk assessment, it is important to understand the environmental fate and ecotoxicological effects of C60 . In the present study, fullerene settling was measured during a 1-yr period with 4 different lake waters and an artificial freshwater, and Daphnia magna immobilization and fullerene accumulation was also measured in each of the lake waters. Depending on the characteristics of the lake waters, fullerenes either exhibited extended water stability or settled rapidly; in all waters, there was a fraction that remained stable after 1 yr. Water stability was affected by the quality and molecular size distribution of dissolved natural organic matter (DNOM). Increasing DNOM molecular sizes with high aromatic content enhanced water stability. Immobilization of D. magna was generally quite low (under 20%) and highly variable after 24 h and 48 h at initial fullerene concentrations up to 10 mg/L. Substantial settling occurred during the time period for acute toxicity assays (i.e., 48 h), which should be anticipated when conducting toxicity assays. There were no significant differences in the quantity of accumulated fullerenes among the different lake waters at fullerene concentrations of 0.5 mg/L, but there were differences at 2 mg/L.

摘要

富勒烯(C60)的使用量不断增加,它们被释放到环境中的机会也随之增加。为了进行风险评估,了解 C60 的环境归宿和生态毒理学效应非常重要。在本研究中,使用 4 种不同的湖水和一种人工淡水,测量了富勒烯在 1 年内的沉降情况,并在每种湖水中测量了大型溞的固定和富勒烯积累情况。根据湖水的特点,富勒烯要么表现出延长的水稳定性,要么迅速沉降;在所有水中,经过 1 年后仍有一部分保持稳定。水稳定性受溶解态天然有机物(DNOM)的质量和分子大小分布的影响。具有高芳香度的 DNOM 分子大小的增加会增强水稳定性。大型溞的固定通常很低(低于 20%),在初始富勒烯浓度高达 10mg/L 时,24 小时和 48 小时后的变化很大。在急性毒性测定(即 48 小时)期间发生了大量沉降,在进行毒性测定时应考虑到这一点。在富勒烯浓度为 0.5mg/L 时,不同湖水中积累的富勒烯数量没有显著差异,但在 2mg/L 时存在差异。

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