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环境中的纳米材料:行为、归宿、生物可利用性和影响——最新综述。

Nanomaterials in the environment: Behavior, fate, bioavailability, and effects-An updated review.

机构信息

Center for Environmental Nanoscience and Risk, Department of Environmental Health Sciences, Arnold School of Public Health, University of South Carolina, Columbia, South Carolina, USA.

Centre for Environmental Contaminants Research, CSIRO Land and Water, Kirrawee, New South Wales, Australia.

出版信息

Environ Toxicol Chem. 2018 Aug;37(8):2029-2063. doi: 10.1002/etc.4147. Epub 2018 Jul 16.

Abstract

The present review covers developments in studies of nanomaterials (NMs) in the environment since our much cited review in 2008. We discuss novel insights into fate and behavior, metrology, transformations, bioavailability, toxicity mechanisms, and environmental impacts, with a focus on terrestrial and aquatic systems. Overall, the findings were that: 1) despite substantial developments, critical gaps remain, in large part due to the lack of analytical, modeling, and field capabilities, and also due to the breadth and complexity of the area; 2) a key knowledge gap is the lack of data on environmental concentrations and dosimetry generally; 3) substantial evidence shows that there are nanospecific effects (different from the effects of both ions and larger particles) on the environment in terms of fate, bioavailability, and toxicity, but this is not consistent for all NMs, species, and relevant processes; 4) a paradigm is emerging that NMs are less toxic than equivalent dissolved materials but more toxic than the corresponding bulk materials; and 5) translation of incompletely understood science into regulation and policy continues to be challenging. There is a developing consensus that NMs may pose a relatively low environmental risk, but because of uncertainty and lack of data in many areas, definitive conclusions cannot be drawn. In addition, this emerging consensus will likely change rapidly with qualitative changes in the technology and increased future discharges. Environ Toxicol Chem 2018;37:2029-2063. © 2018 The Authors. Environmental Toxicology and Chemistry published by Wiley Periodicals, Inc. on behalf of SETAC.

摘要

本综述涵盖了自 2008 年我们的重要综述以来环境中纳米材料(NMs)研究的进展。我们讨论了关于命运和行为、计量学、转化、生物利用度、毒性机制和环境影响的新见解,重点是陆地和水生系统。总的来说,研究结果表明:1)尽管有了实质性的发展,但仍存在重大差距,这在很大程度上是由于分析、建模和现场能力的缺乏,以及该领域的广度和复杂性;2)一个关键的知识差距是普遍缺乏环境浓度和剂量学数据;3)大量证据表明,在命运、生物利用度和毒性方面,环境中存在纳米特异性效应(与离子和较大颗粒的效应不同),但并非所有纳米材料、物种和相关过程都存在这种情况;4)一个范式正在出现,即纳米材料的毒性低于同等溶解物质,但高于相应的块状材料;5)将不完全理解的科学转化为法规和政策仍然具有挑战性。人们越来越认为纳米材料可能对环境构成相对较低的风险,但由于许多领域存在不确定性和数据缺乏,因此无法得出明确的结论。此外,随着技术的定性变化和未来排放量的增加,这一新兴共识可能会迅速变化。环境毒理化学 2018;37:2029-2063。© 2018 作者。环境毒理化学由 Wiley 期刊出版公司代表 SETAC 出版。

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