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ZINC OXIDE-ENGINEERED NANOPARTICLES: DISSOLUTION AND TOXICITY TO MARINE PHYTOPLANKTON

机译:氧化锌工程纳米颗粒:对海洋浮游生物的溶解和毒性

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摘要

It is now widely recognized that dissolution plays an important role in metallic nanoparticle toxicity, but to what extent remains unclear. In the present study, it was found that ZnO-engineered nanoparticle (ZnO-EN) toxicity to the marine diatom Thalassiosira pseudonana could be solely explained by zinc ion (Zn~(2+)) release. This is based on comparable inhibitive effects from ZnO-EN addition media, with or without the ultrafiltration through a 3-kD membrane, and from the media in which only Zn~(2+) was added. Considering the importance of dissolution in ZnO-EN toxicity, Zn~(2+) release kinetics was systematically examined under different conditions for the first time. It was found to be mainly influenced by pH as well as the specific surface area of the nanoparticles. In contrast, natural organic compounds either enhance or reduce Zn~(2+) release, depending on their chemical composition and concentration. Compared with deionized water, ZnO-EN dissolution rates were accelerated in seawater, whereas ZnO-EN concentration itself only had a very small effect on Zn~(2+) release. Therefore, dissolution as affected by several physicochemical factors should not be neglected in the effects, behavior, and fate of ENs in the environment.
机译:现在已经广泛认识到,溶解在金属纳米颗粒毒性中起重要作用,但是在何种程度上尚不清楚。在本研究中,发现ZnO修饰的纳米颗粒(ZnO-EN)对海洋硅藻拟藻(Thalassiosira pseudonana)的毒性可以仅通过锌离子(Zn〜(2+))释放来解释。这是基于来自ZnO-EN添加介质(有或没有通过3-kD膜的超滤)以及仅添加Zn〜(2+)的介质的类似抑制作用。考虑到溶解对ZnO-EN毒性的重要性,首次在不同条件下系统地研究了Zn〜(2+)的释放动力学。发现主要受pH以及纳米颗粒的比表面积影响。相反,天然有机化合物取决于其化学组成和浓度而增加或减少Zn〜(2+)的释放。与去离子水相比,ZnO-EN在海水中的溶解速率有所提高,而ZnO-EN浓度本身对Zn〜(2+)的释放影响很小。因此,在环境中ENs的作用,行为和命运中,不应忽略受多种物理化学因素影响的溶解。

著录项

  • 来源
    《Environmental toxicology and chemistry》 |2010年第12期|p.2814-2822|共9页
  • 作者单位

    State Key Laboratory of Pollution Control and Resource Reuse, School of Environment, Nanjing University, Nanjing, Jiangsu Province 210093, China,Department of Marine Science, Texas A&M University at Galveston, Galveston, Texas 77553, USA,Department of Marine Biology, Texas A&M University at Galveston, Galveston, Texas 77553, USA;

    State Key Laboratory of Pollution Control and Resource Reuse, School of Environment, Nanjing University, Nanjing, Jiangsu Province 210093, China;

    Microscopy and Imaging Center, Texas A&M University, College Station, Texas 77843, USA;

    School of Engineering, University of California-Merced, Merced, California 95344, USA;

    School of Engineering, University of California-Merced, Merced, California 95344, USA;

    Department of Marine Science, Texas A&M University at Galveston, Galveston, Texas 77553, USA,Department of Oceanography, Texas A&M University, College Station, Texas 77843, USA;

    Department of Marine Science, Texas A&M University at Galveston, Galveston, Texas 77553, USA,Department of Marine Biology, Texas A&M University at Galveston, Galveston, Texas 77553, USA,Department of Oceanography, Texas A&M University, College Station, Texas 77843, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    dissolution; engineered nanoparticles; phytoplankton; toxicity; zinc oxide;

    机译:解散工程纳米粒子;浮游植物毒性;氧化锌;
  • 入库时间 2022-08-17 13:32:25

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