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Impact of natural organic matter on particle behavior and phototoxicity of titanium dioxide nanoparticles

机译:天然有机物对二氧化钛纳米粒子行为和光毒性的影响

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摘要

Due to their inherent phototoxicity and inevitable environmental release, titanium dioxide nanoparticles (nano-TiO_2) are increasingly studied in the field of aquatic toxicology. One of the particular interests is the interactions between nano-TiO_2 and natural organic matter (NOM). In this study, a series of experiments was conducted to study the impacts of Suwannee River natural organic matter (SRNOM) on phototoxicity and particle behaviors of nano-TiO_2- For Daphnia magna, after the addition of 5 mg/L SRNOM, LC50 value decreased significantly from 1.03 (0.89-1.20) mg/L to 0.26 (022-0.31) mg/L For zebraflsh larvae, phototoxic LC50 values were 39.9 (95% Cl, 25.9-612) mg/L and 263 (95% a, 183-37.8) mg/L with or without the presence of 5 mg/L SRNOM, respectively. There was no statistically significant change of these LC50 values. The impact of SRNOM on phototoxicity of nano-TiO_2 was highly dependent on test species, with D. magna being the more sensitive species. The impact on particle behavior was both qualitatively and quantitatively examined. A global predictive model for particle behavior was developed with a three-way interaction of SRNOM, TiO_2 concentration, and time and an additive effect of ionic strength. Based on power analyses, 96-h exposure in bioassays was recommended for nanoparticle-NOM interaction studies. The importance of reactive oxygen species (ROS) quenching of SRNOM was also systematically studied using a novel exposure system that isolates the effects of environmental factors. These experiments were conducted with minimal impacts of other important interaction mechanisms (NOM particle stabilization, NOM UV attenuation, and NOM photosensitization). This study highlighted both the particle stabilization and ROS quenching effects of NOM on nano-TiO_2 in an aquatic system. There is an urgent need for representative test materials, together with key environmental factors, for future risk assessment and regulations of nanomaterials.
机译:由于其固有的光毒性和不可避免的环境释放,在水生毒理学领域中越来越多地研究二氧化钛纳米颗粒(纳米TiO_2)。特殊的兴趣之一是纳米TiO_2与天然有机物(NOM)之间的相互作用。本研究通过一系列实验研究了Suwannee河天然有机物(SRNOM)对水蚤纳米TiO_2的光毒性和颗粒行为的影响,在加入5 mg / L SRNOM后,LC50值降低了。明显从1.03(0.89-1.20)mg / L到0.26(022-0.31)mg / L对于斑马鱼幼虫,光毒性LC50值为39​​.9(95%Cl,25.9-612)mg / L和263(95%a,183) -37.8)mg / L,分别存在或不存在5 mg / L SRNOM。这些LC50值没有统计学上的显着变化。 SRNOM对纳米TiO_2光毒性的影响高度依赖于测试物种,其中D. magna是更敏感的物种。定性和定量地检查了对颗粒行为的影响。通过SRNOM,TiO_2浓度和时间的三向相互作用以及离子强度的累加效应,开发了一种颗粒行为的全球预测模型。基于功效分析,建议在生物分析中进行96小时暴露以进行纳米颗粒-NOM相互作用研究。 SRNOM的活性氧(ROS)淬灭的重要性也使用隔离环境因素影响的新型暴露系统进行了系统研究。进行这些实验时,对其他重要相互作用机制(NOM颗粒稳定,NOM紫外线衰减和NOM光敏化)的影响最小。这项研究强调了水生系统中NOM对纳米TiO_2的颗粒稳定性和ROS猝灭作用。迫切需要代表性的测试材料以及关键的环境因素,以用于未来的风险评估和纳米材料法规。

著录项

  • 来源
    《The Science of the Total Environment》 |2016年第15期|324-333|共10页
  • 作者单位

    U.S. Environmental Protection Agency, Office of Research and Development, National Health and Environmental Effects Research Laboratory, Mid-Continent Ecology Division, Duluth, MN, USA;

    Zilber School of Public Health, University of Wisconsin-Milwaukee, Milwaukee, WI 53201, USA;

    U.S. Environmental Protection Agency, Office of Research and Development, National Health and Environmental Effects Research Laboratory, Mid-Continent Ecology Division, Duluth, MN, USA;

    U.S. Environmental Protection Agency, Office of Research and Development, National Health and Environmental Effects Research Laboratory, Mid-Continent Ecology Division, Duluth, MN, USA;

    U.S. Environmental Protection Agency, Office of Research and Development, National Health and Environmental Effects Research Laboratory, Mid-Continent Ecology Division, Duluth, MN, USA;

    U.S. Environmental Protection Agency, Office of Research and Development, National Health and Environmental Effects Research Laboratory, Mid-Continent Ecology Division, Duluth, MN, USA;

    Nanosafe Inc., Blacksburg, VA, USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Nano-TiO_2; Dissolved organic matter; Quenching; Aquatic organism; Linear model; Power analysis;

    机译:纳米TiO_2;溶解的有机物;淬火水生生物;线性模型功率分析;
  • 入库时间 2022-08-17 13:50:06

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