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Nanosized Titanium Dioxide Reduces Copper Toxicity-The Role of Organic Material and the Crystalline Phase

机译:纳米二氧化钛降低了铜的毒性-有机材料和结晶相的作用

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摘要

Titanium dioxide nanoparticles (nTiO_2) are expected to interact with natural substances and other chemicals in the environment, however little is known about their combined effects. Therefore, this study assessed the toxicity of copper (Cu) in combination with varying crystalline phases (anatase, rutile, and the mixture) of nTiO_2 and differing organic materials on Daphnia magna. The nanoparticles reduced the Cu-toxicity depending on the product (0.3- to 2-fold higher 48-h EC_(50)). This decrease in toxicity coincided with a lowered Cu-concentration in the water column, which was driven by the adsorption of Cu to nTiO_2-depending on available surface area and structure-and their subsequent sedimentation. In the presence of organic material and nTiO_2, the Cu-toxicity was further reduced (up to 7-fold higher 48-h EC_(50)). This observation can be explained by a reduced Cu-bioavailability as a result of complexation and adsorption by the organic material and nTiO_2, respectively. Thus, the crystalline phase composition, which is determining the surface area and structure of nTiO_2, seems to be of major importance for the toxicity reduction of heavy metals, while the influence of the organic materials was mainly driven by the quantity and quality of humic substances.
机译:预计二氧化钛纳米粒子(nTiO_2)可与环境中的天然物质和其他化学物质相互作用,但是对它们的综合作用知之甚少。因此,这项研究评估了铜(Cu)与nTiO_2的各种结晶相(锐钛矿,金红石和混合物)和不同的有机物质对大型蚤的毒性。纳米粒子根据产品降低了铜的毒性(48小时EC_(50)高0.3到2倍)。毒性的降低与水柱中铜浓度的降低相吻合,这是由铜吸附到nTiO_2上所驱动的,这取决于可用的表面积和结构以及随后的沉降。在有机材料和nTiO_2的存在下,铜的毒性进一步降低(48小时EC_(50)最高提高了7倍)。该观察结果可以解释为分别由于有机材料和nTiO_2的络合和吸附而导致的Cu生物利用度降低。因此,决定nTiO_2表面积和结构的晶相组成对于降低重金属的毒性似乎至关重要,而有机材料的影响主要由腐殖质的数量和质量决定。 。

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  • 来源
    《Environmental Science & Technology》 |2015年第3期|1815-1822|共8页
  • 作者单位

    Institute for Environmental Sciences, University of Koblenz-Landau, Fortstrasse 7, 76829 Landau/Palatinate, Germany;

    Institute for Environmental Sciences, University of Koblenz-Landau, Fortstrasse 7, 76829 Landau/Palatinate, Germany;

    Institute for Environmental Sciences, University of Koblenz-Landau, Fortstrasse 7, 76829 Landau/Palatinate, Germany;

    Institute for Particle Technology, Technical University Braunschweig, Volkmaroder Strasse 5, 38106 Braunschweig, Germany;

    Institute for Environmental Sciences, University of Koblenz-Landau, Fortstrasse 7, 76829 Landau/Palatinate, Germany;

    Institute for Environmental Sciences, University of Koblenz-Landau, Fortstrasse 7, 76829 Landau/Palatinate, Germany,Department of Aquatic Sciences and Assessment, Swedish University of Agricultural Sciences, Lennart Hjelms vaeg 9, 75007 Uppsala, Sweden;

  • 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
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  • 入库时间 2022-08-17 13:59:37

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