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TOXICITY AND UPTAKE OF TRI- AND DIBUTYLTIN IN DAPHNIA MAGNA IN THE ABSENCE AND PRESENCE OF NANO-CHARCOAL

机译:纳米炭存在和存在下大叶蝉的三联和二丁基丁醚的毒性和吸收

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摘要

Butyltins (BTs), such as tributyltin (TBT) and dibutyltin (DBT), are toxic to aquatic organisms, but the presence of the strong adsorbent, black carbon (BC), can markedly influence BT toxicity and uptake in organisms. In the present study, the acute toxicity and uptake of TBT and DBT in the crustacean, Daphnia magna, were investigated with and without addition of nano-charcoal at different pHs and water hardnesses. The results showed that the toxicity of TBT and DBT increased by lowering the pH from 8 to 6. This reflects a relatively higher toxicity of cationic BT species than of the neutral species. At pH 6, by enhancing the water hardness of the media from 0.6 to 2.5 mM, the toxicity of TBT and DBT consistently decreased due to competitive binding of bivalent cations (Mg~(2+), Ca~(2+)) to biotic ligands of D. magna. Furthermore, the toxicity of TBT to D. magna significantly decreased in the presence of nano-charcoal compared with experiments without nano-charcoal at pH 6 and 8, while no significant decrease in toxicity of DBT was observed in the presence of nano-charcoal. This can be attributed to the insignificant decrease of free DBT concentration in the presence of nano-charcoal compared with that for TBT. Conversely, it was observed that more TBT and DBT were taken up in D. magna in the presence of nano-charcoal due to the uptake of TBT or DBT associated with nano-charcoal by Daphnia in gut systems, as seen by light microscopy. This indicated that only free nonadsorbed BTs were toxic to D. magna, at least during short periods of exposure.
机译:丁基锡(BTs),例如三丁基锡(TBT)和二丁基锡(DBT)对水生生物有毒,但是强吸附剂黑碳(BC)的存在会显着影响BT毒性和生物吸收。在本研究中,研究了添加和不添加纳米炭在不同pH和水硬度下对甲壳类水蚤(Daphnia magna)的TBT和DBT的急性毒性和摄取。结果表明,通过将pH值从8降低到6,TBT和DBT的毒性增加。这表明阳离子BT物种的毒性相对于中性物种更高。在pH值为6时,通过将介质的水硬度从0.6增加到2.5 mM,由于二价阳离子(Mg〜(2 +),Ca〜(2+))与生物的竞争性结合,TBT和DBT的毒性持续降低。 D. magna的配体。此外,与在pH 6和8下没有纳米炭的实验相比,在存在纳米炭的情况下TBT对D. magna的毒性显着降低,而在存在纳米炭的情况下未观察到DBT的毒性显着降低。这可以归因于与TBT相比,存在纳米木炭的情况下游离DBT浓度的显着降低。相反地​​,观察到由于碳纳米管在肠道系统中吸收了与纳米木炭相关的TBT或DBT,因此在纳米木炭存在下,在D.magna中吸收了更多的TBT和DBT,如通过光学显微镜观察的。这表明至少在短时间暴露期间,仅游离的未吸附的BTs对D. magna有毒。

著录项

  • 来源
    《Environmental toxicology and chemistry》 |2011年第11期|p.2553-2561|共9页
  • 作者单位

    Department of Basic Sciences and Environment, University of Copenhagen, Copenhagen, Denmark;

    Department of Basic Sciences and Environment, University of Copenhagen, Copenhagen, Denmark;

    Department of Basic Sciences and Environment, University of Copenhagen, Copenhagen, Denmark;

    Department of Basic Sciences and Environment, University of Copenhagen, Copenhagen, Denmark;

    Department of Basic Sciences and Environment, University of Copenhagen, Copenhagen, Denmark;

  • 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

    black carbon; organotin; nanoparticles; bioavailability; adsorption;

    机译:黑炭有机锡纳米粒子生物利用度吸附;
  • 入库时间 2022-08-17 13:31:36

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