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Acute Toxicity of Suspension of Nanosized Silicon Dioxide Particles to Daphnia Magna

机译:纳米二氧化硅颗粒对水蚤的急性毒性

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There is a broad application area for engineering nanoparticles (ENPs) in virtue of its special physical and chemical properties. ENPs bring a huge advance to development of human society, as well as the questions about whether the manufactured nanomaterials (MNMs) can cause disadvantages to organisms and environment. This paper analyzed the 24-h acute toxicity of water suspensions of the nanosized silicon dioxide (Nano-SiO2) and the normal sized silicon dioxide (Nor-SiO2) as its bulk counterpart to Daphnia magna with different concentration. The experiment considered EC50 value for immobilization and LC50 value for mortality as the toxicological test targets. The results show that the toxicity of Nano-SiO2 is obviously does-dependent but the Nor-SiO2 is not, evidently. The optical microscope and digital camera also been used to observe and record the biological form of Daphnia magna during the exposure and in this study we found that D. magna can uptake and adsorb Nano-SiO2 but only apparently show uptaking to its bulk counterpart. The conclusions of results suggest that there is potential harm to aquatic environment in using Nano-SiO2, and it should deserve special concern.
机译:凭借其特殊的物理和化学特性,工程纳米颗粒(ENP)的应用领域非常广泛。 ENP为人类社会的发展带来了巨大的进步,以及有关人造纳米材料(MNM)是否会对生物和环境造成不利影响的问题。本文分析了纳米二氧化硅(Nano-SiO2)和正常粒径的二氧化硅(Nor-SiO2)作为水蚤(Daphnia magna)的不同体积的水悬浮液的24小时急性毒性。实验将固定化的EC50值和死亡率的LC50值视为毒理学测试目标。结果表明,纳米SiO2的毒性明显与剂量有关,而Nor-SiO2的毒性与剂量无关。光学显微镜和数码相机还用于观察和记录水蚤的生物形态,在这项研究中,我们发现水蚤可以吸收和吸附纳米SiO2,但显然仅显示其对大体积二氧化硅的吸收。结果表明,使用纳米SiO2对水环境有潜在的危害,应引起特别关注。

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