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Biotoxicity Effects of NiO-Nanoparticles on Chlorella sp.

机译:NiO纳米颗粒对小球藻的生物毒性作用

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摘要

In light of their increasing commercial applications metal oxide NPs like NiO have elevated chances of entry to the environment. The reactivity, dose-response relationship, biotoxicity and bioabsorption, bioreduction of NiO-NP and Chlorella sp. analyses are required to assess their environmental risks. The present work aims to demonstrate the effect of NiO-NP on Chlorella sp. It shown that NiO-NP can interact with Chlorella sp. The toxicity of NiO-NP to the Chlorella sp. increased with the increase of NiO-NP concentration. The total chlorophyll-a content of showed a decreasing pattern as the NiO-NP concentration and exposure time increased. The absorption percentage rate increased after 48 h exposure, indicating that the absorption process occurred before the bioreduction of NiO-NP, and the ratio of Ni0 reached the highest point at 72 h of exposure. The content of soluble protein in Chlorella sp. under NiO-NP treatments increased as the exposure time and reached the maximum soluble protein content at 72 h, then decreased until the 120 h exposure, the reduction from nNiO to nNi may lead to weakened the toxicity of NiO-NP. This offers a new research method for bioremediation of nano-NP pollution.
机译:鉴于其日益增长的商业应用,诸如NiO之类的金属氧化物NP具有更高的进入环境的机会。 NiO-NP和小球藻的反应性,剂量反应关系,生物毒性和生物吸收,生物还原。需要进行分析以评估其环境风险。本工作旨在证明NiO-NP对小球藻的影响。结果表明,NiO-NP可以与小球藻相互作用。 NiO-NP对小球藻的毒性。随着NiO-NP浓度的增加而增加。随着NiO-NP浓度和暴露时间的增加,总的叶绿素a含量呈下降趋势。暴露48 h后吸收百分率增加,表明吸收过程发生在NiO-NP生物还原之前,并且Ni0的比例在暴露72 h达到最高点。小球藻中可溶性蛋白的含量在NiO-NP处理下,随着暴露时间的增加,在72 h达到最大可溶性蛋白含量,然后下降直至暴露120 h,从nNiO还原为nNi可能会减弱NiO-NP的毒性。这为生物修复纳米NP污染提供了一种新的研究方法。

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