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Biotoxicity Effects of NiO-Nanoparticles on Chlorella sp.

机译:NiO-纳米粒子对小球藻SP的生物毒性作用。

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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:鉴于其越来越多的商业应用,金属氧化物NIO如NIO具有升高的环境机会。反应性,剂量 - 响应关系,生物毒性和生物吸放,NiO-NP和小球藻的生物测定。评估其环境风险需要分析。目前的工作旨在证明Nio-NP对小球藻的影响。结果表明,NiO-NP可以与小球藻SP相互作用。 NiO-NP对小球藻SP的毒性。随着NIO-NP浓度的增加而增加。总叶绿素-A含量显示出降低图案作为NiO-NP浓度和暴露时间增加。 48小时暴露后吸收百分比率增加,表明在NiO-NP的生物诱导之前发生的吸收过程,NiO的比例在72小时内达到最高点。小球藻SP中可溶性蛋白质的含量。在NiO-NP治疗中随着暴露时间而增加并达到72小时的最大可溶性蛋白质含量,然后降低直至120小时暴露,从NNIO到NNI的减少可能导致NiO-NP的毒性削弱。这为纳米NP污染的生物修复提供了一种新的研究方法。

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