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首页> 外文期刊>Nanotoxicology >Spectroscopic probe to contribution of physicochemical transformations in the toxicity of aged ZnO NPs to Chlorella vulgaris: new insight into the variation of toxicity of ZnO NPs under aging process
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Spectroscopic probe to contribution of physicochemical transformations in the toxicity of aged ZnO NPs to Chlorella vulgaris: new insight into the variation of toxicity of ZnO NPs under aging process

机译:光谱探针对老化ZnO NPs对小球藻毒性的理化转化贡献:老化过程中ZnO NPs毒性变化的新见解

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Zinc oxide nanoparticles (ZnO NPs) are one of the most abundantly applied nanomaterials in nanotechnology-based industries and they may cause unexpected environmental and health risks with their physicochemical transformations in the environment. Currently, there is still a lack of the in-depth understanding of the toxicity of aged ZnO NPs to aquatic organisms, particularly demanding quantitative analysis of the physicochemical transformations to distinguish their contributions in the toxicity assessment. For this purpose, therefore, we initiated the study of the toxicity of aged ZnO NPs to the model aquatic microalga, i.e. Chlorella vulgaris, and with the aid of spectroscopic tools for characterization and quantification of the physicochemical transformations, we scrutinized the toxicity variations for ZnO NPs with different aging times. As a result, we found that the toxicity altered in an abnormal manner with the aging time, i.e. the toxicity of aged ZnO NPs for 30 days showed the higher toxicity to the green alga than the fresh ZnO NPs or the ZnO NPs aged for longer time (e.g. 120 and 210 days). Through spectroscopic tools such as XRD, FTIR and Raman spectroscopy, we made both the qualitative and quantitative assessments of the physicochemical changes of the ZnO NPs, and confirmed that in the early stage, the toxicity mainly stemmed from the release of zinc ions, but with longer aging time, the neoformation of the nanoparticles played the critical role, leading to the overall reduced toxicity due to the less toxic hydrozincite and zinc hydroxide in the transformed compounds.
机译:氧化锌纳米颗粒(ZnO NPs)是基于纳米技术的行业中应用最广泛的纳米材料之一,它们可能会因其在环境中的物理化学转化而引起意想不到的环境和健康风险。当前,仍然缺乏对衰老的ZnO NP对水生生物毒性的深入了解,特别是需要对理化转化进行定量分析以区分其在毒性评估中的作用。因此,为此目的,我们开始了对老化的ZnO NPs对模型水生微藻即小球藻的毒性的研究,并借助用于鉴定和定量理化转化的光谱工具,研究了ZnO的毒性变化。具有不同老化时间的NP。结果,我们发现毒性随着老化时间的变化而异常地改变,即老化的ZnO NPs 30天的毒性显示对绿藻的毒性高于新鲜的ZnO NPs或老化时间更长的ZnO NPs (例如120天和210天)。通过XRD,FTIR和拉曼光谱等光谱学工具,我们对ZnO NP的理化变化进行了定性和定量评估,并确认在早期阶段,毒性主要源于锌离子的释放,但随着较长的老化时间,纳米颗粒的新形成起关键作用,由于转化后化合物中毒性较小的水锌矿和氢氧化锌,导致总体毒性降低。

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