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Stability and Biological Responses of Zinc Oxide Metalworking Nanofluids (ZnO MWnFTM) using Dynamic Light Scattering and Zebrafish Assays

机译:动态光散射和斑马鱼分析法检测氧化锌金属纳米流体(ZnO MWnFTM)的稳定性和生物响应

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Zinc oxide nanoparticles (ZnO NPs) have demonstrated the ability to improve lubrication and thermal conductivity and are promising metalworking lubricant and coolant additives due to their low cost compared to other NPs. Though nanomaterials are a focus of research due to their potential to enable advanced technologies, little is known about their effects on the environment and human health. This research investigates two main characteristics of ZnO metalworking nanofluids (MWnF). First, the stability of ZnO NPs (20 nm) is investigated using dynamic light scattering (DLS) for mixtures of a microemulsion (TRIM MicroSol 585XT) and several dispersants, all of which are commercially available. Second, toxicological assessments using a zebrafish assay method are conducted to survey the effect of ZnO NPs on MWnF safety. The research revealed that none of the dispersants enhanced the stability of ZnO NPs more than the prepared microemulsion alone. The work also revealed that ZnO MWnF had a significantly higher toxicity than the prepared microemulsion. This demonstrates the need for precautionary development of metalworking nanofluids.
机译:氧化锌纳米颗粒(ZnO NPs)已显示出改善润滑和导热性的能力,并且由于与其他NPs相比价格低廉,因此有望成为金属加工润滑剂和冷却剂添加剂。尽管纳米材料由于其具有实现先进技术的潜力而成为研究的重点,但对其对环境和人类健康的影响知之甚少。这项研究调查了ZnO金属加工纳米流体(MWnF)的两个主要特征。首先,使用动态光散射(DLS)对微乳液(TRIM MicroSol 585XT)和几种分散剂的混合物进行研究,研究ZnO NP(20 nm)的稳定性,所有这些都可以从市场上买到。其次,进行了使用斑马鱼分析方法的毒理学评估,以调查ZnO NP对MWnF安全性的影响。研究表明,没有一种分散剂比单独制备的微乳液更能增强ZnO NP的稳定性。这项工作还表明,ZnO MWnF的毒性明显高于制备的微乳液。这表明需要预防性开发金属加工纳米流体。

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