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Stability of metal oxide nanoparticles in aqueous solutions

机译:金属氧化物纳米粒子在水溶液中的稳定性

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The application of nanoparticles in the processes of making commercial products has increased in recent years due to their unique physical and chemical properties. With increasing amount of commercial nanoparticles released into nature, their fate and effects on the ecosystem and human health are of growing concern. This study investigated the stability and morphology of three metal oxide nanoparticles in aqueous solutions. The commercially available nanoparticles, TiO2, ZnO, SiO2, aggregated quickly into micrometer-size particles in aqueous solutions, which may not threaten human health. Their changes in morphology and characteristics were further examined by dynamic light scattering (DLS) method and transmission electron microscopy (TEM). Among the several dispersion approaches, ultrasonication was found to be the most effective for disaggregating nanoparticles in water. For these three selected nanoparticles, ZnO could not remain stable in suspensions, presumably due to the dissolution of particles to form high concentration of ions, resulting in enhanced aggregation of particles. In addition, the existence of dissolved organic matters stabilized nanoparticles in lake water and wastewater for several hours in spite of the high concentration of cations in these real-water samples. The fate of metal oxide nanoparticles in natural water bodies would be determined by the type and concentration of cations and organic matters. Results obtained in this study revealed that the stability of nanoparticles changed under different aqueous conditions and so did their fate in the environment.
机译:近年来,由于纳米粒子独特的物理和化学特性,其在商业产品制造过程中的应用有所增加。随着释放到大自然中的商业纳米颗粒的数量增加,它们的命运以及对生态系统和人类健康的影响日益受到关注。这项研究调查了三种金属氧化物纳米粒子在水溶液中的稳定性和形态。市售的纳米颗粒TiO2,ZnO,SiO2在水溶液中迅速聚集成微米级的颗粒,这可能不会威胁人类健康。通过动态光散射(DLS)方法和透射电子显微镜(TEM)进一步检查了它们的形态和特征变化。在几种分散方法中,发现超声处理对于在水中分解纳米颗粒最有效。对于这三个选定的纳米粒子,ZnO不能在悬浮液中保持稳定,这大概是由于粒子的溶解形成了高浓度的离子,导致粒子的聚集增强。此外,尽管这些真实水样中的阳离子浓度很高,但溶解的有机物的存在稳定了湖水中和废水中的纳米颗粒数小时。天然水体中金属氧化物纳米颗粒的命运将取决于阳离子和有机物的类型和浓度。这项研究获得的结果表明,纳米颗粒的稳定性在不同的水性条件下会发生变化,因此它们在环境中的命运也会发生变化。

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