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Oxidative Dissolution and the Aggregation of Silver Nanoparticles in Drinking and Natural Waters: The Influence of the Medium on the Process Development

机译:饮用水和天然水中纳米银颗粒的氧化溶解和聚集:介质对工艺开发的影响

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摘要

Currently, there are quite a few data on the ways silver nanoparticles get into the aquatic environment, on their subsequent dissolution in water, and on the release of toxic Ag+ ions. Differences in the experimental conditions hinder the determination of the basic regularities of this process. In this study, the stages of oxidative dissolution of AgNPs were studied, starting from the formation of silver hydrosol in deaerated solution, the reaction of silver with oxygen and with drinking and natural waters, the analysis of intermediate species of the oxidized colloidal particles, and the subsequent particle aggregation and precipitation, by optical spectroscopy, DLS, TEM, STEM, and EDX. In the presence of oxygen, silver nanoparticles undergo oxidative dissolution, which gives Ag+ ions and results in the subsequent aggregation of nanoparticles. The carbonate hydrosol loses stability when mixed with waters of various origin. This is due to the destruction of the electric double layer, which is caused by an increase in the solution’s ionic strength and the neutralization of the charge of the metal core. The environmental hazard of the silver nanoparticle hydrosol would noticeably change and/or decrease when the nanoparticles get into natural waters because of their fast precipitation and because the major part of released Ag+ ions form poorly soluble salts with ions present in water.
机译:目前,关于银纳米颗粒进入水生环境的方式、随后在水中溶解以及有毒 Ag+ 离子的释放,有相当多的数据。实验条件的差异阻碍了该过程基本规律的确定。在本研究中,通过光谱、DLS、TEM、 研究了 AgNPs 氧化溶解的各个阶段,从脱气溶液中银水溶胶的形成开始,银与氧气以及饮用水和天然水的反应,氧化胶体颗粒的中间物种的分析,以及随后的颗粒聚集和沉淀, STEM 和 EDX.在氧气存在下,纳米银颗粒发生氧化溶解,产生 Ag+ 离子并导致纳米颗粒随后聚集。碳酸盐水溶胶在与各种来源的水混合时失去稳定性。这是由于双电层的破坏,这是由溶液的离子强度增加和金属核电荷的中和引起的。当纳米粒子进入天然水域时,纳米银粒子水溶胶的环境危害会显着改变和/或减少,因为它们的沉淀速度快,而且释放的大部分 Ag+ 离子与水中存在的离子形成难溶性盐。

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