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在模拟汗液、洗衣洗涤剂溶液和地表水的水介质中,银纳米颗粒释放的银的顺序研究。

Sequential studies of silver released from silver nanoparticles in aqueous media simulating sweat, laundry detergent solutions and surface water.

机构信息

KTH Royal Institute of Technology, School of Chemical Science and Technology , Surface and Corrosion Science, SE-100 44 Stockholm, Sweden.

出版信息

Environ Sci Technol. 2014 Jul 1;48(13):7314-22. doi: 10.1021/es500234y. Epub 2014 Jun 19.

Abstract

From an increased use of silver nanoparticles (Ag NPs) as an antibacterial in consumer products follows a need to assess the environmental interaction and fate of their possible dispersion and release of silver. This study aims to elucidate an exposure scenario of the Ag NPs potentially released from, for example, impregnated clothing by assessing the release of silver and changes in particle properties in sequential contact with synthetic sweat, laundry detergent solutions, and freshwater, simulating a possible transport path through different aquatic media. The release of ionic silver is addressed from a water chemical perspective, compared with important particle and surface characteristics. Released amounts of silver in the sequential exposures were significantly lower, approximately a factor of 2, than the sum of each separate exposure. Particle characteristics such as speciation (both of Ag ionic species and at the Ag NP surface) influenced the release of soluble silver species present on the surface, thereby increasing the total silver release in the separate exposures compared with sequential immersions. The particle stability had no drastic impact on the silver release as most of the Ag NPs were unstable in solution. The silver release was also influenced by a lower pH (increased release of silver), and cotransported zeolites (reduced silver in solution).

摘要

随着银纳米粒子(Ag NPs)作为抗菌剂在消费品中的广泛应用,人们需要评估其可能的分散和释放对环境的相互作用和命运。本研究旨在阐明 Ag NPs 从例如浸渍衣物中可能释放的暴露情景,通过评估在与合成汗液、洗衣洗涤剂溶液和淡水的连续接触中银的释放和颗粒性质的变化,模拟通过不同水介质的可能传输途径。从水化学的角度解决了离子银的释放问题,并与重要的颗粒和表面特性进行了比较。连续暴露释放的银量明显低于每个单独暴露的总和,约为 2 倍。颗粒特性,如形态(Ag 离子物种和 Ag NP 表面的形态)影响表面上存在的可溶性银物种的释放,从而与顺序浸泡相比,在单独暴露中增加了总银释放。由于大多数 Ag NPs 在溶液中不稳定,颗粒稳定性对银释放没有剧烈影响。银释放还受到较低 pH 值(增加银释放)和共转运沸石(减少溶液中的银)的影响。

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