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Environmental fate and behavior of silver nanoparticles in natural estuarine systems

机译:天然河豚系统中银纳米粒子的环境命运和行为

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Silver nanoparticles (AgNPs) are widely used in many consumer products, whereas their environmental behaviors in natural aquatic systems remain unknown, especially in natural brackish media. Therefore, it is urgent to investigate the environmental fate of AgNPs in natural brackish waters. Here, we investigated the stability of citrate-coated AgNPs in natural brackish water collected from 6 different sites with distinct salinities in the Xinglinwan Reservoir, located in Xiamen City, southeast China. The obtained results showed that AgNP colloids remained stable in low-salinity waters, which was mainly determined by the effects of dissolved organic matter (DOM) promoting the stability of the nanoparticles. However, the environmental fate of AgNPs in high-salinity waters was dominated by the salinity or ionic strength, especially the free ion concentrations of Cl-, SO42-, or S2-, resulting in rapid sedimentation and dissolution. In addition, both DOM and salinity contributed to the environmental behavior of AgNPs in moderate-salinity waters, ultimately resulting in either colloidal stability or sedimentation. Overall, these results may reveal that AgNPs remain relatively stable for a long period in low-salinity natural waters, and that the stability might gradually decrease as AgNPs are transferred from freshwaters through brackish waters and eventually end up in seawater along the bay. Our findings also further indicate that the toxicity and potential risks of AgNPs may present more serious threats to the environment and organisms in natural freshwaters than in natural estuarine systems or seawater. (C) 2019 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
机译:银纳米粒子(AgNP)广泛用于许多消费产品,而自然水生系统的环境行为仍然不为人知,尤其是天然咸媒体。因此,迫切需要调查天然咸水水域agnps的环境命运。在这里,我们研究了在Xinglinwan Choploir中从6种不同部位收集的自然咸水中含有柠檬酸酯的Agnps的稳定性,位于中国厦门市。所得结果表明,在低盐度水域中,AgNP胶体保持稳定,其主要由促进纳米颗粒稳定性的溶解有机物(DOM)的作用决定。然而,高盐度水域的AgNP的环境命运由盐度或离子强度构成,特别是Cl-,SO42-或S2-的自由离子浓度,导致快速沉降和溶解。此外,DOM和盐度都有助于中等 - 盐度水处理的环境行为,最终导致胶体稳定性或沉降。总体而言,这些结果可能揭示agnps在低盐度天然水中长时间保持相对稳定,并且随着agnps从咸水水域从新水域转移,最终沿着海湾的海水转移,稳定性可能逐渐减少。我们的研究结果还表明Agnps的毒性和潜在风险可能对天然淡水中的环境和生物造成比天然河水系统或海水更严重的威胁。 (c)2019中国科学院生态环境科学研究中心。 elsevier b.v出版。

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