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在自然和模拟阳光条件下,冷冻有利于银纳米颗粒的形成。

Freezing Facilitates Formation of Silver Nanoparticles under Natural and Simulated Sunlight Conditions.

机构信息

State Key Laboratory of Environmental Chemistry and Ecotoxicology , Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences , Beijing 100085 , China.

University of Chinese Academy of Sciences , Beijing 100049 , China.

出版信息

Environ Sci Technol. 2019 Dec 3;53(23):13802-13811. doi: 10.1021/acs.est.9b05926. Epub 2019 Nov 15.

Abstract

Freezing is essential in the light-mediated transformation of organic pollutants. However, the effects of the freezing process on the reduction of Ag by natural organic matter (NOM) remains unclear, causing significant uncertainties in the natural formation of silver nanoparticles (AgNPs). This study investigated the sunlight-induced reduction of Ag by NOM under natural or controlled freezing processes. Natural (outdoor) freezing experiments demonstrated intense aggregation and precipitation of AgNPs in three aqueous media, including a NOM solution and two river water samples, under natural sunlight irradiation. Indoor experiments under simulated sunlight irradiation and controlled freezing processes showed that freezing at -20 °C and repeated freeze-thaw cycles (-20 to 4 °C) drastically accelerated the formation and growth of AgNPs compared to maintenance at 4 °C. Finally, under the natural freezing process, commercial AgNPs were found to influence the redox reduction of Ag probably through a reduction in dissolution rates and homoaggregation with AgNPs newly formed in the river water samples. Additionally, the enhancement effect of freezing on AgNP formation was confirmed in the presence of Ag and AgNPs both at environmentally relevant concentration levels, especially upon light irradiation. This work emphasizes the importance of freezing processes on the natural formation of AgNPs.

摘要

冷冻在光介导的有机污染物转化中至关重要。然而,冷冻过程对天然有机物(NOM)还原 Ag 的影响尚不清楚,这给银纳米颗粒(AgNPs)的自然形成带来了重大不确定性。本研究调查了自然或控制冷冻过程中 NOM 对 Ag 的阳光诱导还原作用。在自然阳光下,三种水介质(包括 NOM 溶液和两种河水样本)中的天然(户外)冷冻实验表明,AgNPs 强烈聚集和沉淀。在模拟阳光照射和控制冷冻过程的室内实验中,与保持在 4°C 相比,-20°C 冷冻和反复冻融循环(-20 至 4°C)极大地加速了 AgNPs 的形成和生长。最后,在自然冷冻过程中,发现商业 AgNPs 可能通过降低溶解速率和与河水中新形成的 AgNPs 的均相聚集来影响 Ag 的氧化还原还原。此外,在环境相关浓度水平下,Ag 和 AgNPs 的存在都证实了冷冻对 AgNP 形成的增强作用,尤其是在光照下。这项工作强调了冷冻过程对 AgNPs 自然形成的重要性。

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