State Key Laboratory of Environmental Chemistry and Ecotoxicology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, P.O. Box 2871, Beijing 100085, China.
College of Resources and Environment, University of Chinese Academy of Sciences, Beijing 100049, China.
Environ Sci Technol. 2023 Apr 25;57(16):6425-6434. doi: 10.1021/acs.est.2c08024. Epub 2023 Apr 10.
The potential risk of various silver-containing nanoparticles (AgCNPs) in soils is related to the concentration, size, and speciation, but their determination remains a great challenge. Herein, we developed an effective method for determining the particle number, size, and species of dominant AgCNPs in soils, including nanoparticles of silver (Ag NPs), silver chloride (AgCl NPs), and silver sulfide (AgS NPs). By ultrasonication wand-assisted tetrasodium pyrophosphate extraction, these AgCNPs were extracted efficiently from soils. Then, multistep selective dissolution of Ag NPs, AgCl NPs, and whole Ag NPs/AgCl NPs/AgS NPs was achieved by 1% (v/v) HO, 5% (v/v) NH·HO, and 10 mM thiourea in 2% (v/v) acetic acid, respectively. Finally, the particle number concentration and size distribution of AgCNPs in the extracts and the remaining AgCNP particle number concentration after each dissolution were determined by single-particle inductively coupled plasma mass spectroscopy for speciation of the dominant AgCNPs. AgCNPs were detected in all five soil samples with the concentrations of 0.23-8.00 × 10 particles/g and sizes of 16-110 nm. AgS NPs were the main form of AgCNPs in the examined soils with the percentage range of 53.98-69.19%, followed by AgCl NPs (11.42-23.31%) and Ag NPs (7.78-16.19%). Our method offers a new approach for evaluating the occurrence and potential risk of AgCNPs in environmental soils.
土壤中各种含银纳米颗粒(AgCNPs)的潜在风险与浓度、大小和形态有关,但它们的测定仍然是一个巨大的挑战。在此,我们开发了一种有效测定土壤中主要 AgCNPs 颗粒数、大小和形态的方法,包括纳米银(Ag NPs)、氯化银(AgCl NPs)和硫化银(AgS NPs)。通过超声 wand 辅助焦磷酸四钠提取,这些 AgCNPs 可以从土壤中有效地提取出来。然后,通过 1%(v/v)HO、5%(v/v)NH·HO 和 10 mM 硫脲在 2%(v/v)乙酸中,分别实现了 Ag NPs、AgCl NPs 和全 Ag NPs/AgCl NPs/AgS NPs 的多步选择性溶解。最后,通过单颗粒电感耦合等离子体质谱法测定提取液中 AgCNPs 的颗粒数浓度和粒径分布,以及每次溶解后剩余 AgCNP 颗粒数浓度,对主要 AgCNPs 的形态进行了分析。在所有五个土壤样品中都检测到了 AgCNPs,浓度为 0.23-8.00×10 颗粒/g,粒径为 16-110nm。AgS NPs 是所研究土壤中 AgCNPs 的主要形态,其比例范围为 53.98%-69.19%,其次是 AgCl NPs(11.42%-23.31%)和 Ag NPs(7.78%-16.19%)。我们的方法为评估环境土壤中 AgCNPs 的存在和潜在风险提供了一种新方法。