Identification of Trace Polystyrene Nanoplastics Down to 50 nm by the Hyphenated Method of Filtration and Surface-Enhanced Raman Spectroscopy Based on Silver Nanowire Membranes

拉曼光谱 过滤(数学) 聚苯乙烯 化学 跟踪(心理语言学) 纳米线 分析化学(期刊) 纳米技术 高分子化学 化学工程 材料科学 色谱法 聚合物 有机化学 物理 统计 数学 光学 生物化学 工程类 语言学 哲学
作者
Qing Yang,Shaoying Zhang,Jie Su,Shu Li,Xiaochen Lv,Jing Chen,Yongchao Lai,Jinhua Zhan
出处
期刊:Environmental Science & Technology [American Chemical Society]
卷期号:56 (15): 10818-10828 被引量:170
标识
DOI:10.1021/acs.est.2c02584
摘要

Nanoplastics are emerging pollutants that pose potential threats to the environment and organisms. However, in-depth research on nanoplastics has been hindered by the absence of feasible and reliable analytical methods, particularly for trace nanoplastics. Herein, we propose a hyphenated method involving membrane filtration and surface-enhanced Raman spectroscopy (SERS) to analyze trace nanoplastics in water. In this method, a bifunctional Ag nanowire membrane was employed to enrich nanoplastics and enhance their Raman spectra in situ, which omitted sample transfer and avoided losing smaller nanoplastics. Good retention rates (86.7% for 50 nm and approximately 95.0% for 100–1000 nm) and high sensitivity (down to 10–7 g/L for 50–1000 nm and up to 105 SERS enhancement factor) of standard polystyrene (PS) nanoplastics were achieved using the proposed method. PS nanoplastics with concentrations from 10–1 to 10–7 g/L and sizes ranging from 50 to 1000 nm were successfully detected by Raman mapping. Moreover, PS micro- and nanoplastics in environmental water samples collected from the seafood market were also detected at the μg/L level. Consequently, the proposed method provides more possibilities for analyzing low-concentration nanoplastics in aquatic environments with high enrichment efficiency, minimal sample loss, and high sensitivity.
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