Enrichment of Nanoplastics in Waters Using Magnetic Solid Phase Extraction With Magnetic Biochar Adsorbents and Their Determination by Pyrolysis Gas Chromatography‐Mass Spectrometry

吸附 固相萃取 生物炭 化学 热解 萃取(化学) 磁性纳米粒子 热解-气相色谱-质谱法 质谱法 共沉淀 检出限 气相色谱法 色谱法 化学工程 纳米颗粒 无机化学 有机化学 工程类
作者
Benzhi Wang,Yingai Piao,Zixuan Zhang,Tong Han,Biao Jin,Long‐Yue Meng
出处
期刊:Journal of Separation Science [Wiley]
卷期号:47 (23): e70045-e70045 被引量:3
标识
DOI:10.1002/jssc.70045
摘要

ABSTRACT Nanoplastics (NPs) are emerging water contaminants that threaten human health and ecological security. Developing a method for detecting NPs is significant because of their biological toxicity and mobility. In this study, magnetic solid‐phase extraction (MSPE) combined with pyrolysis gas chromatography‐mass spectrometry (Py‐GC/MS) was used for the pretreatment and qualitative detection of NPs in complex matrices to avoid sample dissolution and eluent usages. The developed methodology can quickly achieve low detection limits in tap and river water, with 0.7283 and 0.6474 µg/L, respectively. To enrich NPs in water, magnetic biochars derived from cornstalks (Fe 3 O 4 /BCs, i.e., Fe 3 O 4 /YMG and Fe 3 O 4 /YMG‐ZnCl 2 ) were conveniently fabricated using activation and coprecipitation methods and employed as adsorbents for MSPE. The results indicated that the incorporation of Fe 3 O 4 into BC not only rendered it magnetic but also enhanced the diversity of its surface functional groups and adsorption sites, making it suitable for MSPE. Fe 3 O 4 /YMG‐ZnCl 2 demonstrated excellent extraction and enrichment capacity for polystyrene NPs (PSNPs) over various competitive species. Additionally, it exhibited good resistance to pH and anions, and its reaction mechanism was verified using adsorption kinetics and isothermal models. In addition, after extracting PSNPs from tap and river water using Fe 3 O 4 /YMG‐ZnCl 2 , they were successfully qualitatively analyzed by Py‐GC/MS.
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