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静电纺丝聚冠醚复合纳米纤维作为一种吸附剂,用于在高效液相色谱分析前通过柱切换对饮用水样品中的八种双酚进行在线固相萃取。

Electrospun Polycrown Ether Composite Nanofibers as an Adsorbent for On-Line Solid Phase Extraction of Eight Bisphenols from Drinking Water Samples with Column-Switching Prior to High Performance Liquid Chromatography.

作者信息

Xu Tong, Zhang Rui, Bi Yueling, Li Jingjing, Li Xiaohuan, Chen Liqin, Fang Zhongze

机构信息

Department of Toxicology and Sanitary Chemistry, School of Public Health, Tianjin Medical University, Tianjin 300070, China.

Department of Pharmacy, Tianjin Xiqing Hospital, Tianjin 300380, China.

出版信息

Polymers (Basel). 2022 Nov 7;14(21):4765. doi: 10.3390/polym14214765.

Abstract

Bisphenols (BPs) are a class of endocrine disruptors widely existing in the environment. They have a great impact on human health owing to their environmental endocrine disrupting effects, chronic toxicity, neurotoxicity, cytotoxicity and genetic toxicity. In this paper, an on-line packed fiber solid phase extraction (PFSPE) coupling with column-switching HPLC-FLD determination method was developed for the determination of eight BPs in drinking water. The poly (dibenzo-18-crown-6-ether)/polystyrene composite nanofibers (PDB18C6/PS) were prepared by electrospinning and used as an adsorbent for the on-line PFSPE column. The on-line PFSPE-HPLC equipment contained a dual ternary pump and a switching valve to enable enrichment, purification, and analysis directly in the system. The results showed that the proposed on-line PFSPE-HPLC-FLD method realized the simultaneous separation and detection of eight BPs: BPF, BPE, BPA, BPB, BPAF, BPAP, BPC and BPZ. The curves of the target analytes were prepared with good correlation coefficient values (r2 > 0.998) in the range of 50−1000 pg/mL. The limit of detection (S/N = 3) was 20 pg/mL, the limit of quantitation (S/N = 10) is 50 pg/mL. The recoveries of eight BPs were 94.8−127.3%, and the intra-day precisions (RSD) were less than 10%. The PFSPE column made of the PDB18C6/PS composite nanofibers has stable properties and can be reused at least 200 times. In the detection of drinking water samples, BPZ was detected in nearly 80% of drinking water samples, and BPA, BPAP, BPF and BPAF were also detected in some water samples. This high level of integration and automation was achieved in pretreatment of eight BPs from water samples. The proposed simple, rapid, and practical method has been successfully applied to the detection of eight BPs in drinking water, which can provide powerful technical support for drinking water quality and safety monitoring.

摘要

双酚类化合物(BPs)是一类广泛存在于环境中的内分泌干扰物。由于其环境内分泌干扰效应、慢性毒性、神经毒性、细胞毒性和遗传毒性,它们对人类健康有很大影响。本文建立了一种在线填充纤维固相萃取(PFSPE)与柱切换HPLC-FLD联用的测定方法,用于测定饮用水中的8种双酚类化合物。通过静电纺丝制备了聚(二苯并-18-冠-6-醚)/聚苯乙烯复合纳米纤维(PDB18C6/PS),并将其用作在线PFSPE柱的吸附剂。在线PFSPE-HPLC设备包含一个双三元泵和一个切换阀,能够在系统中直接进行富集、净化和分析。结果表明,所提出的在线PFSPE-HPLC-FLD方法实现了8种双酚类化合物(BPF、BPE、BPA、BPB、BPAF、BPAP、BPC和BPZ)的同时分离和检测。目标分析物的曲线在50−1000 pg/mL范围内制备,相关系数值良好(r2>0.998)。检测限(S/N = 3)为20 pg/mL,定量限(S/N = 10)为50 pg/mL。8种双酚类化合物的回收率为94.8−127.3%,日内精密度(RSD)小于10%。由PDB18C6/PS复合纳米纤维制成的PFSPE柱性能稳定,至少可重复使用200次。在饮用水样品检测中,近80%的饮用水样品中检测到BPZ,部分水样中还检测到BPA、BPAP、BPF和BPAF。该方法在水样中8种双酚类化合物的预处理中实现了高度的集成和自动化。所提出的简单、快速且实用的方法已成功应用于饮用水中8种双酚类化合物的检测,可为饮用水质量和安全监测提供有力的技术支持。

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