Ferracane Antonio, Manousi Natalia, Kabir Abuzar, Furton Kenneth G, Mondello Alice, Tranchida Peter Q, Zachariadis George A, Samanidou Victoria F, Mondello Luigi, Rosenberg Erwin
Department of Chemical, Biological, Pharmaceutical and Environmental Sciences, University of Messina, Messina, Italy; Institute of Chemical Technologies and Analytics, Vienna University of Technology, 1060 Vienna, Austria.
Institute of Chemical Technologies and Analytics, Vienna University of Technology, 1060 Vienna, Austria; Laboratory of Analytical Chemistry, Department of Chemistry, Aristotle University of Thessaloniki, Thessaloniki 54124, Greece.
Sci Total Environ. 2024 Jan 1;906:167353. doi: 10.1016/j.scitotenv.2023.167353. Epub 2023 Sep 27.
Magnet-integrated fabric phase sorptive extraction (MI-FPSE) is a sample preparation technique that has proved to be a powerful tool for environmental analysis. The fabrication and application of magnet-integrated dual sorbent-based FPSE membrane prepared by combining two different sol-gel sorbent-coated disks of different polarities together with a magnetic bar inserted between the two membranes to allow the stirring, was examined as novel preparation technique that not required samples pretreatments. The dual sorbent-based sample preparation platforms (made up of poly(tetrahydrofuran) and Carbowax 20M) were used for the extraction of seven classes of pesticides from ambient surface water samples prior to their determination by gas chromatography-mass spectrometry. Initially, different single and dual sol-gel sorbent-based MI-FPSE membranes were evaluated in terms of their extraction efficiency. The MI-FPSE with dual sol-gel sorbents were found to be superior to the single-materials MI-FPSE devices in terms of extraction recovery. The main parameters affecting the MI-FPSE extraction protocol (e.g., adsorption time, sample volume, stirring rate, salt addition, eluent type, desorption time and elution volume) were investigated. The selected extraction protocol enabled detection limits in the range between 0.001 and 0.16 ng mL. Furthermore, good relative standard deviation values for the intra-day and inter-day repeatability studies were obtained and were lower than 5.9 and 9.9 %, respectively. The proposed method was successfully used for the multi-class analysis of environmental surface water samples.
磁集成织物相吸附萃取(MI-FPSE)是一种样品前处理技术,已被证明是环境分析的有力工具。研究了一种新型制备技术,即将两种不同极性的溶胶-凝胶吸附剂涂层圆盘与插入两膜之间的磁棒组合在一起制备的磁集成双吸附剂基FPSE膜的制备及应用,该技术无需样品预处理。基于双吸附剂的样品前处理平台(由聚四氢呋喃和Carbowax 20M组成)用于在通过气相色谱-质谱法测定之前从环境地表水样品中萃取七类农药。最初,根据萃取效率对不同的单吸附剂和双吸附剂基MI-FPSE膜进行了评估。发现具有双溶胶-凝胶吸附剂的MI-FPSE在萃取回收率方面优于单材料MI-FPSE装置。研究了影响MI-FPSE萃取方案的主要参数(例如吸附时间、样品体积、搅拌速率、加盐量、洗脱剂类型、解吸时间和洗脱体积)。所选萃取方案的检测限在0.001至0.16 ng/mL之间。此外,日内和日间重复性研究获得了良好的相对标准偏差值,分别低于5.9%和9.9%。所提出的方法成功用于环境地表水样品的多类分析。