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采用自制的基于溶胶-凝胶的混合模式两性离子硅胶基质固定相,并用石墨烯对其进行修饰,从环境水样中萃取选择的苯并噻唑、苯并三唑和苯磺酰胺。

Extraction of selected benzothiazoles, benzotriazoles and benzenesulfonamides from environmental water samples using a home-made sol-gel silica-based mixed-mode zwitterionic sorbent modified with graphene.

机构信息

Universitat Rovira i Virgili, Department of Analytical Chemistry and Organic Chemistry, Sescelades Campus, Marcel·lí Domingo 1, 43007 Tarragona, Spain.

Florida International University, Department of Chemistry and Biochemistry, Miami, FL 33199, USA.

出版信息

Talanta. 2023 May 1;256:124315. doi: 10.1016/j.talanta.2023.124315. Epub 2023 Jan 31.

DOI:10.1016/j.talanta.2023.124315
PMID:36739742
Abstract

A novel sol-gel silica-based mixed-mode zwitterionic sorbent modified with graphene microparticles was synthesized. Thanks to the inclusion of multiple functional groups and graphene microparticles to exert a wide range of intermolecular/interionic interactions including dipole-dipole interactions, ion-exchange interactions and π-π interactions, the sorbent showed high retention in the solid-phase extraction (SPE) of benzothiazoles, benzotriazoles and benzenesulfonamides. The SPE protocol was optimized in terms of pH, sample loading volume and elution conditions using liquid chromatography coupled to high resolution mass spectrometry (LC-HRMS). The method based on SPE followed by LC-HRMS was validated. Apparent recoveries at two levels of concentration were in the range from 48 to 85% (in most cases) in matrices such as influent wastewater, matrix effect was lower than ±30% in most cases, method detection and quantification limits being lower than 20 ng/L and repeatability and reproducibility between days were lower than 18% (n = 4). River, effluent and influent wastewaters samples were analyzed, obtaining concentrations ranging from 3 to 175 ng/L in river samples, from 12 to 499 ng/L in effluent samples and from 15 to 632 ng/L in influent samples, when the compounds were above the method quantification limits.

摘要

一种新型的基于溶胶-凝胶二氧化硅的两性离子混合模式吸附剂,用石墨烯微粒子进行了修饰。由于包含了多种官能团和石墨烯微粒子,这种吸附剂能够发挥多种分子间/离子间相互作用,包括偶极-偶极相互作用、离子交换相互作用和π-π相互作用,因此在苯并噻唑、苯并三唑和苯磺酰胺的固相萃取(SPE)中表现出了高保留性。采用液相色谱-高分辨率质谱联用(LC-HRMS),对 pH 值、样品加载体积和洗脱条件进行了优化。基于 SPE 随后进行 LC-HRMS 的方法进行了验证。在两种浓度水平下,在进水废水等基质中的回收率在 48%至 85%(大多数情况下)范围内,在大多数情况下,基质效应低于±30%,方法检测限和定量限低于 20 ng/L,日内重复性和日间重现性低于 18%(n=4)。对河流、污水和进水废水样品进行了分析,当化合物超过方法定量限后,在河流样品中检测到的浓度范围为 3 至 175 ng/L,在污水样品中为 12 至 499 ng/L,在进水样品中为 15 至 632 ng/L。

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