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Bar Adsorptive Microextraction Coated with Carbon-Based Phase Mixtures for Performance-Enhancement to Monitor Selected Benzotriazoles Benzothiazoles and Benzenesulfonamides in Environmental Water Matrices

机译:棒吸附微萃取涂有碳的相混合物用于性能增强以监测所选苯并三唑苯并噻唑和苯磺胺酰胺在环境水基质中

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摘要

In the present work we propose, for the first time, bar adsorptive microextraction coated with carbon-based phase mixtures, followed by microliquid desorption and high performance liquid chromatography-diode array detection (BAμE-μLD/HPLC-DAD) analysis, to enhance the performance of the determination of traces of benzotriazoles (BTRs), benzothiazoles (BTs), and benzenesulfonamide derivatives (BSDs) in environmental water matrices. Assessing six carbon-based sorbents (CA1, CN1, B test EUR, SX PLUS, SX 1, and R) with different selectivity properties allowed us to tailor the best phase mixture (R, 12.5%/CN1, 87.5%) that has convenient porosity, texture, and surface chemistry (pHPZC,mix ~6.5) for trace analysis of benzenesulfonamide, 1-hydroxybenzotriazole, 1H-benzotriazole, 5-methyl-1H-benzotriazole, benzothiazole, and 1,3-benzothiazol-2-ol chemicals in aqueous media. Optimized experimental conditions provided average recoveries ranging from 37.9% to 59.2%, appropriate linear dynamic ranges (5.0 to 120.0 µg L−1; r2 ≥ 0.9964), limits of detection between 1.0 and 1.4 μg L−1, and good precisions (relative standard deviation (RSD) ≤ 9.3%). The proposed methodology (BAμE(R, 12.5%/CN1, 87.5%)-μLD/HPLC-DAD) also proved to be a suitable sorption-based static microextraction alternative to monitor traces of BTRs, BTs, and BSDs in rain, waste, tap, and estuarine water samples. From the data obtained, the proposed approach showed that the BAμE technique with the addition of lab-made devices allows users to adapt the technique to use sorbents or mixtures of sorbents with the best selectivity characteristics whenever distinct classes of target analytes occur simultaneously in the same application.
机译:在本工作中,我们提出的是,首次涂覆有碳相混合物的酒吧吸附微萃取,其次是微覆玻璃解吸和高性能液相色谱 - 二极管阵列检测(BaμE-μLD/ HPLC-DAD)分析,提升在环境水矩阵中测定苯并三唑(BTRS),苯并噻唑(BTS)和苯磺胺酰胺衍生物(BSDS)的痕量痕量。评估具有不同选择性特性的六种碳基吸附剂(CA1,CN1,B检验EUR,SX PLUS,SX 1和R)使我们能够定制具有方便的最佳相混合物(R,12.5%/ CN1,87.5%)富含苯磺酰胺,1-羟基苯甲苯,1H-苯并三唑,5-甲基-1H-苯并三唑,苯并噻唑和1,3-苯并噻唑-2-醇化学物质的孔隙率,质地和表面化学(PHPZC,MIX〜6.5)水性介质。优化的实验条件提供平均回收率范围为37.9%至59.2%,适当的线性动态范围(5.0至120.0μgL-1;R2≥09964),检测限为1.0和1.4μg的L-1,良好的精度(相对标准偏差(RSD)≤9.3%)。所提出的方法(BaμE(R,12.5%/ CN1,87.5%) - μLD/ HPLC-DAD)还被证明是合适的吸附力静态微萃取替代方案,用于监测雨,废物中的BTR,BTS和BSD的痕迹,点击和偏卤素水样。从所获得的数据来看,所提出的方法表明,添加实验室的装置的BaμE技术允许用户适应使用吸附剂或吸附剂的混合物,每当目标分析物同时发生的不同类别分析时,可以使用最佳的选择性特征。同时发生应用。

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