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采用简单的液相微萃取对痕量废水中和合成尿样中的苯妥英进行预浓缩,然后用气相色谱-质谱法测定。

Determination of phenytoin at trace levels in domestic wastewater and synthetic urine samples by gas chromatography-mass spectrometry after its preconcentration by simple liquid-phase microextraction.

机构信息

Faculty of Art and Science, Department of Chemistry, Yıldız Technical University, 34220, İstanbul, Türkiye.

Faculty of Pharmacy, Department of Analytical Chemistry, İstinye University, 34010, İstanbul, Türkiye.

出版信息

Environ Monit Assess. 2024 Apr 15;196(5):454. doi: 10.1007/s10661-024-12544-y.

Abstract

This work presents a sensitive and accurate analytical method for the determination of phenytoin at trace levels in domestic wastewater and synthetic urine samples by gas chromatography-mass spectrometry (GC-MS) after the metal sieve-linked double syringe liquid-phase microextraction (MSLDS-LPME) method. A metal sieve was produced in our laboratory in order to disperse water-immiscible extraction solvents into aqueous media. Univariate optimization studies for the selection of proper extraction solvent, extraction solvent volume, mixing cycle, and initial sample volume were carried out. Under the optimum MSLDS-LPME conditions, mass-based dynamic range, limit of quantitation (LOQ), limit of detection (LOD), and percent relative standard deviation (%RSD) for the lowest concentration in calibration plot were figured out to be 100.5-10964.2 μg kg, 150.6 μg kg, 45.2 μg kg1, and 9.4%, respectively. Detection power was improved as 187.7-folds by the developed MSLDS-LPME-GC-MS system while enhancement in calibration sensitivity was recorded as 188.0-folds. In the final step of this study, the accuracy and applicability of the proposed system were tested by matrix matching calibration strategy. Percent recovery results for domestic wastewater and synthetic urine samples were calculated as 95.6-110.3% and 91.7-106.6%, respectively. These results proved the accuracy and applicability of the proposed preconcentration method, and the obtained analytical results showed the efficiency of the lab-made metal sieve apparatus.

摘要

本工作提出了一种灵敏、准确的分析方法,用于通过气相色谱-质谱(GC-MS)在金属筛-linked 双注射器液相微萃取(MSLDS-LPME)方法后测定痕量水平的苯妥英在生活污水和合成尿液样品中的含量。为了将不混水的萃取溶剂分散到水介质中,我们在实验室中制备了一种金属筛。进行了单变量优化研究,以选择合适的萃取溶剂、萃取溶剂体积、混合循环和初始样品体积。在最佳的 MSLDS-LPME 条件下,得出了基于质量的动态范围、定量下限(LOQ)、检测限(LOD)和校准曲线中最低浓度的相对标准偏差(%RSD)分别为 100.5-10964.2 μg kg、150.6 μg kg、45.2 μg kg1 和 9.4%。开发的 MSLDS-LPME-GC-MS 系统将检测能力提高了 187.7 倍,同时校准灵敏度提高了 188.0 倍。在本研究的最后一步,通过基质匹配校准策略测试了所提出系统的准确性和适用性。生活污水和合成尿液样品的回收率结果分别计算为 95.6-110.3%和 91.7-106.6%。这些结果证明了该预浓缩方法的准确性和适用性,并且获得的分析结果表明了实验室自制金属筛装置的效率。

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