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磁性纳米粒子辅助分散液液微萃取水样中的氯霉素。

Magnetic nanoparticles assisted dispersive liquid-liquid microextraction of chloramphenicol in water samples.

作者信息

Saad Salwani Md, Aling Nur Afiqah, Miskam Mazidatulakmam, Saaid Mardiana, Mohamad Zain Nur Nadhirah, Kamaruzaman Sazlinda, Raoov Muggundha, Mohamad Hanapi Nor Suhaila, Wan Ibrahim Wan Nazihah, Yahaya Noorfatimah

机构信息

Integrative Medicine Cluster, Advanced Medical and Dental Institute (AMDI), Universiti Sains Malaysia, 13200 Bertam Kepala Batas, Penang, Malaysia.

School of Chemical Sciences, Universiti Sains Malaysia, 11800 Penang, Malaysia.

出版信息

R Soc Open Sci. 2020 Apr 8;7(4):200143. doi: 10.1098/rsos.200143. eCollection 2020 Apr.

Abstract

This work describes the development of a new methodology based on magnetic nanoparticles assisted dispersive liquid-liquid microextraction (DLLME-MNPs) for preconcentration and extraction of chloramphenicol (CAP) antibiotic residues in water. The approach is based on the use of decanoic acid as the extraction solvent followed by the application of MNPs to magnetically retrieve the extraction solvent containing the extracted CAP. The coated MNPs were then desorbed with methanol, and the clean extract was analysed using ultraviolet-visible spectrophotometry. Several important parameters, such as the amount of decanoic acid, extraction time, stirring rate, amount of MNPs, type of desorption solvent, salt addition and sample pH, were evaluated and optimized. Optimum parameters were as follows: amount of decanoic acid: 200 mg; extraction time: 10 min; stirring rate: 800 rpm; amount of MNPs: 60 mg; desorption solvent: methanol; salt: 10%; and sample pH, 8. Under the optimum conditions, the method demonstrated acceptable linearity ( = 0.9933) over a concentration range of 50-1000 µg l. Limit of detection and limit of quantification were 16.5 and 50.0 µg l, respectively. Good analyte recovery (91-92.7%) and acceptable precision with good relative standard deviations (0.45-6.29%, = 3) were obtained. The method was successfully applied to tap water and lake water samples. The proposed method is rapid, simple, reliable and environmentally friendly for the detection of CAP.

摘要

本研究描述了一种基于磁性纳米粒子辅助分散液液微萃取(DLLME-MNPs)的新方法,用于预富集和萃取水中的氯霉素(CAP)抗生素残留。该方法以癸酸作为萃取溶剂,随后应用磁性纳米粒子以磁性方式回收含有萃取出来的CAP的萃取溶剂。然后用甲醇对包覆的磁性纳米粒子进行解吸,并使用紫外可见分光光度法对净化后的萃取液进行分析。对几个重要参数进行了评估和优化,如癸酸用量、萃取时间、搅拌速率、磁性纳米粒子用量、解吸溶剂类型、盐添加量和样品pH值。最佳参数如下:癸酸用量:200 mg;萃取时间:10分钟;搅拌速率:800 rpm;磁性纳米粒子用量:60 mg;解吸溶剂:甲醇;盐:10%;样品pH值:8。在最佳条件下,该方法在50 - 1000 μg l的浓度范围内表现出可接受的线性关系( = 0.9933)。检测限和定量限分别为16.5和50.0 μg l。获得了良好的分析物回收率(91 - 92.7%)和具有良好相对标准偏差(0.45 - 6.29%, = 3)的可接受精密度。该方法成功应用于自来水和湖水样品。所提出的方法对于CAP的检测快速、简单、可靠且环保。

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