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一种基于萘甲酸的新型离子液体混合分散剂,结合超声强化原位复分解反应,用于牛奶和鸡蛋中三氯生和甲基三氯生的预浓缩。

A novel naphthalene carboxylic acid-based ionic liquid mixed disperser combined with ultrasonic-enhanced in-situ metathesis reaction for preconcentration of triclosan and methyltriclosan in milk and eggs.

机构信息

School of Environmental Science and Engineering, Suzhou University of Science and Technology, Suzhou 215009, China.

Key Laboratory of Watershed Sciences and Health of Zhejiang Province, Wenzhou Medical University, Wenzhou 325035, China.

出版信息

Ultrason Sonochem. 2018 Oct;47:57-67. doi: 10.1016/j.ultsonch.2018.04.006. Epub 2018 Apr 26.

Abstract

A microextraction method was developed based on utilization of a novel ionic liquid (IL) [CMIM][NCA] as disperser and conventional ILs as extractor (IL-IL-DLLME). This method was integrated with an in-situ metathesis reaction to achieve high extraction efficiency by eliminating the loss of analytes in the discarded disperser after microextraction. Ultrasonic energy was compared to traditional mechanical shaking to accelerate the in-situ metathesis reaction. A 3-min ultrasonic treatment provided similar extraction efficiency as a 120-min mechanical shaking. Due to their strong acidity and lower solubility than traditional hydrophilic ILs, utilization of [CMIM][NCA] in the IL-IL-DLLME procedure increased extraction recoveries (ERs) for triclosan (TCS) and methyltriclosan (MTCS) by 10-12% and also avoided an extra pH adjustment step. A series of operational parameters were optimized using single-factor screening and central composite design as follows: 65 µL extraction solvent, 150 µL [CMIM][BF] and [CMIM][NCA] (132/18, v/v, μL) as dispersive solvent, 0.16 g NHPF and 3.3 min ultrasonic time. Under optimized conditions with a fortification of 100 µg kg, ERs were 92.6-93.4% for TCS and 92.7-94.2% for MTCS in bovine milk and chicken egg samples. LODs for TCS and MTCS were 0.16-0.24 µg kg and the enrichment factors were 21.8-23.1. Inter- and intra-day precisions had relative standard deviations of 3.3-5.4% for the optimized method. Overall, this newly developed IL-IL-DLLME method was effective for detecting trace levels of TCS and MTCS in real-world, animal-based foods. Prominent advantages of the new method include high precision and accuracy, high extraction efficiency, simple analytical operations, and no use of organic solvents making the procedure environmentally benign.

摘要

建立了一种基于新型离子液体(IL)[CMIM][NCA]作为分散剂和常规 IL 作为萃取剂(IL-IL-DLLME)的微萃取方法。该方法与原位复分解反应相结合,通过消除微萃取后废弃分散剂中分析物的损失,实现了高萃取效率。与传统机械搅拌相比,超声能量可加速原位复分解反应。3 分钟的超声处理提供了与 120 分钟机械搅拌相似的萃取效率。由于[CMIM][NCA]具有强酸性和比传统亲水性 IL 更低的溶解度,因此在 IL-IL-DLLME 过程中使用[CMIM][NCA]可将三氯生(TCS)和甲基三氯生(MTCS)的萃取回收率(ER)提高 10-12%,并且还避免了额外的 pH 调节步骤。通过单因素筛选和中心复合设计优化了一系列操作参数,如下所示:65µL 萃取溶剂、150µL [CMIM][BF]和[CMIM][NCA](132/18,v/v,µL)作为分散溶剂、0.16g NHPF 和 3.3 分钟超声时间。在优化条件下,牛奶奶和鸡蛋样品中 TCS 的 ER 为 92.6-93.4%,MTCS 的 ER 为 92.7-94.2%,TCS 和 MTCS 的检出限为 0.16-0.24µg•kg,富集因子为 21.8-23.1。优化方法的日内和日间精密度的相对标准偏差为 3.3-5.4%。总的来说,这种新开发的 IL-IL-DLLME 方法可有效检测实际动物源性食品中痕量 TCS 和 MTCS。新方法的突出优点包括高精密性和准确性、高萃取效率、简单的分析操作以及不使用有机溶剂,使该过程具有环境友好性。

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