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基于磁性粘土和薄荷醇的铁磁流体:在直接悬浮液滴微萃取中应用于水样和土壤样品中一些新兴污染物爆炸物的富集。

Ferrofluid of magnetic clay and menthol based deep eutectic solvent: Application in directly suspended droplet microextraction for enrichment of some emerging contaminant explosives in water and soil samples.

机构信息

Department of Chemistry, Faculty of Chemistry and Chemical Engineering, Malek Ashtar University of Technology, Tehran, Iran.

School of Chemical Engineering, College of Engineering, University of Tehran, Tehran, Iran.

出版信息

J Chromatogr A. 2018 Jun 8;1553:32-42. doi: 10.1016/j.chroma.2018.04.023. Epub 2018 Apr 12.

Abstract

In this work, for the first time, ferrofluid of magnetic montmorillonite nanoclay and deep eutectic solvent was prepared and coupled with directly suspended droplet microextraction. Incorporation of ferrofluid in a miniaturized sample preparation technique resulted in achieving high extraction efficiency while developing a green analytical method. The prepared ferrofluid has strong sorbing properties and hydrophobic characteristics. In this method, a micro-droplet of ferrofluid was suspended into the vortex of a stirring aqueous solution and after completing the extraction process, was easily separated from the solution by a magnetic rod without any operational problems. The predominant experimental variables affecting the extraction efficiency of explosives were evaluated. Under optimal conditions, the limits of detection were in the range 0.22-0.91 μg L. The enrichment factors were between 23 and 93 and the relative standard deviations were <10%. The relative recoveries were ranged from 88 to 104%. This method was successfully applied for the extraction and preconcentration of explosives in water and soil samples, followed their determination by high performance liquid chromatography with ultraviolet detection (HPLC-UV).

摘要

在这项工作中,首次制备了磁性蒙脱石纳米粘土的铁磁流体和深共晶溶剂,并将其与直接悬浮液滴微萃取相结合。将铁磁流体与微型样品制备技术结合使用,在开发绿色分析方法的同时,实现了高效率的萃取。所制备的铁磁流体具有很强的吸附性能和疏水性。在该方法中,将微滴铁磁流体悬浮在搅拌水溶液的涡流中,并且在完成萃取过程后,通过磁棒很容易与溶液分离,而没有任何操作问题。评估了影响爆炸物萃取效率的主要实验变量。在最佳条件下,检测限范围为 0.22-0.91μg/L。富集因子在 23 到 93 之间,相对标准偏差小于 10%。相对回收率在 88 到 104%之间。该方法成功地应用于水和土壤样品中爆炸物的提取和预浓缩,随后采用高效液相色谱-紫外检测(HPLC-UV)进行测定。

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