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水基气体吹扫微注射器萃取与液相色谱法联用测定海洋食品裙带菜中的烷基酚

Water-based gas purge microsyringe extraction coupled with liquid chromatography for determination of alkylphenols from sea food Laminaria japonica Aresh.

机构信息

Key Laboratory of Nature Resource of the Changbai Mountain and Functional Molecular, Yanbian University, Ministry of Education, Park Road 977, Yanji City, Jilin Province 133002, China.

出版信息

J Chromatogr A. 2013 Jul 26;1300:38-42. doi: 10.1016/j.chroma.2013.02.087. Epub 2013 Mar 6.

Abstract

A novel organic solvent-free mode of gas purge microsyringe extraction, termed water-based gas purge microsyringe extraction, was developed. This technique can directly extract target compounds in wet samples without any drying process. Parameters affecting the extraction efficiency were investigated. Under optimal extraction conditions, the recoveries of alkylphenols were between 87.6 and 105.8%, and reproducibility was between 5.2 and 12.1%. The technique was also used to determine six kinds of alkylphenols (APs) from samples of Laminaria japonica Aresh. The OP and NP were detected in all the samples, and concentrations ranged from 26.0 to 54.5ngg(-1) and 45.0-180.4ngg(-1), respectively. The 4-n-butylphenol was detected in only one sample and its concentration was very low. Other APs were not detected in L. japonica Aresh samples. The experimental results demonstrated that the technique is fast, simple, non-polluting, allows for quantitative extraction, and a drying process was not required for wet samples. Since only aqueous solution and a conventional microsyringe were used, this technique proved affordable, efficient, and convenient for the extraction of volatile and semivolatile ionizable compounds.

摘要

开发了一种新型的有机溶剂免费气体吹扫微萃取模式,称为水相气体吹扫微萃取。该技术可以直接从湿样品中提取目标化合物,无需任何干燥过程。研究了影响萃取效率的参数。在最佳萃取条件下,烷基酚的回收率在 87.6%至 105.8%之间,重现性在 5.2%至 12.1%之间。该技术还用于从裙带菜样品中测定六种烷基酚(APs)。所有样品中均检测到 OP 和 NP,浓度范围分别为 26.0-54.5ng/g 和 45.0-180.4ng/g。仅在一个样品中检测到 4-正丁基酚,其浓度非常低。其他 APs 在裙带菜样品中未检出。实验结果表明,该技术快速、简单、无污染,可定量萃取,且无需对湿样品进行干燥处理。由于仅使用水溶液和常规微注射器,因此该技术对于挥发性和半挥发性可离子化化合物的萃取既经济高效又方便。

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