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一种用于食用油样品中铜在线测定的新型自动破乳诱导流动-批次萃取平台,采用原子吸收光谱法。

A novel automatic flow-batch extraction induced by emulsion breaking platform for on-line copper determination in edible oil samples by atomic absorption spectrometry.

作者信息

Drosaki Eleni, Anthemidis Aristidis N

机构信息

Laboratory of Analytical Chemistry, Department of Chemistry, Aristotle University, Thessaloniki, 54124, Greece.

Laboratory of Analytical Chemistry, Department of Chemistry, Aristotle University, Thessaloniki, 54124, Greece.

出版信息

Talanta. 2022 Jul 1;244:123423. doi: 10.1016/j.talanta.2022.123423. Epub 2022 Apr 2.

Abstract

A novel automatic flow-batch platform coupled with atomic spectrometry for on-line acidic extraction induced by emulsion breaking with heating (FB-EIEBH) for metal determination in edible oils (corn, sunflower and olive oil), was developed for the first time. The proposed system was demonstrated for copper determination in conjunction with flame atomic absorption spectrometry. The extraction of metal is accomplished after the oil emulsification with an aqueous solution consisted of Triton X-114 and nitric acid, in an on-line programmed manner. All the main parameters affecting the extraction procedure, such as oil dilution, type and concentration of surfactant and nitric acid as well as temperature and time for the emulsion breaking and phase separation, have been investigated and optimized. A mixture of oil/xylene at 10:2 proportion was found to be appropriate to use in the flow manifold. Optimum conditions were verified employing 8.0 mL of oil sample, 990 μL of extractant solution containing 10.0% m/v Triton X-114 and 10.0% v/v HNO. Emulsion breaking and phases separation were completed at temperature 90 °C, and time 300 s. The detection and quantification limit for copper determination was found to be 5.8 μg L and 19.3 μg L, employing aqueous standards, which are proved to produce similar performance characteristics with oil-based standards. Recovery tests were executed by appropriate additions of oil-based standard solution of copper and the recoveries ranged between 94.2 and 102.4%.

摘要

首次开发了一种新型自动流动-间歇平台,该平台与原子光谱联用,用于食用油(玉米油、葵花籽油和橄榄油)中金属的在线酸性萃取(FB-EIEBH),通过加热破乳实现。该系统结合火焰原子吸收光谱法用于铜的测定。金属的萃取是在油与由Triton X-114和硝酸组成的水溶液乳化后,以在线编程的方式完成的。研究并优化了影响萃取过程的所有主要参数,如油的稀释度、表面活性剂和硝酸的类型及浓度,以及破乳和相分离的温度和时间。发现油/二甲苯以10:2比例的混合物适用于流动管路。采用8.0 mL油样、990 μL含有10.0% m/v Triton X-114和10.0% v/v HNO的萃取剂溶液验证了最佳条件。在90°C温度和300 s时间下完成破乳和相分离。采用水基标准溶液时,铜测定的检测限和定量限分别为5.8 μg/L和19.3 μg/L,事实证明其与油基标准溶液具有相似的性能特征。通过适当添加油基铜标准溶液进行回收率测试,回收率在94.2%至102.4%之间。

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