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首页> 外文期刊>Food analytical methods >Developed of a Green Water Switchable Liquid-Liquid Microextraction Method for Assessment of Selenium in Food and Soft Drink Samples by Using Hydride Generation Atomic Absorption Spectrometry
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Developed of a Green Water Switchable Liquid-Liquid Microextraction Method for Assessment of Selenium in Food and Soft Drink Samples by Using Hydride Generation Atomic Absorption Spectrometry

机译:通过使用氢化物产生原子吸收光谱法评估食品和软饮料样品中硒的绿色可切换液 - 液微萃取方法。

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摘要

In the current study, we have developed a green water switchable liquid-liquid microextraction method for separation, preconcentration, and estimation of selenium concentration in the real samples. First time introducing the water switchable liquid-liquid microextraction method to determine the trace level selenium in different food and soft drink samples. Water switchable medium was formed by the reaction of diethylenetriamine base when exposed to uniformed pressure of carbon dioxide. After being exposed to carbon dioxide, water switchable medium reversibly exchanges in two separated aqueous and organic phases. Advantages of carbon dioxide uses are cheap, environmental friendly, non-accumulation, removable, and require the opaque materials for operating container. Water switchable phenomena occurred easily from low polarity to high polarity organic solvent. Experimental variables of the water switchable liquid-liquid microextraction (LLME) method were optimized into its optimum values such as pressure, pH, centrifugation speed, extraction time, and concentration of complexing agent. The certified reference material of Canada Lake Water (TMDA-53.3) and CS-M-3 Mushroom (Boletus edulis) was used for validation of the present water switchable LLME method. Enhancement factor and limit of detection were obtained 85.5 and 0.018 mu g kg(-1), respectively. Developed green water switchable LLME method was successfully applied for assessment of total selenium in tomato, pumpkin seed, mushroom, garlic, rice, pistachio, chickpea, hazelnut, walnut, apple juice, and ice tea samples.
机译:在目前的研究中,我们开发了一种用于分离,预浓缩和硒浓度的绿色可切换液体微萃取方法,以及真实样品中的硒浓度。首次引入水可切换液体微萃取方法,以确定不同食品和软饮料样品中的痕量硒。在暴露于二氧化碳均匀压力时,通过二亚乙基三胺基碱的反应形成水可切换介质。在暴露于二氧化碳后,可在两个分离的水性和有机相中可逆地交换水可切换介质。二氧化碳使用的优点是便宜,环保,非积累,可拆卸,并要求操作容器的不透明材料。从低极性到高极性有机溶剂的低极性发生水切换现象。水可切换液 - 液微萃取(LLME)方法的实验变量被优化为其最佳值,例如压力,pH,离心速度,提取时间和络合剂的浓度。加拿大湖水(TMDA-53.3)和CS-M-3蘑菇(Boletus Edulis)的认证参考资料用于验证当前的可水切换LLME方法。获得了85.5和0.018μg(-1)的增强因子和检测极限。开发的绿色可切换LLME方法已成功应用于番茄,南瓜种子,蘑菇,大蒜,水稻,开心果,鹰嘴豆,榛子,核桃,苹果汁和冰茶样品中的总硒评估。

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