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Ultrasound-Assisted Emulsification Microextraction Based on Solidification Floating Organic Drop Trace Amounts of Manganese Prior to Graphite Furnace Atomic Absorption Spectrometry Determination

机译:石墨炉原子吸收光谱法测定凝固态漂浮有机滴痕量锰的超声辅助乳化微萃取

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摘要

In the present study, an ultrasound-assisted emulsification microextraction based on solidification floating organic drop method is described for preconcentration of trace amounts of Mn (II). 2-(5-Bromo-2-pyridylazo)-5 diethylaminophenol was added to a solution of Mn+2 at ph = 10.0. After this, 1-undecanol was added to the solution as an extraction solvent, and solution was stirred. Several factors influencing the microextraction efficiency, such as pH, the amount of chelating agent, nature and volume of extraction solvent, the volume of sample solution, stirring rate, and extraction time were investigated and optimized. Then sample vial was cooled by inserting into an ice bath, and the solidified was transferred into a suitable vial for immediate melting. Finally the sample was injected into a graphite furnace atomic absorption spectrometry. Under the optimum condition the linear dynamic range was 0.50–10.0 ng mL−1 with a correlation coefficient of 0.9926, and the detection limit of 0.3 ng mL−1 was obtained. The enrichment factor was 160. The proposed method was successfully applied for separation and determination of manganese in sea, rain, tap, and river water samples.
机译:在本研究中,描述了一种基于凝固漂浮有机液滴法的超声辅助乳化微萃取法,用于痕量Mn(II)的预浓缩。将2-(5-溴-2-吡啶基偶氮)-5二乙基氨基苯酚以ph = 10.0加入到Mn + 2的溶液中。此后,将1-十一烷醇作为萃取溶剂加入到溶液中,并搅拌溶液。研究和优化了影响微萃取效率的几个因素,例如pH,螯合剂的量,萃取溶剂的性质和体积,样品溶液的体积,搅拌速率和萃取时间。然后,将样品瓶插入冰浴中冷却,然后将固化的样品转移到合适的瓶中以立即融化。最后,将样品注入石墨炉原子吸收光谱仪中。在最佳条件下,线性动态范围为0.50–10.0 ng mL-1,相关系数为0.9926,检出限为0.3 ng mL-1。富集系数为160。该方法成功用于海水,雨水,自来水和河水样品中锰的分离和测定。

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