首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >Ultrasound assisted-dispersive-ionic liquid-micro-solid phase extraction based on carboxyl-functionalized nanoporous graphene for speciation and determination of trace inorganic and organic mercury species in water and caprine blood samples
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Ultrasound assisted-dispersive-ionic liquid-micro-solid phase extraction based on carboxyl-functionalized nanoporous graphene for speciation and determination of trace inorganic and organic mercury species in water and caprine blood samples

机译:基于羧基官能化纳米孔石墨烯的超声辅助分散 - 离子液 - 微固 - 微固 - 微固 - 微固 - 微固相萃取和水分血液样本中痕量无机和有机汞种类的测定

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The carboxyl-functionalized nanoporous graphene (NG-COOH) as solid phase sorbent was prepared and investigated in a new and simple ultrasound assisted-dispersive-ionic liquid-micro-solid phase extraction (US-D-IL-mu-SPE) procedure for rapid preconcentration and speciation of trace Hg (II) and R-Hg (CH3Hg+ and C2H3Hg+) in water and caprine blood samples. Both of inorganic and organic mercury were extracted by NG-COOH at pH 8. Hydrophobic ionic liquid (IL) was used to fast trap of the mercury loaded sorbent from the sample solution. The loaded NG-COOH/IL phase was then eluted by 500 pi. of HNO3 (0.3 mol L-1) and finally Hg (II) concentration of the eluent phase was determined with flow injection-cold vapor-atomic absorption spectrometry (FI-CV-AAS) after dilution with deionized water up to 1 mL. By microwave assisted-UV system, organic mercury (R-Hg) species of the eluent were converted to Hg (II) and total Hg amount was also measured. Finally, R-Hg content was determined by mathematically subtracting the Hg (II) content from the total Hg. Under the optimal conditions, the linear range, limit of detection and preconcentration factor were obtained 0.03-6.3 mu g L-1, 0.0098 mu g L-1 and 10.4 for caprine blood samples, respectively (RSD <3%). The developed method was successfully applied to natural water and human/caprine blood samples. The Validation of methodology was confirmed by two standard reference materials (SRM). (C) 2016 Elsevier B.V. All rights reserved.
机译:制备羧基官能化的纳米多孔石墨烯(Ng-CoOH)作为固相吸附剂,并在新的和简单的超声辅助分散 - 离子液 - 微固相萃取(US-D-IL-MU-SPE)程序中进行研究水和己碱样品中痕量Hg(II)和R-Hg(CH3Hg +和C2H3HG +)的快速前浓缩和形态。通过Ng-CoOH在pH8中萃取无机和有机汞。疏水离子液体(IL)用于从样品溶液中快速捕获汞的含量的吸附剂。然后将负载的Ng-CoOH / IL相洗脱500 pi。用流量注射冷气相吸收光谱法测定HNO 3(0.3mol L-1)和最终Hg(II)浓度在用去离子水中稀释至1ml后测定洗脱液相的浓度。通过微波辅助-UV系统,将有机汞(R-HG)洗脱液的物种转化为HG(II),并测量总Hg量。最后,通过从总Hg的数学上减去Hg(II)含量来确定R-Hg含量。在最佳条件下,分别获得线性范围,检测极限,检测极限,分别用于Caprine血液样品(RSD <3%)。开发方法已成功应用于天然水和人/己定血样。通过两个标准参考资料(SRM)确认了方法论的验证。 (c)2016年Elsevier B.v.保留所有权利。

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