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Chromium speciation using paper-based analytical devices by direct determination and with electromembrane microextraction

机译:通过直接测定和电磁膜微萃取使用纸张的分析装置使用纸张的分析装置

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In this study, we developed and compared three different methods for chromium speciation in water samples using microfluidic paper-based analytical devices (mu PADs). In all methods, detection was based on the complexation reaction of Cr(VI) with diphenylcarbazide on the mu PADs. Cr(III) ions were oxidized to Cr(VI) by Ce(IV) prior to colorimetric detection on the RADs. In the first method, oxidization of Cr(III) to Cr(VI) in the solution containing both trivalent and hexavalent chromium was performed using a batch procedure to obtain total chromium. A dual electromembrane extraction (DEME) technique for simultaneous preconcentration and extraction of chromium species and a single electromembrane extraction (SEME) for preconcentration and extraction of Cr(VI)/total chromium [quantified as Cr(VI) content after oxidation of Cr(III) ions to Cr(VI)] were used in the second and third methods, respectively. The electromembrane extraction was based on the electrokinetic migration of cationic Cr(III) and anionic Cr(VI) toward the cathode and anode, respectively, into the two different hollow fibres. Octanol-1 and bis(2-ethylhexyl) phosphate (DEHP) in octanol-1 (0.7% v/v) were the most suitable supported liquid membranes for extraction of Cr(VI) and Cr(III), respectively. Among these methods, SEME showed the lowest limits of detection for both analytes.
机译:在这项研究中,我们使用微流体纸的分析装置(MU PAD)开发并比较了三种不同方法用于水样中的水样中的水样。在所有方法中,检测基于Cr(VI)与亩垫上的二苯基咔唑的络合反应。在RAD上的比色性检测之前,Cr(III)离子通过Ce(IV)氧化至Cr(vi)。在第一种方法中,使用批次方法进行含有三价和六价铬的溶液中Cr(III)至Cr(VI)的氧化,得到总铬。用于同时浓缩的双电膜萃取(DEME)技术及铬物质的萃取和萃取萃取CR(VI)/总铬的萃取(SEME)[Cr(III )离子分别用于CR(VI)]分别用于第二和第三种方法。电麦粉萃取基于阳离子Cr(III)和阴离子Cr(VI)分别朝向阴极和阳极的电动迁移到两个不同的中空纤维中。 Octanol-1和双(2-乙基己基)辛醇-1(0.7%v / v)中的磷酸盐(DeHP)分别是用于提取Cr(VI)和Cr(III)的最合适的负载型液体膜。在这些方法中,SEME显示出对分析物的检测最低限制。

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