首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >SIMULTANEOUS DETERMINATION OF CR(III), FE(III), CU(II) AND PB(II) AS UV-ABSORBING EDTA COMPLEXES BY CAPILLARY ZONE ELECTROPHORESIS
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SIMULTANEOUS DETERMINATION OF CR(III), FE(III), CU(II) AND PB(II) AS UV-ABSORBING EDTA COMPLEXES BY CAPILLARY ZONE ELECTROPHORESIS

机译:毛细管区带电泳同时测定紫外吸收EDTA络合物中的CR(III),FE(III),CU(II)和PB(II)

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Capillary zone electrophoresis (CZE) with on-column UV detection was used to separate and determine Cr(III), Fe(III), Cu(II) and Pb(II) complexes with EDTA. Distribution species-pH diagrams showed that, under the experimental conditions chosen (pH 5.5), [Me-EDTA](-) and [Me-EDTA](2-) species for trivalent and divalent metals, respectively, were present. By adding a cationic surfactant, such as TTAB (tetradecyltrimethylammonium bromide), to the background electrolyte, an improvement in the peak shapes and shorter migration times were achieved. The chelating complexes showed the following order of mobility in electropherograms: [EDTA](2-) > [Cu-EDTA](2-) > [Pb-EDTA](2-) > [Cr-EDTA](-) > [Fe-EDTA](-). At 225 nm under a negative applied voltage of 30 kV, using a capillary of 30.5 cm effective length, in 0.1 M acetate buffer and 0.1 mM TTAB as carrier solution, the complexes were determined within 6 min, but the resolution of the Cu(II) and Pb(II) chelates was poor. However, by using a capillary of 60 cm effective length, simultaneous separation of these chelates the EDTA was achieved. Factorial design was used to investigate the effects of chromium, excess of EDTA and boiling time of the solution on the formation of the [Cr-EDTA](-) complex. A fitting model was found in which the EDTA concentration was a significant factor. The detection limits of all chelates were in the range 6-27 mu M. [References: 31]
机译:柱上紫外检测的毛细管区带电泳(CZE)用于分离和测定EDTA与Cr(III),Fe(III),Cu(II)和Pb(II)的配合物。分布种类-pH图显示,在所选的实验条件下(pH 5.5),分别存在三价和二价金属的[Me-EDTA](-)和[Me-EDTA](2-)种类。通过向背景电解质中添加阳离子表面活性剂,例如TTAB(十四烷基三甲基溴化铵),可以实现峰形的改善和更短的迁移时间。螯合配合物在电泳图中显示出以下迁移率顺序:[EDTA](2-)> [Cu-EDTA](2-)> [Pb-EDTA](2-)> [Cr-EDTA](-)> [ Fe-EDTA](-)。在225 nm的负电压下(30 kV),使用有效长度为30.5 cm的毛细管,在0.1 M乙酸盐缓冲液和0.1 mM TTAB作为载剂溶液中,在6分钟内测定了配合物,但Cu(II )和Pb(II)螯合物很差。但是,通过使用有效长度为60 cm的毛细管,可以同时分离出这些螯合物EDTA。析因设计用于研究铬,过量EDTA和溶液的沸腾时间对[Cr-EDTA](-)配合物形成的影响。发现拟合模型,其中EDTA浓度是重要因素。所有螯合物的检出限在6-27μM范围内。[参考:31]

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