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首页> 外文期刊>Journal of separation science. >Rapid speciation of iron by on-line coupling of short column capillary electrophoresis and inductively coupled plasma mass spectrometry with the collision cell technique.
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Rapid speciation of iron by on-line coupling of short column capillary electrophoresis and inductively coupled plasma mass spectrometry with the collision cell technique.

机译:通过短柱毛细管电泳在线耦合和碰撞池技术的电感耦合等离子体质谱法对铁进行快速形态分析。

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摘要

A method for rapid speciation analysis of iron was developed by on-line coupling of short column capillary electrophoresis and inductively coupled plasma mass spectrometry. The collision cell technique was used to eliminate argon-based polyatomic interferences and a Micromist nebulizer was employed to increase the nebulization efficiency. Rapid speciation analysis of Fe(II) and Fe(III) was achieved within 1 min by short column capillary electrophoresis in a 14 cm x 50 microm id capillary at 28 kV voltage with a mixture of 15 mmol/L tris(hydroxymethyl)aminomethane + 1 mmol/L 1,10-phenanthroline + 1 mmol/L EDTA (pH 8.6) as running electrolyte. The precisions (RSD, n = 5) of migration time and peak area for Fe(II) and Fe(III) were in the range of 1.0 - 2.6 and 1.9 - 3.9%, respectively. The limits of detection (3sigma) of Fe(II) and Fe(III) were 10.0 and 8.3 microg/L, respectively.
机译:通过短柱毛细管电泳在线耦合和电感耦合等离子体质谱法开发了一种铁的快速形态分析方法。碰撞池技术用于消除基于氩的多原子干扰,而Micromist雾化器用于提高雾化效率。 Fe(II)和Fe(III)的快速形态分析通过在14 cm x 50 microm id毛细管中在28 kV电压下与15 mmol / L三(羟甲基)氨基甲烷+的混合物进行短柱毛细管电泳在1分钟内完成1 mmol / L 1,10-菲咯啉+ 1 mmol / L EDTA(pH 8.6)作为运行电解质。 Fe(II)和Fe(III)的迁移时间和峰面积的精度(RSD,n = 5)分别在1.0-2.6和1.9-3.9%的范围内。 Fe(II)和Fe(III)的检出限(3sigma)分别为10.0和8.3 microg / L。

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