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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Speciation of inorganic arsenic in a sequential injection dual mini-column system coupled with hydride generation atomic fluorescence spectrometry
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Speciation of inorganic arsenic in a sequential injection dual mini-column system coupled with hydride generation atomic fluorescence spectrometry

机译:连续进样双小柱系统中氢化物发生原子荧光光谱法中无机砷的形态

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摘要

The separation and speciation of inorganic arsenic(III) and arsenic(V) are facilitated by employing a novel sequential injection system incorporating two mini-columns followed by detection with hydride generation atomic fluorescence spectrometry. An octadecyl immobilized silica mini-column is used for selective retention of the complex between As(III) and APDC, while the sorption of As(V) is readily accomplished by a 717 anion exchange resin mini-column. The retained As(III)-PDC complex and As(V) are effectively eluted with a 3.0 mol L-1 hydrochloric acid solution as stripping reagent, which well facilitates the ensuing hydride generation process via reaction with tetra hydroborate. With a sampling volume of 1.0 mL and an eluent volume of 100 mu L for both species, linear ranges of 0.05-1.5 mu g L-1 for As(III) and 0.1-1.5 mu g L-1 for As(V) are obtained, along with enrichment factors of 7.0 and 8.2, respectively. Precisions of 2.8% for As(III) and 2.9% for As(V) are derived at the concentration level of 1.0 mu g L-1. The practical applicability of the procedure has been demonstrated by analyzing a certified reference material of riverine water (SLRS-4), in addition to spiking recovery in a lake water sample matrix.
机译:无机砷(III)和砷(V)的分离和形态形成是通过采用一种新颖的顺序注入系统实现的,该系统结合了两个微型柱,然后用氢化物发生原子荧光光谱法进行检测。十八烷基固定的硅胶微型柱用于选择性保留As(III)和APDC之间的配合物,而As(V)的吸附可通过717阴离子交换树脂微型柱轻松实现。保留的As(III)-PDC配合物和As(V)可用3.0 mol L-1盐酸溶液作为汽提剂有效洗脱,这很容易通过与氢硼酸四氢盐反应来促进随后的氢化物生成过程。两种样品的样品体积均为1.0 mL,洗脱液体积为100μL,As(III)的线性范围为0.05-1.5μgL-1,As(V)的线性范围为0.1-1.5μgL-1获得的富集因子分别为7.0和8.2。在1.0μg L-1的浓度下,As(III)的精密度为2.8%,As(V)的精密度为2.9%。除了分析湖水样品基质中的加标回收率外,还通过分析经认证的河水参考物质(SLRS-4)证明了该程序的实际适用性。

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