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首页> 外文期刊>Journal of Analytical Atomic Spectrometry >An automatic micro-sequential injection bead injection Lab-on-Valve (uSI-BI-LOV) assembly for speciation analysis of ultra trace levels of Cr(III) and Cr(VI) incorporating on-line chemical reduction and employing detection by electrothermal atomic ab
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An automatic micro-sequential injection bead injection Lab-on-Valve (uSI-BI-LOV) assembly for speciation analysis of ultra trace levels of Cr(III) and Cr(VI) incorporating on-line chemical reduction and employing detection by electrothermal atomic ab

机译:自动微顺序注射珠粒注射实验室阀门(uSI-BI-LOV)组件,用于形态分析超痕量的Cr(III)和Cr(VI),包括在线化学还原并采用电热原子检测b

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摘要

A novel,miniaturized micro-sequential injection Lab-on-Valve (muSI-LOV) system hyphenated with electrothermal atomic absorption spectrometry (ETAAS) is proposed for the automatic preconcentration and speciation analysis of Cr(III) and Cr(VI) utilizing solid-phase extraction on hydrophilic chelating Sepharose beads in the renewable bead injection (BI) mode.Exploiting on-line reduction of Cr(VI) to Cr(III),the aspirated sample solution is initially divided into two portions,which are treated simultaneously.Thus,while Cr(III) ions are separated from the matrix constituents,preconcentrated on the beads and subsequently eluted by a small volume of eluent (0.1 mol L~(-1) HNO_3) and quantified by ETAAS,the Cr(VI) ions in the second portion are mixed with a reducing agent and parked under stopped-flow conditions in an open tubular reactor attached to one of the peripheral ports of the LOV unit.Following quantification of the native Cr(III) content,the Cr(III) generated from Cr(VI) plus the original Cr(III) is subjected to the same separation/ preconcentration/elution procedure.All sample manipulations are controlled automatically by the integrated software.Under optimized chemical and physical conditions,the flow system,by using a total sample loading volume of 3.6 mL,featured retention efficiencies for Cr(III) as high as 86%,and preconcentration factors of 62 and 42 and detection limits (3 sigma) of 0.010 and 0.020 mug L~(-1) for Cr(III) and Cr(VI),respectively.The relative standard deviations were 4.7 and 4.5% (n = 6) at 0.2 mug L~(-1) for Cr(III) and Cr(VI),respectively,when employing the microcolumn in a renewable fashion,while permanently used sorbent reactors yielded repeatabilities better than 3.0%.The proposed uSI-BI-LOV analyser was successfully applied to the speciation and determination of trace levels of Cr(III) and Cr(VI) in environmental samples.The method was validated by determination of chromium species in CRM and NIST standard reference materials,and by spike recoveries of surface waters.Statistical comparison of means between experimental results and the total chromium certified values for the CRM and NIST materials revealed the non-existence of significant differences at a 95% confidence level.
机译:提出了一种新型的,微型化的,顺序电控的,实验室电连接的,采用电热原子吸收光谱法(ETAAS)联动的微型阀组(muSI-LOV)系统,用于利用固相原子自动进行Cr(III)和Cr(VI)的预富集和形态分析。可再生珠粒注射(BI)模式在亲水性螯合琼脂糖凝胶珠上进行相萃取。通过将Cr(VI)在线还原为Cr(III),将吸取的样品溶液最初分为两部分,同时进行处理。然后从基质成分中分离出Cr(III)离子,将其预先浓缩在微珠上,然后用少量洗脱液(0.1 mol L〜(-1)HNO_3)洗脱,并通过ETAAS进行定量,第二部分与还原剂混合,并在停流条件下停在与LOV装置外围端口之一相连的敞开式管式反应器中。在定量天然Cr(III)含量后,生成的Cr(III)来自Cr(VI)加上ori最终三价铬(III)的分离/预浓缩/洗脱步骤相同。所有样品的操作均由集成软件自动控制。在优化的化学和物理条件下,流通系统的总样品上样量为3.6 mL, Cr(III)的保留效率高达86%,预富集系数分别为62和42,检测限(3 sigma)为Cr(III)和Cr(VI)的0.010和0.020马克杯L〜(-1), Cr(III)和Cr(VI)在以0.2杯L〜(-1)使用时,相对标准偏差分别为4.7和4.5%(n = 6)(Cr = III和Cr(VI))吸附剂反应器的重复性优于3.0%。拟议的uSI-BI-LOV分析仪已成功用于环境样品中痕量Cr(III)和Cr(VI)的形态分析和测定。方法经铬的测定得到了验证CRM和NIST标准参考资料中的物种,以及实验结果与CRM和NIST材料的总铬认证值之间的均值统计比较表明,在95%置信水平下不存在显着差异。

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