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首页> 外文期刊>Journal of Analytical Atomic Spectrometry >Integrated lab-on-a-valve platform incorporating a sorbent microcolumn and membraneless gas-liquid separation for cold vapor generation-atomic fluorescence spectrometric assays
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Integrated lab-on-a-valve platform incorporating a sorbent microcolumn and membraneless gas-liquid separation for cold vapor generation-atomic fluorescence spectrometric assays

机译:集成阀上实验室平台,结合了吸附剂微柱和无膜气液分离技术,用于冷蒸气发生-原子荧光光谱分析

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摘要

An automatic mesofluidic cold-vapor atomic fluorescence spectrometric method is herein developed for on-line sample processing and trace level determination of inorganic mercury capitalized on a lab-on-a-valve (LOV) manifold, which integrates a readily exchangeable commercially available sorptive micro-cartridge, a microscale reaction chamber for in-line vapour generation and a membraneless gas-liquid separator. The uptake of mercury(II) is accomplished onto the surfaces of reversed-phase co-polymeric Oasis? HLB beads, containing a balanced ratio of hydrophilic and lipophilic monomers [namely, poly(divinylbenzene-co-N-vinylpyrrolidone)], without need of any extra chelate reagent. The preconcentrated analyte is eluted by a mixture of hydrochloric and nitric acid, merged downstream with a metered volume of tin(n) chloride and transported into the integrated reaction chamber/gas-liquid separator (RC-GLS). The generated cold vapor is monitored using a peripheral atomic fluorescence spectrometer. The detection limit and repeatability (RSD) are found to be 0.04 μg L~(-1) and 3.8% (at 10.0 μg L~(-1) concentration level), respectively, for 9 mL sample. The proposed LOV mesofluidic system can also be effectively used without sorptive preconcentration by loading a metered volume of sample (≤3 mL) into the RC-GLS. The detection limit and precision for direct analysis of samples are estimated to be 0.1 μg L~(-1) and 2.9%, respectively. The applicability and reliability of the automated miniaturized method are ascertained through the analysis of spiked environmental waters.
机译:本文开发了一种自动介流冷蒸气原子荧光光谱法,用于在线样品处理和痕量水平测定,通过阀上实验室(LOV)歧管资本化,该无机汞集成了易于更换的市售吸附微管-弹药筒,用于在线蒸气生成的微型反应室和无膜气液分离器。在反相共聚绿洲的表面上完成了汞(II)的吸收。含有平衡比例的亲水性和亲脂性单体[即聚(二乙烯基苯-co-N-乙烯基吡咯烷酮)]的HLB珠,无需任何额外的螯合剂。预浓缩的分析物被盐酸和硝酸的混合物洗脱,在下游与一定量的氯化锡(n)合并,然后输送到集成的反应室/气液分离器(RC-GLS)中。使用外围原子荧光光谱仪监测产生的冷蒸气。对于9 m​​L样品,检出限和重复性(RSD)分别为0.04μgL〜(-1)和3.8%(在10.0μgL〜(-1)浓度水平下)。通过将定量的样品(≤3mL)装入RC-GLS,所提出的LOV中流体系统也可以有效地使用而无需进行吸附预浓缩。样品直接分析的检出限和精密度估计分别为0.1μgL〜(-1)和2.9%。通过对加标的环境水进行分析,可以确定自动小型化方法的适用性和可靠性。

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  • 来源
    《Journal of Analytical Atomic Spectrometry》 |2010年第11期|p.1717-1723|共7页
  • 作者单位

    Laboratory of Analytical Chemistry, Department of Chemistry, Faculty of Science, Aristotle University, Thessaloniki, Greece;

    rnDepartment of Chemistry, Faculty of Science, University of the Balearic Islands, Palma de Mallorca, Spain;

    rnDepartment of Chemistry, Faculty of Science, University of the Balearic Islands, Palma de Mallorca, Spain;

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