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通过使用一种新型自动化多注射器流动注射分析系统与气体扩散单元相结合,改进基于化学发光法测定复杂环境样品中的硫化物。

Improving the chemiluminescence-based determination of sulphide in complex environmental samples by using a new, automated multi-syringe flow injection analysis system coupled to a gas diffusion unit.

作者信息

Maya Fernando, Estela José Manuel, Cerdà Víctor

机构信息

Department of Chemistry, Faculty of Sciences, University of the Balearic Islands, Carretera de Valldemosa km 7.5, E-07122 Palma de Mallorca, Spain.

出版信息

Anal Chim Acta. 2007 Oct 3;601(1):87-94. doi: 10.1016/j.aca.2007.08.030. Epub 2007 Aug 24.

Abstract

A new, completely automated multi-syringe flow injection analysis (MSFIA) system coupled to a gas diffusion unit (GDU) was used for the chemiluminescence (CL)-based determination of sulphide ion in various types of environmental matrices with a high sensitivity and selectivity, and the need for no manual sample pretreatment. Sulphide ions are transferred as H(2)S from the donor channel of the GDU to its acceptor channel (AC) through a hydrophobic membrane inserted between the two streams. The solution held in AC replaces the initial sample matrix, which may contain a wide variety of interferents, with one suitable for the CL determination of the analyte. Once sulphide ions have been isolated from the sample matrix, they are determined by their catalytic action on the luminol/H(2)O(2) chemiluminescent reaction system. The influence of various chemical and hydrodynamic variables is discussed and the performance of the proposed system compared with that of existing flow systems for the same purpose. Under the operating conditions used, the proposed method features a linear working range of 0.02-2 mgL(-1), a limit of detection (3 sigma(blank)) of 0.003 mgL(-1), a throughput of 20 samplesh(-1) and a coefficient of variation of 2.4% (n=10) for a 1 mgL(-1) sulphide concentration. The method was used to determine sulphide in leachates and various types of water samples.

摘要

一种新型的、完全自动化的多注射器流动注射分析(MSFIA)系统与气体扩散单元(GDU)联用,用于基于化学发光(CL)法高灵敏度、高选择性地测定各类环境基质中的硫化物离子,且无需进行手动样品预处理。硫化物离子以H₂S的形式通过插入两股流之间的疏水膜从GDU的供体通道转移至其受体通道(AC)。AC中容纳的溶液将可能含有多种干扰物的初始样品基质替换为适合对分析物进行CL测定的基质。一旦硫化物离子与样品基质分离,便通过其对鲁米诺/H₂O₂化学发光反应体系的催化作用来进行测定。讨论了各种化学和流体动力学变量的影响,并将所提出系统的性能与用于相同目的的现有流动系统的性能进行了比较。在所使用的操作条件下,该方法的线性工作范围为0.02 - 2 mgL⁻¹,检测限(3σ(空白))为0.003 mgL⁻¹,分析通量为20个样品/小时,对于1 mgL⁻¹的硫化物浓度,变异系数为2.4%(n = 10)。该方法用于测定渗滤液和各类水样中的硫化物。

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