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使用多注射器流动注射系统分光光度法测定水中的氯化物。

Spectrophotometric determination of chloride in waters using a multisyringe flow injection system.

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 Valldemossa km 7.5, E-07122 Palma de Mallorca, Illes Balears, Spain.

出版信息

Talanta. 2008 Feb 15;74(5):1534-8. doi: 10.1016/j.talanta.2007.09.031. Epub 2007 Oct 2.

Abstract

A multisyringe flow injection system (MSFIA) with spectrophotometric detection is proposed as a fast, robust and low-reagent consumption system for the determination of chloride (Cl(-)) in waters. The system is based in the classic reaction of Cl(-) with Fe(3+) and Hg(SCN)(2), but due to the hazardous properties of this last reagent, the proposed methodology has been developed with the aim to minimize the consumption of this one, consuming less than 0.05 mg of Hg for a Cl(-) determination, being the system of this type with the lowest Hg consumption. The linear working range was between 1 and 40 mg L(-1) Cl(-) and the detection limit was 0.2 mg L(-1) Cl(-). The repeatability (RSD) was 0.8% for a 10 mg L(-1) Cl(-) solution, and the injection throughput was 130 h(-1). The proposed system is compared with other chloride monitoring flow systems, this comparison is realized with a point of view of the equilibrium between the obtained analytical features and produced residues toxicity. The proposed system was applied to the determination of Cl(-) in mineral, tap and well water.

摘要

提出了一种带有分光光度检测的多注射器流动注射系统(MSFIA),作为一种用于测定水中氯化物(Cl⁻)的快速、稳健且试剂消耗低的系统。该系统基于Cl⁻与Fe³⁺和Hg(SCN)₂的经典反应,但由于最后一种试剂具有危险性,因此开发该方法的目的是尽量减少其消耗,测定Cl⁻时Hg的消耗量小于0.05 mg,是此类系统中Hg消耗量最低的。线性工作范围为1至40 mg L⁻¹ Cl⁻,检测限为0.2 mg L⁻¹ Cl⁻。对于10 mg L⁻¹ Cl⁻溶液,重复性(RSD)为0.8%,进样通量为130 h⁻¹。将所提出的系统与其他氯化物监测流动系统进行了比较,这种比较是从获得的分析特性与产生的残留毒性之间的平衡角度进行的。所提出的系统应用于矿物水、自来水和井水中Cl⁻的测定。

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