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一种用于分光光度法测定不同类型水中铅的流动系统,该系统采用离子交换进行预富集并消除干扰。

A flow system for the spectrophotometric determination of lead in different types of waters using ion-exchange for pre-concentration and elimination of interferences.

作者信息

Mesquita Raquel B R, Fernandes Sílvia M V, Rangel António O S S

机构信息

Escola Superior de Biotecnologia, Universidade Católica Portuguesa, Rua Dr. António Bernardino de Almeida, 4200-072 Porto, Portugal.

出版信息

Talanta. 2004 Feb 6;62(2):395-401. doi: 10.1016/j.talanta.2003.08.009.

Abstract

A flow system for the spectrophotometric determination of lead in natural and waste waters is proposed. The determination is based on the colorimetric reaction between malachite green and iodide, followed by the formation of a ternary complex between those reagents and lead cations. The developed flow system includes a lead pre-concentration step in a column packed with a cationic resin (Chelex 100) operating in a sequential injection mode. To improve the mixture of sample and reagents, a flow injection approach was adopted for the colorimetric determination. This way a hybrid flow system, involving both sequential and flow injection concepts was designed. Another feature of the proposed system is the efficient elimination of major interferent species, such as cadmium and copper. The elimination of cadmium interference is obtained by complexing Cd(2+) with chloride and retaining the formed negatively charged complexes in an anionic resin, AG1 X-8. As for copper, with the presence of both ionic resins as well as the conditions for cadmium elimination, it no longer acts as an interferent. Different ranges of lead concentration (50-300 and 300-1000mugl(-1)) can be determined with minor changes in the controlling software, useful for application to both natural and waste waters. Therefore, a detection limit of 25mugl(-1) was achieved. Repeatability was evaluated from 10 consecutive determinations being the results better than 4%. The recoveries of lead spikes added to the samples ranged from 93 to 102%. The sampling frequency was 17 and 24 determinations per hour, for 50-300 and 300-1000mugl(-1) ranges, respectively.

摘要

本文提出了一种用于分光光度法测定天然水和废水中铅含量的流动系统。该测定基于孔雀石绿与碘化物之间的比色反应,随后这些试剂与铅阳离子形成三元络合物。所开发的流动系统包括在填充有阳离子树脂(Chelex 100)的柱中进行铅预富集步骤,该柱以顺序注射模式运行。为了改善样品与试剂的混合,采用流动注射法进行比色测定。通过这种方式,设计了一种涉及顺序注射和流动注射概念的混合流动系统。所提出系统的另一个特点是能够有效消除主要干扰物质,如镉和铜。通过使Cd(2+)与氯离子络合并将形成的带负电荷的络合物保留在阴离子树脂AG1 X - 8中,可消除镉的干扰。至于铜,在同时存在两种离子树脂以及消除镉干扰的条件下,它不再起干扰作用。通过对控制软件进行微小更改,可测定不同浓度范围的铅(50 - 300和300 - 1000μg l(-1)),这适用于天然水和废水。因此,实现了25μg l(-1)的检测限。通过连续10次测定评估重复性,结果优于4%。添加到样品中的铅加标回收率在93%至102%之间。对于50 - 300和300 - 1000μg l(-1)的浓度范围,采样频率分别为每小时17次和24次测定。

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