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On-line solid-phase extraction and multisyringe flow injection analysis of Al(III) and Fe(III) in drinking water

机译:饮用水中Al(III)和Fe(III)的在线固相萃取和多注射器流动注射分析

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摘要

A new analytical method was developed for on-line monitoring of residual coagulants (aluminium and iron salts) in potable water. The determination was based on a sequential procedure coupling an extraction/enrichment step of the analytes onto a modified resin and a spectrophotometric measurement of a surfactant-sensitized binary complex formed between eluted analytes and Chrome Azurol S. The optimization of the solid phase extraction was performed using factorial design and a Doehlert matrix considering six variables: sample percolation rate, sample metal concentration, flow-through sample volume (all three directly linked to the extraction step), elution flow rate, concentration and volume of eluent (all three directly linked to the elution step). A specific reagent was elaborated for sensitive and specific spectrophotometric determination of Al(III) and Fe(III), by optimizing surfactant and ligand concentrations and buffer composition. The whole procedure was automated by a multisyringe flow injection analysis (MSFIA) system. Detection limits of 4.9 and 5.6 μg L?1 were obtained for Al(III) and Fe(III) determination , respectively, and the linear calibration graph up to 300 μg L?1 (both for Al(III) and Fe(III)) was well adapted to the monitoring of drinking water quality. The system was successfully applied to the on-site determination of Al(III) and Fe(III) at the outlet of two water treatment units during two periods of the year (winter and summer conditions).
机译:开发了一种新的分析方法,用于在线监测饮用水中的残留凝结剂(铝和铁盐)。该测定是基于将分析物的提取/富集步骤结合到改性树脂上并通过分光光度法测定洗脱的分析物与Azurol S之间形成的表面活性剂敏化的二元络合物的顺序程序进行的。固相萃取的优化得以实现使用析因设计和Doehlert矩阵考虑六个变量:样品渗滤率,样品金属浓度,流通样品体积(所有三个都直接与萃取步骤相关),洗脱流速,洗脱液的浓度和体积(所有三个都与样品直接相关)洗脱步骤)。通过优化表面活性剂和配体的浓度以及缓冲液的组成,精心设计了一种用于灵敏和特异性分光光度法测定Al(III)和Fe(III)的特定试剂。整个过程通过多注射器流动注射分析(MSFIA)系统实现自动化。测定Al(III)和Fe(III)的检出限分别为4.9和5.6μgL?1 ,线性校正图最高为300μgL?1 (对于Al (III)和Fe(III))非常适合监测饮用水质量。该系统已成功应用于一年中两个时期(冬季和夏季条件)在两个水处理单元出口处的Al(III)和Fe(III)现场测定。

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