首页> 外文期刊>Journal of Hazardous Materials >Automatic on-line pre-concentration system using a knotted reactor for the FAAS determination of lead in drinking water
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Automatic on-line pre-concentration system using a knotted reactor for the FAAS determination of lead in drinking water

机译:使用打结反应器的自动在线预浓缩系统,用于FAAS测定饮用水中的铅

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摘要

An automatic on-line pre-concentration system is proposed for lead determination in drinking water using flame atomic absorption spectrometry (FAAS). Lead(Ⅱ) ions are retained as the l-(2-pyridylazo)-2-naphthol (PAN) complex in the walls of a knotted reactor, followed by an elution step using 0.50 mol L~(-1) hydrochloric acid solution.rnOptimisation involving the sampling flow rate, pH and buffer concentration factors was performed using a Box-Behnken design. Other factors were established considering results of previous experiments.rnThe procedure allows the determination of lead with a 0.43 μg L~(-1) detection limit (3σ/S) and precisions (expressed as relative standard deviation) of 4.84% (N=7) and 2.9% (N=7) for lead concentrations of 5 and 25 μgL~(-1), respectively. The accuracy was confirmed by the determination of lead in the NIST SRM 1643d trace elements in natural water standard reference material. The pre-concentration factor obtained is 26.5 and the sampling frequency is 48 h~(-1). The recovery achieved for lead determination in the presence of several ions demonstrated that this procedure could be applied to the analysis of drinking water samples. The method was applied for lead determination in drinking water samples collected in Jequie City, Brazil. The lead concentration found in 25 samples were always lower than the permissible maximum levels stipulated by World Health Organization.
机译:提出了一种自动在线预浓缩系统,用于使用火焰原子吸收光谱法(FAAS)测定饮用水中的铅。铅离子以1-(2-吡啶基偶氮)-2-萘酚(PAN)配合物的形式保留在打结反应器的壁中,随后使用0.50 mol L〜(-1)盐酸溶液进行洗脱。使用Box-Behnken设计进行涉及采样流速,pH和缓冲液浓度因子的优化。根据先前的实验结果确定了其他因素。rn该程序允许以0.43μgL〜(-1)的检出限(3σ/ S)和4.84%(N = 7)的精密度(表示为相对标准偏差)测定铅。 )和铅浓度分别为5和25μgL〜(-1)时为2.9%(N = 7)。通过测定天然水标准参考物质中NIST SRM 1643d中痕量元素中的铅,证实了准确性。获得的预浓缩因子为26.5,采样频率为48 h〜(-1)。在几种离子存在下测定铅所获得的回收率表明,该方法可用于饮用水样品的分析。该方法用于巴西Jequie市收集的饮用水样品中铅的测定。 25个样品中发现的铅浓度始终低于世界卫生组织规定的最大允许浓度。

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