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Multivariate optimization and validation studies in on-line pre-concentration system for lead determination in drinking water and saline waste from oil refinery

机译:在线预浓缩系统中多变量优化和验证研究,用于确定炼油厂的饮用水和盐水中的铅

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The present paper proposes an on-line pre-concentration procedure for lead determination in drinking water and saline waste from oil refinery by flame atomic absorption spectrometry (FAAS). It is based on the sorption of lead (II) ions in a minicolumn of polyurethane foam loaded with 4-(2-pyridylazo)-resorcinol (PAR) reagent. The optimization step was performed using Doehlert matrix involving the variables: sampling flow rate (SR), buffer concentration (BC), pH and eluent concentration (EC). The validation process was performed considering the parameters: linearity and other characteristics of the calibration curve, analytical features of on-line system, precision, robustness, effect of other ions in the pre-concentration system and accuracy. Using the established experimental conditions, the procedure allows lead determination with detection limit (3delta/S) of 0.4 mug l(-1), quantification limit (10delta/S) of 1.4 mug l(-1), and a precision, calculated as relative standard deviation (RSD) of 5.7 (n=8) and 2.1% (n=8) for lead concentration of 5 and 50 mug l(-1), respectively. The pre-concentration factor (PF) considering the ratio among the slopes of the analytical curves with and without pre-concentration is 51. The achieved recovery for lead determination in presence of several cations demonstrated that this procedure could be applied for analysis of water samples. The accuracy was confirmed by analysis of the standard reference material NIST 1640 Trace elements in natural water. The sorption process was characterized by the Langmuir isotherm. The method was applied for lead determination in drinking water collected in Salvador City, Brazil and in saline effluent samples from oil refinery. The lead content for 16 samples of drinking water analyzed varied from 0.77 to 6.98 mug l(-1). (C) 2004 Elsevier B.V. All rights reserved.
机译:本文提出了一种在线预富集程序,通过火焰原子吸收光谱法(FAAS)测定炼油厂的饮用水和盐水中的铅。它基于在装有4-(2-吡啶基偶氮)-间苯二酚(PAR)试剂的聚氨酯泡沫的小柱中对铅(II)离子的吸附。使用涉及以下变量的Doehlert矩阵执行优化步骤:采样流速(SR),缓冲液浓度(BC),pH和洗脱液浓度(EC)。验证过程是根据以下参数进行的:校准曲线的线性和其他特征,在线系统的分析特征,精度,鲁棒性,预浓缩系统中其他离子的影响以及准确性。使用确定的实验条件,该程序可以确定铅,检测限(3delta / S)为0.4杯升(-1),定量限(10delta / S)为1.4杯升(-1),精度按铅浓度分别为5和50杯l(-1)时的相对标准偏差(RSD)分别为5.7(n = 8)和2.1%(n = 8)。考虑到有和没有预浓缩条件下分析曲线的斜率之比,预浓缩因子(PF)为51。在存在几种阳离子的情况下铅测定的回收率表明该方法可用于水样分析。通过对标准参考物质NIST 1640天然水中的痕量元素进行分析,证实了准确性。吸附过程的特征在于Langmuir等温线。该方法用于巴西萨尔瓦多市收集的饮用水和炼油厂的盐水排放样品中铅的测定。分析的16个饮用水样品中的铅含量从0.77到6.98马克杯l(-1)不等。 (C)2004 Elsevier B.V.保留所有权利。

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