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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Application of factorial designs and Doehlert matrix in optimization of experimental variables associated with the preconcentration and determination of vanadium and copper in seawater by inductively coupled plasma optical emission spectrometry
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Application of factorial designs and Doehlert matrix in optimization of experimental variables associated with the preconcentration and determination of vanadium and copper in seawater by inductively coupled plasma optical emission spectrometry

机译:因子设计和Doehlert矩阵在优化与电感耦合等离子体发射光谱法测定海水中钒和铜有关的实验变量中的应用

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In the present paper a procedure for preconcentration and determination of vanadium and copper in seawater using inductively coupled plasma optical emission spectrometry (ICP OES) is proposed, which is based on solid-phase extraction of vanadium (IV), vanadium (V) and copper (II) ions as 1-(2-pyridylazo)-2-naphthol (PAN) complexes by active carbon. The optimization process was carried out using two-level full factorials and Doehlert matrix designs. Four variables (PAN mass, pH, active carbon mass and shaking time) were regarded as factors in the optimization. Results of the two-levl full factorial design 2~4 with 16 runs for vanadium extraction, based on the variance analysis (ANOVA), demonstrated that the factors pH and active carbon mass, besides the interaction (pHXactive carbonve carbon mass), are statistically significant. For copper, the ANOVA revealed that the factors PAN mass, pH and active carbon mass and the interactions (PAN massXpH) and (pHXactive carbon mass) are statistically significant. Doehlert designs were applied i ordr to determine the optimum conditions for extraction. The procedure proposed allowed the determination of vanadium and copper with detection limits (3sigma/S) of 73 and 94 ng l~(-1), respectively. The precision, calculated as relative standard deviation (R.S.D.), was 1.22 and 1.37% for 12.50 mug l~(-1) of vanadium and copper, respectively. The preconcentration factor was 80. The recovery achieved for determination of vanadium and copper in the presence of several cations demonstrated that this procedure improved the selectifity required for seawater analysis. The procedure was applied to the determination of vanadium and copper in seawater samples collected in Salvador City, Brazil. Results showed good agreement with other data reported in the literature.
机译:本文提出了一种基于固相萃取钒,钒和铜的电感耦合等离子体发射光谱法(ICP OES)进行海水中钒和铜的富集和测定的方法。 (II)与活性炭形成1-(2-吡啶基偶氮)-2-萘酚(PAN)配合物的离子。优化过程是使用两级全因子和Doehlert矩阵设计进行的。优化中考虑了四个变量(PAN质量,pH,活性炭质量和振荡时间)。基于方差分析(ANOVA)的16轮钒萃取的两级全因子设计2〜4的结果表明,除了相互作用(pHX活性碳碳质量)之外,pH和活性碳质量的因子在统计学上也是重大。对于铜,ANOVA显示,PAN质量,pH和活性炭质量以及相互作用(PAN massXpH)和(pHX活性炭质量)的因素在统计学上是显着的。应用Doehlert设计来确定提取的最佳条件。所提出的程序可以测定钒和铜,其检出限(3sigma / S)分别为73和94 ng l〜(-1)。以相对标准偏差(R.S.D.)计算的精度是,钒和铜为12.50马克杯l((-1)预浓缩系数为80。在几种阳离子存在下测定钒和铜所获得的回收率表明,该程序提高了海水分析所需的选择性。该方法用于测定巴西萨尔瓦多市海水样品中的钒和铜。结果显示与文献中报道的其他数据吻合良好。

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