响应面法:pH 值、沉积时间、沉积电位和阶跃电位对铅和镉的剥离峰值电流的同时影响

Nguyen Thi Lieu, Cao Van Hoang, Nguyen Thi Dieu Cam Cam, Nguyen Thi Thanh Binh, Pham Quoc Trung, Le Truong Giang
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摘要

本文报告了一种使用铂纳米花修饰的玻璃碳电极(PtNFs/GCE)测定铅和镉的简单伏安法。基于响应面方法(RSM)研究了 pH 值、沉积时间、沉积电位、阶跃电位对铅和镉的剥离峰电流的影响。RSM 分析和方差分析(ANOVA)的结果表明,实验数据可以用二次回归方程很好地描述,铅和镉的剥离峰值电流的确定系数(R2)分别为 0.935 和 0.972。统计分析结果表明,模型的拟合效果在所有情况下都很好。在工艺变量(pH 值(4.72)、沉积电位(-1.14V)、沉积时间(120s)、阶跃电位(7mV))达到最佳水平时,铅和镉的最大剥离峰值电流分别为 5.54µA 和 2.81µA。使用差分脉冲阳极剥离伏安法(DPASV)测试该模型分析 PtNFs/GC 电极上的铅和镉,结果发现铅和镉的剥离峰值电流分别为 5.43µA 和 2.75µA 。
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Simultaneous effect of pH, deposition time, deposition potential, and step potential on the stripping peak current of lead and cadmium by response surface methodology
In this paper, a simple voltammetric method has been reported for the lead, and cadmium determination using platinum nanoflowers modified glassy carbon electrode (PtNFs/GCE). The effects of pH, deposition time, deposition potential, step potential were investigated on the stripping peak current of lead, and cadmium based on response surface methodology (RSM). The results of RSM analysis and analysis of variance (ANOVA) have shown that the experimental data could be well described by quadratic regression equations with determination coefficients (R2) of 0.935, and 0.972 for the stripping peak current of lead, and cadmium, respectively. Results of the statistical analysis showed that the fit of the model was good in all cases. The maximum stripping peak current of the lead, and cadmium of 5.54µA, and 2.81µA, respectively were obtained at the optimum levels of process variables (pH (4.72), deposition potential (-1.14V), deposition time (120s), step potential (7mV)). Testing the model to analyze lead, and cadmium on the PtNFs/GC electrode using differential pulse anodic stripping voltammetry (DPASV) and obtained with the stripping peak current of the lead, and cadmium of 5.43µA, and 2.75 µA, respectively.
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