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The Use of Factorial Design and Simplex Optimization to Improve Analytical Performance of In Situ Film Electrodes

机译:使用因子设计和单纯X优化提高原位胶片电极的分析性能

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摘要

This work presents a systematic approach to determining the significance of the individual factors affecting the analytical performance of in-situ film electrode (FE) for the determination of Zn(II), Cd(II), and Pb(II). Analytical parameters were considered simultaneously, where the lowest limit of quantification, the widest linear concentration range, and the highest sensitivity, accuracy, and precision of the method evidenced a better analytical method. Significance was evaluated by means of a fractional factorial (experimental) design using five factors, i.e., the mass concentrations of Bi(III), Sn(II), and Sb(III), to design the in situ FE, the accumulation potential, and the accumulation time. Next, a simplex optimization procedure was employed to determine the optimum conditions for these factors. Such optimization of the in situ FE showed significant improvement in analytical performance compared to the in situ FEs in the initial experiments and compared to pure in situ FEs (bismuth-film, tin-film, and antimony-film electrodes). Moreover, using the optimized in situ FE electrode, a possible interference effect was checked for different species and the applicability of the electrode was demonstrated for a real tap water sample.
机译:这项工作提出了一种系统的方法,可以确定影响原位膜电极(Fe)的分析性能的各个因素用于测定Zn(II),CD(II)和Pb(II)的性因素的重要性。同时考虑分析参数,其中定量最低限度,最宽的线性浓度范围,以及该方法的最高灵敏度,精度和精度明确了更好的分析方法。通过使用五种因素的分数阶段(实验)设计评估意义,即Bi(III),Sn(II)和SB(III)的质量浓度,以设计原位Fe,积累潜力,和累积时间。接下来,采用单纯形优化过程来确定这些因素的最佳条件。与初始实验中的原位FE相比,这种原位Fe的这种优化表现出分析性能的显着改善,并与纯原位FES(铋膜,锡膜和锑膜电极)相比。此外,使用原位Fe电极的优化,检查不同物种的可能的干扰效果,对电极的适用性进行了对真正的自来水样品进行了说明。

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