首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >ORTHOGONAL ARRAY DESIGN AS A CHEMOMETRIC METHOD FOR THE OPTIMIZATION OF ANALYTICAL PROCEDURES .3. FIVE-LEVEL DESIGN AND ITS APPLICATION IN A POLAROGRAPHIC REACTION SYSTEM FOR SELENIUM DETERMINATION
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ORTHOGONAL ARRAY DESIGN AS A CHEMOMETRIC METHOD FOR THE OPTIMIZATION OF ANALYTICAL PROCEDURES .3. FIVE-LEVEL DESIGN AND ITS APPLICATION IN A POLAROGRAPHIC REACTION SYSTEM FOR SELENIUM DETERMINATION

机译:正交阵列设计作为优化分析过程的化学方法3。五级设计及其在极谱法测定硒中的应用

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The theory and methodology of a five-level orthogonal array design for the optimization of analytical procedures were developed. In the theoretical section, the construction and characteristics: of the OA(25)(5(6)) matrix are described in detail while orthogonality is proved by means of a fourth-order polynomial model. Next, the assignment of experiments in the OA(25)(5(6)) matrix is illustrated, followed by the data analysis strategy, in which significanton-significant influence for each factor is quantitatively evaluated by the analysis of variance (ANOVA) technique including the percentage contribution, and the differences among five levels for each factor that has a significant influence are determined by Duncan's multiple F-test, Finally, the response surface methodology for the OA(25)(5(6)) matrix is developed by using the equations obtained from the proof on orthogonality. In the application section, the reaction system for selenium determination by differential-pulse polarography, as a practical example, is employed to demonstrate the application of the OA(25)(5(6)) matrix in the area of analytical chemistry. [References: 33]
机译:提出了用于优化分析程序的五级正交阵列设计的理论和方法。在理论部分,详细描述了OA(25)(5(6))矩阵的结构和特征:同时通过四阶多项式模型证明了正交性。接下来,说明了在OA(25)(5(6))矩阵中进行的实验分配,然后说明了数据分析策略,其中通过方差分析(ANOVA)定量评估了每个因素的显着/非显着影响)技术(包括百分比贡献),并且通过Duncan多重F检验确定对每个具有显着影响的因素在五个水平之间的差异,最后,针对OA(25)(5(6))矩阵的响应面方法为通过使用从正交性证明中获得的方程来开发。在应用部分中,作为一个实际例子,通过微分脉冲极谱法测定硒的反应系统被用来证明OA(25)(5(6))基质在分析化学领域的应用。 [参考:33]

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