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Chemometric alternatives for resolution of classical analytical problems. Spectrophotometric determination of zirconium-hafnium mixtures

机译:解决经典分析问题的化学计量学替代方法。分光光度法测定锆ha混合物

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摘要

The determination of zirconium-hafnium mixtures is one of the most critical problem of the analytical chemistry, on account of the close similarity of their chemical properties, The spectrophotometric determination proposed by Yagodin et al. show not many practical applications due to the significant spectral interference on the 200-220 nm region, In this work we propound the use of a multivariate calibration method called partial least squares ( PLS) for colorimetric determination of these mixtures, By using PLS and 16 calibration mixtures we obtained a model which permits determination of zirconium and hafnium with accuracy of about 1-2% and 10-20%, respectively. Using conventional univariate calibration the inaccuracy of the determination is about 10-25% for zirconium and above 57% for hafnium.
机译:锆-混合物的测定由于其化学性质的相似性而成为分析化学中最关键的问题之一。Yagodin等人提出了分光光度法。由于在200-220 nm范围内存在明显的光谱干扰,因此没有显示出许多实际应用。在这项工作中,我们建议使用PLS和16等多元校正方法对这些混合物进行比色测定,该方法称为偏最小二乘(PLS)。校准混合物,我们获得了一个模型,该模型可以分别以约1-2%和10-20%的准确度测定锆和ha。使用常规的单变量校准,锆的测定误差约为10-25%,ha的测定误差约为57%。

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