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Recursive evolving spectral projection for revealing the concentration windows of overlapping peaks in two-way chromatographic experiments

机译:递归演化光谱投影,用于揭示双向色谱实验中重叠峰的浓度窗口

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摘要

The successful resolution of overlapping chromatographic peaks using multivariate resolution methods depends on information about the concentration windows of all the chemical components being available. When conventional methods based on evolving factor analysis are used to obtain such information, a problem arises as a consequence of there not being a one-to-one correspondence between the rank maps and the elution patterns. The recursive evolving spectral projection (RESP) methodology developed in this paper offers a solution to this problem. The algorithm is initialized with a gross partition of the whole retention time region into several exclusive forward or backward informative regions. After selecting a representative spectrum from every informative region, the concentration windows of the overlapping components are determined by examining the residual plots obtained from the proposed recursive evolving spectral projection procedure. Both theoretical and experimental results demonstrate that RESP possesses the characteristics of easy implementation and good performance, which will help realize the automation of non-iterative multivariate resolution methods.
机译:使用多元拆分方法成功分离重叠色谱峰的方法取决于有关所有可用化学组分浓度窗口的信息。当使用基于进化因子分析的常规方法来获得这样的信息时,由于在等级图和洗脱模式之间不存在一一对应的结果而产生了问题。本文开发的递归演化谱投影(RESP)方法为该问题提供了解决方案。通过将整个保留时间区域的总划分为几个排他的前向或后向信息区域来初始化该算法。从每个信息区域中选择一个代表性光谱后,通过检查从建议的递归演化光谱投影程序获得的残差图来确定重叠成分的浓度窗口。理论和实验结果均表明,RESP具有易于实现,性能良好的特点,将有助于实现非迭代多元解析方法的自动化。

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