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Application of multivariate curve resolution-alternating least squares (MCR-ALS) for resolving pyrogallol autoxidation in weakly alkaline aqueous solutions

机译:多元曲线分辨率交替最小二乘(MCR-ALS)在弱碱性水溶液中邻苯三酚自氧化反应中的应用

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Multivariate curve resolution — alternating least squares (MCR-ALS) has been applied to data collected from UV/Vis spectrophotometric analysis of the autoxidation process of pyrogallol in weakly alkaline aqueous solutions. The MCR-ALS analysis was able to explain the autoxidation kinetics of pyrogallol at pH 7.4 and 8.0, allowing deduction of the pure spectra and concentration changes of different species present throughout the entire process. The autoxidation process at pH 7.4 was found to follow a first-order reaction model, with formation of purpurogallin as the sole and terminal product. Changing the pH to 8.0 not only accelerated autoxidation of pyrogallol to purpurogallin but also introduced a further autoxidation of purpurogallin. At pH 8.0 the process fits a model of two consecutive first-order reactions. The first step is formation of purpurogallin, which reacts in a further autoxidation to form a yellow colored substance, most probably purpurogallin polymer.
机译:多元曲线分辨率-交替最小二乘(MCR-ALS)已应用于从弱碱性水溶液中邻苯三酚的自氧化过程的UV / Vis分光光度法分析中收集的数据。 MCR-ALS分析能够解释在7.4和8.0时邻苯三酚的自氧化动力学,从而可以推断出整个过程中存在的不同物种的纯光谱和浓度变化。发现pH 7.4时的自氧化过程遵循一级反应模型,紫杉醇形成为唯一的终产物。将pH值更改为8.0不仅会加速邻苯三酚自氧化为紫杉醇的水平,而且还会进一步引起紫杉醇的自氧化作用。在pH 8.0下,该过程适合两个连续的一级反应的模型。第一步是紫杉醇的形成,紫杉醇在进一步的自氧化中反应形成黄色物质,最可能是紫杉醇的聚合物。

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