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Cellulose oxidative and hydrolytic degradation: In situ FTIR approach

机译:纤维素的氧化和水解降解:原位FTIR方法

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This study concentrated upon refining an in-situ FTIR method to study accelerated ageing of paper under controlled conditions. The standardisation method applying the CH band at 2900 cm(-1) allowed comparison of different samples from various experiments. To distinguish the features present in the spectra in the carbonyl region coming from carbonyl vibrations not disturbed by water vibrations, bound water present in paper was desorbed and the spectra were recorded at an elevated temperature. An oxidation index of paper defined as a ratio of integrals of bands at 1730 cm(-1) to that at 1620 cm(-1) has proved amenable to follow the degradation of cellulose aged under various conditions. The boundary conditions of experiments selected by us were able to discriminate between hydrolysis of glycosidic bonds and oxidation of carbon atoms in a glycopyranose anomer. Following the changes of the spectrum in the carbonyl range proceeding with oxidation time various intermediates of the cellulose partial oxidation were distinguished starting from the least oxidized monocarbonyl groups, through diketones to aldehydes and carboxyls. Assuming a parallel-consecutive mechanism of the cellulose oxidation the spectra were resolved by fitting with multiple Gaussian-Lorentzian functions. (c) 2005 Elsevier Ltd. All rights reserved.
机译:这项研究集中于改进原位FTIR方法,以研究在受控条件下纸张的加速老化。应用在2900 cm(-1)处的CH带的标准化方法可以比较来自各种实验的不同样品。为了区分羰基区域中光谱的特征是不受水振动干扰的羰基振动引起的,将纸张中存在的结合水解吸,并在高温下记录光谱。纸的氧化指数定义为在1730 cm(-1)与1620 cm(-1)的能带比值,可以随各种条件下老化的纤维素的降解而变化。我们选择的实验的边界条件能够区分糖吡喃糖异构体中糖苷键的水解和碳原子的氧化。随着氧化时间的变化,羰基范围内的光谱发生变化,从最小氧化的单羰基开始,通过二酮到醛和羧基,区分了纤维素部分氧化的各种中间体。假定纤维素氧化的平行连续机理,通过拟合多个高斯-洛伦兹函数来解析光谱。 (c)2005 Elsevier Ltd.保留所有权利。

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