首页> 外文期刊>Journal of thermal analysis and calorimetry >Correlation between the cross-linking and degradation activation energy of cotton fabric treated with chitosan kinetic study by 'model-free' multiple heating rate methods
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Correlation between the cross-linking and degradation activation energy of cotton fabric treated with chitosan kinetic study by 'model-free' multiple heating rate methods

机译:用“无模型”多加热速率方法对壳聚糖动力学研究用棉织物交联和降解活化能量的相关性

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摘要

The different concentrations of chitosan were applied on cotton fabrics using glutaraldehyde as a cross-linking agent. The fabric samples were thermally analysed from ambient temperature to 700 degrees C at four different linear heating rates, i.e. 2.5, 5, 10 and 20 degrees C min(-1)in a flowing nitrogen medium. Non-isothermal 'model-free' multiple heating rate methods like Friedman and Kissinger-Akahira-Sunose have been employed for the determination of degradation activationenergyof the samples. The degradation mechanism based on activationenergycalculation at different conversions has been proposed and compared with the extent of cross-linking. Also the method of universal master plots has been employed on isothermal data and worked on different models and their optimizations. This research work tries to achieve a correlation between activationenergyand extent of cross-linking with the increase in chitosan concentration to the fabric.
机译:以戊二醛为交联剂,将不同浓度的壳聚糖应用于棉织物上。在流动氮气介质中,以四种不同的线性加热速率(即2.5、5、10和20摄氏度分钟(-1))从环境温度到700摄氏度对织物样品进行热分析。非等温“无模型”多加热速率法,如Friedman和Kissinger Akahira-Sunose,已被用于测定样品的降解活化能。提出了不同转化率下基于活化能计算的降解机理,并与交联程度进行了比较。此外,还对等温数据采用了通用主图法,并对不同的模型及其优化进行了研究。本研究试图得出活化能和交联程度与织物中壳聚糖浓度增加之间的相关性。

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