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Thermal Decomposition Behavior of Hydroxytyrosol (HT) in Nitrogen Atmosphere Based on TG-FTIR Methods

机译:基于TG-FTIR方法的氮气氛中羟基吡咯(HT)的热分解行为

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摘要

The thermal decomposition behavior of olive hydroxytyrosol (HT) was first studied using thermogravimetry (TG). Cracked chemical bond and evolved gas analysis during the thermal decomposition process of HT were also investigated using thermogravimetry coupled with infrared spectroscopy (TG-FTIR). Thermogravimetry-Differential thermogravimetry (TG-DTG) curves revealed that the thermal decomposition of HT began at 262.8 °C and ended at 409.7 °C with a main mass loss. It was demonstrated that a high heating rate (over 20 K·min−1) restrained the thermal decomposition of HT, resulting in an obvious thermal hysteresis. Furthermore, a thermal decomposition kinetics investigation of HT indicated that the non-isothermal decomposition mechanism was one-dimensional diffusion (D1), integral form g(x) = x2, and differential form f(x) = 1/(2x). The four combined approaches were employed to calculate the activation energy (E = 128.50 kJ·mol−1) and Arrhenius preexponential factor (ln A = 24.39 min−1). In addition, a tentative mechanism of HT thermal decomposition was further developed. The results provide a theoretical reference for the potential thermal stability of HT.
机译:首先使用热重率(Tg)研究橄榄羟基吡喃糖醇(HT)的热分解行为。还使用与红外光谱(TG-FTIR)耦合的热重偏转,研究了HT的热分解过程中的裂化化学键和进化气体分析。热重分析热重试剂(TG-DTG)曲线显示HT的热分解在262.8°C时开始于262.8°C,并在409.7℃下以主质量损失结束。结果表明,高加热速率(超过20 k·min-1)抑制了HT的热分解,导致了明显的热滞后。此外,HT的热分解动力学研究表明非等温分解机制是一维扩散(D1),整体形式G(X)= X2,差异形式F(x)= 1 /(2x)。采用四种组合方法计算激活能量(E = 128.50 kJ·Mol-1)和Arrhenius preexponention系数(LN A = 24.39 min-1)。此外,还进一步开发了HT热分解的暂定机制。结果为HT的潜在热稳定性提供了理论参考。

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  • 作者

    Jun-Ling Tu; Jiao-Jiao Yuan;

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  • 年度 2018
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  • 原文格式 PDF
  • 正文语种 eng
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