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Evaluation of activation energy conformity derived from model-free non-isothermal predictions and Arrhenius isothermal results

机译:评估激活能量符合性来自无模式的非等温预测和Arrhenius等温结果

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In this study, the activation energy of HCTZ-lactose interaction was determined and compared to isothermal and non-isothermal methods. DSC data were fitted to different thermal models such as Friedman, Flynn-Wall-Ozawa and Kissinger-Akahira-Sunose, and the activation energy was calculated subsequently. Isothermal studies were performed by heat ovens, and analysis was done using high-performance liquid chromatography technique, and the activation energy (E (a)) were calculated according to Arrhenius method. To date, no practical evaluations has been performed in the literature on the conformity of these different heating methods in incompatibility studies. The kinetic data obtained from the isothermal and non-isothermal methods showed no significant difference. The current study demonstrated a good conformity between the isothermal and non-isothermal kinetic results, and thus, it can be suggested that DSC-based kinetic analysis can provide a simple, reliable and fast comparative data in the kinetic evaluation of an incompatibility seen in early stages of preformulation studies. Finally, the advantages and drawbacks of each method are fully discussed.
机译:在该研究中,测定了HCTZ-乳糖相互作用的活化能,并与等温和非等温方法进行比较。 DSC数据适用于不同的热模型,如弗里德曼,Flynn-Wall-ozawa和Kissinger-Akahira-Sunose,随后计算激活能量。通过热烤箱进行等温研究,并使用高效液相色谱技术进行分析,并根据Arrhenius方法计算激活能量(E(a))。迄今为止,在文献中没有对这些不同的加热方法在不相容性研究中的符合性的实际评估。从等温和非等温方法获得的动力学数据显示出没有显着差异。目前的研究证明了等温和非等温动力学结果之间的良好符合性,因此,可以提出基于DSC的动力学分析可以在早期看到的不相容性的动力学评估中提供简单,可靠和快速的比较数据预先形成研究的阶段。最后,完全讨论了每个方法的优点和缺点。

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