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首页> 外文期刊>Chemistry central journal >Comparative kinetic analysis on thermal degradation of some cephalosporins using TG and DSC data
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Comparative kinetic analysis on thermal degradation of some cephalosporins using TG and DSC data

机译:利用TG和DSC数据对某些头孢菌素热降解的动力学比较研究。

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Background The thermal decomposition of cephalexine, cefadroxil and cefoperazone under non-isothermal conditions using the TG, respectively DSC methods, was studied. In case of TG, a hyphenated technique, including EGA, was used. Results The kinetic analysis was performed using the TG and DSC data in air for the first step of cephalosporin’s decomposition at four heating rates. The both TG and DSC data were processed according to an appropriate strategy to the following kinetic methods: Kissinger-Akahira-Sunose, Friedman, and NPK, in order to obtain realistic kinetic parameters, even if the decomposition process is a complex one. The EGA data offer some valuable indications about a possible decomposition mechanism. The obtained data indicate a rather good agreement between the activation energy’s values obtained by different methods, whereas the EGA data and the chemical structures give a possible explanation of the observed differences on the thermal stability. A complete kinetic analysis needs a data processing strategy using two or more methods, but the kinetic methods must also be applied to the different types of experimental data (TG and DSC). Conclusion The simultaneous use of DSC and TG data for the kinetic analysis coupled with evolved gas analysis (EGA) provided us a more complete picture of the degradation of the three cephalosporins. It was possible to estimate kinetic parameters by using three different kinetic methods and this allowed us to compare the Ea values obtained from different experimental data, TG and DSC. The thermodegradation being a complex process, the both differential and integral methods based on the single step hypothesis are inadequate for obtaining believable kinetic parameters. Only the modified NPK method allowed an objective separation of the temperature, respective conversion influence on the reaction rate and in the same time to ascertain the existence of two simultaneous steps.
机译:背景研究了分别在非等温条件下分别使用TG和DSC方法对头孢氨苄,头孢氨苄和头孢哌酮的热分解。在TG的情况下,使用了包括EGA在内的联用技术。结果使用空气中的TG和DSC数据,以四个加热速率对头孢菌素分解的第一步进行了动力学分析。 TG和DSC数据均根据以下动力学方法的适当策略进行处理:基辛格-赤平-Sunose,Friedman和NPK,即使分解过程很复杂,也可以获得逼真的动力学参数。 EGA数据提供了有关可能的分解机制的一些有价值的指示。所获得的数据表明,通过不同方法获得的活化能值之间的一致性相当好,而EGA数据和化学结构则可能解释了所观察到的热稳定性差异。完整的动力学分析需要使用两种或更多种方法的数据处理策略,但是动力学方法还必须应用于不同类型的实验数据(TG和DSC)。结论同时使用DSC和TG数据进行动力学分析,再加上析出气体分析(EGA),为我们提供了更完整的三种头孢菌素降解的图像。可以通过使用三种不同的动力学方法来估算动力学参数,这使我们能够比较从不同的实验数据TG和DSC获得的Ea值。热降解是一个复杂的过程,基于单步假设的微分和积分方法均不足以获得可信的动力学参数。只有改进的NPK方法才能客观地分离温度,相应的转化率对反应速率产生影响,并同时确定两个同时存在的步骤。

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