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Thermal degradation of eco-friendly alternative plastics: kinetics and thermodynamics analysis

机译:生态友好型塑料的热降解:动力学和热力学分析

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摘要

This work reports the thermal degradation behaviour, kinetics and thermodynamics of two different eco-friendly plastics, viz. non-woven plastic and corn starch-based biodegradable plastics, which are commonly used nowadays as an alternative to synthetic plastics. In this context, thermogravimetric analysis of plastic waste samples was carried out at wide range of heating rates of 10, 20, 40, 60, 80 and 100 degrees C/min in nitrogen atmosphere, and activation energy is determined by first-order model-fitting method while thermodynamic parameters are determined on the basis of Eyring theory of activated complex. The regression coefficient obtained from kinetic study of thermal degradation of these plastics best fits to the first-order kinetic equation. The kinetics and thermodynamic parameters obtained for both the plastics are found very close to each other. So, this study would help design more effective conversion system for the recycling of both the wastes together.
机译:这项工作报告了两种不同生态塑料,QIZ的热降解行为,动力学和热力学。 非织造塑料和基于玉米淀粉的可生物降解塑料,其目前通常用作合成塑料的替代品。 在这种情况下,在氮气氛中的10,20,40,60,80和100摄氏度的宽范围内进行塑料废物样品的热重分析,并通过一阶模型确定激活能量 - 拟合方法,而在热力学参数的基础上基于激活复合物的倾斜理论确定。 从这些塑料的热劣化的动力学研究获得的回归系数最适合一阶动力学方程。 为两个塑料获得的动力学和热力学参数彼此非常接近。 因此,该研究将有助于设计更有效的转换系统,以便一起回收垃圾。

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