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Kinetic Modelling of Biodegradability Data of Commercial Polymers Obtained under Aerobic Composting Conditions

机译:在有氧堆肥条件下获得的商业聚合物的生物降解性数据的动力学建模

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摘要

Methods to treat kinetic data for the biodegradation of different plastic materials are comparatively discussed. Different samples of commercial formulates were tested for aerobic biodegradation in compost, following the standard ISO14855. Starting from the raw data, the conversion vs. time entries were elaborated using relatively simple kinetic models, such as integrated kinetic equations of zero, first and second order, through the Wilkinson model, or using a Michaelis Menten approach, which was previously reported in the literature. The results were validated against the experimental data and allowed for computation of the time for half degradation of the substrate and, by extrapolation, estimation of the final biodegradation time for all the materials tested. In particular, the Michaelis Menten approach fails in describing all the reported kinetics as well the zeroth- and second-order kinetics. The biodegradation pattern of one sample was described in detail through a simple first-order kinetics. By contrast, other substrates followed a more complex pathway, with rapid partial degradation, subsequently slowing. Therefore, a more conservative kinetic interpolation was needed. The different possible patterns are discussed, with a guide to the application of the most suitable kinetic model.
机译:讨论了对不同塑料材料生物降解进行动力学数据的方法进行了相对较浅。在标准ISO14855之后,测试了在堆肥中进行了有氧生物降解的不同样品的商业配合物。从原始数据开始,使用相对简单的动力学模型来阐述转换与时间条目,例如通过威尔克坦森模型或使用先前报告的Michaelis Menten方法,例如零,第一和二阶,第一个和二阶的集成动力学方程。文献。该结果针对实验数据验证,并允许计算基板的半降解的时间,并通过外推,估计所有测试的所有材料的最终生物降解时间。特别是,MICHAELIS MENTen方法在描述所有报告的动力学以及Zeroth和二阶动力学中都失败。通过简单的一阶动力学详细描述一种样品的生物降解模式。相比之下,其他基材遵循更复杂的途径,具有快速的部分降解,随后减速。因此,需要更保守的动力学插值。讨论不同的可能模式,其中具有最合适的动力学模型的应用指南。

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