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Weibull mixture model for isoconversional kinetic analysis of biomass oxidative pyrolysis

机译:用于生物质氧化热解等转化动力学分析的威布尔混合物模型

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In this work, the possibility of applying the weighted sum of three cumulative Weibull distribution functions for the fitting of the kinetic conversion data of biomass oxidative pyrolysis has been investigated. The kinetic conversion data of the thermal decomposition of olive oil solid waste in oxygen atmosphere for different heating rates have been analyzed. The results have shown that the experimental data can be perfectly reproduced by the general fitting function. Therefore, it is possible to obtain the corresponding conversion rate values of biomass oxidative pyrolysis by differentiating directly the fitted kinetic conversion data. Additionally, the logistic mixture model has been applied to the same experimental data. It can be found that the newly proposed function can provide a better fit of the data than the logistic mixture model. Based on the fitting of Weibull mixture model, the kinetic triples (E, A and f(a)) of oxidative pyrolysis of olive solid waste were obtained by means of Friedman's differential isoconversional method.
机译:在这项工作中,研究了应用三个累积威布尔分布函数的加权和来拟合生物质氧化热解动力学转化数据的可能性。分析了不同加热速率下氧气中橄榄油固体废物热分解的动力学转化数据。结果表明,一般拟合函数可以完美地再现实验数据。因此,可以通过直接区分拟合的动力学转化数据来获得生物质氧化热解的相应转化率值。此外,逻辑混合模型已应用于相同的实验数据。可以发现,与逻辑混合模型相比,新提出的函数可以提供更好的数据拟合度。在Weibull混合模型拟合的基础上,采用弗里德曼差分等转换方法,得到了橄榄固体废物氧化热解的动力学三元组(E,A和f(a))。

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