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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Development of a modified independent parallel reactions kinetic model and comparison with the distributed activation energy model for the pyrolysis of a wide variety of biomass fuels
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Development of a modified independent parallel reactions kinetic model and comparison with the distributed activation energy model for the pyrolysis of a wide variety of biomass fuels

机译:改进的独立平行反应动力学模型的开发,并与用于多种生物质燃料热解的分布活化能模型进行比较

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摘要

The pyrolysis of six waste biomass samples was studied and the fuels were kinetically evaluated. A modified independent parallel reactions scheme (IPR) and a distributed activation energy model (DAEM) were developed and their validity was assessed and compared by checking their accuracy of fitting the experimental results, as well as their prediction capability in different experimental conditions. The pyrolysis experiments were carried out in a thermogravimetric analyzer and a fitting procedure, based on least squares minimization, was performed simultaneously at different experimental conditions. A modification of the IPR model, considering dependence of the pre-exponential factor on heating rate, was proved to give better fit results for the same number of tuned kinetic parameters, comparing to the known IPR model and very good prediction results for stepwise experiments. Fit of calculated data to the experimental ones using the developed DAEM model was also proved to be very good. (C) 2015 Elsevier Ltd. All rights reserved.
机译:研究了六个废物生物质样品的热解过程,并对燃料进行了动力学评估。开发了改进的独立平行反应方案(IPR)和分布式活化能模型(DAEM),并通过检查其拟合实验结果的准确性以及在不同实验条件下的预测能力来评估和比较其有效性。热解实验在热重分析仪中进行,并且基于最小二乘最小化的拟合过程在不同的实验条件下同时进行。与已知的IPR模型相比,对IPR模型的修改(考虑到前指数因子对加热速率的依赖性)被证明可以在相同数量的动力学参数的情况下提供更好的拟合结果,并且对于逐步实验具有很好的预测结果。使用开发的DAEM模型将计算数据拟合到实验数据也被证明是非常好的。 (C)2015 Elsevier Ltd.保留所有权利。

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