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基于优化的三并联分布活化能模型的钾对木质纤维素生物质热解的催化性能。

Catalytic performance of potassium in lignocellulosic biomass pyrolysis based on an optimized three-parallel distributed activation energy model.

机构信息

School of Energy Science and Engineering, Central South University, Changsha 410083, China.

School of Energy Science and Engineering, Central South University, Changsha 410083, China.

出版信息

Bioresour Technol. 2019 Jun;281:412-420. doi: 10.1016/j.biortech.2019.02.118. Epub 2019 Feb 27.

Abstract

The pyrolysis kinetics of extractive tobacco stem and pretreated samples with different KCl impregnation ratios were investigated by the thermogravimetric experiment and an optimized three-parallel distributed activation energy model (DAEM). The significant fitting deviation for the cellulose pyrolysis and the unrealistic partial fitting curve for the hemicellulose pyrolysis were mitigated during the optimization process by applying the Avrami-Erofeev-DAEM and reducing the latent interferences. The optimized parameters with good fitting qualities (about 2%) were obtained. Furthermore, based on the experimental results (changes in reaction intensity and temperature), model calculations (differences in reaction order, activation energy, volatiles fraction, etc.), and the maximum residual error analysis (with a high catalytic reaction rate) regarding different KCl-to-biomass ratios, it was found that KCl kinetically promoted the hemicellulose pyrolysis, which can be utilized as the theoretical support for the industrial application.

摘要

采用热重实验和优化的三平行分布活化能模型(DAEM)研究了萃取烟草茎和不同 KCl 浸渍比预处理样品的热解动力学。在优化过程中,通过应用 Avrami-Erofeev-DAEM 和减少潜在干扰,减轻了纤维素热解的显著拟合偏差和半纤维素热解的不合理部分拟合曲线。得到了具有良好拟合质量(约 2%)的优化参数。此外,基于实验结果(反应强度和温度的变化)、模型计算(反应级数、活化能、挥发分等的差异)以及不同 KCl-生物质比的最大残差分析(具有较高的催化反应速率),发现 KCl 动力学上促进了半纤维素的热解,可以为工业应用提供理论支持。

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