Sadhukhan Anup Kumar, Gupta Parthapratim, Goyal Tripurari, Saha Ranajit Kumar
Department of Chemical Engineering, National Institute of Technology, Mahatma Gandhi Avenue, Durgapur 713 209, West Bengal, India.
Bioresour Technol. 2008 Nov;99(17):8022-6. doi: 10.1016/j.biortech.2008.03.047. Epub 2008 May 15.
The primary objective of this work was to develop an appropriate model to explain the co-pyrolysis behaviour of lignite coal-biomass blends with different proportions using a thermogravimetric analyzer. A new parallel-series kinetic model was proposed to predict the pyrolysis behaviour of biomass over the entire pyrolysis regime, while a kinetic model similar to that of Anthony and Howard [Anthony, D.B., Howard, J.B., 1976. Coal devolatilization and hydrogasification. AIChE Journal 22(4), 625-656] was used for pyrolysis of coal. Analysis of mass loss history of blends showed an absence of synergistic effect between coal and biomass. Co-pyrolysis mass-loss profiles of the blends were predicted using the estimated kinetic parameters of coal and biomass. Excellent agreement was found between the predicted and the experimental results.
这项工作的主要目标是开发一个合适的模型,以使用热重分析仪来解释不同比例的褐煤与生物质共热解行为。提出了一种新的平行-串联动力学模型来预测生物质在整个热解阶段的热解行为,而使用了一个与Anthony和Howard [Anthony, D.B., Howard, J.B., 1976. Coal devolatilization and hydrogasification. AIChE Journal 22(4), 625-656] 相似的动力学模型来描述煤的热解。对共混物质量损失历史的分析表明,煤和生物质之间不存在协同效应。使用估计的煤和生物质的动力学参数预测了共混物的共热解质量损失曲线。预测结果与实验结果之间发现了极好的一致性。