Experimental study on the combustion characteristics of blends of sugarcane bagasse, Nanning meager-lean coal and petroleum coke

IF 1.6 4区 工程技术 Q3 Chemical Engineering
Ge Xiong, Yong Zhang, Baosheng Jin
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Abstract

Abstract Multi-fuel operation of the coal-fired boiler is considered as a promising option for boiler reformation to reduce carbon emissions while recycling solid waste. In this work, co-combustion characteristics of sugarcane bagasse, Nanning meager-lean coal and petroleum coke under different conditions were investigated in detail. And the interaction between raw materials was analyzed. Finally, the kinetic parameters were estimated by using the first-order response model. The results show that differences in petroleum coke content affect the appearance of weight loss peaks in the DTG curve. When the proportion of sugarcane bagasse is between 40 and 60%, the ignition and burnout characteristic indexes are particularly sensitive to variations in sugarcane bagasse content. Additionally, the interaction between the three raw materials is promoted as the proportion of petroleum coke is less than 40%. The kinetic analysis suggests that the increase of heating rate is conducive to the precipitation of volatiles, but there is an optimal heating rate for the fixed carbon combustion stage. The change of particle size combination has little effect on the activation energy of the volatile fraction combustion stage. This study provides a reference to ensure the stable and high-efficient operation of the coal-fired boilers during the multi-fuel combustion.
甘蔗渣与南宁贫煤、石油焦共混物燃烧特性的实验研究
摘要燃煤锅炉的多燃料运行被认为是锅炉改造的一个很有前途的选择,以减少碳排放,同时回收固体废物。详细研究了甘蔗渣、南宁贫煤和石油焦在不同条件下的共燃特性。并分析了原料之间的相互作用。最后,利用一阶响应模型对动力学参数进行了估计。结果表明,石油焦含量的差异影响了DTG曲线中失重峰的出现。当甘蔗渣的比例在40%至60%之间时,点燃和燃尽特性指标对甘蔗渣含量的变化特别敏感。此外,当石油焦的比例低于40%时,促进了三种原料之间的相互作用。动力学分析表明,加热速率的增加有利于挥发物的沉淀,但固定碳燃烧阶段存在最佳加热速率。颗粒尺寸组合的变化对挥发性馏分燃烧阶段的活化能影响不大。本研究为保证燃煤锅炉在多燃料燃烧过程中的稳定高效运行提供了参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
2.80
自引率
12.50%
发文量
107
审稿时长
3 months
期刊介绍: The International Journal of Chemical Reactor Engineering covers the broad fields of theoretical and applied reactor engineering. The IJCRE covers topics drawn from the substantial areas of overlap between catalysis, reaction and reactor engineering. The journal is presently edited by Hugo de Lasa and Charles Xu, counting with an impressive list of Editorial Board leading specialists in chemical reactor engineering. Authors include notable international professors and R&D industry leaders.
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