Numerical analysis and research on coal pyrolysis characteristics in BGL gasification process

Research on the patterns of the internal temperature change and volatile analysis on the law of coal particle pyrolysis are essential to optimizing the furnace structure and operating parameters, while further improves the economy of BGL coal gasification.Based on the analysis of BGL coal gasificati...

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Main Authors: Zhang Lihe, Xu Deping, Xu Zhengang, Wang Yonggang
Format: Article
Language:English
Published: Emergency Management Press 2023-04-01
Series:矿业科学学报
Subjects:
Online Access:http://kykxxb.cumtb.edu.cn/en/article/doi/10.19606/j.cnki.jmst.2023.02.010
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author Zhang Lihe
Xu Deping
Xu Zhengang
Wang Yonggang
author_facet Zhang Lihe
Xu Deping
Xu Zhengang
Wang Yonggang
author_sort Zhang Lihe
collection DOAJ
description Research on the patterns of the internal temperature change and volatile analysis on the law of coal particle pyrolysis are essential to optimizing the furnace structure and operating parameters, while further improves the economy of BGL coal gasification.Based on the analysis of BGL coal gasification pyrolysis process, this study established the coal particle pyrolysis model.The decoupling algorithm was sadopted in solving the model, in which the heat transfer model adopted the chasing method, the pyrolysis kinetic model adopted the fourth-order single-step push-up method, and the ambient temperature was calculated by the moving bed one-dimensional model.The rationality of the model was verified by experimental data in literature.The simulation results show that the final pyrolysis temperature of BGL coal gasification is higher, and the temperature gradient inside the particles changes greatly.The particle size is 10 mm, the calculated final pyrolysis temperature is 1 372 K, and the calculated peak temperature difference between the surface and center of coal particles is 338 K. Taking the particle size of 40 mm, the corresponding calculated values are 1 412 K and 381 K respectively; The process of coal particle volatilization is similar to that of gas-solid non-catalytic condensation reaction, which proves that the coal pyrolysis process is controlled by heat transfer process.Pyrolysis kinetics is described by FZ general pyrolysis model, which has better adaptability than distributed activation energy model.When the moving bed one-dimensional model predicts the height of BGL coal gasification pyrolysis layer, the pyrolysis evaporation model is superior to FZ general pyrolysis model.The predicted height of pyrolysis layer is 0.616 5 m, which is consistent with the operation of agitator.
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spelling doaj.art-1a92ceab70f84666b99c92a22f0c46852023-03-27T12:30:59ZengEmergency Management Press矿业科学学报2096-21932023-04-018223224110.19606/j.cnki.jmst.2023.02.010kykxxb-8-2-232Numerical analysis and research on coal pyrolysis characteristics in BGL gasification processZhang Lihe0Xu Deping1Xu Zhengang2Wang Yonggang3School of Chemical and Environmental Engineering, China University of Mining and Technology-Beijing, Beijing 100083School of Chemical and Environmental Engineering, China University of Mining and Technology-Beijing, Beijing 100083Research Institute of Coal Chemical Industry, China National Coal Group Corporation, Beijing 100120School of Chemical and Environmental Engineering, China University of Mining and Technology-Beijing, Beijing 100083Research on the patterns of the internal temperature change and volatile analysis on the law of coal particle pyrolysis are essential to optimizing the furnace structure and operating parameters, while further improves the economy of BGL coal gasification.Based on the analysis of BGL coal gasification pyrolysis process, this study established the coal particle pyrolysis model.The decoupling algorithm was sadopted in solving the model, in which the heat transfer model adopted the chasing method, the pyrolysis kinetic model adopted the fourth-order single-step push-up method, and the ambient temperature was calculated by the moving bed one-dimensional model.The rationality of the model was verified by experimental data in literature.The simulation results show that the final pyrolysis temperature of BGL coal gasification is higher, and the temperature gradient inside the particles changes greatly.The particle size is 10 mm, the calculated final pyrolysis temperature is 1 372 K, and the calculated peak temperature difference between the surface and center of coal particles is 338 K. Taking the particle size of 40 mm, the corresponding calculated values are 1 412 K and 381 K respectively; The process of coal particle volatilization is similar to that of gas-solid non-catalytic condensation reaction, which proves that the coal pyrolysis process is controlled by heat transfer process.Pyrolysis kinetics is described by FZ general pyrolysis model, which has better adaptability than distributed activation energy model.When the moving bed one-dimensional model predicts the height of BGL coal gasification pyrolysis layer, the pyrolysis evaporation model is superior to FZ general pyrolysis model.The predicted height of pyrolysis layer is 0.616 5 m, which is consistent with the operation of agitator.http://kykxxb.cumtb.edu.cn/en/article/doi/10.19606/j.cnki.jmst.2023.02.010bgl coal gasificationcoal particlepyrolysisnumerical simulation
spellingShingle Zhang Lihe
Xu Deping
Xu Zhengang
Wang Yonggang
Numerical analysis and research on coal pyrolysis characteristics in BGL gasification process
矿业科学学报
bgl coal gasification
coal particle
pyrolysis
numerical simulation
title Numerical analysis and research on coal pyrolysis characteristics in BGL gasification process
title_full Numerical analysis and research on coal pyrolysis characteristics in BGL gasification process
title_fullStr Numerical analysis and research on coal pyrolysis characteristics in BGL gasification process
title_full_unstemmed Numerical analysis and research on coal pyrolysis characteristics in BGL gasification process
title_short Numerical analysis and research on coal pyrolysis characteristics in BGL gasification process
title_sort numerical analysis and research on coal pyrolysis characteristics in bgl gasification process
topic bgl coal gasification
coal particle
pyrolysis
numerical simulation
url http://kykxxb.cumtb.edu.cn/en/article/doi/10.19606/j.cnki.jmst.2023.02.010
work_keys_str_mv AT zhanglihe numericalanalysisandresearchoncoalpyrolysischaracteristicsinbglgasificationprocess
AT xudeping numericalanalysisandresearchoncoalpyrolysischaracteristicsinbglgasificationprocess
AT xuzhengang numericalanalysisandresearchoncoalpyrolysischaracteristicsinbglgasificationprocess
AT wangyonggang numericalanalysisandresearchoncoalpyrolysischaracteristicsinbglgasificationprocess