Study on the co-combustion mechanism of coal gangue and coal gasification fly ash based on thermogravimetric mass spectrometry

The combustion characteristics and gas release characteristics of the Wuhai coal gangue, the Suqian coal gasification fly ash, and their mixtures were revealed by thermogravimetric mass spectrometry analysis. The co-combustion mechanism of the Wuhai coal gangue and the Suqian coal gasification fly a...

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Main Authors: Jiangong LIN, Xiaoyu ZHANG, Jicheng HUI, Shujun ZHU, Jianguo ZHU
Format: Article
Language:zho
Published: Editorial Office of Journal of China Coal Society 2024-11-01
Series:Meitan xuebao
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Online Access:http://www.mtxb.com.cn/article/doi/10.13225/j.cnki.jccs.2023.1098
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author Jiangong LIN
Xiaoyu ZHANG
Jicheng HUI
Shujun ZHU
Jianguo ZHU
author_facet Jiangong LIN
Xiaoyu ZHANG
Jicheng HUI
Shujun ZHU
Jianguo ZHU
author_sort Jiangong LIN
collection DOAJ
description The combustion characteristics and gas release characteristics of the Wuhai coal gangue, the Suqian coal gasification fly ash, and their mixtures were revealed by thermogravimetric mass spectrometry analysis. The co-combustion mechanism of the Wuhai coal gangue and the Suqian coal gasification fly ash was studied by combining the physicochemical properties of the two fuels. The thermogravimetric analysis results indicate that the Wuhai coal gangue has better ignition characteristics than Suqian coal gasification fly ash. The ignition characteristics of the mixtures are improved by the Wuhai coal gangue, while the high-temperature combustion characteristics are improved by the Suqian coal gasification fly ash. The combustion kinetics were analyzed based on the Coats-Redfern (C-R), Flynn-Wall-Ozawa (FWO), and Kissinger-Akahira-Sunose (KAS) methods. The results show that the apparent activation energy of the Wuhai coal gangue is 48.25−152.22 kJ/mol, and the combustion reaction conforms to the Jander model. The apparent activation energy of the Suqian coal gasification fly ash is 106.34−312.79 kJ/mol, and the reaction conforms to the reaction level model with n=1/4. When the mass ratio of the Wuhai coal gangue to the Suqian coal gasification fly ash was 1∶3, the apparent activation energy was 102.24−301.58 kJ/mol, which corresponds to the synthesis of a nuclear growth model. The interaction of these fuels was examined by comparing the deviation between the theoretical and experimental weight loss rate of mixtures. The results show that there is a significant coupling effect between the Wuhai coal gangue and the Suqian coal gasification fly ash, mutually enhancing their combustion characteristics. This promoting effect is gradually strengthened with the increasing mass proportion of the Suqian coal gasification fly ash. Based on the comprehensive co-combustion characteristics and gas release characteristics, the better mass ratio of the Wuhai coal gangue to the Suqian coal gasification fly ash is 1∶3. NH3 is released during the volatile fraction and fixed carbon combustion process. The temperature corresponding to the peak intensity of the NO and NO2 release is essentially consistent with the temperature corresponding to the maximum reaction rate on the thermogravimetric curve.
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issn 0253-9993
language zho
publishDate 2024-11-01
publisher Editorial Office of Journal of China Coal Society
record_format Article
series Meitan xuebao
spelling doaj-art-ab740feb2daf42f395f1ca1a5ad55dd52025-08-20T02:52:11ZzhoEditorial Office of Journal of China Coal SocietyMeitan xuebao0253-99932024-11-0149114634464510.13225/j.cnki.jccs.2023.10982023-1098Study on the co-combustion mechanism of coal gangue and coal gasification fly ash based on thermogravimetric mass spectrometryJiangong LIN0Xiaoyu ZHANG1Jicheng HUI2Shujun ZHU3Jianguo ZHU4State Key Laboratory of Coal Conversion, Institute of Engineering Thermophysics, Chinese Academy of Sciences, Beijing 100190, ChinaState Key Laboratory of Coal Conversion, Institute of Engineering Thermophysics, Chinese Academy of Sciences, Beijing 100190, ChinaState Key Laboratory of Coal Conversion, Institute of Engineering Thermophysics, Chinese Academy of Sciences, Beijing 100190, ChinaState Key Laboratory of Coal Conversion, Institute of Engineering Thermophysics, Chinese Academy of Sciences, Beijing 100190, ChinaState Key Laboratory of Coal Conversion, Institute of Engineering Thermophysics, Chinese Academy of Sciences, Beijing 100190, ChinaThe combustion characteristics and gas release characteristics of the Wuhai coal gangue, the Suqian coal gasification fly ash, and their mixtures were revealed by thermogravimetric mass spectrometry analysis. The co-combustion mechanism of the Wuhai coal gangue and the Suqian coal gasification fly ash was studied by combining the physicochemical properties of the two fuels. The thermogravimetric analysis results indicate that the Wuhai coal gangue has better ignition characteristics than Suqian coal gasification fly ash. The ignition characteristics of the mixtures are improved by the Wuhai coal gangue, while the high-temperature combustion characteristics are improved by the Suqian coal gasification fly ash. The combustion kinetics were analyzed based on the Coats-Redfern (C-R), Flynn-Wall-Ozawa (FWO), and Kissinger-Akahira-Sunose (KAS) methods. The results show that the apparent activation energy of the Wuhai coal gangue is 48.25−152.22 kJ/mol, and the combustion reaction conforms to the Jander model. The apparent activation energy of the Suqian coal gasification fly ash is 106.34−312.79 kJ/mol, and the reaction conforms to the reaction level model with n=1/4. When the mass ratio of the Wuhai coal gangue to the Suqian coal gasification fly ash was 1∶3, the apparent activation energy was 102.24−301.58 kJ/mol, which corresponds to the synthesis of a nuclear growth model. The interaction of these fuels was examined by comparing the deviation between the theoretical and experimental weight loss rate of mixtures. The results show that there is a significant coupling effect between the Wuhai coal gangue and the Suqian coal gasification fly ash, mutually enhancing their combustion characteristics. This promoting effect is gradually strengthened with the increasing mass proportion of the Suqian coal gasification fly ash. Based on the comprehensive co-combustion characteristics and gas release characteristics, the better mass ratio of the Wuhai coal gangue to the Suqian coal gasification fly ash is 1∶3. NH3 is released during the volatile fraction and fixed carbon combustion process. The temperature corresponding to the peak intensity of the NO and NO2 release is essentially consistent with the temperature corresponding to the maximum reaction rate on the thermogravimetric curve.http://www.mtxb.com.cn/article/doi/10.13225/j.cnki.jccs.2023.1098coal ganguecoal gasification fly ashco-combustion mechanismkinetic analysis
spellingShingle Jiangong LIN
Xiaoyu ZHANG
Jicheng HUI
Shujun ZHU
Jianguo ZHU
Study on the co-combustion mechanism of coal gangue and coal gasification fly ash based on thermogravimetric mass spectrometry
Meitan xuebao
coal gangue
coal gasification fly ash
co-combustion mechanism
kinetic analysis
title Study on the co-combustion mechanism of coal gangue and coal gasification fly ash based on thermogravimetric mass spectrometry
title_full Study on the co-combustion mechanism of coal gangue and coal gasification fly ash based on thermogravimetric mass spectrometry
title_fullStr Study on the co-combustion mechanism of coal gangue and coal gasification fly ash based on thermogravimetric mass spectrometry
title_full_unstemmed Study on the co-combustion mechanism of coal gangue and coal gasification fly ash based on thermogravimetric mass spectrometry
title_short Study on the co-combustion mechanism of coal gangue and coal gasification fly ash based on thermogravimetric mass spectrometry
title_sort study on the co combustion mechanism of coal gangue and coal gasification fly ash based on thermogravimetric mass spectrometry
topic coal gangue
coal gasification fly ash
co-combustion mechanism
kinetic analysis
url http://www.mtxb.com.cn/article/doi/10.13225/j.cnki.jccs.2023.1098
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AT jichenghui studyonthecocombustionmechanismofcoalgangueandcoalgasificationflyashbasedonthermogravimetricmassspectrometry
AT shujunzhu studyonthecocombustionmechanismofcoalgangueandcoalgasificationflyashbasedonthermogravimetricmassspectrometry
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