Influence of granularity on thermal behaviour in the process of lignite spontaneous combustion

Granularity is one of the primary extrinsic factors that can influence the process of coal spontaneous combustion. Lignite was selected for studying the influence of granularity. A self-developed temperature-programmed oil bath experimental system was adopted to capture the changes in the spontaneou...

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Published inJournal of thermal analysis and calorimetry Vol. 135; no. 4; pp. 2247 - 2255
Main Authors Zhang, Yan-Ni, Chen, Long, Deng, Jun, Zhao, Jing-Yu, Li, Hai-Tao, Yang, Hua
Format Journal Article
LanguageEnglish
Published Cham Springer International Publishing 01.02.2019
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Springer Nature B.V
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Abstract Granularity is one of the primary extrinsic factors that can influence the process of coal spontaneous combustion. Lignite was selected for studying the influence of granularity. A self-developed temperature-programmed oil bath experimental system was adopted to capture the changes in the spontaneous combustion characteristic parameters for different particle sizes. Moreover, the microcrystalline structure and functional group distribution of different granularities were obtained using an X-ray diffractometer and Fourier transform infrared spectrometer. The results show that the microcrystalline structure, the types of functional groups and the release order of gases of different granularities have equal influence during the process of coal spontaneous combustion. A smaller granularity has a lower aromatic group content and a higher content of high-activity hydroxyl groups, aliphatic hydrocarbons and oxygen-containing functional groups. Moreover, a smaller particle size results in a lower critical temperature. The distributions of coal granularity also affect the characteristic of coal spontaneous combustion. A wide particle size distribution produces a larger surface area for contact between coal and oxygen than a narrow distribution, which results in a coal with a stronger spontaneous combustion tendency.
AbstractList Granularity is one of the primary extrinsic factors that can influence the process of coal spontaneous combustion. Lignite was selected for studying the influence of granularity. A self-developed temperature-programmed oil bath experimental system was adopted to capture the changes in the spontaneous combustion characteristic parameters for different particle sizes. Moreover, the microcrystalline structure and functional group distribution of different granularities were obtained using an X-ray diffractometer and Fourier transform infrared spectrometer. The results show that the microcrystalline structure, the types of functional groups and the release order of gases of different granularities have equal influence during the process of coal spontaneous combustion. A smaller granularity has a lower aromatic group content and a higher content of high-activity hydroxyl groups, aliphatic hydrocarbons and oxygen-containing functional groups. Moreover, a smaller particle size results in a lower critical temperature. The distributions of coal granularity also affect the characteristic of coal spontaneous combustion. A wide particle size distribution produces a larger surface area for contact between coal and oxygen than a narrow distribution, which results in a coal with a stronger spontaneous combustion tendency.
Audience Academic
Author Chen, Long
Zhao, Jing-Yu
Zhang, Yan-Ni
Deng, Jun
Li, Hai-Tao
Yang, Hua
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  organization: School of Arts, Xi’an University of Science and Technology
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Issue 4
Keywords Characteristic temperature
Microcrystalline structure
Indicator gases
Granularity
Functional groups
Coal spontaneous combustion
Language English
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Snippet Granularity is one of the primary extrinsic factors that can influence the process of coal spontaneous combustion. Lignite was selected for studying the...
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SubjectTerms Aliphatic hydrocarbons
Analytical Chemistry
Chemistry
Chemistry and Materials Science
Coal
Combustion
Critical temperature
Crystals
Fourier transforms
FTIR spectrometers
Functional groups
Hydroxyl groups
Inorganic Chemistry
Lignite
Measurement Science and Instrumentation
Particle size
Particle size distribution
Physical Chemistry
Polymer Sciences
Spontaneous combustion
Structure
Thermodynamic properties
X-ray diffraction
Title Influence of granularity on thermal behaviour in the process of lignite spontaneous combustion
URI https://link.springer.com/article/10.1007/s10973-018-7440-3
https://www.proquest.com/docview/2187593140
Volume 135
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