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Experimental study on evolution and mechanism for dielectric response of different rank coals in terahertz band

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  • Qu, Baolin
  • Wang, Jingxin
  • Zhu, Hongqing
  • Hu, Lintao
  • Liao, Qi

Abstract

Terahertz technology holds the potential for applications in identifying risks and development stages of coal spontaneous combustion (CSC). However, one critical factor influencing the precision of THz technology in CSC applications is the coal rank. In light of these, this study aimed to investigate the permittivity (0.4–1.6 THz) of different rank coals. Additionally, its underlying mechanism was analyzed utilizing Fourier-transform infrared spectroscopy, X-ray diffraction, and scanning electron microscopy. Results indicate that increased coal rank leads to a decrease in both real permittivity (from 2.462 to 2.327) and imaginary permittivity (from 0.0447 to 0.0250), primarily due to diminished moisture (from 12.82 % to 1.35 %). After moisture removal, increased coal rank results in an increased real permittivity (from 2.292 to 2.315), primarily due to the carbon crystallite (interlayer spacing changed from 3.553 to 3.529, and stacking height shifted from 14.805 to 19.743) and microstructure profiles. Moreover, minerals are identified as another primary factor affecting real permittivity. For imaginary permittivity, increased coal rank leads to a decrease (from 0.0411 to 0.0245), primarily due to oxygen-containing functional groups (from 42.96 % to 31.71 %). The conclusion advances the fundamental theoretical research on coal permittivity, providing a solid theoretical foundation for THz technology in CSC applications.

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  • Qu, Baolin & Wang, Jingxin & Zhu, Hongqing & Hu, Lintao & Liao, Qi, 2024. "Experimental study on evolution and mechanism for dielectric response of different rank coals in terahertz band," Energy, Elsevier, vol. 288(C).
  • Handle: RePEc:eee:energy:v:288:y:2024:i:c:s0360544223029614
    DOI: 10.1016/j.energy.2023.129567
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    1. Trubetskaya, Anna & Leahy, James J. & Yazhenskikh, Elena & Müller, Michael & Layden, Peter & Johnson, Robert & Ståhl, Kenny & Monaghan, Rory F.D., 2019. "Characterization of woodstove briquettes from torrefied biomass and coal," Energy, Elsevier, vol. 171(C), pages 853-865.
    2. Wang, Chang'an & Wu, Song & Lv, Qiang & Liu, Xuan & Chen, Wufeng & Che, Defu, 2017. "Study on correlations of coal chemical properties based on database of real-time data," Applied Energy, Elsevier, vol. 204(C), pages 1115-1123.
    3. Li, Yi Z. & Wu, Shi X. & Yu, Xiao L. & Bao, Ri M. & Wu, Zhi K. & Wang, Wei & Zhan, Hong L. & Zhao, Kun & Ma, Yue & Wu, Jian X. & Liu, Shao H. & Li, Shu Y., 2017. "Optimization of pyrolysis efficiency based on optical property of semicoke in terahertz region," Energy, Elsevier, vol. 126(C), pages 202-207.
    4. Zhan, Honglei & Zhao, Kun & Xiao, Lizhi, 2015. "Spectral characterization of the key parameters and elements in coal using terahertz spectroscopy," Energy, Elsevier, vol. 93(P1), pages 1140-1145.
    5. Zhu, Hongqing & Liao, Qi & Qu, Baolin & Hu, Lintao & Wang, Haoran & Gao, Rongxiang & Zhang, Yilong, 2023. "Relationship between the main functional groups and complex permittivity in pre-oxidised lignite at terahertz frequencies based on grey correlation analysis," Energy, Elsevier, vol. 278(C).
    6. Song, Jiajia & Deng, Jun & Zhao, Jingyu & Zhang, Yanni & Wang, Caiping & Shu, Chi-Min, 2021. "Critical particle size analysis of gas emission under high-temperature oxidation of weathered coal," Energy, Elsevier, vol. 214(C).
    7. Zhao, Jingyu & Hang, Gai & Song, Jiajia & Lu, Shiping & Ming, Hanqi & Chang, Jiaming & Deng, Jun & Zhang, Yanni & Shu, Chi-Min, 2023. "Spontaneous oxidation kinetics of weathered coal based upon thermogravimetric characteristics," Energy, Elsevier, vol. 275(C).
    8. Zhao, Jingyu & Zhang, Yongli & Song, Jiajia & Guo, Tao & Deng, Jun & Shu, Chi-Min, 2023. "Oxygen distribution and gaseous products change of coal fire based upon the semi-enclosed experimental system," Energy, Elsevier, vol. 263(PB).
    9. Topcu, Ilker & Ülengin, Füsun & Kabak, Özgür & Isik, Mine & Unver, Berna & Onsel Ekici, Sule, 2019. "The evaluation of electricity generation resources: The case of Turkey," Energy, Elsevier, vol. 167(C), pages 417-427.
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