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Articles

Drying kinetics characteristics of lignite using thermogravimetric analysis

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Pages 586-596 | Received 15 Nov 2018, Accepted 08 Jan 2019, Published online: 07 Mar 2019

References

  • Cheng, J., F. Zhou, X. Wang, J. Z. Liu, Z. H. Wang, J. H. Zhou, and K. F. Cen. 2015. Optimization of microwave dewatering of an Indonesian lignite. Fuel Processing Technology 144:71–78. doi:10.1016/j.fuproc.2015.12.015.
  • Ding, L., Z. J. Zhou, Z. H. Dai, and G. S. Yu. 2015. Effects of coal drying on the pyrolysis and in-situ gasification characteristics of lignite coals. Applied Energy 155:660–70. doi:10.1016/j.apenergy.2015.06.062.
  • Feng, X. F., C. Zhang, P. Tan, X. P. Zhang, Q. Y. Fang, and G. Chen. 2016. Experimental study of the physicochemical structure and moisture readsorption characteristics of ZhaoTong lignite after hydrothermal and thermal upgrading. Fuel 185:112–21. doi:10.1016/j.fuel.2016.07.101.
  • Fu, B. A., and M. Q. Chen. 2015. Thin-layer drying kinetics of lignite during hot air forced convection. Chemical Engineering Research and Design 102:416–28. doi:10.1016/j.cherd.2015.07.019.
  • Ge, L. C., Y. W. Zhang, C. Xu, Z. H. Wang, J. H. Zhou, and K. F. Cen. 2015. Influence of the hydrothermal dewatering on the combustion characteristics of Chinese low-rank coals. Applied Thermal Engineering 90:174–81. doi:10.1016/j.applthermaleng.2015.07.015.
  • He, Y. Y., C. Chang, P. Li, X. L. Han, H. L. Li, S. Fang, J. Y. Chen, and X. J. Ma. 2018. Thermal decomposition and kinetics of coal and fermented cornstalk using thermogravimetric analysis. Bioresource Technology 229:294–303. doi:10.1016/j.biortech.2018.03.043.
  • Hu, L., G. H. Wang, and Q. D. Wang. 2018. Efficient drying and oxygen-containing functional groups characteristics of lignite during microwave irradiation process. Drying Technology 36 (9):1086–97. doi:10.1080/07373937.2017.1378230.
  • Huang, X., J. P. Cao, X. Y. Zhao, J. X. Wang, X. Fan, Y. P. Zhao, and X. Y. Wei. 2016. Pyrolysis kinetics of soybean straw using thermogravimetric analysis. Fuel 169:93–98. doi:10.1016/j.fuel.2015.12.011.
  • Li, C., J. J. Liao, Y. Yang, Q. Mo, L. P. Chang, and W. R. Bao. 2018. Kinetic analysis on the microwave drying of different forms of water in lignite. Fuel Processing Technology 176:174–81. doi:10.1016/j.fuproc.2018.03.017.
  • Man, C. B., X. Zhu, X. Z. Gao, and D. F. Che. 2015. Combustion and pollutant emission characteristics of lignite dried by low temperature air. Drying Technology 33 (5):616–31. doi:10.1080/07373937.2014.967402.
  • Park, J. H., C. H. Lee, Y. C. Park, D. Shun, D. H. Bae, and J. Park. 2014. Drying efficiency of indonesian lignite in a batch-circulating fluidized bed dryer. Drying Technology 32 (3):268–78. doi:10.1080/07373937.2013.822385.
  • Pusat, S., M. T. Akkoyunlu, H. H. Erdem, and A. Dağdaş. 2015. Drying kinetics of coarse lignite particles in a fixed bed. Fuel Processing Technology 130 (2):208–13. doi:10.1016/j.fuproc.2014.10.023.
  • Sheng, L., Y. Jie, B. Kaoiso, C. Tao, M. Chuan, and W. Ben, L. S. 2018. Rubber pyrolysis: Kinetic modeling and vulcanization effects. Energy 155: 215–25. doi:10.1016/j.energy.2018.04.146.
  • Si, C. D., J. J. Wu, Y. Wang, X. L. Shang, Y. X. Zhang, and G. J. Liu. 2016. Experimental study on three-stage microwave-assisted fluidized bed drying of Shengli lump lignite. Drying Technology 34 (6):685–91. doi:10.1080/07373937.2015.1070359.
  • Song, Z. L., L. S. Yao, C. M. Jing, X. Q. Zhao, W. L. Wang, and C. Y. Ma. 2017. Drying behavior of lignite under microwave heating. Drying Technology 35 (4):433–43. doi:10.1080/07373937.2016.1182547.
  • Song, Z. L., L. S. Yao, C. M. Jing, X. Q. Zhao, W. L. Wang, J. Sun, Y. P. Mao, and C. Y. Ma. 2016. Elucidation of the pumping effect during microwave drying of lignite. Industrial & Engineering Chemistry Research 55:3167–76. doi:10.1021/acs.iecr.5b04881.
  • Tahmasebi, A., J. L. Yu, Y. N. Han, H. Zhao, and S. Bhattacharya. 2014. A kinetic study of microwave and fluidized-bed drying of a Chinese lignite. Chemical Engineering Research and Design 92:54–65. doi:10.1016/j.cherd.2013.06.013.
  • Wang, M. F., Z. W. Chen, J. Lv, Y. Z. Ren, Y. Jiang, E. C. Jiang, and D. H. Wang. 2018. Combustion characteristics and kinetic analysis of heavy tar from continuous pyrolysis of camellia shell. Fuel Processing Technology 176:131–37. doi:10.1016/j.fuproc.2018.03.015.
  • Wang, Y. F., Y. M. Song, K. D. Zhi, Y. Li, Y. Y. Feng, R. X. He, and Q. S. Liu. 2017. Combustion kinetics of Chinese Shenhua raw coal and its pyrolysis carbocoal. Journal of the Energy Institute 90 (4):624–33. doi:10.1016/j.joei.2016.04.011.
  • Xu, J. L., Z. Q. Bai, J. Bai, L. X. Kong, D. M. Lv, Y. N. Han, X. Dai, and L. Wem. 2017. Physico-chemical structure and combustion properties of chars derived from co-pyrolysis of lignite with direct coal liquefaction residue. Fuel 187:103–10. doi:10.1016/j.fuel.2016.09.028.
  • Yang, X. J., C. Zhang, P. Tan, T. Yang, Q. Y. Fang, and G. Chen. 2014. Properties of upgraded Shengli lignite and its behavior of gasification. Energy & Fuels 28:263–74. doi:10.1021/ef401497a.
  • Yu, J., A. Tahmasebi, Y. Han, F. Yin, and X. Li. 2013. A review on water in low rank coals: The existence, interaction with coal structure and effects on coal utilization. Fuel Processing Technology 106:9–20. doi:10.1016/j.fuproc.2012.09.051.
  • Zhao, P. F., Y. M. Zhao, Z. F. Luo, Z. Q. Chen, C. L. Duan, and S. L. Song. 2014. Effect of operating conditions on drying of Chinese lignite in a vibration fluidized bed. Fuel Processing Technology 128:257–64. doi:10.1016/j.fuproc.2014.07.014.
  • Zhao, P. F., L. P. Zhong, R. Zhu, Y. M. Zhao, Z. F. Luo, and X. L. Yang. 2016. Drying characteristics and kinetics of Shengli lignite using different drying methods. Energy Conversion and Management 120:330–37. doi:10.1016/j.enconman.2016.04.105.
  • Zhu, J. F., J. Z. Liu, J. H. Wu, J. Cheng, J. H. Zhou, and K. F. Cen. 2015. Thin-layer drying characteristics and modeling of Ximeng lignite under microwave irradiation. Fuel Processing Technology 130:62–70. doi:10.1016/j.fuproc.2014.09.033.

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