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Articles

Effects of MgCl2 on the gasification kinetics of petroleum coke

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Pages 746-760 | Received 02 Aug 2018, Accepted 29 Aug 2018, Published online: 01 Oct 2018

References

  • Dutta, S. C., C. Y. Wen, and R. J. Belt. 1977. Reactivity of coal and char.1.in carbon dioxide atmosphere. Industrial&Engineering Chemistry Process Design and Development 16 (1):106–12. doi:10.1021/i260061a004.
  • Edreis, E. M. A., X. Li, C. Xu, and H. Yao. 2017. Kinetic study and synergistic interactions on catalytic CO2 gasification of Sudanese lower sulphur petroleum coke and sugar cane bagasse. Journal of Materials Research & Technology 6 (2):147–57. doi:10.1016/j.jmrt.2016.09.001.
  • Jin, W. K., I. S. Gwak, R. G. You, M. W. Seo, and S. H. Lee. 2017. A reaction kinetic study of CO2 gasification of petroleum coke, coals and mixture. Korean Journal of Chemical Engineering 26 (2):1–10. doi:10.14478/ace.2015.1006.
  • Leonhardt, P., A. Sulimma, K. H. V. Heek, and H. Jüntgen. 1983. Steam gasification of German hard coal using alkaline catalysts. Fuel 62 (2):200–04. doi:10.1016/0016-2361(83)90198-9.
  • Li, C., X. Liu, Z. Zhou, Z. Dai, J. Yang, and F. Wang. 2016. Effect of heat treatment on structure and gasification reactivity of petroleum coke. International Journal of Coal Science & Technology 3 (1):53–61. doi:10.1007/s40789-016-0109-2.
  • Liew, S. C., and J. M. Hill. 2015. Impacts of vanadium and coke deposits on the CO2 gasification of nickel catalysts supported on activated carbon from petroleum coke. Applied Catalysis A General 504 (2015):420–28. doi:10.1016/j.apcata.2014.11.006.
  • Malekshahian, M., and J. Hill. 2011. Kinetic analysis of CO2 gasification of petroleum coke at high pressures. Energy&Fuels 25 (9):64–78. doi:10.1021/ef2009259.
  • Qadi, N. M. N., A. Hidayat, F. Takahashi, and K. Yoshikawa. 2017. Co-gasification kinetics of coal char and algae char under CO2 atmosphere. Biofuels 8 (2):281–89. doi:10.1080/17597269.2016.1224292.
  • Revankar, V. V. S., A. N. Gokarn, and L. K. Doraiswamy. 1987. Studies in catalytic steam gasification of petroleum coke with special reference to the effect of particle size. Industrial & Engineering Chemistry Research 26 (5):1018–25. doi:10.1021/ie00065a028.
  • Sahimi, M., and T. T. Tsotsis. 1988. Statistical modeling of gas-solid reaction with pore volume growth: Kinetics regime. ChemEngSci 43 (1):113—21.
  • Sheth, A. C., C. Sastry, Y. D. Yeboah, Y. Xu, and P. Agarwal. 2004. Catalytic gasification of coal using eutectic salts: Reaction kinetics for hydrogasification using binary and ternary eutectic catalysts. Fuel 83 (4):557–72. doi:10.1016/j.fuel.2003.08.016.
  • Suzuki, T., N. A. Yamauchi, M. Mishima, and K. Inoue. 1988. Steam and CO2 gasification of Yallourn coal using iron alkali metal binary catalyst. Summaries of Technical Papers of Annual Meeting 67 (2):106–12. doi:10.3775/jie.67.106.
  • Wang, G., J. Zhang, X. Huang, X. Liang, X. Ning, and L. Rongpeng. 2018. Co-gasification of petroleum coke-biomass blended char with steam at temperatures of 1173–1373 K. Applied Thermal Engineering 137 (2018):678–88. doi:10.0003/j.applthermaleng.2018.04.026.
  • Wei, J., Q. Guo, L. Ding, K. Yoshikawa, and G. Yu. 2017a. Synergy mechanism analysis of petroleum coke and municipal solid waste (MSW)-derived hydrochar co-gasification. Applied Energ 206 (2017):1354–63. doi:10.1016/j.apenergy.2017.10.005.
  • Wei, J., Q. Guo, Y. Gong, L. Ding, and G. Yu. 2017b. Synergistic effect on co-gasification reactivity of biomass-petroleum coke blended char. Bioresource Technology 234 (2017):33–39. doi:10.1016/j.biortech.2017.03.010.
  • Wen, W. Y. 1980. Mechanisms of alkali metal catalysis in the gasification of coal,char or graphite. Cata Rev Sci Eng 22 (1):1–28. doi:10.1080/03602458008066528.
  • Wu, S. Y., S. Huang, Y. Q. Wu, and J. S. Gao. 2014. A semi-empirical kinetic model for simulating the steam gasification of petroleum coke catalyzed by K2CO3. Energy Sources Part A Recovery Utilization & Environmental Effects 36 (11):1151–57. doi:10.1080/15567036.2011.631093.
  • Xiao, J., F. Li, Q. Zhong, J. Huang, and B. Wang. 2016. Effect of high-temperature pyrolysis on the structure and properties of coal and petroleum coke. Journal of Analytical & Applied Pyrolysis 117 (2016):64–71. doi:10.1016/j.jaap.2015.12.015.
  • Zhan, X., Z. J. Zhou, and F. Wang. 2010. Catalytic effect of black liquor on the gasification reactivity of petroleum coke. Applied Energy 87 (5):1710–15. doi:10.1016/j.apenergy.2009.10.027.
  • Zhang, K., X. Chen, D. Meng, X. Guo, and X. Gong. 2018. Effect of adding coal ashes and oxide mixtures on CO2 gasification reactivity of petcoke at high temperature. Journal of Fuel Chemistry&Technology 46 (3):257–64. doi:10.1016/S1872-5813(18)30013-6.
  • Zhang, Y., S. Hara, S. Kajitani, and M. Ashizawa. 2010. Modeling of catalytic gasification kinetics of coal char and carbon. Fuel 89 (1):152–57. doi:10.1016/j.fuel.2009.06.004.
  • Zhang, Y., M. Yao, S. Gao, G. Sun, and X. Guangwen. 2015. Reactivity and kinetics for steam gasification of petroleum coke blended with black liquor in a micro fluidized bed. Applied Energy 160 (15):820–28. doi:10.1016/j.apenergy.2015.01.009.
  • Zhou, Z., J. Xiong, X. Zhan, and Y. Guangsuo. 2011. Catalysis of black liquor for petroleum coke-CO2 gasification and kinetic compensation effect. Ciesc Journal 62 (4):934–39.

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