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Research Article

The effect of CaO on coal gasification reaction with high-temperature copper slag as catalyst

, , , , & ORCID Icon
Pages 9450-9464 | Received 13 Apr 2023, Accepted 10 Jul 2023, Published online: 24 Jul 2023

References

  • Chalachew, A., Markus, N., Lucy, D., Foit Severin, R., de Haart, L. G. J. Bert, Eichel Rüdiger, A., and Palkovits, R. 2021. Integrated Co-electrolysis and Syngas Methanation for the Direct Production of Synthetic Natural Gas from CO2 and H2O. [J]. ChemSuschem 14 (11):2295–2302.
  • Daniele, A., P. Stefano, M. Lorenzo, B. Marco, and P. Francesco. 2022. High hydrogen content syngas for biofuels production from biomass air gasification: experimental evaluation of a char-catalyzed steam reforming unit. International Journal of Hydrogen Energy 47 (64):27421–36. doi:10.1016/j.ijhydene.2022.06.075.
  • Deng, S. H., J. H. Hu, H. Wang, J. Q. Li, and W. Hu. 2013. An experimental study of steam gasification of biomass over precalcined copper slag catalysts. Advanced Materials Research 2203 (634–638):479–89. https://doi.org/10.4028/www.scientific.net/AMR.634-638.479
  • Fernandez, A., L. R. Ortiz, D. Asensio, R. Rodriguez, and G. Mazza. 2020. Kinetic analysis and thermodynamics properties of air/steam gasification of agricultural waste. Journal of Environmental Chemical Engineering 8 (4):103829. doi:10.1016/j.jece.2020.103829.
  • Gyurov, S., N. Marinkov, Y. Kostova, D. Rabadjieva, D. Kovacheva, C. Tzvetkova, G. Gentscheva, and I. Penkov. 2017. Technological scheme for copper slag processing. International Journal of Mineral Processing 158:1–7. doi:10.1016/j.minpro.2016.11.008.
  • Hotchkiss, R. 2003. Coal gasification technologies. Proceedings of the institution of mechanical engineers, Part A: Journal of Power and Energy 217 (1):27–33. doi:10.1243/095765003321148664.
  • Huo, X., Y. Zhou, Z. Wang, G. Yu, and F. Wang. 2015. Reaction kinetic analysis of bituminous coal char gasified by CO 2. Energy Sources, Part A: Recovery, Utilization, & Environmental Effects 37 (21):2259–70. doi:10.1080/15567036.2012.704487.
  • Jingli, S., L. Kui, F. Huifang, F. Chao, J. Hui, and G. Liejin. 2023. Experimental investigation on organic functional groups evolution in hydrogen production process by coal gasification in supercritical water. International Journal of Hydrogen Energy 48 (15):5887–900. doi:10.1016/j.ijhydene.2022.11.099.
  • Karn, V., V. Alina, S. Joel, M. E. A, S. M. P, and M. L. J. 2021. Global mortality from outdoor fine particle pollution generated by fossil fuel combustion: Results from GEOS-Chem. Environmental Research 195:110754. doi:10.1016/j.envres.2021.110754.
  • Li, P. 2017. Thermodynamic analysis of waste heat recovery of molten blast furnace slag. International Journal of Hydrogen Energy 42 (15):9688–95. doi:10.1016/j.ijhydene.2016.12.135.
  • Li, H., Y. Y. Li, and Y. Y. Jin. 2012. Analyses of coal and sewage sludge co-combustion using coats-redfern model. Advanced Materials Research 1793:518–23. https://doi.org/10.4028/www.scientific.net/AMR.518-523.3271
  • Liu, J., X. Gong, W. Zhang, F. Sun, and Q. Wang. 2020. Experimental study on a flue gas waste heat cascade recovery system under variable working conditions. Energies 13 (2):324. doi:10.3390/en13020324.
  • Mandal, R., R. Kumar, M. S. Ansari, D. Kumar, S. K. Chaulya, G. M. Prasad, A. K. Singh, and T. Maity. 2020. Underground coal gasification techniques for different geo-mining conditions. International Journal of Oil, Gas and Coal Technology 23 (2):199. doi:10.1504/IJOGCT.2020.105452.
  • M, S., K. M. A, and B. Sankar. 2022. Gasification kinetics of barapukurian coal char using carbon dioxide and steam reactants. Chemical Papers 76 (7):4459–70. doi:10.1007/s11696-022-02186-0.
  • Mei, A., and G. Qingjie. 2022. Kinetic studies on the steam gasification of chars derived from coals by different isoconversional methods. Atmosphere 13 (9):1480. doi:10.3390/atmos13091480.
  • Nicolas, S., L. Xiangyi, B. Cesar, P. Nigel, and M. Marcos. 2021. Oxy-fuel co-gasification of coal and biomass for negative CO2 emissions. Fuel 306:121671. doi:10.1016/j.fuel.2021.121671.
  • Otto, C., and T. Kempka. 2020. Synthesis gas composition prediction for underground coal gasification using a thermochemical equilibrium modeling approach. Energies 13 (5):1171. doi:10.3390/en13051171.
  • Rahimpour, M. R., M. A. Makarem, and M. Meshksar, ed. Advances in Synthesis Gas: Methods, Technologies and Applications: Syngas Production and Preparation. Elsevier, 2022.
  • Sheng, Z., B. Su, M. Zhang, Y. Gao, J. Liu, S. Luo, and Q. Tao. 2021. Analysis and forecast of China’s energy consumption structure. Energy Policy 159:112630. doi:10.1016/j.enpol.2021.112630.
  • Solomon, G. T., D. Gwiranai, M. T. A, M. Tebogo, and D. Godfrey. 2021. Environmental and socioeconomic impact of copper slag—A review. Crystals 11 (12):1504. doi:10.3390/cryst11121504.
  • Song, X. L., J. X. Yang, J. W. Wang, and W. J. Wu. 2014. Assessing the life cycle environmental and economic performance of copper slag recycling. Advanced Materials Research 2930 (878–878):219–25. https://doi.org/10.4028/www.scientific.net/AMR.878.219
  • Thurston George, D. 2021. “Fossil fuel combustion and PM2.5 mass air pollution associations with mortality. Environment International 160:107066. doi:10.1016/j.envint.2021.107066.
  • Tillman David, A. 2002. “Status of coal gasification. Environmental Science & Technology 10 (1):34–38. doi:10.1021/es60112a002.
  • Tollefson, J. 2022. “Warning from COP27: Fossil-fuel emissions have hit a new high. Nature.
  • Wang, L., G. Wang, K. Jiao, X. Ning, J. Zhang, X. Guo, J. Li, and C. Wang. 2021. Conversion mechanism and gasification kinetics of biomass char during hydrothermal carbonization. Renewable Energy 173:318–28. doi:10.1016/j.renene.2021.03.123.
  • Weiwei, L., Y. Zhongliang, and G. Guoqing. 2021. Catalytic coal gasification for methane production: A review. Carbon Resources Conversion 4:89–99. prepublish, 2021. doi:10.1016/j.crcon.2021.02.001.
  • Xiongchao, L., L. Changlun, H. Xin, D. Jinze, X. Deping, and W. Yonggang. 2021. Study on the mechanism of calcium catalyzed CO2 gasification of lignite. Fuel Processing Technology 213:106689. doi:10.1016/j.fuproc.2020.106689.
  • Xu, X., C. Chen, H. Qi, R. He, C. You, and G. Xiang. 2000. Development of coal combustion pollution control for so 2 and NO x in China. Fuel Processing Technology 62 (2):153–60. doi:10.1016/S0378-3820(99)00116-2.
  • Yao, X., Q. Yu, H. Xie, W. Duan, Z. Han, S. Liu, and Q. Qin. 2017. Syngas production through biomass/CO2 gasification using granulated blast furnace slag as heat carrier. Journal of Renewable and Sustainable Energy 9 (5). doi:10.1063/1.4993259.
  • Zhang, F. X., J. H. Hu, B. Yang, and Y. N. Yu. 2013. Syngas production from biomass gasification using copper slag catalysts. Advanced Materials Research 2479 (724–725):313–18. https://doi.org/10.4028/www.scientific.net/AMR.724-725.313
  • Zhiwei, H., Q. Anchao, Z. Zunrui, Z. Xinwen, P. Hao, and L. Juan. 2021. Study on pulverized coal gasification using waste heat from high temperature blast furnace slag particles. International Journal of Hydrogen Energy 46 (53):26848–60. doi:10.1016/j.ijhydene.2021.05.198.
  • Zhuo, Y., X. Xu, H. Zhang, H. Tong, S. Wang, and Y. Li. 2007. The development of pollution control technology in coal combustion in China. Frontiers of Energy and Power Engineering in China 1 (1):9–15. doi:10.1007/s11708-007-0002-1.

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