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Articles

The ignition characteristics and combustion processes of coal gangue under different hot coflow conditions in O2/CO2 atmosphere: in pellet form

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Pages 419-434 | Received 08 Apr 2018, Accepted 22 Jun 2018, Published online: 16 Jan 2019

References

  • Arias, B., Pevida, C., Rubiera, F., and Pis, J.J. 2008. Effect of biomass blending on coal ignition and burnout during oxy-fuel combustion. Fuel, 87(12), 2753–2759.
  • Bejarano, P.A., and Levendis, Y.A. 2008. Single-coal-particle combustion in O{sub 2}/N{sub 2} and O{sub 2}/CO{sub 2} environments. Combustion & Flame, 153(1–2), 270–287, April.
  • Chen, J., and Huang, Q.X. 2009. Study on the Characteristics of the Fly Ash from Coal Gangue-fired Power Plant. Bull. Chin. Ceramic Soc., 28(6), 1282–1285.
  • Dmitrienko, M.A., and Strizhak, P.A. 2017. Coal-water slurries containing petrochemicals to solve problems of air pollution by coal thermal power stations and boiler plants: an introductory review. Sci. Total Environ., 613, 1117–1129.
  • Galletti, C., Giacomazzi, E., Giammartini, S., Coraggio, G., and Tognotti, L. 2013. Analysis of Coal Combustion in Oxy-fuel Conditions through Pulsed Feeding Experiments in an Entrained Flow Reactor. Energy & Fuels, 27(5), 2732–2740.
  • Glushkov, D.O., Strizhak, P.A., and Chernetskii, M.Y. 2016a. Organic coal-water fuel: problems and advances (Review). Thermal Eng., 63(10), 707–717.
  • Glushkov, D.O., Syrodoy, S.V., Zhakharevich, A.V., and Strizhak, P.A. 2016b. Ignition of promising coal-water slurry containing petrochemicals: analysis of key aspects. Fuel Process. Technol., 148, 224–235.
  • Howard, J.B., and Essenhigh, R.H. 1967. Mechanism of solid-partical combustion with simultaneous gas-phase volatiles combustion *. Symp. Combustion, 11(1), 399–408.
  • Jones, J.M., Patterson, P.M., Pourkashanian, M., Williams, A., Arenillas, A., Rubiera, F., and Pis, J.J. 1999. Modelling NO x formation in coal particle combustion at high temperature: an investigation of the devolatilisation kinetic factors. Fuel, 78(10), 1171–1179.
  • Khatami, R., Stivers, C., and Joshi, K. 2012a. Combustion behavior of single particles from three different coal ranks and from sugar cane bagasse in O2/N2 and O2/CO2 atmospheres. Combustion & Flame, 159(3), 1253–1271.
  • Khatami, R., Stivers, C., and Levendis, Y.A. 2012b. Ignition characteristics of single coal particles from three different ranks in O 2/N 2 and O 2/CO 2 atmospheres. Combustion & Flame, 159(12), 3554–3568.
  • Kim, R.G., Li, D., and Jeon, C.H. 2014. Experimental investigation of ignition behavior for coal rank using a flat flame burner at a high heating rate. Exp. Thermal Fluid Sci., 54(4), 212–218.
  • Li, S., Yu, J., Wei, X., Guo, X., and Yang, C. 2014. Catalytic reduction of nitric oxide by carbon monoxide over coal gangue hollow ball. Fuel Process. Technol., 125(9), 163–169.
  • Liu, B., Zhang, Z., Zhang, H., Yang, H., and Zhang, D. 2014. An experimental investigation on the effect of convection on the ignition behaviour of single coal particles under various O 2 concentrations. Fuel, 116(6), 77–83.
  • Liu, H.B., and Liu, Z.L. 2010. Recycling utilization patterns of coal mining waste in China. Resources Conservation & Recycling, 54(12), 1331–1340.
  • Maffei, T., Khatami, R., Pierucci, S., Faravelli, T., Ranzi, E., and Levendis, Y.A. 2013. Experimental and modeling study of single coal particle combustion in O 2/N 2 and Oxy-fuel (O 2/CO 2) atmospheres. Combustion & Flame, 160(11), 2559–2572.
  • Meng, F., Yu, J., Tahmasebi, A., and Han, Y. 2013. Pyrolysis and Combustion Behavior of Coal Gangue in O2/CO2 and O2/N2 Mixtures Using Thermogravimetric Analysis and a Drop Tube Furnace. Energy & Fuels, 27(6), 2923–2932.
  • Molina, A., and Shaddix, C.R. 2007. Ignition and devolatilization of pulverized bituminous coal particles during oxygen/carbon dioxide coal combustion. Proc. Combustion Inst., 31(2), 1905–1912.
  • Ponzio, A., Senthoorselvan, S., Yang, W., Blasiak, W., and Eriksson, O. 2008. Ignition of single coal particles in high-temperature oxidizers with various oxygen concentrations. Fuel, 87(6), 974–987.
  • Prins, W., Siemons, R., Swaaij, W.P.M.V., and Radovanovic, M. 1989. Devolatilization and ignition of coal particles in a two-dimensional fluidized bed. Combustion & Flame, 75(1), 57–62.
  • Querol, X., Izquierdo, M., Monfort, E., Alvarez, E., Font, O., Moreno, T., … Wang, Y. 2008. Environmental characterization of burnt coal gangue banks at Yangquan, Shanxi Province, China. Int. J. Coal Geol., 75(2), 93–104.
  • Ren, J., Xie, C., Xuan, G., Qin, Z., Lin, J.Y., and Zhong, L. 2012. Combustion Characteristics of Coal Gangue under an Atmosphere of Coal Mine Methane. Energy & Fuels, 28(6), 3688–3695.
  • Riaza, J., Khatami, R., Levendis, Y.A., Álvarez, L., Gil, M.V., Pevida, C., … Pis, J.J. 2014. Single particle ignition and combustion of anthracite, semi-anthracite and bituminous coals in air and simulated oxy-fuel conditions. Combustion & Flame, 161(4), 1096–1108.
  • Shan, F., Lin, Q., Zhou, K., Wu, Y., Fu, W., Zhang, P., … Yi, B. 2017. An experimental study of ignition and combustion of single biomass pellets in air and oxy-fuel. Fuel, 188, 277–284.
  • Shepley, M.G., Pearson, A.D., Smith, G.D., and Banton, C.J. 2008. The impacts of coal mining subsidence on groundwater resources management of the East Midlands Permo-Triassic Sandstone aquifer, England. Q. J. Eng. Geol. Hydrogeology, 41(3), 425–438.
  • Song, C.Z., Wen, J.H., Li, Y.Y., Dan, H., Shi, X.Y., and Xin, S. 2017. Thermogravimetric Assessment of Combustion Characteristics of Blends of Lignite Coals with Coal Gangue. Paper presented at the International Conference on Mechanics and Mechanical Engineering.
  • Sun, C.L., and Zhang, M.Y. 1998. Ignition of Coal Particles at High Pressure in a Thermogravimetric Analyzer. Combustion & Flame, 115(1–2), 267–274.
  • Toftegaard, M.B., Brix, J., Jensen, P.A., Glarborg, P., and Jensen, A.D. 2010. Oxy-fuel combustion of solid fuels. Prog Energy Combust Sci. Prog. Energy Combustion Sci., 36(5), 581–625.
  • Vershinina, K.Y., Lapin, D.A., Lyrschikov, S.Y., and Shevyrev, S.A. 2018. Ignition of coal-water fuels made of coal processing wastes and different oils. Appl. Thermal Eng. 128, 235–243, January 5.
  • Wang, H., Liu, S., Wang, X., Shi, Y., Qin, X., and Song, C. 2017. Ignition and combustion behaviors of coal slime in air. Energ. Fuel., 31(10), 11439–11447.
  • Wang, J., Qin, Q., Hu, S., and Wu, K. 2015. A concrete material with waste coal gangue and fly ash used for farmland drainage in high groundwater level areas. J. Clean. Prod, 112, 631–638.
  • Xiao, H., Ma, X., and Kai, L. 2010. Co-combustion kinetics of sewage sludge with coal and coal gangue under different atmospheres. Energy Conversion & Management, 51(10), 1976–1980.
  • Xiaoyun, L.I., Zhao, R.D., Qin, J.G., and Jinhu, W.U. 2016. Thermogravimetric Investigation on Co-combustion Characteristics of Coal Gangue with Municipal Refuse Derived Fuel.
  • Xue, B.H., and Guo, K. 2011. The effective evaluation of flue gas desulphurization in coal gangue power plant based on BP neural network. China Mining Magazine.
  • Yang, Z., Zhang, Y., Liu, L., Wang, X., and Zhang, Z. 2016. Environmental investigation on co-combustion of sewage sludge and coal gangue: SO 2, NO x and trace elements emissions. Waste Manag., 50, 213–221.
  • Yu, J., Chang, L., Xie, W., Song, H., and Xie, K. 2006. A study on the ash from coal gangue fired power plant—characteristics and application. Paper presented at the International Pittsburgh Coal Conference.
  • Zhang, Y., Nakano, J., Liu, L., Wang, X., and Zhang, Z. 2015. Co-combustion and emission characteristics of coal gangue and low-quality coal. J. Thermal Anal. Calorimetry, 120(3), 1883–1892.
  • Zhong, H., and Wang, X.Y. 2005. Development of Circulating Fluidized Bed Combustion Technique. Power Equipment., 2005(2), 130–134
  • Zhou, C., Liu, G., Cheng, S., Fang, T., and Lam, P.K. 2014a. Thermochemical and trace element behavior of coal gangue, agricultural biomass and their blends during co-combustion. Bioresour. Technol., 166, 243–251.
  • Zhou, C., Liu, G., Wu, S., and Lam, P.K.S. 2014b. The environmental characteristics of usage of coal gangue in bricking-making: A case study at Huainan, China. Chemosphere, 95(1), 274–280.
  • Zhou, C.C., Liu, G.J., Fang, T., and Lam, K. 2015. Investigation on thermal and trace element characteristics during co-combustion biomass with coal gangue. Bioresour. Technol., 175 (175C), 454–462.
  • Zhou, K., Lin, Q., Hu, H., Hu, H., and Song, L. 2017. The ignition characteristics and combustion processes of the single coal slime particle under different hot-coflow conditions in N 2/O 2 atmosphere. Energy. , 136, 173–184, October 1.

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