Issue
Korean Journal of Chemical Engineering,
Vol.39, No.8, 2089-2098, 2022
Impact of ammonium sulfate and kaolin on ash deposition during co-firing of straw pellets and pulverized coal
This study investigated the effects of additives on reduction in ash deposit formation while co-firing straw pellets with pulverized coal. A pulverized-fuel-fired combustion system was used to co-combust sub-bituminous coal and herbaceous biomass. Kaolin (Al2Si2O5(OH)4) and ammonium sulfate ((NH4)2SO4) were used to determine the influence of additives on ash deposit reduction. Experiments were performed in an 80 kWth scale combustion system for various proportions of additives (proportions of 1 wt% and 4 wt% of fuel). Weight of deposited ash was measured concurrently. In the experimental results, different trends from several previous researches were observed regarding effectiveness of the additives: Addition of kaolin increased deposition by up to 19%, while ammonium sulfate increased deposition by up to 36%. Thermodynamic equilibrium of all experimental cases was calculated based on ash composition, and we reveal that in our experimental cases kaolin promotes formation of K-silicates of low melting temperature, while ammonium sulfate reacts with KCl to increase melting temperatures for K-Al-silicates. This demonstrates that the fuel-specific choice of additives is important to effectively reduce ash deposition.
[References]
  1. Thrän D, Peetz D, Schaubach K, Backéus S, Benedetti L, Bruce L, Global wood pellet industry and trade study 2017. IEA Bioenergy Task, 40 (2017).
  2. Fernández MJ, Mediavilla I, Barro R, Borjabad E, Ramos R, Carrasco JE, Fuel, 239, 1115, 2019
  3. Pisa I, Lazaroiu G, Fuel Process. Technol., 104, 356, 2012
  4. Sander B, Biomass Bioenerg., 12, 177, 1997
  5. Christensen KA, Livbjerg H, Aerosol Sci. Technol., 33, 470, 2000
  6. Öhman M, Nordin A, Hedman H, Jirjis R, Biomass Bioenerg., 27, 597, 2004
  7. Öhman M, Boman C, Hedman H, Nordin A, Boström D, Biomass Bioenerg., 27, 585, 2004
  8. Xu L, Liu J, Kang Y, Miao Y, Ren W, Wang T, Energy Fuels, 28, 5640, 2014
  9. Wang L, Hustad JE, Skreiberg O, Skjevrak G, Grønli M, Energy Procedia, 20, 20, 2012
  10. Aho M, Vainikka P, Taipale R, Yrjas P, Fuel, 87, 647, 2008
  11. Kassman H, Bäfver L, Åmand LE, Combust. Flame, 157, 1649, 2010
  12. Wu H, Pedersen MN, Jespersen JB, Aho M, Roppo J, Frandsen FJ, Glarborg P, Energy Fuels, 28, 199, 2014
  13. Wu H, Bashir MS, Jensen PA, Sander B, Glarborg P, Fuel, 113, 632, 2013
  14. Wu H, Glarborg P, Frandsen FJ, Dam-Johansen K, Jensen PA, Energy Fuels, 25, 2862, 2011
  15. Gale TK, Wendt JOL, Combust. Flame, 131, 299, 2002
  16. Bashir MS, Jensen PA, Frandsen F, Wedel S, Dam-Johansen K, Wadenbäck J, Pedersen ST, Fuel Process. Technol., 97, 93, 2012
  17. Zeuthen JH, Jensen PA, Livbjerg H, Energy Fuels, 21, 699, 2007
  18. Kassman H, Pettersson J, Steenari BM, Åmand LE, Fuel Process. Technol., 105, 170, 2013
  19. Shao Y, Wang J, Preto F, Zhu J, Xu C, Energies, 5, 5171, 2012
  20. Bale CW, Bélisle E, Chartrand P, Decterov SA, Eriksson G, Gheribi AE, Hack K, Jung IH, Kang YB, Melançon J, Calphad, 54, 35, 2016
  21. Jagodzińska K, Gądek W, Pronobis M, Kalisz S, IOP Conf. Ser. Earth Environ. Sci., 214, 12080, 2019
  22. Niu Y, Lv Y, Zhang X, Wang D, Li P, Hui S, Appl. Therm. Eng., 154, 485, 2019
  23. Lu Y, Wang Y, Xu Y, Li Y, Hao W, Zhangs Y, Appl. Therm. Eng., 121, 224, 2017
  24. Chae T, Lee J, Yang W, Ryu C, J. Mech. Sci. Technol., 30, 3861, 2016
  25. Choi M, Li X, Kim K, Sung Y, Choi G, J. Mech. Sci. Technol., 32, 4517, 2018
  26. Wang X, Rahman ZU, Zhaomin L, Zhu Y, Ruan R, Deng S, Zhang L, Tan H, Agronomy, 11, 810, 2021
  27. Öhman M, Boström D, Nordin A, Hedman H, Energy Fuels, 18, 1370, 2004
  28. Morris J, Mechanisms and mitigation of agglomeration during fluidized bed combustion of biomass, PhD Thesis (2021).
  29. Wu H, Glarborg P, Frandsen FJ, Dam-Johansen K, Jensen PA, Sander B, Fuel, 90, 1980, 2011
  30. Plaza P, The development of a slagging and fouling predictive methodology for large scale pulverised boilers fired with coal/biomass blends, PhD Thesis (2013).
  31. Wu H, Pedersen AJ, Glarborg P, Frandsen FJ, Dam-Johansen K, Sander B, Proc. Combust. Inst., 33, 2845, 2011
  32. Wang Y, Li X, Wendt JOL, Energy Fuels, 32, 4391, 2018
  33. Lee BH, Kim SI, Kim SM, Oh DH, Gupta S, Jeon CH, Korean J. Chem. Eng., 33, 147, 2016
  34. Liu C, Liu Z, Zhang T, Huang X, Guo J, Zheng C, Energy Fuels, 31, 2596, 2017
  35. Lindström E, Sandström M, Boström D, Öhman M, Energy Fuels, 21, 710, 2007