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Consideration on the Prediction Approach of Ash Deposition Propensity in Coal-fired Boilers

석탄 보일러에서 회분 부착성향 예측 접근 방법에 대한 고찰

  • Kim, Daehee (Energy Technology Institute, Hyundai Heavy Industries) ;
  • Choi, Sangmin (Department of Mechanical Engineering, Korea Advanced Institute of Science and Technology) ;
  • Kim, Jung-Rae (Energy Technology Institute, Hyundai Heavy Industries)
  • 김대희 (현대중공업 에너지기술연구소) ;
  • 최상민 (한국과학기술원 기계공학과) ;
  • 김정래 (현대중공업 에너지기술연구소)
  • Received : 2017.04.07
  • Accepted : 2017.11.28
  • Published : 2017.12.30

Abstract

Various approaches have been proposed to predict the ash deposition (slagging and fouling) propensity of coal, which is essential in maintaining high efficiency and preventing corrosion/damage of a coal-fired boiler. The common method is to establish an index of the ash deposition propensity based on elementary coal composition and advanced characterization of ash properties, which is readily applicable to design, operation and maintenance of coal-fired boilers. Although many indexes have been developed for this purpose, their validity is still not satisfactory in actual applications to particular coal types or operating conditions. This paper reviews the status of predictive approaches for the ash deposition propensity, and assesses the performance of existing indexes by comparing the results for selected coals. This work will contribute to the development of a comprehensive and practical method for prediction of the ash deposition propensity.

Keywords

References

  1. T. Moskal, S. Scott, Economic Consequences of Boiler Cheanning Effectiveness, Technical Publication, Report No. DPTP-98-1, Diamond Power International, Lancaster, Ohio, 1998.
  2. H.D. Lee, J.K. Kim, Combustion Characteristics of Two Imported Indonesia Coals as a Pulverized Fuel of Thermal Power Plants, Energy Engg. J., 19(2) (2010) 136-142.
  3. J.G. Singer, Combustion, Fossil Power Systems: A Reference Book on Fuel Burning and Steam Generation, Combustion Engineering, Windsor, CT, 1981.
  4. A.F. Stam, W.R. Livingston, M.F.G, Cremers, G. Brem, Review of Models and Tools for Slagging and Fouling Prediction for Biomass Co-combustion, Task 32, 2009.
  5. H.Y. Park, E.H. Kim, Y.J. Kim, H.S. Im, K.S. Kim, J.E. Lee, Advanced Slagging Propensity of Coal and its Assessment with the Conventional Indices, Energy Engg. J., 21(4) (2012) 427-434. https://doi.org/10.5855/ENERGY.2012.21.4.427
  6. S.H. Lee, C.S. Park, Prediction of Slagging Propensity of Coal Ash, Energy Engg. J., 4(1) (1995) 42-51.
  7. S.K. Knudsen, Numerical Investigation of Ash Deposition in Straw-fired Boilers- Using CFD as the Framework for Slagging and Fouling Predictions, Doctoral Thesis, Technology Institute of Energy, University of Aalborg, Denmark, 2001.
  8. K.J. An, B.H. Lee, S.I. Kim, C.H. Jeon, Study on Slagging Characteristics of Hybrid Coals using the Thermo-mechanical Analysis, The KSME Symposium, 2013, 59-61.
  9. N. Mendes, E. Bazzo, Characterization and Growth Modeling of Ash Deposits in Coal Fired Boilers, Powder Technol., 217 (2012) 61-68. https://doi.org/10.1016/j.powtec.2011.10.009
  10. R.W. Bryers, Firing Slagging, Fouling, and High-temperature Corrosion of Heat-transfer Surface due to Impurities in Stream-raising Fuels, Prog. Energy Combust. Sci., 29 (1996) 29-120.
  11. S.W. Chung, H.T. Kim, S.H. Lee, J.S. Park, A Study on the Slagging Behavior of Coal Ash in Gasifier using DTF, Energy Engg. J., 4(2) (1994) 203-213.
  12. B.J. Jung, High Temperature Viscosity Measurement of Coal Ash Slags in Oxidizing Atmosphere, Energy Engg. J., 4(3) (1995) 324-330.
  13. B.C. Choi, H.T. Kim, Phase Equilibrium Analysis of Slagging Propensity of Coal Ash in Combustion/Gasification Environments, The Korean Society for Energy Engineering Symposium, 1999, 75-81.
  14. B. Jung, J. Yi, K.B. Lee, Y. Yun, Characteristics of Coal Ash Melting in Bench Scale Entrained Coal Gasifier, Energy Eng. J., 8(1) (1999) 127-136.
  15. K. Kang, J. Lee, T. Chae, C. Ryu, W. Yang, An Experimental Study on Slagging/Fouling Characteristics for Various Coals in a 50kWth Pulverized Coal Combustion System, The 45th KOSCO Symposium, 2012, 107-109.
  16. B.C. Choi, H.T. Kim, W.G. Chun, A Study on the Slagging Behavior with Various Composition of Coal Ash, Energy Engg. J., 8(3) (1999) 445-451.
  17. Y.S. Kim, Y.H. Bae, J.J. Yoon, Influence of Bituminous Coal Characteristics on Thermal Utility Boiler Design, The KSME Symposium, 2002, 137-156.
  18. B.P. Lim, B.C. Choi, H.T. Kim, Studies of Rate of Ash Deposit of Various Coals for Analysis of IGCC Fouling Effect, The Korean Society for Energy Engineering Symposium, 2000, 61-66.
  19. B.P. Lim, B.C. Choi, H.T. Kim, Numerical Model of Ash Deposition Behavior in the Bench Scale Entrained-bed Gasifier with DTF(Drop Tube Furnace), The Korean Society for Energy Engineering Symposium, 2001, 25-32.
  20. L.Y. Huang, J.S. Norman, M. Pourkashanian, A. Williams, Prediction of Ash Deposition on Superheater Tubes from Pulverized Coal Combustion, Fuel, 75(3) (1996) 271-279. https://doi.org/10.1016/0016-2361(95)00220-0
  21. H. Wang, J.N. Harb, Modeling of Ash Deposition in Large-scale Combustion Facilities Burning Pulverized Coal, Prog. Energy Combust. Sci., 23 (1997) 267-282. https://doi.org/10.1016/S0360-1285(97)00010-5
  22. F.C.C. Lee, F.C. Lockwood, Modelling Ash Deposition in Pulverized Coal-fired Applications, Prog. Energy Combust. Sci., 25 (1999) 117-132. https://doi.org/10.1016/S0360-1285(98)00008-2
  23. Z. Ma et al., A Comprehensive Slagging and Fouling Frediction Tool for Coal-fired Boilers and its Validation/application, Fuel Proc. Tech., 88 (2007) 1035-1043. https://doi.org/10.1016/j.fuproc.2007.06.025
  24. M.Y. Hwang, C.H. Jeon, J.H. Song, G.B. Kim, S.M. Kim, M.S. Park, Coal Ash Combustion Simulation for 500-MW Coal-firing Boiler, Trans. Korean Soc. Mech. Eng. B, 35(9) (2011) 939-946. https://doi.org/10.3795/KSME-B.2011.35.9.939
  25. J. Hong, H.J. Jeong, J. Song, J. Hwang, Numerical Study on the 300 MW Shell-type One-stage Entrained Flow Coal Gasifier Apllied with 4-Layer Slagging Model, J. Korean Soc. Combust., 17(1) (2012) 1-11.
  26. K. Jang, K. Ham, K.Y. Huh, H. Park, Prediction of Ash Deposition Propensity in a Pilot-scaled Pulverized Coal Combustion, The 46th KOSCO Symposium, 2013, 87-90.
  27. J.D. Watt, F. Fereday, The Flow Properties of Slags Formed from the Ashes of British Coals: Part 1 Viscosity of Homogeneous Liquid Clags in Relation to Slag Composition, J. Inst. Fuel, 42 (1969) 99-103.
  28. T.R. Bott, Inorganic Transformations and Ash Deposition during Combustion, United Engineering Trustees Inc., 1992.
  29. A. Lawrence, R. Jumar, K. Nandakumar, K. Narayanan, A Novel Tool for Assessing Slagging Propensity of Coals in PF Boilers, Fuel, 87 (2008) 946-950. https://doi.org/10.1016/j.fuel.2007.07.028