DOI QR코드

DOI QR Code

Evaluation on Reaction Kinetics of Cow Manure in Carbonization Process

탄화공정에서의 우분 반응속도 평가

  • Kim, Jae-Kyung (Department of Environmental Engineering, College of Engineering, Kyonggi University) ;
  • Lee, Min-Seok (Department of Environmental Engineering, College of Engineering, Kyonggi University) ;
  • Rhee, Seung-Whee (Department of Environmental Engineering, College of Engineering, Kyonggi University)
  • 김재경 (경기대학교 공과대학 환경에너지공학과) ;
  • 이민석 (경기대학교 공과대학 환경에너지공학과) ;
  • 이승희 (경기대학교 공과대학 환경에너지공학과)
  • Received : 2014.10.01
  • Accepted : 2014.11.12
  • Published : 2014.12.31

Abstract

Through the study of the basic characteristics of cow manure and the characteristics of carbonization residue, carbonization degree, conversion rate, kinetic reactions, and activation energy for cow manure were examined. Since the heating value of cow manure was very low, it was converted to carbonization residue as a fuel with heating value of 4,300 kcal/kg by carbonization processes. Conversion rate was increased rapidly up to 10 minutes of the initial reaction stage and was increased with increasing temperature. The carbonization of cow manure could be described by the 1st order reaction. Frequency factor(A) of reaction rate for cow manure was evaluated to be $1.34{\times}10^{-2}min^{-1}$, the activation energy was estimated to be 5,196.4 cal/mol. As carbonization temperature increased from $250^{\circ}C$ to $400^{\circ}C$, the kinetic reaction was increased from $0.2107min^{-1}$ to $0.0679min^{-1}$. From the result of the carbonization for cow manure, it can be determined that the optimal conditions of the carbonization process were 20 minutes in carbonization time and $350^{\circ}C$ for carbonization temperature.

우분의 기본 특성과 우분 탄화물의 특성에 대한 검토를 통해 탄화도, 전환율, 반응속도 및 활성화 에너지에 대하여 고찰하였다. 우분 시료 자체의 저위발열량은 272 kcal/kg로 낮게 나타나 연료로써의 개질이 필요하므로 탄화공정을 이용하여 탄화물의 발열량을 4,300 kcal/kg 이상인 연료로 전환 하였다. 전환율은 반응초기인 10분까지 급격히 증가하였으며, 온도가 증가함에 따라 높게 나타났다. 우분 탄화공정에서의 반응속도는 1차식으로 나타내었으며, 빈도인자(A)는 $1.34{\times}10^{-2}min^{-1}$, 활성화 에너지는 5,196.4 cal/mol로 평가되었다. 반응속도 상수는 $250^{\circ}C$일 때 $0.0679min^{-1}$, $400^{\circ}C$일 때 $0.2107min^{-1}$로 온도가 증가함에 따라 반응속도도 증가하는 것으로 나타났다. 우분 탄화에서의 반응속도에 대한 평가한 결과, 탄화공정의 최적조건은 탄화온도 $350^{\circ}C$, 탄화시간 20분으로 나타났다.

Keywords

References

  1. Korea energy management corporation, 2013 : The annual mandatory quotas of the regulated power providers under the RPS.
  2. Kang, T. J., Jeon, D. M., Jeon, Y. S., Kang, S. H., Lee, S. H., Kim, S. D., Kim, H. T., 2010 : A Study on Drying Kinetics of Low Rank Coal(Indonesia-IBC) through the Fixed-Bed Reactor Experiments, Journal of the Korean Institute of Resources Recycling, 19(6), pp. 43-50.
  3. Lee, M. S., Kim, J. K., Rhee, S. W., 2014 : Comparison to characteristics of carbonization residue from cow and chicken manure, Journal of the Korean Institute of Resources Recycling, In Press.
  4. Rhee, S. W., 2009 : An energy characteristics of carbonization residue produced from sewage sludge cake, Korea Chem. Eng. Res., 47(2) pp. 230-236.
  5. White, J. E., Catallo, W. J., Legendre, B. L., 2011 : Biomass pyrolysis kinetics: A comparative critical review with relevant agricultural residue case studies, Journal of Analytical and Applied Pyrolysis, 91(1), pp. 1-33. https://doi.org/10.1016/j.jaap.2011.01.004
  6. Yao, F., Wu, Q., Lei, Y., Guo, W., Xu, Y., 2008 : Thermal decomposition kinetics of natural fibers: Activation energy with dynamic thermogravimetric analysis, Polymer Degradation and Stability, 93(1), pp. 90-98. https://doi.org/10.1016/j.polymdegradstab.2007.10.012
  7. Rhee, S. W., 2012 : A study on the reaction kinetics of sewage sludge in carbonization process, Jounal of Korea society of waste management, 29(3), pp. 86-92.
  8. Bilbao, R., Arauzo, J. and Millera, A., 1990 : Kinetics of weight loss by thermal decomposition of different lignocellulosic Materials. Relation between the results obtained from isothermal and dynamic experiments, Thermochimica acta, 165(1), pp. 103-112. https://doi.org/10.1016/0040-6031(90)80210-P
  9. Bilbao, R., Arauzo, J. and Millera, A., 1995 : Kinetics and modeling of gas formation in the thermal decomposition of powdery cellulose and pine sawdust, Ind. Eng. Chem. Res., 34(3), pp. 786-793. https://doi.org/10.1021/ie00042a010
  10. Sharma, R. K., Wooten, J. B, Baliga, V. L, Hajaligol, M. R., 2001 : Characterization of chars from biomass-derived materials: pectin chars, Fuel, 80(12), pp. 1,825-1,836. https://doi.org/10.1016/S0016-2361(01)00066-7
  11. Baker, R. R., 1979 : Kinetic mechanism of the thermal decomposition of tobacco, Thermochimica Acta, 28(1), pp. 45-57. https://doi.org/10.1016/0040-6031(79)87006-9
  12. Hajaligol, M., Howard, J. B. and Peters, W. A., 2002 : Product compositions and kinetics for rapid pyrolysis of cellulose, Industrial & Engineering Chemistry Process Design and Development, 21(3), pp. 457-465.
  13. Suuberg, E. Aarna, .I., 1998 : A study of the reaction order of the NO-carbon gasification reaction, Symposium (International) on Combustion, 27(2), pp. 3,061-3,068.
  14. Rhee, S. W., Park, H. S., 2010 : An effect of sewage sludge content on energy characteristics of carbonization residue of waste biomass, Jounal of Korea society of waste management, 27(7), pp. 617-624.
  15. Lee, M. S., Kim, J. K., Rhee, S. W., 2014 : Characteristics of carbonization residue from chicken manure, Journal of Korea society of waste management, 31(1), pp. 105-112. https://doi.org/10.9786/kswm.2014.31.1.105
  16. Kim, J. K., Lee, M. S., Rhee, S. W., 2014 : Examination on reaction kinetics of pig manure in carbonization process, Journal of Korea society of waste management, 31(2), pp. 184-190. https://doi.org/10.9786/kswm.2014.31.2.184
  17. Rhee, S. W., Cho, Y. H., 2008 : A study on characteristics of carbonization residue produced from woody biomass, Jounal of Korea society of waste management, 25(6), pp. 533-539.
  18. Rhee, S. W., Choi, H. H., 2009 : Energy characteristics of carbonization residue produced from food waste, Jounal of Korea society of waste management, 26(1), pp. 36-43.
  19. Rhee, S. W., Choi, H. H., Park, H. S., 2011 : A study on energy characteristics of carbonization residue produced from rice husk, Jounal of Korea society of waste management, 28(3), pp. 303-310
  20. Rhee, S. W., Park, H. S., 2010 : Effect of mixing ratio of woody waste and food waste on the characteristics of carbonization residue, Journal of Material Cycles and Waste Management, 12(3), pp. 220-226. https://doi.org/10.1007/s10163-010-0291-z
  21. Lee, M. S., Kim, J. K., Rhee, S. W., 2014 : Characteristics of carbonization residue from chicken manure, Journal of Korea society of waste management, 31(1), pp. 105-112. https://doi.org/10.9786/kswm.2014.31.1.105