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Basic Design and Sensitivity Analysis of 3 MWth Chemical Looping Combustion System for LNG Combustion and Steam Generation

LNG 연소 및 스팀생산을 위한 3 MWth 급 매체순환연소 시스템의 기본설계 및 민감도 분석

  • 류호정 (한국에너지기술연구원) ;
  • 남형석 (한국에너지기술연구원) ;
  • 황병욱 (한국에너지기술연구원) ;
  • 김하나 (한국에너지기술연구원) ;
  • 원유섭 (한국에너지기술연구원) ;
  • 김대욱 (한국에너지기술연구원) ;
  • 김동원 (한국전력공사 전력연구원) ;
  • 이규화 (한국전력공사 전력연구원) ;
  • 백점인 (한국전력공사 전력연구원)
  • Received : 2021.08.24
  • Accepted : 2021.10.11
  • Published : 2021.10.30

Abstract

Basic design of 3 MWth chemical looping combustion system for LNG combustion and steam generation was conducted based on the mass and energy balance and the previous reactivity test results of oxygen carrier particles. Process configuration including fast fluidized bed (air reactor), loop seal and bubbling fluidized bed (fuel reactor) was confirmed and their dimensions were determined by mass balance. Then, the external fluidized bed heat exchanger (FBHE) was adopted based on the energy balance to extract heat from the system. The optimum reactor design and operating condition was confirmed with sensitivity analysis by modifying system configuration based on the mass and energy balance.

Keywords

Acknowledgement

본 연구는 2020년도 정부(산업통상자원부)의 재원으로 한국에너지기술평가원의 지원을 받아 수행된 연구입니다(20208401010070, 3 MWth 매체순환연소스팀생산 기술개발).

References

  1. H. J. Ryu, H. Kim, D. Lee, S. H. Jo, S. Y. Lee, and J. I. Baek, "Reduction characteristics of oxygen carrier particle for different gaseous fuels in a bubbling fluidized bed reactor", Journal of Energy & Climate Change, Vol. 16, No. 1, 2021, pp. 42-50, doi: https://doi.org/10.22728/jecc.2021.16.1.042.
  2. D. Lee, H. Nam, H. Kim, B. W. Hwang, J. I. Baek, and H. J. Ryu, "Experimental Screening of oxygen carrier for a pressurized chemical looping combustion", Fuel Processing Technology, Vol. 218, 2021, pp. 106860, doi: https://doi.org/10.1016/j.fuproc.2021.106860.
  3. H. J. Ryu, D. Lee, H. Nam, B. W. Hwang, H. Kim, Y. Won, H. W. Ra, S. M. Yoon, and J. I. Baek, "Combustion characteristics of natural gas and syngas using mass produced oxygen carrier particle in a 0.5 MWth chemical looping combustion system", Trans Korean Hydrogen New Energy Soc, Vol. 32, No. 2, 2021, pp. 134-142, doi: https://doi.org/10.7316/KHNES.2021.32.2.134.
  4. H. J. Ryu, D. Lee, H. Nam, B. W. Hwang, H. Kim, Y. Won, and J. I. Baek, "Effects of temperature, pressure, gas velocity, and capacity on reduction characteristics of mass produced particle in a 0.5 MWth chemical looping combustion system", Trans Korean Hydrogen New Energy Soc, Vol. 32, No. 1, 2021, pp. 53-62, doi: https://doi.org/10.7316/KHNES.2021.32.1.53.
  5. B. C. Kwon, M. Kang, N. K. Park, T. J. Lee, J. I. Baek, U, S. Kim, and H. J. Ryu, "Improvement of oxygen mobility with the formation of defects in the crystal structure of red mud as an oxygen carrier for chemical looping combustion", Journal of Nanoscience and Nanotechnology, Vol. 20, No. 11, 2020, pp. 7075-7080, doi: https://doi.org/10.1166/jnn.2020.18845.
  6. H. J. Ryu, S. H. Jo, S. Y. Lee, D. Lee, H. Nam, B. W. Hwang, H. Kim, and J. I. Baek, "Solid Circulation and Reaction Characteristics of Mass Produced Particle in a 0.5 MWth Chemical Looping Combustion System", Trans Korean Hydrogen New Energy Soc, Vol. 30, No. 2, 2019, pp. 170-177, doi: https://doi.org/10.7316/KHNES.2019.30.2.170.
  7. J. Kim, D. Lee, H. Nam, S. H. Jo, B. W. Hwang, J. I. Baek, and H. J. Ryu, "Reaction characteristics of new oxygen carrier for 0.5 MWth chemical looping combustion system at high temperature and high pressure conditions", Trans Korean Hydrogen New Energy Soc, Vol. 29, No. 5, 2018, pp, 473-482, doi: https://doi.org/10.7316/KHNES.2018.29.5.473.
  8. H. J. Ryu, D. Lee, H. Nam, S. H. Jo, S. Y. Lee, Y. Won, and J. I. Baek, "Design and feasibility study on 3 MWth chemical looping combustion system", Journal of Energy and Climate Change, Vol. 14, No. 1, 2019, pp. 11-21, doi: https://doi.or.kr/10.22728/jecc.2019.14.1.011.
  9. H. J. Ryu and G. T. Jin, "Conceptual design of 50 kW thermal chemical-looping combustor and analysis of variables," Energy, Eng. J, Vol. 12, No. 4, 2003, pp. 289-301, Retrieved from https://scienceon.kisti.re.kr/srch/selectPORSrchArticle.do?cn=JAKO200311922056352&SITE=CLICK.
  10. H. J. Ryu, D. H. Lee, M. S. Jang, J. H. Kim, and J. I. Baek, "Conceptual design and feasibility study on 0.5 MWth pressurized chemical looping combustor", Trans Korean Hydrogen New Energy Soc, Vol. 27, No. 2, 2016, pp. 201-210, http://dx.doi.org/10.7316/KHNES.2016.27.2.201.
  11. Kyung Dong City Gas, 2020 Ulsan Metropolitan City rules and rates for city gas service, Retrieved from https://www.kdgas.co.kr/AHOME/center/supplyRule.php.
  12. H. J. Ryu, J. Kim, B. W. Hwang, H. Nam, D. Lee, S. H. Jo, and J. I. Baek, "Hydrodynamics and solid circulation characteristics of oxygen carrier for 0.5 MWth chemical l ooping combustion system", Trans Korean Hydrogen New Energy Soc, Vol. 29, No. 6, 2018, pp. 635-641, dio: https://doi.org/10.7316/KHNES.2018.29.6.635.
  13. H. J. Ryu, S. H. Jo, S. Y. Lee, D. Lee, H. Nam, B. W. Hwang, H. Kim, W. Won, J. Kim, and J. I. Baek, "Effects of cyclone and freeboard geometry on solid entrainment loss in a gas-solid fluidized bed", Trans Korean Hydrogen New Energy Soc, Vol. 30, No. 4, 2019, pp. 330-337, doi: https://doi.org/10.7316/KHNES.2019.30.4.330.
  14. H. J. Ryu, S. H. Jo, S. Y. Lee, D. Lee, H. Nam, B. W. Hwang, H. Kim, Y. Won, J. Kim, and J. I. Baek, "Effect of loop seal geometry on solid circulation in a gas-solid fluidized bed", Trans Korean Hydrogen New Energy Soc, Vol. 30, No. 4, 2019, pp. 312-319, doi: https://doi.org/10.7316/KHNES.2019.30.4.312.