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Experimental Study on Millimeter Scale Two Phase Catalytic Reactor

밀리미터 스케일의 이상 분해 반응기에 대한 실험적 연구

  • 조정훈 (한국과학기술원 대학원 항공우주공학전공) ;
  • 이대훈 (한국과학기술원 정보전자연구소) ;
  • 권세진 (한국과학기술원 항공우주공학전공)
  • Published : 2004.03.01

Abstract

Experiment study on a down scaled two-phase catalytic reactor is presented. As a preliminary step for the development of catalytic reactor, nano-particulate catalyst was prepared. Perovskite La$\_$0.8/Sr$\_$0.2/CoO$_3$is chosen and synthesized as a catalyst considering superior catalytic performance in reduction and oxidation process where oxygen is involved among the reagent. Reactor that has a scale of 2${\times}$10${\times}$25mm was made by machining of A1 block as a layered structure considering further extension to micro-machining. Hydrogen peroxide of 70wt% was adopted as reactant and was provided to the reactor loaded with 1.5 g of catalyst. Reactant flow rate was varied by precision pump with a range of 0.15cc/min to 17.2cc/min. Temperature distribution within reactor was recorded by 3 thermocouples and total amount of liquid product was measured. Temperature distribution and factors that affect temperature were observed and relation between temperature distribution and production rate was also analyzed. Relative time scale plays a significant role in the performance of the reactor. To obtain steady state operation, appropriate ratio of flow rate, catalyst mass and reactor geometry is required and furthermore to get more efficient production rate temperature distribution should be evenly distributed. The database obtained by the experiment will be used as a design parameter for micro reactor.

Keywords

References

  1. Dae Hoon Lee, Dae Eun Park, Joon Bo Yoon, Sejin Kwon and Euisik Yoon, 2002, 'Fabrication and Test of a MEMS Combustor and Reciprocating Device,' Journal of Micromechanics and Microengineering, Vol. 12, No. 1, pp. 26-34 https://doi.org/10.1088/0960-1317/12/1/305
  2. Srinivasan R., Firebaugh S. L., Hsing I. M., Ryley J., Harold M. P., Jensen K. F., and Schidt M. A., 1997, 'Chemical Performance and High Temperature Characterization of Micromachined Chemical Reactors,' Transducers 97. International Conference on Solid State Sensors and Actuators 1C3.01 https://doi.org/10.1109/SENSOR.1997.613608
  3. Sukhan Lee and Yonggyo Seo, 2002, 'The Status of Micro Fuel Cell Research in Korea,' Proceeding of Power MEMS 2002, International Workshop on Power MEMS, Tsukuba, Japan, pp. 10-13
  4. Richards, C. D., Bahr, D. F. and Richards, R. F., 2002, 'A Micro Heat Engine for MEMS Power,' ASME IMECE 2002-39385
  5. Jenifer Brakel, 2001, 'Microreactors : An Invention of the Future,' Chemical Reaction Engineering Weekly News, April 9, Univ. Michigan
  6. http://dcwww.epfl.ch/icp/ICP-3/ICP3-Research.html
  7. Kharton V .V., Figueiredo F. M., Kovalevsky A. V., Viskup A. P., Naumovich E. N., Yaremchenko A. A., Bashmakov I. A., Marques F. M. B., 2002, 'Processing, Microstructure and Properties of $LaCoO_{3-\delta}$,' Journal of European Ceramic Society 21, 2301-2309 https://doi.org/10.1016/S0955-2219(01)00199-6
  8. Mineshige, A., Kobune, M., Fujii, S., Ogumi, Z., Inaba, M., Yao, T. and Kikichis K., 1999, 'Metal- Insulator Transition and Crystal Structure of $La_{1-x}Sr_xCoO_3$ as Functions of Sr-Content, Temperature, and Oxygen Partial Pressure,' J. Solid State Chemistry 142, pp. 374-381 https://doi.org/10.1006/jssc.1998.8051
  9. Taguchi, H., Yoshioka H. and Nagao, M., 1994, 'Synthesis of Perovskite-type $LaCoO_3$ Uing Poly(acrylic acid),' J. Material science letters 13, pp. 891-892 https://doi.org/10.1007/BF00273240
  10. Kuo, K. K., 1986, Principles of Combustion, John Wiley & Sons
  11. Giuseppe Biardi and Giancarlo Baldi, 1999, 'Three-phase catalytic reactors,' Catalysis Today 52, pp. 223-234 https://doi.org/10.1016/S0920-5861(99)00077-2
  12. Catalysis Today v.52 Three-phase catalytic reactors Giuseppe Biardi;Giancarlo Baldi https://doi.org/10.1016/S0920-5861(99)00077-2

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