활성탄 고정층에 대한 Tharonil의 흡착특성에 관한 연구

Study on Adsoption Characteristics of Tharonil on Activated Carbon Fixed Bed

  • 이종집 (천안공업대학 신소재응용화학과) ;
  • 유용호 (마산대학 ISO시스템과)
  • Lee, Jong-Jip (Department of Advanced Materials Chemical Technology, Cheonam National Technical College) ;
  • Yu, Yong-Ho (Department of International Standard Organization System)
  • 발행 : 2002.03.01

초록

To obtain the breakthrough characteristics for the design of fixed bed adsorption plant, adsorption experiment on granular activated carbon was performed with tharonil in the fixed bed. The pore diffusivity and surface diffusivity of tharonil estimated by the concentration-time curve and adsorption isotherm were $D_s=2.825{\times}10^{-9}cm^2/s,\;D_p=1.26{\times}10^{-5}cm^2/s$, respectively. From comparison of the pore diffusivity and surface diffusivity, it was found that surface diffusion was controlling step for intrapaticle diffusion. The breakthrough curve predicted by constant pattern-linear driving force model were shown to agree with the experimental results. The surface diffusivity and film mass transfer coefficient had no effect on the theoretical breakthrough curve but the adsorption isotherm had fairly influence on it. Appearance time of breakthrough curve is faster with the increase flow rate and inflow concentration of liquid. The utility of granular activated carbon is enhanced with the increase of bed height and with the decrease of inflow rate.

키워드

참고문헌

  1. 文星明, 化學藥品大辭典, p. 2332, 學團出版公社,1987
  2. Suzuki, M., Adsorption Engineering, pp. 95~120 Elsevier, 1990
  3. Crank. J., The Mathematics of Diffsion, Clarendon Pnsss, p. 922, 1966
  4. Kreyzig, E., Advanced Engineering Mathematics, p. 922, John Wlley & Sons, 1998
  5. 北川睦天 著, 金勇權 譯, 活性炭水處理技術과普理 p. 99, 신광문화사, 1995
  6. Carberry, J. J., J. AICHE., 6, 460, 1960 https://doi.org/10.1002/aic.690060323
  7. Wlke, R., Chang, P., J. AIChE., 1, 264, 1955 https://doi.org/10.1002/aic.690010222
  8. 北川睦夫 著, 金勇權 譯, Op.Cit. p. 66
  9. Ruthven, D. M., Principles of Adsorption & Ad-sorption Process, pp. 125~140, John Willey & Sons, 1984
  10. Peel, R. G., Benedek., Environ. Sci. & Tech., 14, 66, 1980 https://doi.org/10.1021/es60161a013