Membrane Distillation of the Aqueous Glucose Solution

Glucose 수용액의 막증류

  • 정건용 (서울산업대학교 화학공학과)
  • Published : 2000.12.01

Abstract

The aqueous glucose solution was separated by the membrane distillation with hydrophobic pojytetrafluoroethylcnc microfiltration membrane, The nominal pore size of the membrane was 0.2${\mu}m$. As the operating temperature increased from 40$^{\cirt}C$ to 70$^{\cirt}C$, the membrane permeation flux increased from 3.6 LMH to IL2 LlVIH, but the glucose rejection decreased 99% to 65% Also, the permeation nux and rejection decreased 25% and 6%, respectively, as the concentration of glucose solution increased 2 wt% to 4 wt%.

공칭크기 0.2${\mu}m$인 소수성 PTFE 정밀여과막을 이용하여 glucose 수용액을 막증류하였다. Glucose 수용액 온도를 40$^{\cirt}C$에서 70$^{\cirt}C$로 상승시킬 경우 막 투과 유속은 3.6 LMH에서 11.2 LMH로 3배가량 증가하였으나 glucose 배제율은 99%에서 65%까지 감소하였다. 또한 glucose 수용액 농도를 2wt%에서 4wt%로 증가시키면 투과유속과 배제율은 각각 약 25% 및 6% 감소하였다.

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References

  1. J. Membrane Sci. v.120 K. W. Lawson;D. R. Lloyd
  2. J. Membrane Sci. v.121 P. Godino;L. Pena;J. I. Mengual
  3. J. Membrane Sci. v.124 K. W. Lawson;D. R. Lloyd
  4. J. Memberane Sci. v.144 L. martinez-Diez;M. I. Vazquez-Gonzalez;F. J. Florido-Diaz
  5. J. Memberane Sci. v.144 M. Gryta;M. Tomaszewska
  6. Filtration & Separation A. Burgoyne;M. M. Vahdati
  7. Membrane Handbook W. S. Winston Ho;K. K. Sirkar
  8. J. Membrane Sci. v.102 M. Tomazewska;M. Gryta;A. W. Morawski
  9. Chem. Eng. Technol. v.19 R. Rautenbach;R. Knauf;A. Struck;J. Vler
  10. Chem. Eng. Sci. v.51 no.8 F. A. Banat;J. Simandl
  11. J. Membrane Sci. v.113 G. W. Meindersma;M. Kuczynski
  12. Korea Italy Seminar on Sci. & Tech. E. Drioli
  13. Desalination v.121 M. Gryta;K. Karakulski