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Oxygen Transfer and Hydraulic Characteristics in Bubble Column Bioreactor Applied Fine Bubble Air Diffusing System

미세기포 산기장치를 적용한 타워형 생물반응기의 산소전달 및 수력학적 특성

  • Received : 2010.11.18
  • Accepted : 2012.11.28
  • Published : 2012.11.30

Abstract

For improving performance of conical air diffuser generating fine bubble, both experimental and numerical simulation method were used. After adapting diffusers inner real scale bubble column, suitable for various diffuser submergence, the effect of diffuser submergence on oxygen transfer performance such as Oxygen Transfer Coefficient ($K_{L}a_{20}$) and Standard Oxygen Transfer Efficiency (SOTE) was investigated empirically. As flow patterns for various diffuser number and submergence were revealed throughout hydrodynamic simulation for 2-phase fluid flow of air-water, the cause of the change for oxygen transfer performance was cleared up. As results of experimental performance, $K_{L}a_{20}$ was increased slightly by 7% and SOTE was increased drastically by 39~72%, 5.6% per meter. As results of numerical analysis, air volume fraction, air and water velocity in bioreactor were increased with analogous flow tendency by increasing diffuser number. As diffuser submergence increased, air volume fraction, air and water velocity were decreased slightly. Because circulative co-flow is determinant factor for bubble diffusion and rising velocity, excessive circulation intensity can result to worsen oxygen transfer by shortening bubble retention time and amount.

본 연구에서는 원뿔형으로 개발된 미세기포형 산기관의 성능향상을 위하여 운용적 측면에서 실험과 전산모사적 방법을 이용하였다. 산기관 잠김깊이의 변화에 대해 성능실험이 용이한 실증 규모의 타워형 생물반응기에 산기관을 장착하여, 잠김깊이가 표준산소전달계수($K_{L}a_{20}$) 및 표준산소전달효율(SOTE) 등 산소전달 성능에 미치는 영향을 실험적으로 연구하였다. 또한, 2상 유동에 관한 유체역학적 전산모사를 이용하여 산기관 수와 잠김깊이에 대한 유동현상을 파악함으로써 산소전달 성능변화에 대한 원인을 규명하였다. 산소전달 성능실험결과, 산기관의 잠김깊이를 6 m에서 12 m로 증가시킴에 따라 표준산소 전달계수는 7% 증가하였으나 표준산소전달효율은 39~72% (5.6 %/m)로 대폭 상승하였다. 유동 해석결과, 산기관의 수가 증가함에 따라 공기 체적분율 및 공기와 시험수의 유속 모두 증가하였으며, 공기와 시험수의 유속 경향은 유사하게 나타났다. 잠김깊이가 증가함에 따라서 공기 체적분율, 공기 및 시험수의 유속은 조금씩 감소하는 경향을 나타냈다. 선회 병류유동은 기포류의 확산과 상승속도를 결정하는 주요 인자로서 선회강도가 과도하게 큰 경우에는 기포 체류시간과 체류량이 감소되므로 산소전달 성능을 저하를 예측할 수 있었다.

Keywords

References

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