A Study on Aerobic Fluidized-Bed Biofilm Reactor for Treating Industrial Wastewaters(III) -Mathematical model for organic removal-

산업폐수처리를 위한 호기성 생물막 유동층 반응기의 연구(III) -유기물 제거에 관한 수학적 모델-

  • 안갑환 (지산전문대 환경관리과) ;
  • 박상준 (경원대학교 공과대학 화학공학과) ;
  • 송승구 (부산대학교 공과대학 화학공학과)
  • Published : 1993.12.01

Abstract

A mathematical model for organic removal efficiency was investigated in a fluidized bed biofilm reactor by changing the feed flow rate, the residence time and the recycle flow rate. In batch experiment, organic removal could be assumed as first order and an intrinsic first order rate constant(k1) was found $6.4{\times}^{-6}cm^3/mg{\cdot}sec$ at influent COD range of 3040 - 6620 mg/L. In continuous experiment, at the condition of the influent COD, 3040 mg/L, the superficial upflow velocity, 0.47 cm/sec, the biofilm thickness 336 ${\mu}m$ and the biofilm dry density 0.091 g/mL, the calculated COD removal efficiency from the mathematical model gave 60% which was very close to the observed value of 66 %. As the feed flow rate was increased, the COD removal efficiency was sharply decreased and at constant feed flow rate, the COD removal efficiency was decreased also as the residence time being decreased.

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