Ochieng Aoyi, Ogada Tom, Sisenda William, Wambua Paul
Chemical Engineering Department, University of Cape Town, Rondebosch 7701, Cape Town, South Africa.
J Hazard Mater. 2002 Mar 29;90(3):311-21. doi: 10.1016/s0304-3894(01)00373-9.
A hydrodynamic characteristic performance of a three phase fluidised bed bioreactor has been studied with brewery wastewater. The influence of operating parameters, such as phase hold up, phase mixing, aspect ratio and superficial gas velocity, on an aerobic biodegradation in a bioreactor of 0.16 m i.d. and 2.7m in height, was analysed. A low-density (960 kg/m(3)) support particle with an internal interstice was employed. The particle and liquid loading were varied in order to determine the effect of phase hold up on bed homogeneity. The ranges in which particle loading and bed height affect fluidisation, and consequently chemical oxygen demand (COD) reduction, were determined. The distributor used in this work was designed such that fluid flow pattern similar to that of a draft tube was induced in the reactor. The low-density particles enabled cost effective operation at a relatively low gas superficial velocity (2.5 cm/s). Aspect ratio significantly influenced the overall bed homogeneity, and the optimum aspect ratio was 10, with volume of the support particles being 21% of the reactor volume.
利用啤酒厂废水研究了三相流化床生物反应器的流体动力学特性。分析了诸如相含率、相混合、纵横比和表观气速等操作参数对内径0.16 m、高2.7 m的生物反应器中好氧生物降解的影响。使用了具有内部空隙的低密度(960 kg/m³)支撑颗粒。改变颗粒和液体负载量以确定相含率对床层均匀性的影响。确定了颗粒负载量和床层高度影响流化进而影响化学需氧量(COD)降低的范围。本研究中使用的分布器设计成在反应器中诱导出类似于导流管的流体流动模式。低密度颗粒能够在相对较低的表观气速(2.5 cm/s)下实现经济高效的运行。纵横比对整个床层均匀性有显著影响,最佳纵横比为10,支撑颗粒的体积为反应器体积的21%。