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Optimization of operational factors of a membrance bioreactor with gravity drain

机译:重力排水膜生物反应器操作因素的优化

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A new membrane bioreactor with gravity drain for municipal wastewater treatment was tested and its operational factors were investigated in this study. These factors include pressure head, MLSS, aeration intensity (an air flow rate per unit floor area) and temperature. Results of batch experiments showed that a critical pressure head of the MBR was 0.85-1.5 m-H2O. At a pressure head of 0.85 m-H2O, statistical analysis of batch experiments showed that aeration intensity significantly affected membrane flux, and the MLSS had no impact on membrane flux under a temperature of 22.0 +/- 1.0 degrees C. Results of the long-term continuous experiment showed that temperature significantly affected membrane flux. The impact of temperature on membrane flux in this case was about 4-10 times of that analyzed by using a classical cake layer model. During this experiment, the average removal efficiencies of COD, BOD5 and NH4+-N were over 85%, 97% and 94%, respectively.
机译:研究了一种新型的重力排水膜生物反应器用于市政废水处理,并研究了其操作因素。这些因素包括压头,MLSS,曝气强度(每单位建筑面积的空气流速)和温度。批处理实验的结果表明,MBR的临界压头为0.85-1.5 m-H2O。在0.85 m-H2O的压头下,分批实验的统计分析表明,曝气强度显着影响膜通量,而MLSS在22.0 +/- 1.0摄氏度的温度下对膜通量没有影响。长期连续实验表明温度显着影响膜通量。在这种情况下,温度对膜通量的影响约为使用传统滤饼层模型分析的结果的4-10倍。在该实验中,COD,BOD5和NH4 + -N的平均去除率分别超过85%,97%和94%。

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