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Alkalinity and pH effects on nitrification in a membrane aerated bioreactor: An experimental and model analysis

机译:碱度和pH对膜曝气生物反应器中硝化作用的影响:实验和模型分析

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摘要

A nitrifying biofilm was grown in a laboratory-scale membrane aerated bioreactor (MABR) to calibrate and test a one-dimensional biofilm model incorporating chemical equilibria to calculate local pH values. A previously developed model (Shanahan and Semmens, 2004) based upon AQUASIM was modified to incorporate the impact of local pH changes within the biofilm on the kinetics of nitrification. Shielded microelectrodes were used to measure the concentration profiles of dissolved oxygen, ammonium, nitrate, and pH within the biofilm and the overlying boundary layer under actual operating conditions. Operating conditions were varied to assess the impact of bicarbonate loading (alkalinity), ammonium loading, and intra-membrane oxygen partial pressure on biofilm performance.
机译:硝化生物膜在实验室规模的膜曝气生物反应器(MABR)中生长,以校准和测试包含化学平衡的一维生物膜模型,以计算局部pH值。对基于AQUASIM的先前开发的模型(Shanahan和Semmens,2004)进行了修改,以纳入生物膜内局部pH变化对硝化动力学的影响。在实际操作条件下,使用屏蔽微电极来测量生物膜和上覆边界层内溶解氧,铵,硝酸盐和pH的浓度分布。改变操作条件以评估碳酸氢盐负载量(碱度),铵负载量和膜内氧分压对生物膜性能的影响。

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