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Biological nutrient removal in membrane bioreactors: denitrification and phosphorus removal kinetics

机译:膜生物反应器中生物营养物的去除:反硝化和除磷动力学

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The impact of including membranes for solid liquid separation on the kinetics of nitrogen and phosphorus removal was investigated. To achieve this, a membrane bioreactor (MBR) biological nutrient removal (BNR) activated sludge system was operated. From batch tests on mixed liquor drawn from the MBR BNR system, denitrification and phosphorus removal rates were delineated. Additionally the influence of the high total suspended solids concentrations present in the MBR BNR system and of the limitation of substrate concentrations on the kinetics was investigated. Moreover the ability of activated sludge in this kind of system to denitrify under anoxic conditions with simultaneous phosphate uptake was verified and quantified. The denitrification rates obtained for different mixed liquor (ML) concentrations indicate no effect of ML concentration on the specific denitrification rate. The denitrification took place at a single specific rate (K2) with respect to the ordinary heterotrophic organisms (OHOs, i.e. non-PAOs) active mass. Similarly, results have been obtained for the P removal process kinetics: no differences in specific rates were observed for different ML or substrate concentrations. From the P removal batch tests results it seems that the biological phosphorus removal population (PAO) consists of 2 different sets of organisms denitrifying PAO and aerobic PAO.
机译:研究了固液分离用膜对脱氮和除磷动力学的影响。为了实现这一目标,运行了膜生物反应器(MBR)生物营养去除(BNR)活性污泥系统。通过对从MBR BNR系统提取的混合液进行分批测试,确定了脱氮和除磷速率。此外,还研究了MBR BNR系统中存在的高总悬浮固体浓度和底物浓度限制对动力学的影响。此外,还验证并定量了这种系统中的活性污泥在缺氧条件下同时被磷酸盐吸收反硝化的能力。对于不同的混合液(ML)浓度获得的反硝化速率表明ML浓度对特定反硝化速率没有影响。相对于普通异养生物(OHOs,即非PAOs)活性物质,反硝化以单一的特定速率(K2)进行。同样,对于P去除过程动力学也获得了结果:对于不同的ML或底物浓度,没有观察到特定比率的差异。从分批除磷测试结果来看,似乎生物除磷种群(PAO)由两套不同的生物组成,这些生物对PAO和好氧PAO进行反硝化。

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