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Observations during start-up of biological phosphorus removal in biofilm reactors

机译:在生物膜反应器中启动生物除磷过程中的观察

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This research describes the start-up phase of Biological Phosphorus Removal (BPR) processes in two reactors. A Submerged Fix Bed Reactor (SFBR) working with a mixture of synthetic wastewater and domestic sewage and seeded with activated sludge coming from a BPR facility. A second reactor, a Biofilm Membrane Reactor (BMR), was fed with synthetic wastewater and seeded with a mixture of a pure culture of Acinetobacter Iwoffi and fresh domestic sewage. it was found that Organic Loading Rates (OLR) above 5 gCOD/m~2 d do not guarantee the adequate Mean Cellular Retention Time (MCRT) for the development of Poly-P organisms. Anaerobic periods should not be short during start-up phase or facultative bacteria will efficiently compete for food and, eventually, facing long aerotic periods, the Poly-P organisms may not need the phosphate mechanism of survive short anaerobic periods. Even if COD removal is observed during the anaerobic phase, further P accumulation during the aerobic phase will not be significant, unless the COD removal results in PHB formation. A loss in the BPR capacity of the Poly-P microorganisms was observed after seeding a reactor with active Poly-P organisms. The drop of BPR activity after seeding a reactor with active Poly-P organisms can be caused by the loss of genetic material due to the new environmental conditions and the new influent substrate.
机译:这项研究描述了两个反应器中生物除磷(BPR)工艺的启动阶段。浸没式固定床反应器(SFBR),用于处理合成废水和生活污水的混合物,并用来自BPR设施的活性污泥播种。向第二个反应器,即生物膜膜反应器(BMR),注入合成废水,并接种纯的不动杆菌Iwoffi培养物和新鲜的生活污水的混合物。已经发现,高于5 gCOD / m〜2 d的有机负荷率(OLR)不能保证足够的平均细胞保留时间(MCRT)来发展Poly-P生物。在启动阶段,厌氧期不应短,否则兼性细菌将有效竞争食物,最终,面对较长的好氧期,Poly-P生物可能不需要在短厌氧期中存活的磷酸盐机制。即使在厌氧阶段观察到了COD的去除,除非在COB去除过程中导致PHB的形成,否则在好氧阶段磷的进一步积累将不会很明显。在向反应器中注入活性Poly-P生物后,观察到Poly-P微生物的BPR能力下降。由于新的环境条件和新的进水底物,遗传物质的损失可能导致在向反应器中注入活性P-P生物后,BPR活性下降。

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