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Model-based optimisation of the biological performance of a sidestream MBR

机译:基于模型的侧流MBR生物性能的优化

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A model-based optimisation of the operation in view of the biological performance in terms of nitrogen (N) and phosphorus (P) removal of a pilot-scale side-stream MBR has been performed by means of a two-tier scenario analysis. The methodology uses two different scenario analyses to simulate the effect of three degrees of freedom in the MBR system: (1) DO set-point in the aerobic reactor, (2) sludge residence time and (3) internal recirculation rate. The scenarios are simulated using a calibrated ASM2d MBR model. Effluent quality, in terms of nitrate, ammonia and phosphate, is used to select the best scenario. It proved to be a compromise between nitrogen and phosphorus removal as these are linked. A 42% reduction in ammonium and a 32% reduction in nitrate concentration were achieved. Phosphate removal is partly sacrificed (39% increase) compared to the standard operation.
机译:考虑到就中试侧流MBR的氮(N)和磷(P)去除方面的生物学性能而言,已经通过两级方案分析对操作进行了基于模型的优化。该方法使用两种不同的方案分析来模拟MBR系统中三个自由度的影响:(1)好氧反应器中的DO设定点,(2)污泥停留时间和(3)内部再循环率。使用已校准的ASM2d MBR模型对方案进行了仿真。根据硝酸盐,氨和磷酸盐的出水质量来选择最佳方案。事实证明,这是氮和磷脱除之间的折衷方案。铵减少了42%,硝酸盐浓度减少了32%。与标准操作相比,磷酸盐去除的部分牺牲(增加了39%)。

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