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Uncertainty and variability in enhanced biological phosphorus removal (EBPR) stoichiometry: consequences for process modelling and optimization

机译:增强型生物除磷(EBPR)化学计量的不确定性和可变性:过程建模和优化的后果

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The overall potential for enhanced biological phosphorus removal (EBPR) in the activated sludge process is constrained by the availability of volatile fatty acids (VFAs). The efficiency with which polyphosphate accumulating organisms (PAOs) use these VFAs for P-removal, however, is determined by the stoichiometric ratios governing their anaerobic and aerobic metabolism. While changes in anaerobic stoichiometry due to environmental conditions do affect EBPR performance to a certain degree, model-based analyses indicate that variability in aerobic stoichiometry has the greatest impact. Long-term deterioration in EBPR performance in an experimental SBR system undergoing P-limitation can be predicted as the consequence of competition between PAOs and GAOs. However, the observed rapid decrease in P-release after the change in feed composition is not consistent with a gradual shift in population.
机译:活性污泥工艺中提高生物除磷(EBPR)的总体潜力受到挥发性脂肪酸(VFA)可用性的限制。但是,聚磷酸盐蓄积生物(PAO)使用这些VFA去除P的效率取决于控制其厌氧和有氧代谢的化学计量比。尽管由于环境条件引起的厌氧化学计量的变化确实会在一定程度上影响EBPR性能,但是基于模型的分析表明,有氧化学计量的可变性具有最大的影响。可以预测,经历P限制的实验性SBR系统中EBPR性能的长期恶化是PAO和GAO之间竞争的结果。但是,在饲料组成发生变化后,观察到的P释放快速下降与种群的逐渐变化不一致。

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