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Stable limited filamentous bulking through keeping the competition between floc-formers and filaments in balance

机译:通过保持絮凝剂和长丝之间的竞争平衡来稳定有限的丝状膨化

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摘要

Limited filamentous bulking (LFB) was proposed to save aeration energy consumption and enhance the capacity of filaments to degrade substrates with low concentrations in activated sludge systems. Operational parameters favorable for maintaining the LFB state were investigated in an anoxic-oxic reactor treating domestic wastewater. The experiments showed that the LFB state would deteriorate with sharply decreasing temperature, reducing substrate gradients or removing anoxic zones. The balance between filaments and floc-formers could be achieved by controlling dissolved oxygen and sludge loading rates to be in optimal ranges. Eikelboom Type 0041 and Candidatus Microthrix parvicella were the filamentous bacteria responsible for the LFB state. However, the excess growth of Eikelboom Type 021N and Sphaerotilus natans were observed when serious bulking occurred under low substrate gradients. It was demonstrated that stable maintenance of LFB for energy saving was feasible by process control and optimization.
机译:提出了有限的丝状填充(LFB),以节省曝气能耗并增强细丝降解活性污泥系统中低浓度底物的能力。在处理生活废水的缺氧-氧化反应器中研究了有利于保持LFB状态的运行参数。实验表明,LFB状态会随着温度的急剧下降而恶化,从而降低了基板梯度或去除了缺氧区域。长丝和絮凝剂之间的平衡可以通过将溶解氧和污泥的加载速率控制在最佳范围内来实现。 Eikelboom 0041型和假丝酵母微丝菌是导致LFB状态的丝状细菌。但是,当在低底物梯度下发生严重的堆积时,会观察到Eikelboom 021N型和Sphaerotilus natans的过度生长。结果表明,通过过程控制和优化,稳定维护LFB节能是可行的。

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