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A control strategy for reducing aeration costs during low loading periods

机译:降低低装载期间曝气成本的控制策略

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The efficiency of the aeration system in a full-scale activated sludge basin with 3 separately controlled aeration zones was improved for the low loading period in summer. The air flow rate to each aeration zone is currently regulated to hold a preset dissolved oxygen concentration (DO). Four different DO setpoint combinations were tested, each one for a one week period, using dynamic off-gas testing to measure the standardised oxygen transfer efficiency (αSOTE). As the DO setpoints were lowered, the total air flow rate to the basin decreased initially. A low DO in the first zones slowed biomass activity and pushed the load towards the end of the aeration basin. The relationship between αSOTE and the specific diffuser flow rate q_D is different for each zone. In Zone 1 there was a strong decrease in αSOTE as q_D increased, while Zones 2 and 3 were fairly independent of q_D, Zone 2 at a higher level than Zone 3. Aeration costs were reduced by 15% for the most efficient combination. To achieve even more savings, a control strategy adjusting oxygen transfer rates over the aeration basin to the necessary oxygen transfer rates is suggested. It is based on changing the DO setpoints to reach the lowest total air flow rate while meeting the effluent requirements.
机译:在夏季低负荷期内,曝气系统在全尺寸活性污泥盆中的效率提高了夏季低负载期。目前调节对每个曝气区的空气流速以保持预设溶解的氧浓度(DO)。测试四种不同的设定点组合,每一个用于一周的时间,使用动态废气测试来测量标准化的氧传输效率(αsote)。随着DO设定点降低,盆地的总空气流量最初降低。第一区域的低于生物质活性,并将负载推向曝气盆的末端。 αsote和特定漫射器流量Q_d之间的关系对于每个区域是不同的。在区域1中,由于Q_D增加,αsote的αsote有很大的降低,而区域2和3相当独立于Q_D,区域2在比区更高的水位。最有效的组合减少了15%的15%。为了实现更多的节省,提出了一种控制策略,将氧气转移到曝气盆地上的氧气转移到必要的氧传输速率。它基于改变DO设定值,以达到满足流出要求的同时达到最低总空气流速。

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