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Effect of sludge discharge positions on steady-state aerobic granules in sequencing batch reactor (SBR)

机译:顺序分批反应器(SBR)中污泥排放位置对稳态好氧颗粒的影响

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We have investigated the effect of sludge discharge location on the steady-state aerobic granules in sequencing batch reactors (SBRs). Two SBRs were operated concurrently with the same sludge retention time using sludge discharge ports at: (a) the reactor bottom in R1; and (b) the reactor middle-lower level in R2. Results indicate that both reactors could maintain sludge granulation and stable operation, but the two different sludge discharge methods resulted in significantly different aerobic granule characteristics. Over 30 days, the chemical oxygen demand (COD) removal of the two reactors was maintained at similar levels (above 96%), and typical bioflocs were not observed. The average aerobic granule size in R2 was twice that in R1, as settling velocity increased in proportion to size increment. Meanwhile, the production yields of polysaccharide and protein content in R2 were always higher than those in R1. However, due to mass transfer limitations and the presence of anaerobes in the aerobic granule cores, larger granules had a tendency to disintegrate in R2. Thus, we conclude that a sludge discharge port situated at the reactor bottom is beneficial for aerobic granule stability, and enhances the potential for long-term aerobic granule SBR operation.
机译:我们已经研究了污泥排放位置对顺序分批反应器(SBR)中稳态好氧颗粒的影响。在以下位置使用污泥排出口同时操作两个SBR,并以相同的污泥保留时间进行操作:(a)R1中的反应器底部; (b)R2中的反应堆中低层。结果表明,两个反应器都可以保持污泥颗粒化和稳定运行,但是两种不同的污泥排放方法导致好氧颗粒特性显着不同。在30天内,两个反应器的化学需氧量(COD)去除率保持在相似的水平(96%以上),并且未观察到典型的生物絮凝物。 R2的平均好氧颗粒尺寸是R1的两倍,因为沉降速度与尺寸增加成正比。同时,R2中多糖和蛋白质含量的产量始终高于R1。但是,由于传质限制和好氧颗粒核中存在厌氧菌,较大的颗粒在R2中有崩解的趋势。因此,我们得出的结论是,位于反应器底部的污泥排出口有利于好氧颗粒的稳定性,并提高了好氧颗粒SBR长期运行的潜力。

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