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Enhanced reduction of excess sludge and nutrient removal in a pilot-scale A_2O-MBR-TAD system

机译:在中试规模的A_2O-MBR-TAD系统中增强减少过量污泥和去除养分的功能

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In this study, a pilot scale anaerobic-anoxic-oxic (A_2O) process with submerged membrane (MBR) in the oxic tank was coupled with thermophilic aerobic digestion (TAD) reactor and was operated for longer than 600 days to treat real domestic wastewater. Regardless of the varying conditions of the system, the A_2O-MBR-TAD process removed MLSS, TCOD, BOD, TN, TP, and E. coli about 99%, 96%, 96%, 70%, 83%, and 99%, respectively. The additional TP removal of the system was due to the precipitating agent directly added in the oxic reactor, without which TP removal was about 56%. In the TAD reactor, receiving MLSS from the oxic tank (MBR), about 25% of TSS and VSS were solubilized during 2 days of retention. The effluent of the TAD reactor was recycled into the anoxic tank of A2O-MBR to provide organic carbon for denitrification and cryptic growth. By controlling the flowrate of wasting stream from the MBR, sludge production decreased to almost zero. From these results, it was concluded that the A_2O-MBR-TAD process could be a reliable option for excellent effluent quality and near zero-sludge production.
机译:在这项研究中,中试罐厌氧-缺氧-氧气(A_2O)工艺在氧气罐中与浸没膜(MBR)结合使用了高温好氧消化(TAD)反应器,并且运行了600天以上,以处理实际的生活废水。无论系统如何变化,A_2O-MBR-TAD工艺都会去除MLSS,TCOD,BOD,TN,TP和大肠杆菌约99%,96%,96%,70%,83%和99% , 分别。系统中额外的TP去除是由于沉淀剂直接添加到了含氧反应器中,如果没有,TP去除率约为56%。在从氧气罐(MBR)接收MLSS的TAD反应器中,在保留2天的过程中溶解了约25%的TSS和VSS。将TAD反应器的流出物再循环到A2O-MBR的缺氧槽中,以提供有机碳用于反硝化和隐性生长。通过控制来自MBR的废液的流量,污泥产量几乎降至零。从这些结果可以得出结论,A_2O-MBR-TAD工艺可能是一种出色的废水质量和接近零污泥生产的可靠选择。

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