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Integration of aerobic granular sludge and mesh filter membrane bioreactor for cost-effective wastewater treatment

机译:好氧颗粒污泥和网式滤膜生物反应器的集成,可实现经济高效的废水处理

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摘要

Conventional MBR has been mostly based on floc sludge and the use of costly microfiltration membranes. Here, a novel aerobic granule (AG)-mesh filter MBR (MMBR) process was developed for cost-effective wastewater treatment. During 32-day continuous operation, a predominance of granules was maintained in the system, and good filtration performance was achieved at a low trans-membrane pressure (TMP) of below 0.025. m. The granules showed a lower fouling propensity than sludge flocs, attributed to the formation of more porous biocake layer at mesh surface. A low-flux and low-TMP filtration favored a stable system operation. In addition, the reactor had high pollutant removal efficiencies, with a 91.4% chemical oxygen demand removal, 95.7% NH4+ removal, and a low effluent turbidity of 4.1. NTU at the stable stage. This AG-MMBR process offers a promising technology for low-cost and efficient treatment of wastewaters.
机译:常规的MBR主要基于絮状污泥和昂贵的微滤膜的使用。在这里,开发了一种新型的好氧颗粒(AG)滤网MBR(MMBR)工艺,用于经济高效的废水处理。在32天的连续运行过程中,系统中保持了大多数颗粒,并且在低于0.025的低跨膜压(TMP)时实现了良好的过滤性能。米颗粒显示出比污泥絮凝物低的结垢倾向,这归因于在网孔表面形成了更多的多孔生物饼层。低通量和低TMP过滤有利于稳定的系统运行。此外,该反应器的污染物去除效率很高,化学需氧量去除率为91.4%,NH4 +去除率为95.7%,废水浊度较低,为4.1。南大处于稳定阶段。该AG-MMBR工艺为低成本,高效处理废水提供了一种有前途的技术。

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