首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Reduction of membrane fouling by simultaneous upward and downward air sparging in a pilot-scale submerged membrane bioreactor treating municipal wastewater
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Reduction of membrane fouling by simultaneous upward and downward air sparging in a pilot-scale submerged membrane bioreactor treating municipal wastewater

机译:通过在中试规模的水下膜生物反应器中同时进行向上和向下的鼓风来减少膜污染

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摘要

A vertically oriented hollow fiber membrane module equipped with a downward aerator as well as an upward aerator for the simultaneous upward and downward air sparging was evaluated in a pilot-scale bioreactor. The operation was divided into three consecutive phases based on different membrane air sparging configurations: the simultaneous upward and downward air sparging (Phase 1), the single upward air sparging (Phase 2), and the simultaneous upward and downward air sparging (Phase 3). Although the SMBR operation, process performances including particulate matters, organic matters, and nutrients removals were stable, the membrane fouling characteristics were significantly different for the different air sparging configurations. The parameters such as the trans-membrane pressure increasing rate, the permeability decreasing rate, the irreversible membrane fouling rate, and the fouling resistance increased when the air sparging configuration was changed from the simultaneous upward and downward mode to the single upward mode (i.e., Phase 1 -> Phase 2), while the parameters decreased when the air sparging configuration was switched from the single upward mode to the simultaneous upward and downward mode (i.e., Phase 2 -> Phase 3). Taken together the results strongly support the effectiveness of the simultaneous upward and downward membrane air sparging in reducing membrane fouling.
机译:在中试规模的生物反应器中评估了垂直取向的中空纤维膜组件,该组件配备有向下曝气器以及同时向上和向下吹气的向上曝气器。根据不同的膜片空气喷射配置,操作分为三个连续阶段:同时向上和向下空气喷射(阶段1),单个向上空气喷射(阶段2)和同时向上和向下空气喷射(阶段3) 。尽管SMBR操作,包括颗粒物,有机物和养分去除的工艺性能稳定,但对于不同的空气喷射配置,膜的结垢特性却存在显着差异。当空气喷射配置从同时向上和向下模式更改为单一向上模式时(例如,跨膜压力增加速率,渗透率降低速率,不可逆膜结垢速率和结垢阻力),这些参数会增加阶段1->阶段2),而当空气喷射配置从单一向上模式切换到同时向上和向下模式时(即阶段2->阶段3),参数减小。综上所述,结果强烈支持同时向上和向下喷射膜空气同时减少膜污染的有效性。

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