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Mechanism of Effective Nocardioform Foam Control Measures for Non-Selector Activated Sludge Systems

机译:非选择活性污泥系统有效非心形泡沫控制措施的机理

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摘要

Solids retention time (SRT), biological scum trapping and recycle, and the dynamic equilibrium between Nocardioform populations in the foam and the mixed liquor are the controlling factors in activated sludge foaming events caused by Nocardioform bacteria. For the operating modes described in this paper, a cured mixed liquor foaming condition (filament counts of approximately 10~5 intersections/g volatile suspended solids) was only achieved when SRT control, selective wasting, and polymer addition were in effect. Solids retention time control, with the SRT remaining below 1.5 days, and selective wasting will cure a severely foaming mixed liquor, but effects will only be observed after 3 or 4 months after implementation. The combined wastage of Nocardioform bacteria from selective wasting and SRT control can ensure long-term foam control to the operation of a pure-oxygen activated sludge system with foam-trapping features. An SRT of 0.3 days will result in the complete washout of Nocardioform bacteria from the activated sludge system, which can then operate at an SRT of 3 days free of Nocardioform. Polymer addition to mixed liquor is only effective for foam control when a large portion of the system biomass exists as a heavy layer of foam above the mixed liquor.
机译:固体停留时间(SRT),生物浮渣的捕集和再循环以及泡沫和混合液中诺卡氏菌种群之间的动态平衡是诺卡氏菌引起的活性污泥起泡事件的控制因素。对于本文所述的操作模式,只有在实施SRT控制,选择性浪费和添加聚合物的情况下,才能达到固化的混合液起泡条件(长丝数约为10〜5个交点/ g挥发性悬浮固体)。控制固体保留时间,使SRT保持在1.5天以下,并进行选择性浪费将固化严重起泡的混合液,但效果仅在实施后3或4个月后才能观察到。选择性浪费和SRT控制共同造成的诺卡氏菌浪费,可以确保对泡沫捕集功能纯氧活化污泥系统的长期泡沫控制。 SRT为0.3天将导致活性污泥系统中诺卡氏菌的完全清除,然后可以在3天无Nocardioform的SRT下运行。当大部分系统生物质以泡沫的重层存在于混合液上方时,将聚合物添加到混合液中仅对泡沫控制有效。

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