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A Comparison of Membrane Bioreactor and Conventional-Activated-Sludge Mixed Liquor and Biosolids Characteristics

机译:膜生物反应器和常规活化污泥混合液的比较及生物固体特性

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Characteristics and behavior of raw and digested mixed liquor derived from a membrane bioreactor (MBR) and a full-scale activated-sludge (FSAS) facility were compared. The accumulation of nondegradable chemical oxygen demand in the MBR appears to play an important role in increasing the observed biological yield coefficient (Y_(obs)), reducing average floe size, decreasing total suspended solids/total solids and volatile suspended solids/volatile solids (VS) ratios, and reducing specific-oxygen-uptake rates of the mixed liquor relative to FSAS-derived biological solids. Membrane bioreactor sludges exhibited lower VS destruction following 30 days mesophilic-anaerobic and aerobic digestion when compared to FSAS sludges. Significant deterioration in dewatering behavior was observed for the FSAS biosolids after anaerobic digestion and, to a lesser extent, following aerobic digestion. In comparison, digestion had a small affect on dewatering efficiency and conditioner requirements for MBR biosolids. Full-scale facilities using membrane separation may need to tailor digestion and dewatering processes to the specific characteristics of MBR sludges. Water Environ. Res., 77, 323 (2005).
机译:比较了源自膜生物反应器(MBR)和大规模活性污泥(FSAS)设施的原液和消化液的特性和性能。 MBR中不可降解的化学需氧量的积累似乎在增加观察到的生物产量系数(Y_(obs)),减小平均絮凝物尺寸,减少总悬浮固体/总固体和挥发性悬浮固体/挥发性固体方面起着重要作用( VS)比率,并降低了混合液相对于FSAS衍生的生物固体的比氧吸收率。与FSAS污泥相比,膜生物反应器污泥在30天的中温厌氧和好氧消化后表现出较低的VS破坏。厌氧消化后,FSAS生物固体的脱水行为显着恶化,而好氧消化后,脱水行为的程度较小。相比之下,消化对MBR生物固体的脱水效率和调节剂的要求影响很小。使用膜分离的大规模设施可能需要根据MBR污泥的特定特性调整消化和脱水过程。水环境。 Res.77,323(2005)。

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