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Investigating the mechanism of sludge reduction in activated sludge with an anaerobic side-stream reactor

机译:用厌氧侧流反应器研究活性污泥中污泥减少的机理

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To investigate the mechanism of sludge reduction in activated sludge (AS) with an anaerobic side-stream reactor (ASSR), four AS systems with different digestion schemes were operated in the laboratory. The four systems are: a) AS+ASSR; b) AS+aerobic digester; c) AS+anaerobic digester; and d) AS with no solids wastage. The average sludge yield of AS+ASSR from two phases was 0.14 mgVSS/mgCOD, which is 22-54% less than that from the three other systems. The accounting of biomass in AS+ASSR system revealed that 50% of sludge is degraded in ASSR while the other half is degraded in the aeration basin. Furthermore, both whole sludge and centrate from ASSR led to a significant oxygen uptake in AS, indicating the importance of aerobic biodegradation in AS+ASSR system. The extracellular polymeric substances (EPS) data showed that base-extractable EPS was much smaller for AS with ASSR than with no wastage. In contrast, cation exchange resin-EPS was similar for both systems. These results indicate that degradation of base-extractable EPS accounts for the lower sludge yield in AS+ASSR, and based on the literature this organic pool is believed to be aluminium and/or iron-bound EPS. The microbial profile data suggests that recirculation in AS+ASSR selects some unique microorganisms. Further research is warranted to study their role in sludge reduction.
机译:为了研究利用厌氧侧流反应器(ASSR)减少活性污泥(AS)中污泥的机理,在实验室中运行了四个具有不同消化方案的AS系统。这四个系统是:a)AS + ASSR; b)AS +好氧消化池; c)AS +厌氧消化器; d)AS,不浪费固体。两个阶段的AS + ASSR的平均污泥产率为0.14 mgVSS / mgCOD,比其他三个系统的平均污泥产率低22-54%。对AS + ASSR系统中生物量的核算显示,ASSR中有50%的污泥被降解,而曝气池中另一半则被降解。此外,来自ASSR的全部污泥和浓缩物均导致AS中大量的氧气吸收,这表明有氧生物降解在AS + ASSR系统中的重要性。胞外聚合物(EPS)数据显示,ASSR的AS的碱基可提取EPS比无浪费的小得多。相反,两种系统的阳离子交换树脂EPS均相似。这些结果表明,可碱萃取的EPS的降解导致AS + ASSR中污泥产率较低,并且根据文献,该有机池被认为是铝和/或铁结合的EPS。微生物谱数据表明,AS + ASSR中的再循环选择了一些独特的微生物。有必要做进一步的研究来研究它们在减少污泥中的作用。

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