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Effect of mean cell residence time on transmembrane flux, mixed-liquor characteristics and overall performance of a submerged anaerobic membrane bioreactor

机译:平均细胞停留时间对浸没式厌氧膜生物反应器跨膜通量,混合液特性和总体性能的影响

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摘要

Kinetic control of Mean Cell Residence Time (MCRT) was shown to have a significant impact on membrane flux under steady-state conditions. Two laboratory-scale flat-plate submerged anaerobic membrane bioreactors were operated for 245 days on a low-to-intermediate strength substrate with high suspended solids. Transmembrane pressure was maintained at 2.2?kPa throughout four experimental phases, while MCRT in one reactor was progressively reduced. This allowed very accurate measurement of sustainable membrane flux rates at different MCRTs, and hence the degree of membrane fouling. Performance data were gathered on chemical oxygen demand (COD) removal efficiency, and a COD mass balance was constructed accounting for carbon converted into new biomass and that lost in the effluent as dissolved methane. Measurements of growth yield at each MCRT were made, with physical characterisation of each mixed liquor based on capillary suction time. The results showed membrane flux and MLSS filterability was highest at short MCRT, although specific methane production (SMP) was lower since a proportion of COD removal was accounted for by higher biomass yield. There was no advantage in operating at an MCRT <25 days. When considering the most suitable MCRT there is thus a trade-off between membrane performance, SMP and waste sludge yield.
机译:动力学控制的平均细胞停留时间(MCRT)被证明对稳态条件下的膜通量有重大影响。两个实验室规模的平板式潜水式厌氧膜生物反应器在具有高悬浮固体的中低强度底物上运行245天。在四个实验阶段中,跨膜压力均保持在2.2?kPa,而一个反应器中的MCRT逐渐降低。这样就可以非常精确地测量不同MCRT上可持续的膜通量率,从而测量出膜的污染程度。收集了有关化学需氧量(COD)去除效率的性能数据,并建立了COD质量平衡,以说明碳转化为新的生物质以及由于溶解的甲烷而在废水中损失的碳。测量了每种MCRT的生长产量,并根据毛细管抽吸时间对每种混合液进行了物理表征。结果表明,虽然MCRT较短,但膜通量和MLSS过滤性最高,尽管特定的甲烷产量(SMP)较低,这是因为COD去除的一部分是由较高的生物量产量引起的。在小于25天的MCRT上运行没有优势。因此,在考虑最合适的MCRT时,需要在膜性能,SMP和废渣产量之间进行权衡。

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