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Comparative study on treatment performance, membrane fouling, and microbial community profile between conventional and hybrid sequencing batch membrane bioreactors for municipal wastewater treatment

机译:常规和杂交测序批膜生物反应器治疗性能,膜污垢和微生物群落分布的比较研究,用于市政废水处理

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摘要

A sequencing batch conventional membrane bioreactor (SB-CMBR) and sequencing batch hybrid membrane bioreactor (SB-HMBR) were operated in parallel under two different hydraulic retention times (HRTs) (namely 12h and 6h), and their chemical oxygen demand (COD) and nutrient removal performance, membrane fouling behavior, and microbial community characteristics were compared. Both systems exhibited high organic matter (95%) and ammonium (98%) removal performance regardless of the HRT applied. As the HRT was reduced from 12 to 6h, total nitrogen removal slightly increased in both reactors, being higher in the carrier-based MBR, where anoxic zones may have been established within the biofilm. Conversely, total phosphorus removal improved only in the SB-CMBR at the shorter HRT. Moreover, activity batch assays have shown a faster P uptake rate in the SB-CMBR than in the SB-HMBR, a result likely associated with the lower relative abundance of phosphate-accumulating organisms in both adhered and suspended biomass fractions in the hybrid MBR. The results also revealed that more pronounced increases in the transmembrane pressure and, consequently, in the membrane fouling rate at higher COD loading rates were observed in the SB-CMBR, where the soluble microbial products (proteins, polysaccharides, and especially, transparent exopolymer particles), supernatant turbidity, and filamentous bacteria were more significant. Overall, as compared to the conventional MBR, the plastic media-based SB-HMBR showed a lower fouling propensity at all hydraulic conditions tested.
机译:在两个不同的液压保留次数(HRT)下并联(即12H和6H)并平行地操作测序批常规膜生物反应器(Sb-CMBR)和测序分批杂交膜生物反应器(Sb-HMBR),以及它们的化学需氧量(COD)比较了营养去除性能,膜污染行为和微生物群落特征。无论施用的HRT如何,两种系统都表现出高有机物质(& 95%)和铵(& 98%)去除性能。随着HRT从12至6h降低,两种反应器中的总氮去除略微增加,载体基MBR较高,其中缺氧区可能已经在生物膜内建立。相反,仅在较短的HRT处于SB-CMBR中的总磷除去。此外,活性分批测定表明SB-CMBr中的P比于Sb-HMBR在Sb-HMBR中具有更快的P,其可能与杂交MBR中的粘附和悬浮的生物质级分中的磷酸盐积累生物的较低相对丰度相关。结果还表明,在SB-CMBR中观察到跨膜压力更明显的跨膜压力增加,并且因此在SB-CMBR中观察到较高的COD加载率的膜污垢速率,其中可溶的微生物产品(蛋白质,多糖,尤其是透明的外聚物颗粒),上清浊度和丝状细菌更显着。总的来说,与传统的MBR相比,基于塑料介质的SB-HMBR在测试的所有液压条件下显示出较低的污垢倾向。

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