State Key Laboratory of Pollution Control and Resource Reuse, School of Environmental Science and Engineering, Tongji University, 1239 Siping Road, Shanghai, 200092, People's Republic of China.
Environ Sci Pollut Res Int. 2015 Aug;22(15):11436-45. doi: 10.1007/s11356-015-4376-z. Epub 2015 Mar 28.
It is known that an increase of COD/N ratio can result in an enhanced removal of nutrients in membrane bioreactors (MBRs); however, impacts of doing so on membrane filtration performance remain unclear. In this work, comparison of membrane filtration performance, microbial community, and microbial products under low temperature was carried out in anoxic/oxic (A/O) MBRs with COD/N ratios of 9.9 and 5.5 g COD/g N in influent. There was no doubt that an improvement of nitrogen removal under high COD/N ratio was observed; however, severer membrane fouling was found compared to the MBR fed with low COD/N ratio wastewater. The increase of COD/N ratio resulted in an elevated production of humic acids in soluble microbial product (SMP) and carbohydrates, proteins, and humic acids in loosely bound extracellular polymeric substance (LB-EPS). Quartz crystal microbalance with dissipation monitoring (QCM-D) analysis showed that the adsorption capability of SMP and LB-EPS was higher in the MBR with higher COD/N ratio. Four hundred fifty four high-throughput pyrosequencing revealed that the higher COD/N ratio led to the enrichment of Bacteroidetes at phylum level and Azospira, Thauera, Zoogloea, etc. at genus level. Bacteroidetes are considered to potentially release EPS, and Azospira, Thauera, and Zoogloea, etc. have denitrification activity. The change in microbial communities is consistent with MBR performance.
已知 COD/N 比的增加可以提高膜生物反应器(MBR)中营养物质的去除率;然而,这样做对膜过滤性能的影响尚不清楚。在这项工作中,在缺氧/好氧(A/O)MBR 中比较了在低温下 COD/N 比分别为 9.9 和 5.5 g COD/g N 的进水条件下的膜过滤性能、微生物群落和微生物产物。毫无疑问,在高 COD/N 比下观察到氮去除的改善;然而,与用低 COD/N 比废水进料的 MBR 相比,发现膜污染更严重。COD/N 比的增加导致溶解性微生物产物(SMP)中腐殖酸以及疏松结合胞外聚合物(LB-EPS)中碳水化合物、蛋白质和腐殖酸的产量增加。石英晶体微天平耗散监测(QCM-D)分析表明,具有较高 COD/N 比的 MBR 中 SMP 和 LB-EPS 的吸附能力更高。454 高通量焦磷酸测序显示,较高的 COD/N 比导致了门水平上拟杆菌门的富集和属水平上 Azospira、Thauera、Zoogloea 等的富集。拟杆菌门被认为可能会释放 EPS,而 Azospira、Thauera 和 Zoogloea 等具有反硝化活性。微生物群落的变化与 MBR 性能一致。
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