首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Effect of intermittent aeration cycle on nutrient removal and microbial community in a fluidized bed reactor-membrane bioreactor combo system
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Effect of intermittent aeration cycle on nutrient removal and microbial community in a fluidized bed reactor-membrane bioreactor combo system

机译:间歇曝气循环对流化床-膜生物反应器组合系统中养分去除和微生物群落的影响

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Effect of intermittent aeration cycle (IAC = 15/45-60/60 min) on nutrient removal and microbial community structure was investigated using a novel fluidized bed reactor-membrane bioreactor (FBR-MBR) combo system. FBR alone was found more efficient for removing PO_4-P (>85%) than NH_4-N (<40%) and chemical oxygen demand (COD < 35%). However, in the combo system, COD and NH_4-N removals were almost complete (>98%). Efficient nitrification, stable mixed liquor suspended solid and reduced transmembrane pressure was also achieved. Quantitative real-time polymerase chain reaction results of total bacteria 16S rRNA gene copies per mL of mixed-liquor varied from (2.48 ± 0.42) × 10~9 initial to (2.74 ± 0.10) × 10~8, (6.27 ± 0.16) × 10~9 and (9.17 ± 1.78) × 10~9 for 15/45, 45/15 and 60/60 min of IACs, respectively. The results of clone library analysis revealed that Proteobacteria (59%), Firmicutes (12%) and Bacteroidetes (11%) were the dominant bacterial group in all samples. Overall, the combo system performs optimum nutrient removal and host stable microbial communities at 45/15 min of IAC.
机译:使用新型流化床反应器-膜生物反应器(FBR-MBR)组合系统,研究了间歇曝气循环(IAC = 15 / 45-60 / 60分钟)对养分去除和微生物群落结构的影响。发现单独的FBR可以比NH_4-N(<40%)和化学需氧量(COD <35%)更有效地去除PO_4-P(> 85%)。但是,在组合系统中,COD和NH_4-N的去除几乎完成(> 98%)。还实现了高效硝化,稳定的混合液悬浮固体和降低的跨膜压力。每毫升混合液中细菌总数16S rRNA基因拷贝的实时定量聚合酶链反应结果从(2.48±0.42)×初始10〜9变化到(2.74±0.10)×10〜8,(6.27±0.16)× IAC的15 / 45、45 / 15和60/60分钟分别为10〜9和(9.17±1.78)×10〜9。克隆文库分析的结果表明,在所有样品中,细菌杆菌(59%),菌毛菌(12%)和拟杆菌(11%)是优势细菌群。总体而言,该组合系统可在IAC的45/15分钟时实现最佳的营养去除效果并保持稳定的微生物群落。

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