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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Impact of static biocarriers on the microbial community, nitrogen removal and membrane fouling in submerged membrane bioreactor at different COD:N ratios
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Impact of static biocarriers on the microbial community, nitrogen removal and membrane fouling in submerged membrane bioreactor at different COD:N ratios

机译:不同鳕鱼中浸没膜生物反应器微生物群落,氮去除和膜污染的静态生物载体的影响:n比

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摘要

The polyvinyl formal (PVFM) biocarrier addition in a membrane bioreactor (MBR) was evaluated at high and low carbon/nitrogen (C/N) ratio of 20.0 and 6.7. Results indicated that static biocarrier addition could enrich nitrification and denitrification bacteria, dominating by Tauera, Amaricoccus and Nitrosospira at the genus level and slightly improved the total nitrogen removal even at a low C/N ratio. The bulk sludge characteristics (such as bigger particle size, lower SMP, lower SMP P/C) were also significantly changed in the hybrid MBR (HMBR), leading to a more sustainable membrane operation. The biocarrier addition also reduced the relative abundance of Sphingobacterials_unclassified, Ohtaekwangia and Rhodocyclaceae_unclassified at the genus level, indicating less membrane fouling in the HMBR. Consequently, HMBR with static PVFM addition could partially overcome the drawback of low C/N ratio for total nitrogen removal and membrane fouling control, providing a more resilient MBR to the undesirable environment such as low C/N ratio.
机译:在高碳/氮气/氮气/氮气(C / N)的比例为20.0和6.7,评价膜生物反应器(MBR)中的聚乙烯族(PVFM)生物载体添加。结果表明,静态生物载体添加可以丰富硝化和脱氮细菌,由Tauera,Amaricocccus和Nitrosospira主导地位,甚至以低C / N比略微改善总氮除去。在杂交MBR(HMBR)中也显着改变了堆积污泥特性(如粒径更大,较低的SMP,下部SMP P / C),导致更可持续的膜操作。生物载体添加还降低了在属级别的鞘氨酸的相对丰度,ohtaekwangia和rhodocyclaceae_unclassified,表明HMBR中的膜较少。因此,具有静态PVFM的HMBR可以部分地克服总氮去除和膜污垢控制的低C / N比的缺点,为不希望的环境提供更具弹性的MBR,例如低C / N比。

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