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ANAMMOX-denitrification biomass in microbial fuel cell to enhance the electricity generation and nitrogen removal efficiency

机译:微生物燃料电池中的厌氧氧式反硝化生物质,增强发电和氮去除效率

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The inoculum biomass was collected from a pilot-scale (3 m(3)process tank) nitritation-anaerobic ammonium oxidation (ANAMMOX) (deammonification moving bed biofilm (DeaMBBR)) reactor demonstrating the highest total nitrogen removal rate (TNRR) of 0.33 kg N m(-3) day(-1). This biomass was used for inoculating the anodic chamber of a microbial fuel cell (MFC) to investigate the capacity of DeaMBBR biomass to act as an exo-electrogenic consortia. Performance of MFCs inoculated with ANAMMOX-specific consortia collected from DeaMBBR (MFC-ANA) and another MFC-CON inoculated with a septic tank mixed anaerobic consortium as a control was investigated for electrochemical performance and wastewater treatment efficiency. These MFCs were operated for the total duration of 419 days during which regular feed was given and performance was monitored for first 30 cycles and last 30 cycles, with each cycle of 3 day duration. The MFC-ANA continuously generated bio-energy with higher volumetric power density (9.5 W m(-3)and 6.0 W m(-3)) in comparison to MFC-CON (4.9 and 2.9 W m(-3)) during the first 30 and last 30 cycles of operational period, respectively. MFC-ANA also achieved 84 +/- 2% and 80 +/- 2% of COD removal efficiency and 89 +/- 4% and 73 +/- 2% of total nitrogen removal efficiency during first 30 and last 30 cycles of operational period, respectively. The improvement of nitrogen removal and power production in case of MFC-ANA over MFC-CON could be attributed to the ANAMMOX-denitrifiers populations andTrichococcus(14.92%) as denitrifying exo-electrogenic microbes (4.46%), respectively.
机译:从先导尺度(3M(3)加工罐)亚硝酸盐 - 厌氧铵氧化(厌氧移动床Biofilm(DEAMBBR))反应器中收集接种物质生物质(厌氧移动床)反应器,其展示了0.33千克的最高总氮去除率(TNRR) n m(-3)天(-1)。该生物质用于接种微生物燃料电池(MFC)的阳极室以研究Deambbr生物量充当外部电联结的能力。研究了从DEAMBBR(MFC-ANA)收集的anammox特异性组联结的MFC的性能,并在另一种MFC-CON接种与化粪池混合的厌氧联盟中接种的作为对照,用于电化学性能和废水处理效率。这些MFC在419天的总持续时间内运营,在给出常规饲料并且对前30个循环和最后30个循环监测性能,每个循环3天持续时间。与MFC-CON(4.9和2.9WM(-3)相比,MFC-ANA连续产生具有较高体积功率密度(9.5WM(-3)和6.0W m(-3))的生物能量第一30个和最后30个运营时期周期。 MFC-ANA还达到了84 +/- 2%和80 +/- 2%的COD去除效率和89 +/- 4%和73 +/- 2%的总氮去除效率的氮气去除效率的最初30个和最后30个运营循环分别为期。在MFC-ANA上的情况下,在MFC-ANA的情况下,氮去除和电力产生的改善可归因于厌氧毒剂群体和触发剂(14.92%),分别为反硝化微生物(4.46%)。

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