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The effect of aeration and non-aeration time on simultaneous organic, nitrogen and phosphorus removal using an intermittent aeration membrane bioreactor

机译:间歇曝气膜生物反应器中曝气和非曝气时间对同时去除有机物,氮和磷的影响

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摘要

A laboratory-scale membrane bioreactor (MBR) was fed with synthetic wastewater to investigate the possibility of simultaneous removal of organic, nitrogen and phosphorus by intermittent aeration. The MBR consists of two compartments using a microfiltration membrane with 0.2 µm pore size and a surface area of 0.35 m2. Hydraulic retention time was set at 24 hours and solid retention time 25 days. MLSS concentration in the reactor was in the range of 2,500–3,800 mg/L. The MLSS internal recycling ratio was maintained at 100% influent flow rate. Intermittent aeration was applied in this study to provide an aerobic–anaerobic cycle. Three stages of operations were conducted to investigate the effect of aeration and non-aeration on simultaneous organic and nutrient removal. In Stage 1, time cycles of aeration and nonaeration were set at 90/150 min and 150/90 min in the first and second compartment, the removal efficiency was 97%, 94% and 70% for COD, nitrogen and phosphorus respectively. In Stage 2, time cycles of aeration and non-aeration were set at 60/120 min and 120/60 min in the first and second compartment, the removal efficiency was 97%, 96% and 71% for COD, nitrogen and phosphorus respectively. In Stage 3, time cycles of aeration and non-aeration were set at 120/120 min and 120/120 min in compartment 1 and 2, the removal efficiency was 98%, 96% and 78% for COD, nitrogen and phosphorus respectively. Results show that longer non-aeration time in the second compartment provided better performances of biological phosphorus removal
机译:向实验室规模的膜生物反应器(MBR)供入合成废水,以研究通过间歇曝气同时去除有机物,氮和磷的可能性。 MBR由使用微滤膜的两个隔室组成,微滤膜的孔径为0.2 µm,表面积为0.35 m2。水力停留时间设定为24小时,固体停留时间设定为25天。反应器中的MLSS浓度在2500至3,800 mg / L的范围内。 MLSS内部循环利用率保持在100%进水流量。在这项研究中应用了间歇曝气,以提供有氧-无氧循环。进行了三个阶段的操作,以研究通气和不通气对同时去除有机物和营养物的影响。在阶段1中,在第一隔间和第二隔间中将曝气和不曝气的时间周期设置为90/150分钟和150/90分钟,对于COD,氮和磷的去除效率分别为97%,94%和70%。在第2阶段中,第一隔间和第二隔间的通气和不通气时间周期分别设置为60/120分钟和120/60分钟,对于COD,氮和磷的去除效率分别为97%,96%和71% 。在阶段3中,在隔室1和2中将通气和不通气的时间周期设置为120/120分钟和120/120分钟,对于COD,氮和磷的去除效率分别为98%,96%和78%。结果表明,第二隔室中较长的非曝气时间提供了更好的生物除磷性能

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  • 作者单位
  • 年度 2002
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  • 正文语种 {"code":"en","name":"English","id":9}
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