首页> 外文期刊>Iranian journal of public health. >Investigation of Anaerobic Fluidized Bed Reactor/ Aerobic Moving Bed Bio Reactor (AFBR/MMBR) System for Treatment of Currant Wastewater
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Investigation of Anaerobic Fluidized Bed Reactor/ Aerobic Moving Bed Bio Reactor (AFBR/MMBR) System for Treatment of Currant Wastewater

机译:厌氧流化床/好氧移动床生物反应器(AFBR / MMBR)系统处理黑加仑废水的研究

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Background:Anaerobic treatment methods are more suitable for the treatment of concentrated wastewater streams, offer lower operating costs, the production of usable biogas product. The aim of this study was to investigate the performance of an Anaerobic Fluidized Bed Reactor (AFBR)-Aerobic Moving Bed Bio Reactor (MBBR) in series arrangement to treat Currant wastewater.Methods:The bed materials of AFBR were cylindrical particles made of PVC with a diameter of 2–2.3 mm, particle density of 1250 kg/m3. The volume of all bed materials was 1.7 liter which expanded to 2.46 liters in fluidized situation. In MBBR, support media was composed of 1.5 liters Bee-Cell 2000 having porosity of 87% and specific surface area of 650m2/m3.Results:When system operated at 35 oC, chemical oxygen demand (COD) removal efficiencies were achieved to 98% and 81.6% for organic loading rates (OLR) of 9.4 and 24.2 g COD/l.d, and hydraulic retention times (HRT) of 48 and 18 h, in average COD concentration feeding of 18.4 g/l, respectively.Conclusion:The contribution of AFBR in total COD removal efficiency at an organic loading rate (OLR) of 9.4 g COD/l.d was 95%, and gradually decreased to 76.5% in OLR of 24.2 g COD/l.d. Also with increasing in organic loading rate the contribution of aerobic reactor in removing COD gradually decreased. In this system, the anaerobic reactor played the most important role in the removal of COD, and the aerobic MBBR was actually needed to polish the anaerobic treated wastewater.
机译:背景:厌氧处理方法更适合于处理浓缩废水,提供较低的运营成本,生产可用的沼气产品。这项研究的目的是研究串联布置的厌氧流化床反应器(AFBR)-好氧移动床生物反应器(MBBR)的性能。方法:AFBR的床材料是聚氯乙烯制成的圆柱形颗粒,聚氯乙烯直径为2–2.3毫米,颗粒密度为1250千克/立方米。所有床料的体积为1.7升,在流态化条件下扩大到2.46升。在MBBR中,支持介质由1.5升Bee-Cell 2000组成,其孔隙率为87%,比表面积为650m2 / m3。结果:当系统在35 oC下运行时,化学需氧量(COD)去除效率达到98%在平均COD浓度为18.4 g / l的情况下,有机负荷率(OLR)分别为9.4和24.2 g COD / ld,水力停留时间(HRT)为48和18 h时分别为81.6%。在有机负荷率(OLR)为9.4 g COD / ld的条件下,AFBR的总COD去除效率为95%,在24.2 g COD / ld的OLR中,AFBR逐渐降低至76.5%而且随着有机负载率的增加,好氧反应器在去除COD方面的贡献也逐渐降低。在该系统中,厌氧反应器在COD的去除中起着最重要的作用,而好氧MBBR实际上是用来抛光经厌氧处理的废水的。

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