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Physico-Chemical and Biological Treatment of Olive Mill Wastewater by Rotating Biological Contactor (RBC) Reactors

机译:旋转生物接触器(RBC)反应器对橄榄磨废水的物理化学和生物处理

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摘要

The removal performance of total poly phenols and orthodiphenols (o-diphenols) content in olive mill waste (OMW) was investigated with a three stages cross flow laboratory scale rotating biological contactor (RBC) in the present study. Due to high COD and other pollutant in the original OMW, physico-chemical treatment was effected for COD and other pollutant reduction prior to biological treatment of OMW by the RBC system. Inoculation of RBC was effected by sludge from olive oil factory. In biological treatment, effect of operating parameters such as hydraulic loading (HL) and influent COD were examined. The study of the physico-chemical treatment before biological treatment of OMW showed, that about 9.1% of total poly phenols, 3.2% of o-diphenols and 12% of COD were removed by physical treatment. The effect of chemical treatment by different coagulants, alum, bentonite and zeolite at different pH and concentrations showed that bentonite at pH 6.5 and 15g/l resulted in the best removal efficiency of 20% for poly phenols and o-diphenols. The experimental results in RBC system show that at low HL, significant removal efficiency was observed for poly phenols and o-diphenols, at the first stage, but with increasing HL, other stages took part in removal efficiency. Also, decreasing COD from 5000 to 2500 at different HL caused an increase in poly phenols and o-diphenols removal efficiency.
机译:在本研究中,采用三阶段交叉流实验室规模旋转生物接触器(RBC),研究了橄榄研磨厂废料(OMW)中总多酚和邻二酚(邻二酚)含量的去除性能。由于原始OMW中的COD和其他污染物较高,因此在通过RBC系统对OMW进行生物处理之前,先进行了物理化学处理以减少COD和其他污染物。红细胞的接种受到橄榄油厂污泥的影响。在生物处理中,检查了诸如液压负荷(HL)和进水COD等操作参数的影响。对OMW进行生物处理之前的物理化学处理研究表明,通过物理处理除去了约9.1%的总多酚,3.2%的邻二酚和12%的COD。在不同的pH和浓度下,通过不同的混凝剂,明矾,膨润土和沸石进行化学处理的结果表明,pH 6.5和15g / l的膨润土对多酚和邻二酚的最佳去除效率为20%。 RBC系统的实验结果表明,在低HL下,在第一阶段观察到多酚和邻二酚的显着去除效率,但随着HL的增加,其他阶段也参与了去除效率。同样,在不同的HL下,COD从5000降低到2500导致多酚和邻二酚去除效率的提高。

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