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Physicochemical analysis and adequation of olive oil mill wastewater after advanced oxidation process for reclamation by pressure-driven membrane technology

机译:压力驱动膜技术对高级氧化工艺进行再生处理后橄榄油厂废水的理化分析和处理

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Physicochemical characterization of olive mill wastewaters (OMW) was studied after a primary and secondary treatment was implemented in an olive oil factory in Jaen (Spain), comprising natural precipitation, Fenton-like reaction, flocculation-sedimentation and olive stone filtration in series. The application of membrane technology in improving the quality of the secondary-treated OMW (OMW/ST) was examined, to reduce the hazardous electroconductivity (EC) values (2-3 mS cm~(-1)). Particle size distribution on OMW/ST shows supra-micron colloids and suspended solids as well as sub-micron particles with a mean size below 1.5 μm remaining in considerable concentration. The high organic pollutants percentage (31.7%) registered with an average diameter below 3 kDa is sensibly relevant for membrane fouling. Mesophilic aerobic bacteria growth warns of possible membrane biofouling formation. The saturation index indicates to work upon recovery factor below 90%. Finally, operating at a pressure equal to 15 bar ensured low fouling and high flux production on the selected NF membrane (69.9 L h~(-1) m~(-2)) and significant rejection efficiencies (55.5% and 88.5% for EC and COD). This permits obtaining an effluent with good quality according to the recommendations of the Food and Agricultural Association (FAO) with the goal of reusing the regenerated water for irrigation.
机译:在哈恩(西班牙)的一家橄榄油工厂中进行了一次和二次处理后,研究了橄榄油厂废水(OMW)的理化特性,该过程包括自然沉淀,类芬顿反应,絮凝沉淀​​和橄榄石过滤串联。研究了膜技术在提高二次处理OMW(OMW / ST)质量中的应用,以降低有害的电导率(EC)值(2-3 mS cm〜(-1))。在OMW / ST上的粒径分布显示,超微米级胶体和悬浮固体以及平均粒径低于1.5μm的亚微米级颗粒仍保持相当的浓度。平均直径低于3 kDa的高有机污染物百分比(31.7%)与膜污染明显相关。中温需氧细菌的生长警告可能形成膜生物污垢。饱和度指标表明可以在低于90%的回收率下工作。最后,在等于15 bar的压力下操作,可确保所选NF膜的结垢率低且通量高(69.9 L h〜(-1)m〜(-2)),并具有显着的拒收效率(EC的55.5%和88.5%)和COD)。这样可以根据粮食与农业协会(FAO)的建议获得高质量的废水,其目的是将再生水用于灌溉。

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