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Unique membrane process integration for olive oil mill wastewater purification

机译:独特的膜工艺集成,用于橄榄油厂废水净化

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The integrated membrane system (UF-NF) was constructed and used for olive oil mill wastewater (OMW) purification. OMW was pre-filtered by three steps microfiltration (MF) membranes with nominal pore size of 50, 5 and 0.2 μm in series mode. Filtration experiments in concentration mode of the filtration (with recycling of the retentate stream) were performed in laboratory scale, by using two and three ultrafiltration (UF) and nanofiltration (NF) membranes respectively. The effectiveness of the filtration treatments was determined by the evaluation of the rejection coefficients based on several parameters, which measure the global pollutant content of the OMW namely chemical oxygen demand (COD), UV absorbance at 254 nm, total phenols, color as well as conductivity. The analysis of fouling behavior of the UF and NF membranes was also performed by assessment of the flux recovery ratio (FRR) and degree of the total flux loss (R_t) during volμme reduction factor (VRF) experiments. In the case of UF membranes, the commercial UF membrane had shown higher permeate flux than the self-made (home-made) UF membrane, while the antifouling properties and rejections efficiency of self-made UF membrane was significantly better. As for NF membranes, the NF-270 had resulted higher permeate flux than the other examined NF membranes, while the rejection efficiency of both NF-90 and self-made NF were better than that NF-270. The NF membranes provided variable rejection of the organic and inorganic contaminants and had significantly lower rejection for conductivity after membrane fouling during VRF experiments. Finally, in order to achieve higher filtration efficiency, a specific arrangement of the integrated membrane system (IMS) with UF membrane followed by two-step NF membranes in series mode was carried out. In the first NF step a high flux NF membrane (NF-270) was used, while in the second NF step a high rejection NF membrane (NF-90) was exploited.
机译:构建了集成膜系统(UF-NF),并将其用于橄榄油厂废水(OMW)净化。 OMW通过三步微滤(MF)膜以串联模式分别过滤,其标称孔径分别为50、5和0.2μm。在实验室规模下,分别使用两个和三个超滤(UF)和纳滤(NF)膜,进行了过滤浓缩模式的过滤实验(渗余物流的再循环)。过滤处理的有效性是通过评估基于几个参数的排斥系数来确定的,这些参数测量了OMW的总体污染物含量,即化学需氧量(COD),254 nm的紫外线吸收率,总酚,颜色以及电导率。 UF和NF膜的结垢行为分析还通过评估体积减少因子(VRF)实验期间的通量回收率(FRR)和总通量损失程度(R_t)进行。就超滤膜而言,商用超滤膜的渗透通量高于自制(自制)超滤膜,而自制超滤膜的防污性能和拒收效率明显更好。至于NF膜,NF-270产生的渗透通量高于其他检查过的NF膜,而NF-90和自制NF的截留效率均优于NF-270。 NF膜提供了可变的有机和无机污染物截留率,并且在VRF实验过程中膜污染后对电导率的截留率明显较低。最后,为了获得更高的过滤效率,对带有超滤膜和串联两步纳滤膜的集成膜系统(IMS)进行了特定的布置。在第一个NF步骤中,使用高通量NF膜(NF-270),而在第二个NF步骤中,使用高截留率的NF膜(NF-90)。

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