Institute on Membrane Technology, ITM-CNR, Via P. Bucci, 17/C I-87036 Rende (CS), Italy.
J Hazard Mater. 2013 Mar 15;248-249:185-93. doi: 10.1016/j.jhazmat.2013.01.006. Epub 2013 Jan 10.
This study aims to evaluate the potential of an integrated membrane system in the treatment of olive mill wastewaters (OMWs) to produce a purified fraction enriched in low molecular weight polyphenols, a concentrated fraction of organic substances and a water stream which can be reused in the extractive process of olive oil. In particular, a sequence of two ultrafiltration (UF) processes followed by a final nanofiltration (NF) step was investigated on laboratory scale operating in selected process parameters. The produced fractions were analyzed for their total content of polyphenols, total antioxidant activity (TAA), free low molecular weight polyphenols and total organic carbon (TOC). The performance of selected membranes in terms of productivity, fouling index and selectivity toward compounds of interest was also evaluated and discussed. An integrated membrane process was proposed to achieve high levels of purification of OMWs and a water fraction which can be discharged in aquatic systems or to be reused in the olive oil extraction process.
本研究旨在评估集成膜系统在橄榄厂废水(OMW)处理中的潜力,以生产富含低分子量多酚的净化部分、浓缩的有机物质部分和可在橄榄油提取过程中再利用的水相。具体而言,在选定的工艺参数下,在实验室规模上研究了两个超滤(UF)过程的序列,最后是纳滤(NF)步骤。对所生产的部分进行了多酚总含量、总抗氧化活性(TAA)、游离低分子量多酚和总有机碳(TOC)的分析。还评估和讨论了所选膜在产率、污垢指数和对目标化合物的选择性方面的性能。提出了一种集成膜工艺,以实现 OMW 的高净化水平和水相的排放,该水相可以排放到水系统中或再用于橄榄油提取过程。