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Application of membrane distillation technology in the treatment of table olive wastewaters for phenolic compounds concentration and high quality water production

机译:膜蒸馏技术在处理食用橄榄废水中酚类化合物浓缩和高质量水的应用

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Direct contact membrane distillation process (DCMD) is proposed for the treatment of table olive wastewaters (TOW) for high quality water production and concentration of their phenolic compounds. The main objective was to investigate the effectiveness of DCMD process to concentrate phenolic compounds from TOW that can be reused as a potential source for powerful natural antioxidants. The performance of three commercial membranes, made from polytetrafluoroethylene supported by polypropylene net (TF200, TF450 and TF1000), were tested. The permeate fluxes and polyphenols concentration in both the permeate and retentate have been monitored under different DCMD operating temperatures. It was found that the three membranes exhibit an excellent separation coefficient (greater than 99.5%) even after 4 h of DCMD operation with TOW. High concentration factors were obtained with the membrane TF450 at 70 degrees C, while the membrane TF200 having the lowest pore size was found to be more resistant to fouling phenomenon compared to the other membranes since the reduction of its water permeate flux after TOW treatment did not exceed 2.9%. High quality of the permeate was obtained with phenolic concentration lower than 16 mg of TYE/L. In addition, the values of electrical conductivity of the permeate were lower than 193 mu S/cm for the membranes TF450 and TF200, and lower than 355 mu s/cm for the membrane TF1000. Consequently, DCMD proved to be an effective process for the treatment of TOW for high quality water production and a phenolic-rich concentrate. (C) 2014 Elsevier B.V. All rights reserved.
机译:提出了直接接触膜蒸馏工艺(DCMD)用于处理食用橄榄废水(TOW),以生产高质量的水和浓缩其酚类化合物。主要目的是研究DCMD工艺从TOW浓缩酚类化合物的有效性,该酚类化合物可作为强大的天然抗氧化剂的潜在来源再利用。测试了由聚丙烯网支撑的聚四氟乙烯制成的三种市售膜的性能(TF200,TF450和TF1000)。在不同的DCMD操作温度下,已监测渗透液和滞留液中的渗透通量和多酚浓度。发现即使使用TOW进行DCMD操作4小时后,这三种膜仍具有出色的分离系数(大于99.5%)。薄膜TF450在70摄氏度时获得了高浓度因子,而与其他薄膜相比,具有最小孔径的薄膜TF200较不易结垢,因为在TOW处理后其渗透水通量没有降低超过2.9%。苯酚浓度低于16 mg TYE / L时,可以得到高质量的渗透液。另外,对于膜TF450和TF200,渗透物的电导率值低于193μS/ cm,对于膜TF1000,渗透物的电导率值低于355μs/ cm。因此,DCMD被证明是处理TOW的有效方法,可用于生产高质量的水和富含酚的浓缩液。 (C)2014 Elsevier B.V.保留所有权利。

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