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Analysis of the concentration polarization and fouling dynamic resistances under reverse osmosis membrane treatment of olive mill wastewater

机译:反渗透膜处理橄榄厂废水的浓差极化和结垢动态阻力分析

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In this work, the resistances-in-series plus critical flux models are used as a simple but efficient tool in order to describe and predict the dynamic performance of a reverse osmosis membrane process, aimed for the tertiary treatment of two-phase olive mill wastewater (OMW2ST). To overcome the uncertainty of fouling, engineers overdesign the membrane plants by using wide safety margins that trigger the costs sensibly. One approach to answer the investor's need to trust membrane technology is to guarantee that fouling will be strongly inhibited or avoided. Within this context, concentration polarization and fouling could be accurately addressed by the applied models. Similar concentration polarization and fouling build-up rate on the selected membrane was found in the operating pressure range 15-25 bar (1.20 x 10(-1)-1.41 x 10(-1) h(-1)), but increased over 5 times (6.42 x 10(-1) h(-1)) upon incrementing the transmembrane pressure up to 35 bar. Moreover, concentration polarization decreased 22.6% and the fouling build-up rate became reduced 45.5% with an increase of the crossflow up to 5.09 m s(-1) upon negligible energy penalty, also avoiding irreversible fouling. Finally, significantly minor fouling (52.5-56.2% reduction) was attained at the lowest temperature, regularly experienced during the olive oil production campaign. (C) 2015 The Korean Society of Industrial and Engineering Chemistry. Published by Elsevier B.V. All rights reserved.
机译:在这项工作中,串联电阻和临界通量模型被用作简单而有效的工具,以描述和预测反渗透膜工艺的动态性能,旨在对两相橄榄磨机废水进行三级处理。 (OMW2ST)。为了克服结垢的不确定性,工程师们通过使用较大的安全裕度来合理地触发成本,从而对膜装置进行了过度设计。满足投资者对膜技术的信任的一种方法是,确保结垢将得到严格抑制或避免。在这种情况下,浓度极化和结垢可以通过应用模型来准确解决。在15-25 bar(1.20 x 10(-1)-1.41 x 10(-1)h(-1))的工作压力范围内发现了所选膜上类似的浓度极化和结垢累积率,但在在将跨膜压力增加到35 bar时进行5次(6.42 x 10(-1)h(-1))。此外,在能量损失可忽略不计的情况下,随着错流增加到5.09 m s(-1),浓度极化降低了22.6%,结垢率降低了45.5%,还避免了不可逆的结垢。最后,在橄榄油生产活动中经常遇到的最低温度下,显着减少了轻微的结垢(减少了52.5-56.2%)。 (C)2015韩国工业和工程化学学会。由Elsevier B.V.发布。保留所有权利。

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