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The Use of Membranes in Olive Mill Wastewater Treatment: How to Control Dynamic Fouling?

机译:膜在橄榄磨机废水处理中的使用:如何控制动态结垢?

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Membrane fouling leads to increased expenses in the processes in which they are implemented, and this is especially problematic in wastewater treatments. Therefore, fouling minimization and control represents the key to make those processes feasible. In the present paper, a review on the results of fouling control by the critical and threshold flux theories, focusing on olive mill wastewater coming from Spain (OMW-S) and Italy (OMW-I), is briefly covered. In first place, adequate fouling inhibition methods should be designed upstream the membrane operation, in order to make the downstream membrane processes for wastewater treatment technically and economically feasible. The followed strategy allows the operation of the membranes system in a controlled framework that permits the stable operation of the plant. Moreover, the calculated membrane area upon the adoption of feed control (FC) resulted in a requirement for the OMW-S stream of 74.2 and 50.3 m2 for the UF and NF membranes, respectively, whilst 113.1 and 49.7 m2 would be required for the treatment of the OMW-I stream. This also minimizes the membrane plant design, avoiding the common over-dimension wrongly estimated by engineers in order to guarantee sufficient operating autonomy to conduct the process that makes it unfeasible
机译:膜污染会导致实施过程中的费用增加,这在废水处理中尤其成问题。因此,污垢的最小化和控制是使这些过程可行的关键。在本文中,简要介绍了通过临界流量阈值理论和临界流量阈值理论对结垢控制结果的回顾,重点是来自西班牙(OMW-S)和意大利(OMW-I)的橄榄厂废水。首先,应在膜操作的上游设计适当的结垢抑制方法,以使用于废水处理的下游膜工艺在技术上和经济上都可行。遵循的策略允许膜系统在受控框架内运行,从而允许设备稳定运行。此外,采用进料控制(FC)后计算出的膜面积导致UF和NF膜的OMW-S流分别需要74.2和50.3 m2,而处理则需要113.1和49.7 m2 OMW-1流。这也使膜装置的设计最小化,避免了工程师错误估计的常见超尺寸,以确保足够的操作自主权来执行使该工艺不可行的过程。

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