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Successful integration of membrane technologies in a conventional purification process of tannery wastewater streams

机译:将膜技术成功地集成到制革厂废水流的常规净化过程中

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摘要

The aim of this work is to design and integrate an optimized batch membrane process in a conventional purification process used for the treatment of tannery wastewater. The integration was performed by using two spiral wound membrane modules in series, that is, nanofiltration and reverse osmosis, as substitutes to the biological reactor. The membrane process was designed in terms of sensible fouling issues reduction, which may be observed on the nanofiltration membrane if no optimization is performed. The entity of the fouling phenomena was estimated by pressure cycling measurements, determining both the critical and the threshold flux on the nanofiltration membrane. The obtained results were used to estimate the need of the overdesign of the membrane plant, as well as to define optimized operating conditions in order to handle fouling issues correctly for a long period of time. Finally, the developed membrane process was compared, from a technical and economic point of view, with the conventional biological process, widely offered as an external service near tannery production sites, and, here, proposed to be substituted by membrane technologies. © 2013 by the authors; licensee MDPI, Basel, Switzerland.
机译:这项工作的目的是在用于制革厂废水处理的常规纯化工艺中设计和整合优化的间歇膜工艺。通过使用两个串联的螺旋缠绕膜组件,即纳滤和反渗透,代替生物反应器来进行整合。膜工艺的设计是基于减少明显的结垢问题,如果不进行优化,则可以在纳滤膜上观察到。通过压力循环测量来估计结垢现象的实体,从而确定纳米过滤膜上的临界通量和阈值通量。获得的结果用于估算对膜设备进行过度设计的需要,以及定义优化的操作条件,以便长时间正确处理结垢问题。最后,从技术和经济角度将开发的膜工艺与常规的生物工艺进行了比较,该工艺广泛地用作制革厂附近的外部服务,并在此建议用膜技术代替。 ©2013作者瑞士巴塞尔的MDPI许可证持有者。

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