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一种用于控制螺旋缠绕膜系统生物污垢的新方案。

A novel scenario for biofouling control of spiral wound membrane systems.

机构信息

Wetsus, Centre of Excellence for Sustainable Water Technology, Agora 1, P.O. Box 1113, 8900 CC Leeuwarden, The Netherlands.

出版信息

Water Res. 2011 Jul;45(13):3890-8. doi: 10.1016/j.watres.2011.04.046. Epub 2011 May 4.

Abstract

Current strategies to control biofouling in nanofiltration and reverse osmosis membrane systems such as chemical cleaning and use of low fouling membranes are not always successful. Based on recent studies, an alternative approach is derived, combining a lower linear flow velocity in lead modules and adapted designs for feed spacer with an advanced cleaning strategy. This approach can be realized by small adaptations in current plant design. A lower linear flow velocity in lead spiral wound membrane modules results in (i) lower energy use, (ii) lower impact of biomass on the feed channel pressure drop, and (iii) more fluffy biofilm that may be easier to remove from the lead membrane modules, especially when adapted feed spacers combined with a reversed enhanced flush are applied. This rational scenario can result in effective biofouling control at low energy requirements, minimal chemical use and minimal cost.

摘要

当前控制纳滤和反渗透膜系统生物污垢的策略,如化学清洗和使用低污染膜,并不总是成功的。基于最近的研究,衍生出一种替代方法,即在主管中采用较低的线性流速,并结合改进的进料隔垫设计和先进的清洗策略。这种方法可以通过对现有工厂设计进行微小的调整来实现。主管螺旋缠绕膜组件中较低的线性流速会导致:(i)能耗降低,(ii)生物量对进料通道压降的影响降低,(iii)生物膜更蓬松,更容易从主管膜组件中去除,特别是当采用改进的进料隔垫并结合反向增强冲洗时。这种合理的方案可以在低能耗、低化学药品使用和低成本的情况下,有效地控制生物污垢。

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