Suppr超能文献

在水处理用螺旋卷式膜组件中,填流板的作用和性能增强:对 20 年来研究进展的回顾。

Roles and performance enhancement of feed spacer in spiral wound membrane modules for water treatment: A 20-year review on research evolvement.

机构信息

State Key Joint Laboratory of Environment Simulation and Pollution Control, School of Environment, Tsinghua University, Beijing, 100084, China.

State Key Joint Laboratory of Environment Simulation and Pollution Control, School of Environment, Tsinghua University, Beijing, 100084, China; Research and Application Center for Membrane Technology, School of Environment, Tsinghua University, Beijing 100084, China.

出版信息

Water Res. 2021 Jun 15;198:117146. doi: 10.1016/j.watres.2021.117146. Epub 2021 Apr 15.

Abstract

Membrane technologies have been widely applied in water treatment, wastewater reclamation and seawater desalination. Feed spacer present in spiral wound membrane (SWM) modules plays a pivotal role in creating flow channels, promoting fluid mixing and enhancing mass transfer. However, it induces the increase of feed channel pressure (FCP) drop and localized stagnant zones that provokes membrane fouling. For the first time, we comprehensively review the research evolvement on feed spacer in SWM modules for water treatment over the last 20 years, to reveal the impacts of feed spacer on the hydrodynamics and biofouling in the spacer-filled channel, and to discuss the potential approaches and current limitations for the modification of feed spacer. The research process can be divided into three phases, with research focus shifting from hydrodynamics in Phase Ⅰ (the year of 2001-2008), to biofouling in Phase Ⅱ (the year of 2009-2015), and then to novel spacer designs in Phase Ⅲ (the year of 2016-2020). The spacer configuration has a momentous impact on the hydraulic performance regarding flow velocity field, shear stress, mass transfer and FCP drop. Biofouling initially occurs on feed spacer, especially around spacer filaments and the contact zones with membrane surface, and ultimately degrades the overall membrane performance indicating the importance of controlling spacer biofouling. The modification of feed spacer is mainly achieved by altering surface chemistry or introducing novel configurations. However, the stability of spacer coating and the economy and practicality of 3D-printed spacer remain a predicament to be tackled. Future studies are suggested to focus on the standardization of testing conditions for spacer evaluation, the effect of hydrodynamics on membrane fouling control, the design and fabrication of novel feed spacer adaptable for SWM modules, the application of feed spacer for drinking water production, organic fouling control in spacer-filled channel and the role of permeate spacer on membrane performance.

摘要

膜技术已广泛应用于水处理、废水回用和海水淡化。螺旋卷式膜(SWM)组件中的进料隔片在形成流道、促进流体混合和增强传质方面发挥着关键作用。然而,它会导致进料通道压力(FCP)下降和局部停滞区增加,从而引发膜污染。我们首次全面回顾了过去 20 年来 SWM 组件中进料隔片在水处理方面的研究进展,揭示了进料隔片对隔片填充通道内水力学和生物污染的影响,并讨论了改进进料隔片的潜在方法和当前限制。研究过程可以分为三个阶段,研究重点从第一阶段(2001-2008 年)的水力学,转移到第二阶段(2009-2015 年)的生物污染,再到第三阶段(2016-2020 年)的新型隔片设计。隔片构型对流速场、剪切应力、传质和 FCP 下降等水力性能有重大影响。生物污染最初发生在进料隔片上,特别是在隔片纤维周围和与膜表面接触的区域,最终会降低整体膜性能,这表明控制隔片生物污染的重要性。改进进料隔片主要通过改变表面化学性质或引入新型构型来实现。然而,隔片涂层的稳定性以及 3D 打印隔片的经济性和实用性仍然是一个亟待解决的困境。未来的研究建议集中在隔片评价的测试条件标准化、水力学对膜污染控制的影响、适用于 SWM 组件的新型进料隔片的设计和制造、进料隔片在饮用水生产中的应用、隔片填充通道中的有机污染控制以及渗透隔片对膜性能的作用。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验