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Hydrodynamic effects of air sparging on hollow fiber membranes in a bubble column reactor

机译:鼓泡塔反应器中鼓入空气对中空纤维膜的水动力效应

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摘要

Air sparging is now a standard approach to reduce concentration polarization and fouling of membrane modules in membrane bioreactors (MBRs). The hydrodynamic shear stresses, bubble-induced turbulence and cross flows scour the membrane surfaces and help reduce the deposit of foulants onto the membrane surface. However, the detailed quantitative knowledge on the effect of air sparging remains lacking in the literature due to the complex hydrodynamics generated by the gas-liquid flows. To date, there is no valid model that describes the relationship between the membrane fouling performance and the flow hydrodynamics. The present study aims to examine the impact of hydrodynamics induced by air sparging on the membrane fouling mitigation in a quantitative manner. A modelled hollow fiber module was placed in a cylindrical bubble column reactor at different axial heights with the trans-membrane pressure (TMP) monitored under constant flux conditions. The configuration of bubble column without the membrane module immersed was identical to that studied by Gan et al. (2011) using Phase Doppler Anemometry (PDA), to ensure a good quantitative understanding of turbulent flow conditions along the column height. The experimental results showed that the meandering flow regime which exhibits high flow instability at the 0.3 m is more beneficial to fouling alleviation compared with the steady flow circulation regime at the 0.6 m. The filtration tests also confirmed the existence of an optimal superficial air velocity beyond which a further increase is of no significant benefit on the membrane fouling reduction. In addition, the alternate aeration provided by two air stones mounted at the opposite end of the diameter of the bubble column was also studied to investigate the associated flow dynamics and its influence on the membrane filtration performance. It was found that with a proper switching interval and membrane module orientation, the membrane fouling can be effectively controlled with even smaller superficial air velocity than the optimal value provided by a single air stone. Finally, the testing results with both inorganic and organic feeds showed that the solid particle composition and particle size distribution all contribute to the cake formation in a membrane filtration system.
机译:如今,空气喷射是减少膜生物反应器(MBR)中膜组件的浓度极化和结垢的标准方法。流体动力切应力,气泡引起的湍流和横流冲刷了膜表面,并有助于减少污垢在膜表面上的沉积。然而,由于气体-液体流产生的复杂的流体动力学,在文献中仍然缺乏关于空气喷射影响的详细定量知识。迄今为止,还没有有效的模型来描述膜污染性能和流动流体动力学之间的关系。本研究旨在定量研究空气鼓动引起的水动力对减轻膜污染的影响。将模型化的中空纤维模块放在不同轴向高度的圆柱形鼓泡塔反应器中,并在恒定通量条件下监测跨膜压力(TMP)。膜组件未浸入的鼓泡塔构型与Gan等人研究的相同。 (2011年)使用相位多普勒风速计(PDA),以确保对沿色谱柱高度的湍流条件有很好的定量了解。实验结果表明,与在0.6 m处的稳定流循环方式相比,在0.3 m处表现出高流动不稳定性的曲折流动方式更有利于减轻结垢。过滤试验还证实存在最佳的表观空气速度,超过该速度时,进一步增加不会对减少膜污染产生重大影响。此外,还研究了由安装在气泡塔直径另一端的两个气石提供的交替曝气,以研究相关的流动动力学及其对膜过滤性能的影响。已经发现,通过具有适当的切换间隔和膜组件方向,可以用比单个气石提供的最佳值还要小的表观风速来有效地控制膜污染。最后,无机和有机进料的测试结果表明,固体颗粒组成和粒径分布均有助于膜过滤系统中滤饼的形成。

著录项

  • 来源
    《Water Research》 |2013年第11期|3762-3772|共11页
  • 作者单位

    Singapore Membrane Technology Centre, 50 Nanyang Avenue, 639798 Singapore, Singapore,School of Civil and Environmental Engineering, Nanyang Technological University, 50 Nanyang Avenue,639798 Singapore, Singapore;

    Singapore Membrane Technology Centre, 50 Nanyang Avenue, 639798 Singapore, Singapore,School of Civil and Environmental Engineering, Nanyang Technological University, 50 Nanyang Avenue,639798 Singapore, Singapore;

    Singapore Membrane Technology Centre, 50 Nanyang Avenue, 639798 Singapore, Singapore,School of Civil and Environmental Engineering, Nanyang Technological University, 50 Nanyang Avenue,639798 Singapore, Singapore;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Air sparging; Alternate aeration; Bubble column reactor; Continuous aeration; Hollow fiber membranes; Hydrodynamics; Superficial air velocity;

    机译:鼓风;交替曝气;鼓泡塔反应器;连续曝气;中空纤维膜;水动力;表观风速;
  • 入库时间 2022-08-17 13:45:40

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