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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Spacer fabric supported flat-sheet membranes: A new era of flat-sheet membrane technology
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Spacer fabric supported flat-sheet membranes: A new era of flat-sheet membrane technology

机译:间隔织物支撑的平板膜:平板膜技术的新时代

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Current flat sheet MBR membranes are sandwich constructions containing at least 3 different layers. These membranes have no or only very backwash-ability and their envelope construction is a very labour-intensive multi-step operation.In this paper an innovative single method for constructing a prior-to-art back-washable flat sheet membrane envelope is described. The key element of this concept is the use of a 3D spacer-fabric as a membrane support stucture. Spacer-textiles can be made by a knitting or weaving process and they are normally used for the construction of all kind of light-weight composite materials. They basically consist of two faces (their outer layers), which are connected with each other by a multitude of monofilament spacer yarns. As a result a solid three dimentional structure is obtained which contains three distinguishable layers: the two faces (each e.g. 0.5 mm thick), and a hollow space in between them formed by the monofilament spacer yarns. In our concept the hollow space of the spacer fabric is used as the permeate drainage channel, whereas its faces are used for membrane anchoring. The interesting spacer fabrics for use as a membrane support have a thickness in between 2 and 10 mm. In our manufacturing process both faces of the spacer-fabric are directly and simultaneously coated with membrane dope in a vertical set-up. The pore size of both membrane layers is controlled by a combined VIPS and LIPS process. A membrane envelope has been realized with 0.3 μm pores having a pure water permeability of 1500l/hm~2 bar. A membrane adhesion test revealed that the membrane layers are attached well to the spacer fabric and can simply be back-washed with a TMP of 1 bar. Application tests showed that the critical flux of the IPC membrane is similar to a commercial MBR membrane type.
机译:当前的平板MBR膜是包含至少3个不同层的夹心结构。这些膜不具有反洗能力或仅具有非常好的反洗能力,并且它们的包膜结构是非常费力的多步骤操作。在本文中,描述了一种用于构造现有技术的可反洗的平板膜包膜的创新的单一方法。这个概念的关键要素是将3D间隔织物用作膜支撑结构。间隔织物可以通过编织或编织工艺制成,通常用于制造各种轻质复合材料。它们基本上由两个面(它们的外层)组成,这两个面通过大量单丝间隔纱线相互连接。结果,获得了固体的三维结构,该结构包含三个可区分的层:两个面(每个面例如0.5mm厚),以及在它们之间的由单丝间隔纱线形成的中空空间。在我们的概念中,间隔织物的中空空间用作渗透液排放通道,而其表面用于膜锚固。用作膜载体的有趣的间隔织物的厚度在2至10毫米之间。在我们的制造过程中,间隔织物的两个面都在垂直方向上同时直接涂有膜涂料。两个膜层的孔径均由VIPS和LIPS组合工艺控制。已经实现了具有0.3μm孔的膜包膜,其纯水渗透率为1500l / hm〜2 bar。膜附着力测试表明,膜层可以很好地附着在间隔织物上,并且可以简单地用1 bar的TMP反洗。应用测试表明,IPC膜的临界通量类似于商业MBR膜类型。

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