论文标题

孔隙率异质性如何影响多核过滤膜的运输特性?

How does porosity heterogeneity affect the transport properties of multibore filtration membranes?

论文作者

Wypysek, Denis, Rall, Deniz, Neef, Tobias, Jarauta, Alex, Secanell, Marc, Wessling, Matthias

论文摘要

如果几何形状偏离单孔管状几何形状,那么多孔膜内压力和流量分布的预测很重要。这项任务仍然具有挑战性,尤其是在考虑由腔膜和壳膜皮以及宏观和微分线结构引起的局部孔隙率变化时,所有这些结构都存在于多层膜中。 这项研究分析了使用计算流体动力学模拟的聚合物多孔膜的纯净水和反向渗透和反冲洗现象。孔隙率分布的异质性在实验表征是通过扫描电子显微镜扫描和X射线微型计算机层析成像扫描的重建的长方体。重建的长方体用于确定膜在所有空间方向上膜的多孔结构中的孔隙率,孔径分布和内在的渗透性。然后将这些依赖位置的特性应用于具有不同特性的整个膜域的多孔介质流量模拟,用于分离层,支撑结构和外部皮肤层。模拟膜的纯水渗透,结垢和反冲洗行为的各种情况进行了模拟,并将其与先前获得的MRI测量结果进行了比较。 这项工作揭示了(a)各个方向的各向异性通透性值和等应值,以及(b)每个管腔通道对总膜性能的不同贡献,具体取决于膜皮的特性。这项研究鼓励与理解空间分布的膜特性的相互作用以及多层膜的整体膜模块性能有关。

The prediction of pressure and flow distributions inside porous membranes is important if the geometry deviates from single-bore tubular geometries. This task remains challenging, especially when considering local porosity variations caused by lumen- and shell-side membrane skins and macro- and micro-void structures, all of them present in multibore membranes. This study analyzes pure water forward and reverse permeation and backwashing phenomena for a polymeric multibore membrane with spatially-varying porosity and permeability properties using computational fluid dynamics simulations. The heterogeneity of porosity distribution is experimentally characterized by scanning electron microscopy scans and reconstructed cuboids of X-ray micro-computed tomography scans. The reconstructed cuboids are used to determine porosity, pore size distribution, and intrinsic permeability in the membrane's porous structure in all spatial directions. These position-dependent properties are then applied to porous media flow simulations of the whole membrane domain with different properties for separation layer, support structure, and outside skin layer. Various cases mimicking the pure water permeation, fouling, and backwashing behavior of the membrane are simulated and compared to previously obtained MRI measurements. This work reveals (a) anisotropic permeability values and isoporosity in all directions and (b) differing contributions of each lumen channel to the total membrane performance, depending on the membrane-skin's properties. This study encourages to pertain the quest of understanding the interaction of spatially distributed membrane properties and the overall membrane module performance of multibore membranes.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源