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Hydrodynamics of a Thermopervaporation Flow Membrane Module with Cylindrical Spacers

机译:带有圆柱垫片的热过汽化流动膜组件的流体力学

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The influence of hydrodynamic flow of a butanol—water mixture on the thermopervaporation (TPV) permeate flux and the separation factor has been theoretically and experimentally studied. A possibility of enhancement of thermopervaporation with cylindrical spacers placed in the feed channel or with pulsating feed flow is illustrated by the example of thermopervaporation of a dilute 1-butanol aqueous solution through a PTMSP membrane in a plate-and-frame module. The flow and concentration fields in the plane-parallel channel with cylindrical spacers arranged normally to the flow direction have been obtained by numerical solution of the Navier—Stokes and convection diffusion equations. The pressure drop in the channel and the normal diffusion flux of the target component at the feed side of the membrane, depending on the feed flow rate, have been calculated. It has been shown that even two cylindrical spacers can noticeably increase the diffusion flux to the membrane. It has been found that the spacer cross section shape (circular, elliptic, or rectangular) has a minor effect on the mass transfer and pressure drop in the channel. Multifilament highly porous spacers (fiber bundles), which advantageously exhibit a significantly lower resistance to flow compared with impermeable spacers with the same cross section, have been found to provide the maximum enhancement of the diffusion flux.
机译:从理论上和实验上研究了丁醇-水混合物的流体动力流对热过蒸发(TPV)渗透通量和分离因子的影响。通过在板框式模块中通过PTMSP膜稀释的1-丁醇水溶液进行热过汽化的例子,说明了通过在进料通道中放置圆柱形隔圈或使进料流脉动来增强热过汽的可能性。通过Navier-Stokes方程和对流扩散方程的数值解,获得了具有垂直于流向排列的圆柱形间隔物的平面平行通道中的流场和浓度场。已经根据进料流速计算了通道中的压降和膜进料侧目标组分的正常扩散通量。已经表明,甚至两个圆柱形的间隔物也可以显着增加向膜的扩散通量。已经发现,间隔物的横截面形状(圆形,椭圆形或矩形)对通道中的传质和压降影响较小。已经发现,与具有相同横截面的不可渗透的隔离物相比,具有复丝高多孔性的隔离物(纤维束)具有明显更低的流动阻力,从而可以最大程度地提高扩散通量。

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