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Designing of Membrane Contactors with Cross-Counter Current Flow

机译:跨计数器电流流膜接触器的设计

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The knowledge about membrane contactors is growing rapidly but is still insufficient for a reliable designing. This paper presents a new type of membrane contactors that are integrated with one of the following ways of separation by using absorbents, micelles, flocculants, functionalized polymers, molecular imprints, or other methods that are based on aggregation. The article discusses methods for designing multi-stage cascade, usually counter-current. At every stage of this cascade, relevant aggregates are retained by the membrane, while the permeate passes freely through membrane. The process takes place in the membrane boundary layer with a local cross-flow of the permeate and the retentate. So the whole system can be called a cross-counter-current. The process kinetics, k, must be coordinated with the permeate flux, J, and the rate of surface renewal of the sorbent on the membrane surface, s. This can be done by using ordinary back-flushing or relevant hydrodynamic method of sweeping, such as: turbulences, shear stresses or lifting forces. A surface renewal model has been applied to adjust the optimal process conditions to sorbent kinetics. The experimental results confirmed the correctness of the model and its suitability for design of the new type of contactors.
机译:关于膜接触器的知识正在迅速增长,但仍不足以进行可靠的设计。本文介绍了一种新型的膜接触器,该膜接触器通过使用吸收剂,胶束,絮凝剂,功能化聚合物,分子印迹或其他基于聚集的方法与以下一种分离方式集成在一起。本文讨论了设计多级级联(通常是逆流)的方法。在该级联的每个阶段,相关的聚集体均被膜保留,而渗透液则自由通过膜。该过程在膜边界层中发生,其中渗透物和渗余物发生局部错流。因此整个系统可以称为交叉逆流。过程动力学k必须与渗透通量J和膜表面吸附剂的表面更新速率s协调。这可以通过使用普通的反冲洗或相关的流体动力学方法进行扫掠来完成,例如:湍流,剪切应力或提升力。已应用表面更新模型来调整最佳工艺条件以适应吸附剂动力学。实验结果证实了该模型的正确性及其对新型接触器设计的适用性。

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