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Desalination with a Cascade of Cross-Flow Hollow Fiber Membrane Distillation Devices Integrated with a Heat Exchanger

机译:与热交换器集成的串流错流中空纤维膜蒸馏装置的脱盐

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摘要

Cost-efficient desalination technology was developed successfully by integrating a countercurrent cascade of the novel cross-flow direct contact membrane distillation (DCMD) devices and solid polymeric hollow fiber-based heat exchange devices. Simulations have been carried out for the whole DCMD cascade to project values of gained output ratio (GOR) as a function of the number of DCMD stages as well as other important factors in the cascade vis-d-vis the temperatures and flow rates of the incoming hot brine and cold distillate streams. The simulation results were verified with experimental results from cascades consisting of two to eight stages. The numerical simulator predicts a GOR of 12 when unequal flow rates of the incoming brine and distillate streams are used. An artificial sea water was concentrated eight times successfully when a countercurrent cascade composed of four stages of the DCMD modules and a heat exchanger was used during the DCMD process.
机译:通过将新型错流直接接触膜蒸馏(DCMD)设备和基于固态聚合物中空纤维的热交换设备的逆流级联进行集成,成功开发了具有成本效益的脱盐技术。已经对整个DCMD级联进行了仿真,以得出与DCMD级数以及级联中的其他重要因素有关的输出功率比(GOR)随温度和流量的变化的函数。流入的热盐水和冷馏出物流。仿真结果通过由两到八个阶段组成的级联的实验结果进行了验证。当使用流入的盐水和馏出物流的流速不相等时,数字模拟器预测的GOR为12。当在DCMD过程中使用由四个阶段的DCMD模块和热交换器组成的逆流级联时,人造海水成功浓缩了八倍。

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