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Performance evaluation of the DCMD desalination process under bench scale and large scale module operating conditions

机译:在台式规模和大型模块运行条件下对DCMD脱盐工艺的性能评估

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摘要

The flux performance of different hydrophobic microporous flat sheet commercial membranes made of poly tetrafluoroethylene (PTFE) and poly propylene (PP) was tested for Red Sea water desalination using the direct contact membrane distillation (DCMD) process, under bench scale (high δT) and large scale module (low δT) operating conditions. Membranes were characterized for their surface morphology, water contact angle, thickness, porosity, pore size and pore size distribution. The DCMD process performance was optimized using a locally designed and fabricated module aiming to maximize the flux at different levels of operating parameters, mainly feed water and coolant inlet temperatures at different temperature differences across the membrane (δT). Water vapor flux of 88.8kg/m2h was obtained using a PTFE membrane at high δT (60°C). In addition, the flux performance was compared to the first generation of a new locally synthesized and fabricated membrane made of a different class of polymer under the same conditions. A total salt rejection of 99.99% and boron rejection of 99.41% were achieved under extreme operating conditions. On the other hand, a detailed water characterization revealed that low molecular weight non-ionic molecules (ppb level) were transported with the water vapor molecules through the membrane structure. The membrane which provided the highest flux was then tested under large scale module operating conditions. The average flux of the latter study (low δT) was found to be eight times lower than that of the bench scale (high δT) operating conditions.
机译:使用直接接触膜蒸馏(DCMD)工艺,在台式规模(高δT)和大型模块(低δT)工作条件。表征膜的表面形态,水接触角,厚度,孔隙率,孔径和孔径分布。使用本地设计和制造的模块优化了DCMD工艺性能,旨在最大程度地提高不同运行参数水平下的通量,这些参数主要是跨膜(δT)的不同温差下的给水和冷却剂入口温度。使用PTFE膜在高δT(60°C)下获得88.8kg / m2h的水蒸气通量。此外,在相同条件下,将通量性能与第一代由不同种类的聚合物制成的新型本地合成和制造的膜进行了比较。在极端操作条件下,总脱盐率达到99.99%,硼去除率达到99.41%。另一方面,详细的水特征表明低分子量的非离子分子(ppb级)与水蒸气分子一起通过膜结构传输。然后在大规模模块操作条件下测试提供最高通量的膜。发现后者的平均通量(低δT)比工作台规模(高δT)的运行条件低八倍。

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