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Commercial scale membrane distillation for solar desalination

机译:商业规模的膜蒸馏,用于太阳能脱盐

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Membrane distillation is an attractive technology for solar-powered decentralized desalination that has not yet reached commercial breakthrough on a large scale. The main barriers are energy consumption and cost. Since the latter are mostly related to the former, thermal energy efficiency is key to assessing the potential of the different available membrane distillation systems at a commercial scale. As discussed here, existing membrane distillation technologies use mostly flat sheet membranes in plate and frame and spiral-wound modules. Modules based on hollow fibre membranes are also considered, as well as the concept of multi-effect vacuum membrane distillation for improved heat recovery. The heat efficiency of each system is analysed based on available experimental results. Better internal heat recovery and capacity for upscaling are found to be important elements of distinction which make multi-channelled spiral-wound modules working in air-gap configuration stand out currently, with the lowest heat consumption of all large scale modules. Potential for improvement of this and other technologies is also discussed, and an estimation based on the associated costs for solar energy is used for establishing boundary conditions towards the implementation of membrane distillation for solar desalination.
机译:膜蒸馏是太阳能分散式脱盐的一项有吸引力的技术,该技术尚未大规模实现商业突破。主要障碍是能源消耗和成本。由于后者主要与前者有关,因此热能效率是评估商业规模上各种可用膜蒸馏系统潜力的关键。如此处讨论的那样,现有的膜蒸馏技术在板框式和螺旋缠绕式模块中大多使用平板膜。还考虑了基于中空纤维膜的组件,以及多效真空膜蒸馏的概念,以提高热量回收率。根据可用的实验结果分析每个系统的热效率。人们发现,更好的内部热量回收和扩大规模的能力是重要的区别元素,这些优点使目前在气隙配置下工作的多通道螺旋绕线模块脱颖而出,而所有大型模块的热量消耗最低。还讨论了该技术和其他技术的改进潜力,并且基于太阳能的相关成本进行的估算用于确定实现用于太阳能淡化的膜蒸馏的边界条件。

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