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Efficiency in the use of solar thermal energy of small membrane desalination systems for decentralized water production

机译:小型膜式海水淡化系统利用太阳能生产散水的效率

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The demand of freshwater has surpassed the renewable limit and new water sources are associated with an intensive use of energy. Coincidence between scarcity of water and availability of solar radiation makes solar energy the most suitable option to mitigate the water deficit. This paper analyzes the use of energy for decentralized water production using membrane desalination systems fed with solar energy. An analysis is performed based on experimental results from the most advanced commercial prototypes of different technologies of membrane distillation using various configurations, i.e., air-gap, per-meate-gap and vacuum; with flat-plate and spiral-wound membranes. The systems operate with thermal energy, although there is some electrical consumption for pumping and in some cases for sustaining vacuum. The thermal energy requirements per unit volume of water produced are assessed in each case, considering the effect of different operational conditions like the temperature regime and the salinity of the input water.
机译:淡水的需求已经超过了可再生的极限,新的水源与能源的大量使用相关。水的稀缺与太阳辐射的可获得性之间的巧合使太阳能成为减轻缺水的最合适选择。本文分析了利用膜淡化系统供能的能量在分散水生产中的利用。根据不同配置的膜蒸馏技术的最先进商业原型的实验结果,使用气隙,透过液隙和真空配置进行分析。带有平板和螺旋缠绕膜。该系统使用热能运行,尽管抽水会消耗一些电能,在某些情况下会保持真空。在每种情况下,都要考虑到不同的操作条件(如温度范围和输入水的盐度)的影响,来评估每单位体积的水所产生的热能需求。

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