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An energy recovery device for small-scale seawater reverse osmosis desalination

机译:一种用于小型海水反渗透海水淡化的能量回收装置

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摘要

This work presents the concept development, implementation and first practical demonstration of a new pressure intensifier for energy recovery in small-scale seawater reverse osmosis systems, and the simplified system configuration it requires. The new concept has great potential to reduce the specific energy consumption of small-scale seawater reverse osmosis systems. A mathematical analysis to study pressure intensifiers for energy recovery in reverse osmosis applications was developed. The analysis was used in the design and modelling of the energy recovery device. A first prototype was built and subsequently demonstrated in a system desalinating seawater over a wide range of electrical input power stretching between 286 and 1196 W, producing up to 286 L/h of freshwater with specific energy consumptions in the range of 3.5 to 4.5 kWh/m^3. The flat specific energy characteristic makes the device attractive for renewable-energy-powered systems without energy storage. The prototype implementation was realised through modifying a Clark pump, but the new concept is fundamentally different. The new device recovers energy from the concentrate stream, which it then uses to suck in and pressurise seawater, relying purely on its piston area ratio, and thus eliminating the need for a low-pressure feed pump.
机译:这项工作介绍了用于小型海水反渗透系统中能量回收的新型压力增强器的概念开发,实施和首次实际演示,以及所需的简化系统配置。新概念具有减少小型海水反渗透系统单位能耗的巨大潜力。建立了用于研究反渗透应用中的能量回收增压器的数学分析方法。该分析被用于能量回收装置的设计和建模。建造了第一台原型机,随后在系统中进行了示范,该系统可以在286至1196 W的宽输入电功率范围内对海水进行脱盐,产生高达286 L / h的淡水,具体能耗在3.5至4.5 kWh / m ^ 3。平坦的单位能量特性使该器件对无需储能的可再生能源供电系统具有吸引力。原型实现是通过修改Clark泵实现的,但是新概念根本不同。新设备从精矿流中回收能量,然后将其用于吸入海水并对其加压,这完全依赖于其活塞面积比,从而消除了对低压进料泵的需求。

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