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A new approach integration of ejector within adsorption desalination cycle reaching COP higher than one

机译:吸附脱盐周期内喷射器的新方法集成到达高于1的COP

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For the first time, ejector technology has been integrated with the adsorption technology in a single cycle to increase productivity of desalinated water. In this paper an innovative idea of allocating an ejector before the condenser of an adsorption water desalination system is presented. This work lays down the basic rules for using ejector technology along with the adsorption technology. The innovative hybrid system has been investigated theoretically to work under different conditions of driving and cooling temperatures. Employing the ejector with heat recovery between the condenser and the evaporator has been also studied. The idea of employing the ejector within the adsorption desalination cycle has proved its worth where the daily water productivity is increased by 51% using the ejector if heat recovery has been considered. A desalinated water of 16 and 40 m(3)/day/ton of silica gel have been achieved by integrating the ejector with and without heat recovery respectively at 95 degrees C driving temperature. The coefficient of performance of the cycle has been also increased by employing the ejector alongside the heat recovery where ifs reached a value of 1.1.
机译:首次,喷射器技术在单个循环中与吸附技术集成在一起,以提高脱盐水的生产率。本文在提出了一种在吸附水脱盐系统的冷凝器之前分配喷射器的创新理念。这项工作缩小了利用喷射器技术以及吸附技术的基本规则。在理论上已经在理论上调查了创新的混合系统,以在不同的驾驶和冷却温度条件下工作。还研究了在冷凝器和蒸发器之间具有热回收的喷射器。在吸附脱盐周期内采用喷射器的想法证明了,如果考虑热量回收,则每日水生产率增加51%的价值。通过将喷射器与分别在95摄氏度的驱动温度下分别与热回收分别与热回收分别与热回收分别将其与热回收相加来实现16和40μm(3)/天/吨硅胶的脱盐水。通过采用喷射器以及达到值为1.1的热量回收,还增加了循环的性能系数。

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