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A novel integrated thermal-/membrane-based solar energy-driven hybrid desalination system: Concept description and simulation results

机译:一种新型的基于热/膜的集成太阳能驱动的混合淡化系统:概念描述和仿真结果

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摘要

In this paper, a hybrid desalination system consisting of vacuum membrane distillation (VMD) and adsorption desalination (AD) units, designated as VMD-AD cycle, is proposed. The synergetic integration of the VMD and AD is demonstrated where a useful effect of the AD cycle is channelled to boost the operation of the VMD process, namely the low vacuum environment to maintain the high pressure gradient across the microporous hydrophobic membrane. A solar-assisted multi-stage VMD-AD hybrid desalination system with temperature modulating unit is first designed, and its performance is then examined with a mathematical model of each component in the system and compared with the VMD-only system with temperature modulating and heat recovery units. The total water production and water recovery ratio of a solar-assisted 24-stage VMD-AD hybrid system are found to be about 21% and 23% higher, respectively, as compared to the VMD-only system. For the solar-assisted 24-stage VMD-AD desalination system having 150 m2 of evacuated-tube collectors and 10 m3 seawater storage tanks, both annual collector efficiency and solar fraction are close to 60%.
机译:本文提出了一种混合脱盐系统,该系统由真空膜蒸馏(VMD)和吸附脱盐(AD)单元组成,称为VMD-AD循环。展示了VMD和AD的协同集成,其中可以引导AD循环的有用作用以增强VMD过程的操作,即在低真空环境下维持跨微孔疏水膜的高压梯度。首先设计了带有温度调节单元的太阳能辅助多级VMD-AD混合淡化系统,然后使用系统中每个组件的数学模型检查其性能,并将其与仅带有温度调节和热量的VMD系统进行比较恢复单位。与仅使用VMD的系统相比,太阳能辅助的24级VMD-AD混合系统的总产水量和水回收率分别高出约21%和23%。对于具有150 m2的真空管收集器和10 m3的海水储罐的太阳能辅助24级VMD-AD海水淡化系统,年收集器效率和太阳能分数均接近60%。

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