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A review of hybrid desalination systems for co-production of power and water: analyses, methods, and considerations

机译:联合生产电力和水的混合海水淡化系统的综述:分析,方法和注意事项

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摘要

The production of freshwater from seawater is a growing necessity throughout the world. In arid areas with high temperature and salinity seawater, thermal desalination and power plants (dual-purpose/cogeneration plants) are often employed for the production of power and water. In other areas, reverse osmosis is commonly employed. However, both technologies are inherently challenged with economic and performance issues. As a response to these issues, hybrid desalination, that is, employing both thermal and mechanical desalination methods, has been increasingly utilized over thermal desalination plants alone. In this article, an overview of thermal desalination, seawater reverse osmosis (SWRO), and co-generation of power and water is presented, specifically with regards to the motivation for utilizing hybrid plants, for example, process limitations and areas of potential improvement. In addition, a review of the considerations for design and economics of hybrid desalination plants is presented, for example, existing system configurations, thermoeconomic analyses, and improvements of seawater pretreatment are discussed. Finally, studies for the optimization of hybrid desalination systems are reviewed. Specifically, the use of objective functions, continuous optimization methods, and optimal hardware configurations are discussed with respect to the key considerations of hybrid desalination plants.
机译:在世界范围内,从海水中生产淡水的需求日益增长。在具有高温和高盐度海水的干旱地区,热脱盐和发电厂(两用/热电联产厂)通常用于生产电力和水。在其他领域,通常采用反渗透。但是,这两种技术都固有地面临着经济和性能问题的挑战。作为对这些问题的回应,混合式脱盐,即同时采用热和机械脱盐方法,已经在单独的热脱盐工厂中得到越来越多的利用。在本文中,将对热淡化,海水反渗透(SWRO)以及电力和水的热电联产进行概述,特别是关于利用杂交植物的动机,例如工艺限制和潜在的改进领域。此外,还介绍了混合海水淡化厂的设计和经济考虑因素,例如,讨论了现有的系统配置,热经济分析和海水预处理的改进。最后,对混合淡化系统优化的研究进行了综述。具体而言,针对混合海水淡化厂的主要考虑因素,讨论了目标函数,连续优化方法和最佳硬件配置的使用。

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