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PV and CSP solar technologies & desalination: economic analysis

机译:光伏和CSP太阳能技术与脱盐:经济分析

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This paper presents an overview of using solar energy in running desalination systems, called solar desalination. Solar energy can be converted directly to electric energy, which can operate electrically driven desalting systems such as reverse osmosis (RO), electrodialysis (ED), and mechanical vapor compression systems. Solar energy can also be converted to the thermal energy that can operate the mainly used thermally operated desalination system such as multistage flash (MSF), conventional multieffect (ME), and multieffect thermal vapor compression (ME-TVC), and emerging membrane distillation and humidification-dehumidification desalination systems. The thermal energy converted from solar energy can also be used to produce high-pressure steam running power plant producing electric power to operate mechanically driven desalting systems, and/or extracted steam at relatively low pressure to operate thermally driven desalting system. The main obstacle that hinders the use of solar desalination is the initial investment cost. This paper discusses the use of the solar desalination and calculates the investment cost to install solar desalination plants. These include photovoltaic (PV)-driven RO system, and thermally driven MSF and ME plants by steam directly generated by solar collectors, or by steam extracted from solar steam power plants operated by the concentrated solar collectors. The results revealed that PV-RO desalting system has the highest specific capital cost, among the considered systems, because the expensive storage of the electric energy in batteries, and the fact solar energy supply lasts about one third of the day. It showed also that using the thermally generated energy from concentrated solar collectors operating power plant is much cheaper than using this thermal energy when directly operating the desalination system.
机译:本文概述了在运行的海水淡化系统中使用太阳能的概况,称为太阳能海水淡化。太阳能可以直接转换为电能,可以运行电动脱盐系统,例如反渗透(RO),电渗析(ED)和机械蒸汽压缩系统。太阳能也可以转换为热能,该热能可以使主要使用的热脱盐系统运行,例如多级闪蒸(MSF),常规多效(ME)和多效热蒸气压缩(ME-TVC)以及新兴的膜蒸馏和加湿-除湿脱盐系统。从太阳能转换的热能还可以用于产生高压蒸汽运行的发电厂,该发电厂产生用于操作机械驱动的脱盐系统的电力,和/或以相对较低的压力提取的蒸汽来操作热驱动的脱盐系统。阻碍使用太阳能淡化的主要障碍是初始投资成本。本文讨论了太阳能脱盐的用途,并计算了安装太阳能脱盐厂的投资成本。这些包括光伏(PV)驱动的反渗透系统,以及由太阳能集热器直接产生的蒸汽或由集中式太阳能集热器运营的太阳能蒸汽发电厂提取的蒸汽热驱动的MSF和ME工厂。结果表明,在所考虑的系统中,PV-RO脱盐系统具有最高的单位投资成本,这是因为电池中电能的昂贵存储,并且太阳能的供应持续了一天的三分之一。研究还表明,使用浓缩太阳能集热器运行发电厂产生的热能比直接运行脱盐系统时使用这种热能要便宜得多。

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