首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Large-scale solar desalination by combination with CSP: Techno-economic analysis of different options for the Mediterranean Sea and the Arabian Gulf
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Large-scale solar desalination by combination with CSP: Techno-economic analysis of different options for the Mediterranean Sea and the Arabian Gulf

机译:与CSP结合进行大规模的海水淡化:对地中海和阿拉伯海湾不同选择的技术经济分析

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The combination of desalination with concentrated solar power (CSP) plants (CSP + D) is considered as the most realistic opportunity for the development of large-scale desalination with solar energy. The availability of solar power and waste heat in CSP plants offers possibilities for both reverse osmosis (RO) and thermal desalination systems. In the case of RO the combination can be done directly by transporting the electricity. In the case of thermal desalination technologies there are different alternatives for coupling with CSP plants which can offer advantages with respect to the CSP + RO combination such as the reduction of the cooling needs of the power cycle. A techno-economic analysis of different schemes of multi-effect distillation (MED) systems coupled with CSP plants is presented here and compared to the CSP + RO option. The study is done using validated models of MED plants and considering the three conventional cooling methods available in CSP plants: dry cooling, oncethrough and wet cooling. The analysis is performed using operating conditions of real plants. The comparisons are done for the two main regions where the cogeneration of electricity and fresh water using CSP + D is proposed: the Mediterranean basin and the Arabian Gulf. (C) 2014 Elsevier B.V. All rights reserved.
机译:海水淡化与集中式太阳能发电厂(CSP + D)的结合被认为是发展大规模太阳能脱盐的最现实机会。 CSP工厂中太阳能和废热的可用性为反渗透(RO)和热淡化系统提供了可能性。如果是RO,则可以通过传输电力直接进行合并。就热淡化技术而言,有多种与CSP工厂耦合的替代方案,这些方案相对于CSP + RO组合可提供优势,例如减少电源循环的冷却需求。本文介绍了与CSP工厂耦合的多效蒸馏(MED)系统不同方案的技术经济分析,并将其与CSP + RO选项进行了比较。该研究是使用经过验证的MED工厂模型进行的,并考虑了CSP工厂中可用的三种常规冷却方法:干式冷却,一次通过和湿式冷却。使用实际工厂的运行条件进行分析。比较了建议使用CSP + D的电力和淡水热电联产的两个主要区域:地中海盆地和阿拉伯湾。 (C)2014 Elsevier B.V.保留所有权利。

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