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Solar and wind opportunities for water desalination in the Arab regions

机译:阿拉伯地区太阳能和风能使海水淡化的机会

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Despite the abundance of renewable energy resources in the Arab region, the use of solar thermal, solar photovoltaics, and wind is still in its technological and economic infancy. Great potential exists, but economic constraints have impeded more rapid growth for many applications. These technologies have certainly advanced technically over the last quarter century to the point where they should now be considered clean-energy alternatives to fossil fuels. For the Arab countries and many other regions of the world, potable water is becoming as critical a commodity as electricity. As renewable energy technologies advance and environmental concerns rise, these technologies are becoming more interesting partners for powering water desalination projects. We evaluate the current potential and viability of solar and wind, emphasizing the strict mandate for accurate, reliable site-specific resource data. Water desalination can be achieved through either thermal energy (using phase-change processes) or electricity (driving membrane processes), and these sources are best matched to the particular desalination technology. Desalination using solar thermal can be accomplished by multistage flash distillation, multi-effect distillation, vapor compression, freeze separation, and solar still methods. Concentrating solar power offers the best match to large-scale plants that require both high-temperature fluids and electricity. Solar and wind electricity can be effective energy sources for reverse osmosis, electrodialysis, and ultra- and nano-filtration. All these water desalination processes have special operational and high energy requirements that put additional requisites on the use of solar and wind to power these applications. We summarize the characteristics of the various desalination technologies. The effective match of solar thermal, solar photovoltaics, and wind to each of these is discussed in detail. An economic analysis is provided that incorporates energy consumption, water production levels, and environmental benefits in its model. Finally, the expected evolution of the renewable technologies over the near- to mid-term is discussed with the implications for desalination applications over these timeframes.
机译:尽管阿拉伯地区有大量的可再生能源,但太阳能热能,太阳能光伏和风能的使用仍处于技术和经济初期。存在着巨大的潜力,但是经济限制已经阻碍了许多应用的更快增长。在过去的四分之一世纪中,这些技术在技术上无疑已经发展到现在应被视为化石燃料的清洁能源替代品的地步。对于阿拉伯国家和世界上许多其他地区,饮用水正变得与电力一样重要。随着可再生能源技术的发展和对环境的关注日益增加,这些技术正成为为水淡化项目提供动力的更有趣的合作伙伴。我们评估了太阳能和风能的当前潜力和生存能力,强调了对准确,可靠的特定于站点的资源数据的严格要求。可以通过热能(使用相变工艺)或电(驱动膜工艺)实现水脱盐,并且这些水源与特定的脱盐技术最匹配。可以通过多级闪蒸,多效蒸馏,蒸气压缩,冷冻分离和太阳能蒸馏方法来完成使用太阳能热的脱盐。集中式太阳能最适合需要高温流体和电力的大型电厂。太阳能和风能可以成为反渗透,电渗析以及超滤和纳滤的有效能源。所有这些海水淡化工艺都具有特殊的操作和高能耗要求,这给使用太阳能和风能为这些应用提供动力提出了其他要求。我们总结了各种淡化技术的特点。详细讨论了太阳能热发电,太阳能光伏发电和风能与这些发电设备的有效匹配。提供了一种经济分析,将能源消耗,水的生产水平和环境效益纳入其模型。最后,讨论了可再生技术在近期到中期的预期发展,以及在这些时间段内对海水淡化应用的影响。

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