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A multi evaporator desalination system operated with thermocline energy for future sustainability

机译:一种多蒸发器脱盐系统,用热量管能量进行,以实现未来的可持续性

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摘要

All existing commercial seawater desalination processes, i.e. thermally-driven and membrane-based reverse osmosis (RO), are operated with universal performance ratios (UPR) varying up to 105, whilst the UPR for an ideal or thermodynamic limit (TL) of desalination is at 828. Despite slightly better UPRs for the RO plants, all practical desalination plants available, hitherto, operate at only less than 12% of the TL, rendering them highly energy intensive and unsustainable for future sustainability. More innovative desalination methods must be sought to meet the needs of future sustainable desalination and these methods should attain an upper UPR bound of about 25 to 30% of the TL. In this paper, we examined the efficacy of a multi-effect distillation (MED) system operated with thermocline energy from the sea; a proven desalination technology that can exploit the narrow temperature gradient of 20°C all year round created between the warm surface seawater and the cold-seawater at depths of about 300–600m. Such a seawater thermocline (ST)-driven MED system, simply called the ST-MED process, has the potential to achieve up to 2 folds improvement in desalination efficiency over the existing methods, attaining about 18.8% of the ideal limit. With the major energy input emanated from the renewable solar, the ST-MED is truly a “green desalination” method of low global warming potential, best suited for tropical coastal shores having bathymetry depths of 300m or more.
机译:所有现有的商业海水淡化过程,即基于膜和膜的反渗透(RO)都以通用性能比(UPR)改变为高达105,而撤分的理想或热力学极限(TL)的UPR是828.尽管RO植物略有更好的uprs,但迄今为止,所有实用的脱盐厂只能低于TL的12%,使其具有高度能量密集和不可持续的可持续性。必须寻求更具创新的海水淡化方法,以满足未来可持续海水淡化的需求,这些方法应达到约25%至30%的TL。在本文中,我们研究了从海中使用热量管能量操作的多效蒸馏(MED)系统的功效;经过验证的脱盐技术,可以利用20°C的窄温度梯度,在温暖的地面海水和冷海水之间在约300-600米之间创造的窄温度梯度。这种海水热水管(ST)驱动的MED系统,简称ST-MED工艺,有可能在现有方法中获得高达2倍的脱盐效率的提高,达到理想极限的约18.8%。随着可再生太阳能发出的主要能量输入,St-Med是真正的“绿色海水淡化”方法,具有低全球变暖潜力的方法,最适合具有300米或以上的沐浴浴室深度的热带沿海海岸。

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