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Energy consumption for desalination - a comparison of forward osmosis with reverse osmosis, and the potential for perfect membranes

机译:海水淡化的能耗 - 正渗透与反渗透的比较,以及完美膜的潜力

摘要

Reverse osmosis (RO) is now the most ubiquitous technology for desalination, with numerous seawater RO plants being built in water-stressed countries to complement existing water resources. Despite the development of highly permeable RO membranes, energy consumption remains a major contributor to total cost. Forward osmosis (FO) is receiving much attention as a potentially lower energy alternative to RO. However, the draw solution (DS) recovery step in FO requires significant energy consumption. The present study is a modelling approach, simulating FO and RO desalination under various process conditions and process flow schemes using the Aspen Plus environment. Results suggest that there is practically no difference in specific energy consumption (SEC) between standalone RO, and FO with nanofiltration (NF) DS recovery; this can be generalised for any pressure-driven membrane process used for the DS recovery stage in a hybrid FO process. Furthermore, even if any or all of the membranes considered, FO, RO or NF, were perfect (i.e. had infinite permeance and 100% rejection), it would not change the SEC significantly. Hence, any advantage possessed by the FO with NF recovery process derives from the lower fouling propensity of FO, which may reduce or eliminate the need for pretreatment and chemical cleaning
机译:反渗透(RO)现在是最普遍的海水淡化技术,在缺水的国家/地区建造了许多海水RO工厂,以补充现有的水资源。尽管开发了高渗透性反渗透膜,但能耗仍然是总成本的主要来源。作为反渗透的一种潜在的低能耗替代品,正渗透(FO)正受到广泛关注。但是,FO中的抽取解决方案(DS)恢复步骤需要大量的能耗。本研究是一种建模方法,它使用Aspen Plus环境在各种工艺条件和工艺流程方案下模拟FO和RO脱盐。结果表明,独立RO和FO的纳滤(NF)DS回收率之间实际上没有差异。对于混合FO工艺中DS回收阶段中使用的任何压力驱动膜工艺,都可以采用通用的方法。此外,即使所考虑的任何或全部膜,FO,RO或NF完美(即具有无限的渗透性和100%的排斥性),也不会显着改变SEC。因此,具有NF回收工艺的FO所具有的任何优势都来自FO较低的结垢倾向,这可以减少或消除对预处理和化学清洁的需求

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