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Economic Optimisation of Seawater Reverse Osmosis Desalination with Boron Rejection

机译:脱硼海水反渗透海水淡化的经济优化

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Reverse Osmosis (RO) process is widely used for seawater desalination. In this work, we considered a small scale SWRO (Spiral Wound Reverse Osmosis) desalination unit which is enough to cover the need of a medium size hotel complex at Limassol city in Cyprus. The pH of the seawater in the region is 7.95 and the temperature varies from 17 to 27 °C. The aim of this study is to identify the configuration of the RO process and the optimum operating parameters such as pH and pressure that can minimise the total annualised cost of the process subject to acceptable quality of freshwater in terms of boron concentrations throughout the year. For this purpose, the mathematical model for boron rejection developed earlier by the authors is used but incorporates cost functions. The model is based on solution-diffusion model which can describe solvent and solute transport mechanism through the membranes. With the variation of seasonal seawater temperature, the key finding of this study was that by choosing the right combination of pH and pressure, substantial economical savings up to 16 % could be achieved.
机译:反渗透(RO)工艺被广泛用于海水淡化。在这项工作中,我们考虑了一个小型SWRO(螺旋伤口反渗透)淡化装置,该装置足以满足塞浦路斯利马索尔市中型酒店综合楼的需求。该区域海水的pH值为7.95,温度范围为17至27°C。这项研究的目的是确定RO工艺的配置以及最佳的操作参数(例如pH和压力),这些参数可以使工艺的年度总成本最小化,但要以全年的硼浓度为准,但要接受可接受的淡水质量。为此,使用了作者较早开发的硼排斥数学模型,但该模型包含了成本函数。该模型基于溶液扩散模型,该模型可以描述溶剂和溶质通过膜的传输机理。随着季节性海水温度的变化,这项研究的主要发现是,通过选择合适的pH和压力组合,可以节省多达16%的经济费用。

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