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High recovery rate solar driven reverse osmosis and membrane distillation plants for brackish groundwater desalination in Egypt

机译:高回收率的太阳能驱动的反渗透和膜蒸馏厂,用于埃及的咸淡海水淡化

摘要

This thesis explores the feasibility of extracting and desalinating brackish groundwater in Egypt using solar driven high recovery rate reverse osmosis and membrane distillation desalination plants to help establishing decentralised agricultural communities.Groundwater properties and potential for sustainable development from seven main hydro-geological systems in Egypt were investigated. It was found that approximately 55% of Egypt’s area has access to brackish groundwater, 47% of which has access to aquifers with moderate to high potential for development.The feasibility of high recovery rate photovoltaic driven reverse osmosis desalination plants was investigated. Using commercial simulation tools, it was found that the plant can operate at recovery rates of 75 to 90% with unit water costs of 0.7 to 1.65 USD/m3 with the typical brackish groundwater composition and depths found in Egypt. Moreover, it was shown that such plants are cost competitive with similar plants driven by diesel generators if the subsidies on diesel are removed.The feasibility of replacing standard photovoltaic modules with photovoltaic/thermal collectors to reduce the energy consumption of the reverse osmosis plant by heating the water was explored. The annual performance of the photovoltaic/thermal collectors was analysed using TRNSYS. It was concluded that for such application, photovoltaic/thermal collectors have no economic advantage.The feasibility of using hybrid reverse osmosis/membrane distillation plants to increase the recovery rate was also investigated. A mathematical model was built using MATLAB to simulate the performance of a commercial full scale spiral wound permeate gap membrane distillation module. The model gave good agreement with experimental results available in the literature. A TRNSYS model was built to analyse the annual performance of the solar driven membrane distillation plant. It was found that the evaporation losses from the cooling tower greatly limited the recovery rate where no more than 10% enhancement was feasible. Such small enhancement in the recovery rate resulted in a 1.9 to 3.6 fold increase in the unit water costs. It was concluded that higher recovery rates are possible with high recovery rate membrane distillation modules with low cooling requirements; and that solar driven hybrid plants can be economically feasible if: a source of waste heat from a renewable energy source is available to drive the membrane distillation process; the specific heat consumption of the process is reduced by 4 folds; and the module costs drop by at least 3.5 folds.
机译:本文探索了利用太阳能驱动的高回收率反渗透和膜蒸馏淡化厂在埃及咸淡水中提取和脱盐的可行性,以帮助建立分散的农业社区。埃及的七个主要水文地质系统的地下水特性和可持续发展潜力是调查。研究发现,埃及约有55%的地区可使用微咸的地下水,其中47%的可使用具有中等至高发展潜力的含水层。研究了高回收率光伏驱动的反渗透淡化厂的可行性。使用商业模拟工具,发现该工厂可以以75至90%的回收率运行,单位水成本为0.7至1.65 USD / m3,并且具有埃及发现的典型的微咸地下水成分和深度。此外,研究表明,如果取消柴油补贴,此类工厂与由柴油发电机驱动的类似工厂在成本上具有竞争力。用光伏/集热器替换标准光伏模块以通过加热减少反渗透工厂的能耗的可行性探索了水。使用TRNSYS分析了光伏/集热器的年度性能。结论是,对于这种应用,光伏/集热器没有经济优势。还研究了使用混合反渗透/膜蒸馏装置提高回收率的可行性。使用MATLAB建立了数学模型,以模拟商用全尺寸螺旋缠绕渗透物间隙膜蒸馏模块的性能。该模型与文献中提供的实验结果非常吻合。建立了TRNSYS模型来分析太阳能驱动膜蒸馏装置的年度性能。已经发现,冷却塔的蒸发损失极大地限制了回收率,其中提高不超过10%是可行的。回收率的小幅提高导致单位水费增加了1.9到3.6倍。结论是,高回收率的膜蒸馏模块具有较低的冷却要求,可以实现更高的回收率。并且在以下情况下太阳能驱动的混合动力装置在经济上是可行的:来自可再生能源的废热源可用于驱动膜蒸馏过程;该过程的单位热量消耗减少了4倍;并且模块成本下降了至少3.5倍。

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