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Optimisation of renewable energy powered reverse osmosis desalination systems: A state-of-the-art review

机译:可再生能源逆转渗透脱水系统的优化:最先进的评论

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摘要

Reverse osmosis (RO) desalination has become a prominent desalination method for fresh-water production from either saline seawater or brackish water to meet the ever-growing demand for water, especially in water-scarce regions. Its integration with renewable energy sources (RES) reduces the environmental impact of carbon emission by conventional fossil fuel energy sources. The optimisation of the RES-RO desalination system is intended mainly to minimise total system cost and energy requirements and to guarantee system reliability. In this study, an extensive review of the optimisation of the RES-RO desalination system is presented based on optimal system sizing, optimal system operation and optimal thermodynamic analysis. RES such as geothermal, ocean, wind and solar energy and their hybrids were considered alongside desalination methods. Important findings of the review were discussed, and recommendations made for future work. Key recommendations of this study include the suggestion that extensive optimisation and analysis of a RES-RO system should utilise optimisation approaches that combine the sizing, operation and thermodynamic effect of the system. Future work should furthermore incorporate both economic and reliability indices in the formation of objective functions. Finally, demand response programmes can be introduced to the RES-RO system for demand side management. This has the potential of minimising system cost while maximising fresh-water production.
机译:反渗透(RO)脱盐已成为盐水海水或咸水中淡水生产的突出脱水方法,以满足日益增长的水需求,特别是在水资源稀缺的地区。其与可再生能源(RES)的集成降低了常规化石燃料能源的碳排放的环境影响。 RES-RO脱盐系统的优化主要是为了最大限度地减少总系统成本和能源要求,并保证系统可靠性。在本研究中,基于最佳系统尺寸,最优系统操作和最佳热力学分析,提出了对RES-RO脱盐系统优化的广泛审查。诸如地热,海洋,风力和太阳能及其杂种等RER被认为是潜水方法。讨论了审查的重要调查结果,并为未来工作提出了建议。本研究的主要建议包括对RES-RO系统的广泛优化和分析的建议,应利用组合系统尺寸,操作和热力学效果的优化方法。此外,还应在目标职能的形成中纳入经济和可靠性指数。最后,可以将需求响应程序引入RES-RO系统进行需求侧管理。这具有最小化系统成本的可能性,同时最大化淡水生产。

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