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Technical and economic assessment of photovoltaic-driven desalination systems

机译:光伏驱动淡化系统的技术和经济评估

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Solar desalination systems are approaching technical and cost viability for producing fresh-water, a commodity of equal importance to energy in many arid and coastal regions worldwide. Solar photo-voltaics (PV) represent an ideal, clean alternative to fossil fuels, especially for remote communities such as grid-limited villages or isolated islands. These applications for water production in remote areas are the first to be nearing cost-competitiveness due to decreasing PV prices and increasing fossil fuel prices over the last five years. The electricity produced from PV systems for desalination applications can be used for electro-mechanical devices such as pumps or in direct-current (DC) devices. Reverse osmosis (RO) and electrodialysis (ED) desalination units are the most favorable alternatives to be coupled with PV systems. RO usually operates on alternating current (AC) for the pumps, thus requiring a DC/AC inverter. In contrast, electrodialysis uses DC for the electrodes at the cell stack, and hence, it can use the energy supplied from the PV panels with some minor power conditioning. Energy storage is critical and batteries are required for sustained operation. In this paper, we discuss the operational features and system designs of typical PV-RO and PV-ED systems in terms of their suitability and optimization for PV operation. For PV-RO and PV-ED systems, we evaluate their electricity need, capital and operational costs, and fresh-water production costs. We cover ongoing and projected research and development activities, with estimates of their potential economics. We discuss the feasibility of future solar desalination based on expected (or predicted) improvements in technology of the desalination and PV systems. Examples are provided for Middle East and other parts of the World.
机译:太阳能淡化系统正在接近生产淡水的技术和成本可行性,淡水是全球许多干旱和沿海地区与能源同等重要的商品。太阳能光伏(PV)是化石燃料的理想,清洁的替代品,特别是对于偏远社区(如电网受限的村庄或偏远岛屿)而言。由于近五年来光伏价格下降和化石燃料价格上涨,这些在偏远地区的水生产应用首次接近成本竞争力。由PV系统产生的用于海水淡化的电力可用于机电设备,例如泵或直流(DC)设备。反渗透(RO)和电渗析(ED)脱盐装置是与光伏系统结合的最有利替代方案。 RO通常在泵的交流(AC)上运行,因此需要DC / AC逆变器。相比之下,电渗析使用DC作为电池堆中的电极,因此,它可以使用PV面板提供的能量,并进行一些较小的功率调节。能量存储至关重要,并且电池需要持续运行。在本文中,我们从典型的PV-RO和PV-ED系统的适用性和优化性方面讨论了典型的PV-RO和PV-ED系统的运行功能和系统设计。对于PV-RO和PV-ED系统,我们评估其电力需求,资金和运营成本以及淡水生产成本。我们涵盖正在进行的和计划进行的研发活动,并估算其潜在的经济价值。我们根据脱盐和光伏系统技术的预期(或预测)改进,讨论未来太阳能脱盐的可行性。提供了中东和世界其他地区的示例。

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