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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Water and energy self-supply in isolated areas through renewable energies using hydrogen and water as a double storage system
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Water and energy self-supply in isolated areas through renewable energies using hydrogen and water as a double storage system

机译:通过使用氢气和水作为双重存储系统的可再生能源在隔离区域中的水和能量自供应

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AbstractBecause of their geographical isolation, many areas depend mainly on imported fossil fuels for their water and energy production. In this context, the Canary Islands are one such remote area. Due to the topography of the islands, there are numerous isolated areas on each of the islands far from the major population centres. These are known as ‘islands within islands’. The main aim of this paper is to determine the feasibility or otherwise of supplying from renewable energy sources both the energy and water needs of the 219 inhabitants of El Risco located in the municipality of Agaete on the island of Gran Canaria (Spain). For this purpose, the potential use of existing renewable resources in this isolated area has been analysed, using hydrogen as energy vector. A reverse osmosis (RO) plant is integrated into the system to ensure water self-sufficiency and, in turn, constitutes a double storage system (hydrogen-water). Based on the results obtained from the study, the technical feasibility of the system is confirmed, with an annual energy production of 1,743,031kWh/year compared to a consumption of 672,314.32kWh/year, as well as a potable water production volume of 46,546.80m3/year obtained from the RO plant. The reliability of the system is confirmed in the economic analysis, obtaining a renewable electricity cost of 0.107?/kWh compared to 0.18?/kWh when using conventional electricity.Highlights?A solution for remote areas with water scarcity and problems with energy supply.?A feasibility study of a hybrid storage (hydrogen and water) system is carried out.?The performance of the system is analysed technical, economical and environmentally.]]>
机译:<![cdata [ 抽象 由于其地理隔离,许多领域主要取决于进口化石燃料的水和能源生产。在这种情况下,加那利群岛是一个这样的偏远地区。由于岛屿的地形,每个岛屿都有许多远离主要人口中心的孤立区域。这些被称为“岛屿内的岛屿”。本文的主要目的是确定可再生能源供应的可行性或其他方式,以便在大加那利岛岛(西班牙)岛上的Agaete市政府的El Risco的219居民的能量和水需求。为此目的,使用氢作为能量载体,分析了该隔离区域中存在现有可再生资源的潜在使用。反渗透(RO)工厂集成到系统中,以确保水自给自足,又构成双储存系统(氢水)。根据研究结果,系统的技术可行性得到了确认,年能源产量为1,743,031kWh /年,与872,314.32kWh /年的消费相比,饮用水产量为46,546.80米< CE:sup =“post”> 3 /从RO工厂获得的年份。在经济分析中确认了系统的可靠性,在使用常规电力时,可再生电力成本为0.107. / kWh 0.107. / kWh。 < / ce:摘要> 亮点 偏远地区的解决方案,具有水资源稀缺和能源供应问题。 A的可行性研究进行混合储存(氢气和水)系统。 系统的性能被分析技术,经济和环境。 ]]>

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