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Life cycle environmental analysis of a hydrogen-based energy storage system for remote applications

氢气储存 环境科学 储能 计算机科学 物理 热力学 功率(物理) 量子力学
作者
David Bionaz,Paolo Marocco,Domenico Ferrero,Kyrre Sundseth,Massimo Santarelli
出处
期刊:Energy Reports [Elsevier BV]
卷期号:8: 5080-5092 被引量:5
标识
DOI:10.1016/j.egyr.2022.03.181
摘要

Energy storage systems are required to address the fluctuating behaviour of variable renewable energy sources. The environmental sustainability of energy storage technologies should be carefully assessed, together with their techno-economic feasibility. In this work, an environmental analysis of a renewable hydrogen-based energy storage system has been performed, making use of input parameters made available in the framework of the European REMOTE project. The analysis is applied to the case study of the Froan islands (Norway), which are representative of many other insular microgrid sites in northern Europe. The REMOTE solution is compared with other scenarios based on fossil fuels and submarine connections to the mainland grid. The highest climate impacts are found in the diesel-based configuration (1,090.9 kgCO 2 eq/MWh), followed by the REMOTE system (148.2 kgCO 2 eq/MWh) and by the sea cable scenario (113.7 kgCO 2 eq/MWh). However, the latter is biased by the very low carbon intensity of the Norwegian electricity. A sensitivity analysis is then performed on the length of the sea cable and on the CO 2 emission intensity of electricity, showing that local conditions have a strong impact on the results. The REMOTE system is also found to be the most cost-effective solution to provide electricity to the insular community. The in-depth and comparative (with reference to possible alternatives) assessment of the renewable hydrogen-based system aims to provide a comprehensive overview about the effectiveness and sustainability of these innovative solutions as a support for off-grid remote areas. • Life cycle assessment of an off-grid renewable hydrogen-battery energy system. • Comparison with scenarios based on diesel generators and sea cable connection. • CO 2 eq emissions of REMOTE scenario are 7 times lower than that of diesel scenario. • CO 2 eq emissions are highly influenced by the electricity mix and the cable length. • REMOTE scenario is the most cost-effective solution.
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