A study of the techno-economic feasibility of H2-based energy storage systems in remote areas

被引:75
作者
Marocco, P. [1 ]
Ferrero, D. [1 ]
Gandiglio, M. [1 ]
Ortiz, M. M. [2 ]
Sundseth, K. [2 ]
Lanzini, A. [1 ]
Santarelli, M. [1 ]
机构
[1] Politecn Torino, Dept Energy, Turin, Italy
[2] SINTEF Ind, Sustainable Energy Technol Dept, Trondheim, Norway
基金
欧盟地平线“2020”;
关键词
Energy storage; Off-grid; Electrolysis; Hydrogen; Battery; Power-to-power; MANAGEMENT STRATEGIES; POWER-SYSTEMS; SIZING OPTIMIZATION; HYDROGEN; TECHNOLOGIES; RENEWABLES; ISLAND;
D O I
10.1016/j.enconman.2020.112768
中图分类号
O414.1 [热力学];
学科分类号
摘要
The development of efficient and sustainable energy solutions and the attempt to reduce carbon dioxide emissions are leading to an increasing penetration of Renewable Energy Sources (RES). Effective Electrical Energy Storage (EES) solutions need therefore to be developed to deal with the issue of fitting locally available RES and loads. Hydrogen can become an interesting option because of its high energy density, long-term storage capability and modularity. In particular, in isolated micro-grid and off-grid remote areas, intermittent RES integrated with H-2-based storage systems can allow to lower, or even eliminate, the usage of diesel engines and avoid the need for expensive and invasive grid connections. The present study is part of the European REMOTE project, whose main goal is to prove the added value of H-2-based energy storage solutions with respect to alternative technologies in terms of economics, technical and environmental benefits. Four demonstration sites supplied by renewable electricity will be installed in either isolated micro-grids or off-grid remote areas throughout all Europe, from Italy (two sites) and Greece to Norway. The aim of this work is to perform a technoeconomic analysis and demonstrate the effectiveness of the hybrid H-2-battery Power-To-Power (P2P) solution in reducing the usage of external sources (e.g., diesel engines or grid) in a cost-effective way, with different load and environment conditions. The economic viability of the considered scenarios was outlined by computing the Levelized Cost Of Energy (LCOE). For each of the four sites, the innovative renewable configuration was compared with the current/alternative one. The REMOTE project partners provided main input data for the analysis: techno-economic data from the technology suppliers, whereas electricity consumption and RES production values from the end users of the four isolated locations. LCOE values derived using cost inputs both from REMOTE and literature are presented for a comparison. Results from the energy simulations revealed that the need for an external source is significantly reduced thanks to RES together with the hybrid storage system. Moreover, for all the four sites the renewable solution was shown to be more profitable than the current or alternative one, either in the short term or in the longer term.
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页数:15
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