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The role of electrolysers in energy system:Energy markets, grid stabilisation and transport fuels

机译:电解槽在能源系统中的作用:能源市场,电网稳定和运输燃料

摘要

Short and long-term role of electrolysis for grid balancing is investigated in this report, followed by an analysis on the feasibility of implementing electrolysis in the energy system and their potential for gas market balancing. Firstly, a literature review is conducted to determine the state-of-the-art knowledge on using electrolysis for grid balancing. Secondly, based on Danish energy system models for 2020 and 2035, which can simulate the operation of electrolysis, the role of both alkaline and SOEC electrolysers is analysed in terms of electricity system balancing. Thirdly, different electrolyser capacities are simulated in 2020 and 2035 to investigate how electrolysis can aid the integration of for renewable energy, followed by a gas-grid balancing analyses. Finally, a comparison is made between SOECs and alkaline electrolysers in the 2035 system, due to the uncertainty of commercializing SOEC and in general terms the necessity for this technology.The results show that with the implementation of SOECs in 2035, their participation in the balancing reserves is possible, but it will most likely not be required as there are number of other flexible technologies that could be used instead due to their better performance and lower costs. The investments in electrolysis should be driven by the need for meeting the transport fuel demand, as their biggest contribution is for fuel production rather than for renewable energy integration. The grid stability should be seen as an additional benefit from electrolyser integration.
机译:本报告研究了电解在电网平衡中的短期和长期作用,然后分析了在能源系统中实施电解的可行性及其在天然气市场平衡中的潜力。首先,进行文献综述以确定使用电解进行电网平衡的最新知识。其次,基于丹麦能源系统2020年和2035年的模型,该模型可以模拟电解的运行,从电力系统平衡的角度分析了碱性电解槽和SOEC电解槽的作用。第三,在2020年和2035年模拟了不同的电解槽容量,以研究电解如何有助于可再生能源的整合,然后进行气网平衡分析。最后,由于商业化SOEC的不确定性以及总的来说这项技术的必要性,对2035年系统中的SOEC和碱性电解槽进行了比较。结果表明,随着2035年SOEC的实施,他们参与了平衡可以保留储备金,但由于具有更好的性能和较低的成本,因此可以使用许多其他灵活的技术来替代储备金。电解方面的投资应由满足运输燃料需求的需求驱动,因为它们最大的贡献是燃料生产而不是可再生能源整合。电网稳定性应被视为电解槽集成的另一项优势。

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