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Electricity storage with liquid fuels in a zone powered by 100 variable renewables

机译:在由100%可变可再生能源驱动的区域中使用液体燃料进行蓄电

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In this work, an electricity zone with 100% renewables is simulated to determine the optimal sizing of generation and storage capacities in such a zone. Using actual wind output data, the model evaluates the economic viability of a power-to-fuel storage technology that combines water electrolysis, CO capture and methanol synthesis. The main advantage of using methanol as an energy carrier is that liquid fuels are suitable for (long-term) energy storage thanks to their high energy density. The levelized electricity cost projection by 2050 equals 83.4 €/MWh in the base case configuration. The effects of storage round-trip efficiency and the storage unit lifetime are quantified and their impacts on the electricity cost discussed. Additional benefits of using methanol as a fuel substitute may be taken into account in further work.
机译:在这项工作中,模拟了具有100%可再生能源的电力区域,以确定该区域中发电和存储容量的最佳规模。该模型使用实际的风能输出数据评估将水电解,CO捕集和甲醇合成相结合的动力燃料存储技术的经济可行性。使用甲醇作为能量载体的主要优点是液体燃料由于其高能量密度而适合于(长期)能量存储。在基本案例配置中,到2050年的平均电费预测为83.4€/ MWh。量化了存储往返效率和存储单元寿命的影响,并讨论了它们对用电成本的影响。在进一步的工作中,可以考虑使用甲醇作为燃料替代品的其他好处。

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