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A novel system for large-scale storage of electricity as synthetic natural gas using reversible pressurized solid oxide cells

机译:使用可逆加压固体氧化物电池大规模存储作为合成天然气的电力的新型系统

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摘要

The ongoing reduction of greenhouse gas emissions entails increased use of intermittent renewable energy technologies such as wind and solar. This raises the need for cost-effective and efficient electricity storage. In particular seasonal variations in supply and demand will require tremendous storage capacity. In this paper we present a truly large-scale electricity storage system which uses pressurized reversible solid oxide cells combined with catalytic reactors to store electricity as synthetic natural gas. By storing the produced gas in existing natural gas grids the system can create a strong and efficient link between the electricity and gas markets. In addition, the system is able to operate reversibly using gas from the grid to satisfy the electric power demand.The system performance is analyzed with a component-based thermodynamic modeling tool which shows that electricity can be stored as synthetic natural gas with an energy efficiency of 89%. The gas to electricity efficiency is equally high, resulting in a round-trip storage efficiency of 80% (DC-to-DC). (C) 2018 Elsevier Ltd. All rights reserved.
机译:不断减少的温室气体排放量需要更多地使用间歇性可再生能源技术,例如风能和太阳能。这就需要经济高效的蓄电。特别是供需的季节性变化将需要巨大的存储容量。在本文中,我们提出了一个真正的大规模电力存储系统,该系统使用加压可逆固体氧化物电池与催化反应器相结合,以合成天然气的形式存储电力。通过将产生的气体存储在现有的天然气网格中,该系统可以在电力和天然气市场之间建立牢固而有效的联系。此外,该系统能够使用来自电网的气体来可逆地运行以满足电力需求。使用基于组件的热力学建模工具分析系统性能,该工具表明电力可以作为合成天然气存储,具有能源效率占89%。气电效率同样很高,往返存储效率为80%(DC-DC)。 (C)2018 Elsevier Ltd.保留所有权利。

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