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Techno economic design of a solid oxide electrolysis system with solar thermal steam supply and thermal energy storage for the generation of renewable hydrogen

机译:具有太阳能热蒸汽供应和热能存储以产生可再生氢的固体氧化物电解系统的技术经济设计

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The dependency of renewable energy systems on environmental influences such as sun or wind availability is one of the greatest challenges in the energy transition. For this purpose, it is important to develop electro chemical storage systems for long-term storing of renewable electricity in the form of hydrogen or methane. In the presented work, an electrolysis system with solid-oxide electrolyser stacks is designed. A solar thermal receiver is used to produce the steam supplied to the electrolyser stacks. On the other hand, a thermal energy storage, using a phase change material, is used for the extension of the operational hours during the night time. The system is optimized to minimize the levelized costs of hydrogen and compared to a system without a thermal energy storage. Finally, the cost sensitivity for the four main components of the cost structure is evaluated and discussed. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:可再生能源系统对诸如太阳或风的可用性等环境影响的依赖性是能源过渡中的最大挑战之一。为此,重要的是开发用于长期存储氢或甲烷形式的可再生电力的电化学存储系统。在提出的工作中,设计了具有固体氧化物电解槽堆的电解系统。太阳能热接收器用于产生供应到电解槽的蒸汽。另一方面,使用相变材料的热能储存器用于延长夜间的工作时间。与没有热能存储的系统相比,该系统经过了优化,可最大程度地减少氢气的平均成本。最后,对成本结构的四个主要组成部分的成本敏感性进行了评估和讨论。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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