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Performance evaluation of an integrated energy system for the production and use of renewable methanol via water electrolysis and CO_2 hydrogenation

机译:通过水电解和CO_2氢化生产和使用可再生甲醇的集成能量系统的性能评价

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Aiming at the decarbonization of society, power-to-liquids processes can favour the exploitation of the excess of renewable energy, producing methanol or other chemicals (such as dimethyl ether) by reacting electrolytic hydrogen and recycled CO~2 (captured from industrial and power plants or directly from air). Such a system could behave as: - an energy storage system, storing excess renewable energy as chemical energy in liquid fuels and converting it into electricity during lack of renewable energy, - a source of fuels and chemicals for a variety of applications in many industrial sectors. This work concerns the conceptual design and performance analysis of a small-scale integrated energy system for the production and use of methanol from renewable hydrogen and captured CO_2. The main components of the system are: - a reversible high temperature and high efficiency solid oxide cell (RSOC) that can operate in charge (electrolyser, SOEC) and discharge (fuel cell, SOFC) mode to store and use electricity using methanol as energy storage medium, - a catalytic reactor for methanol synthesis via CO_2 hydrogenation. A thermal energy storage (TES) system based on a phase change material (PCM) is also included. To predict performance of the main components and of the overall system, numerical simulation models were developed. Performance and efficiencies of each system component and of the overall system were evaluated through extensive mass and energy balances, considering two different configurations with and without TES integration. Performance indexes were calculated to analyse the goodness of introducing a TES. The global efficiency of the overall system increases from 30% to 35% when heat is recovered between sections via the TES system.
机译:针对社会的脱碳,能量到液体过程可以利用过量的可再生能量,通过反应电解氢和再循环的CO〜2(从工业和力量捕获)生产甲醇或其他化学品(如二甲醚)植物或直接来自空气)。这样的系统可以表现为: - 一种能量存储系统,将多余的可再生能量作为液体燃料中的化学能量存储,并在缺乏可再生能源期间将其转化为电力, - 许多工业部门各种应用的燃料和化学品的源泉。这项工作涉及小规模综合能源系统的概念设计和性能分析,用于生产和使用来自可再生氢和捕获的CO_2的甲醇。该系统的主要成分是: - 可逆的高温和高效固体氧化物电池(RSOC),可用于电荷(电解器,SOEC)和放电(燃料电池,SOFC)模式,用于使用甲醇作为能量存储和使用电力储存介质, - 通过CO_2氢化的甲醇合成的催化反应器。还包括基于相变材料(PCM)的热能存储(TES)系统。为了预测主要部件和整体系统的性能,开发了数值模拟模型。通过广泛的质量和能量余额来评估每个系统组件和整个系统的性能和效率,考虑到两种不同的配置,无需TES集成。计算性能指标以分析引入TES的良善。当通过TES系统之间恢复热量时,整个系统的全球效率从30%增加到35%。

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