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Assessment of integrated energy systems for the production and use of renewable methanol by water electrolysis and CO_2 hydrogenation

机译:通过水电解和CO_2氢化评估生产和使用可再生甲醇的综合能源系统

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The conversion of renewable hydrogen and recycled CO2 to valuable fuels in power-to-liquids (PtL) systems could be a key solution to reduce CO2 emissions. Within this context, methanol is a promising candidate, both as an energy carrier and a chemical feedstock.This paper is focused on renewable methanol production and its use in a PtL integrated system based on a water electrolysis process fed by renewable energy sources (RES), a methanol synthesis and purification section and a high temperature solid oxide fuel cell. In particular, an analysis and comparison of two power-to-methanol integrated systems based on different electrolysis technology, i.e. the commercially mature alkaline electrolysers and the innovative high temperature solid oxide cells, was carried out. A thermal energy storage system based on a phase change material and an organic Rankine cycle engine can also be included, depending on the chosen electrolysis process.Detailed models of the main sections were developed and implemented by using Aspen Plus. A comprehensive analysis through mass and energy balances was carried out to evaluate performance indices of each section and of the overall plant for the two different configurations. A global efficiency of the overall system slightly lower than 0.35 was obtained for both systems.
机译:可再生氢和再循环CO 2转化为能量 - 液体(PTL)系统中有价值的燃料,可以是减少二氧化碳排放的关键溶液。在这种情况下,甲醇是一个有前途的候选者,无论是能量载体和化学原料。本文重点是可再生甲醇生产及其在基于通过可再生能源(RES)喂养的水电解过程的PTL集成系统中的应用,甲醇合成和纯化部分和高温固体氧化物燃料电池。特别地,基于不同电解技术的两种能量到甲醇集成系统的分析和比较,即商业上成熟的碱性电容器和创新的高温固体氧化物细胞。根据所选择的电解过程,还可以包括基于相变材料和有机朗肯循环发动机的热能存储系统。通过使用ASPEN Plus开发和实施主要部分的型号。通过质量和能量余额进行全面分析,以评估每个部分和整个工厂的两种不同配置的绩效。两种系统都可获得略低于0.35的整体系统的全球效率。

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