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Clean fuels synthesis from green hydrogen: a techno-economic comparative analysis

机译:从绿色氢气合成清洁燃料:技术经济比较分析

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In this paper, two different power-to-fuel solutions for sustainable fuel synthesis are investigated from the energetic, environmental, and economic standpoints. Both the solutions consider a pressurized PEM electrolysis section, fed by renewable sources, where high purity green Hydrogen is produced. Then, two separate processes are investigated for the synthesis of two distinct chemicals. In the first case, the hydrogen is mixed with CO_(2), sequestered by an industrial plant, and captured a carbon capture system (CCS): the two gases are sent to a pressurized reactor for methanol synthesis. In the second case, the hydrogen is mixed with N_(2), obtained from an industrial air separation unit (ASU), and sent to a reactor for ammonia synthesis. Both the synthesis processes are performed at high pressures and temperatures, thus a thermodynamic analysis is mandatory in order to calculate the overall efficiencies. In both cases, the power to fuel plants are investigated also in economic terms. Methanol synthesis presents a slightly higher efficiency compared to ammonia, while the two solutions are very similar from the economic standpoint. The sale of the co-produced oxygen allows for an improvement in economic terms for both cases and can be a key point in order to reach economic sustainability, together with the expected reduction in PEM electrolysers capital cost.
机译:本文从精力,环境和经济的观点来看,研究了用于可持续燃料合成的两种不同的电力到燃料解决方案。解决方案都考虑由可再生源供给的加压PEM电解切片,其中产生高纯度绿色氢气。然后,研究了两种单独的方法,用于合成两个不同的化学物质。在第一种情况下,将氢与CO_(2)混合,用工业厂隔离,并捕获碳捕获系统(CCS):将两个气体送至加压反应器,用于甲醇合成。在第二种情况下,将氢与从工业空气分离单元(ASU)获得的N_(2)混合,并送到反应器中用于氨合成。合成方法都在高压和温度下进行,因此强制性分析是强制性的,以便计算整体效率。在这两种情况下,还在经济方面进行了对燃料厂的权力。与氨相比,甲醇合成呈略高,而两种解决方案与经济立场非常相似。销售共同制作的氧气允许改善两种情况的经济方面,并且可以成为达到经济可持续性的关键点,以及PEM电解商资本成本的预期降低。

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