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Exergetic and exergoeconomic analyses of novel methanol synthesis processes driven by offshore renewable energies

机译:海上可再生能源驱动的新型甲醇合成过程的能效和能效分析

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摘要

In the current context of global energy transition, the coupling of methanol production with offshore oil & gas operations appears to be a promising option to share infrastructures and convert renewable energy into valuable fuel. However, renewable methanol synthesis has not yet reached the commercial stage. Moreover, there is no evidence on studies integrating offshore multiple resources into methanol process. The novelty of this paper is a performance analysis of emerging routes for methanol production driven by offshore wind-solar energies through exergy and exergoeconomic techniques. Two production schemes (catalytic hydrogenation of carbon dioxide and direct radical oxidation of methane) are properly designed to produce a fixed methanol rate driven by offshore wind farm and solar-thermal plants at a given oil & gas rig. The results demonstrate that carbon dioxide-based route shows the lowest exergy destruction rate (66 MW) and total cost rate (1000 $/h) compared to other option. In conjunction with this, the methane-based route gives a satisfactory exergy efficiency of 87% against a mere 2% of other pathway, as well as higher potential to increase cost savings due to lower exergoeconomic factor. Furthermore, influences of varying some key variables on the proposed parameters of the two options are investigated. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在当前全球能源转型的背景下,将甲醇生产与海上油气运营相结合似乎是共享基础设施并将可再生能源转化为有价值的燃料的有前途的选择。但是,可再生甲醇合成尚未达到商业化阶段。而且,没有证据表明将海上多种资源整合到甲醇工艺中的研究。本文的新颖性是对通过离岸风能和能效经济技术驱动的海上风能推动的甲醇生产新兴路线的性能分析。适当地设计了两种生产方案(二氧化碳的催化加氢和甲烷的直接自由基氧化),以在给定的石油和天然气钻机上由海上风电场和太阳热电厂驱动产生固定的甲醇速率。结果表明,与其他方案相比,基于二氧化碳的路线表现出最低的火用破坏率(66 MW)和总成本率(1000 $ / h)。与此相结合,基于甲烷的路线的令人满意的火用效率仅为其他途径的2%,而令人满意的火用效率为87%,并且由于较低的能效经济因素,具有增加成本节省的潜力。此外,研究了改变一些关键变量对两个选项的建议参数的影响。 (C)2019 Elsevier Ltd.保留所有权利。

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