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Thermoeconomic Analysis of Gas Turbine Plants with Fuel Decarbonisation and Carbon Dioxide Sequestration

机译:燃气汽轮机燃料脱碳剂和二氧化碳封存的热经济分析

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In this paper the thermoeconomic analysis of gas turbine plants with fuel decarbonisation and carbon dioxide sequestration is presented. The study focuses on the amine (MEA) decarbonisation plant lay-out and design, also providing economic data about the total capital investment costs of the plant. The system is fuelled with methane that is chemically treated through a partial oxidation and a water-gas shift reactor. CO_2 is captured from the resulting gas mixture, using an absorbing solution of water and MEA that is continuously re-circulated through an absorption tower and a regeneration tower: the decarbonised fuel gas is afterwards burned in the gas turbine. The heat required by CO_2 sequestration is mainly recovered from the gas turbine exhausts and partially from the fuel treatment section. The reduction in efficiency and the increase in energy production costs due to fuel amine decarbonisation is evaluated and discussed for different gas turbine sizes and technologies (microturbine, small size regenerated, aeroderivative, heavy duty). The necessary level of carbon tax for a conventional plant without a fuel decarbonisation section is calculated and a comparison with the Carbon Exergy Tax procedure is carried out, showing the good agreement of the results.
机译:本文介绍了燃料脱碳和二氧化碳封存的燃气轮机厂的热经济分析。该研究重点介绍胺(MEA)脱碳厂铺设和设计,也提供了关于植物总资本投资成本的经济数据。该系统用甲烷燃料,通过部分氧化和水气移反应器化学处理。使用水和MEA的吸收溶液从所得气体混合物中捕获CO_2,其连续通过吸收塔和再生塔循环和再生塔:脱碳燃料气体之后在燃气轮机中燃烧。 CO_2封存所需的热量主要从燃气轮机排气中恢复并部分地从燃料处理部分回收。评估效率降低和能源生产成本的增加,并讨论了不同的燃气涡轮机尺寸和技术(MicroCurbine,小尺寸再生,Aeroderivative,Hearing)。计算没有燃料脱碳部分的常规植物的必要碳税水平,并进行了与碳漏洞税的比较,表现出良好的结果。

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