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Carbon exergy tax (CET): its impact on conventional energy system design and its contribution to advanced systems utilisation

机译:碳能干税(CET):它对常规能源系统设计的影响及其对先进系统利用的贡献

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摘要

A proposed analytical procedure for a charge on CO_2 emissions is used to determine its impact on the design process of different conventional energy systems. The charge on CO_2 emissions is defined as a Carbon Exergy Tax (CET). The CET utilises the concept of Efficiency Penalty of the energy system coupled with the Index of CO_2 Emissions, which connects the amount of the CO_2 emitted by the plant with the Second Law efficiency of the plant itself. The aim is to reward the efficient use of energy resources, both from a resource and environmental standpoint, and to penalise plants inefficient in this respect. The CET and the conventional Carbon Tax (CT, based on energy policy considerations and imposed on the mass of emitted CO_2) are applied to different conventional energy systems (a gas turbine simple cycle; a regenerative cogeneration gas turbine; a three pressure levels combined cycle) in order to determine their impact on the design of the plants. The effects of the CET and CT are investigated for different scenarios (pressure ratio, fuel cost, etc.). The results are presented using useful representations: the cost of electricity vs. efficiency, the cost of electricity vs. specific work, and the cost of electricity vs. plant design parameters (e.g., pressure ratio). Finally, ways that the use of the CET can contribute to the widespread utilization of advanced energy systems, which are more efficient and less polluting, is discussed. In particular, the CET and CT influence is presented and discussed for a solid oxide fuel cell (SOFC) and gas turbine combined cycle.
机译:针对CO_2排放收费的拟议分析程序用于确定其对不同常规能源系统设计过程的影响。有关CO_2排放的费用定义为“碳能税”(CET)。 CET利用能源系统的效率惩罚概念与CO_2排放指数相结合,该指标将工厂排放的CO_2量与工厂本身的第二定律效率联系起来。目的是从资源和环境的角度奖励能源的有效利用,并惩罚在这方面效率低下的植物。 CET和常规碳税(CT,基于能源政策的考虑因素并强加于所排放的CO_2的质量)适用于不同的常规能源系统(燃气轮机简单循环;可再生热电联产燃气轮机;三个压力水平联合循环) ),以确定它们对工厂设计的影响。针对不同情况(压力比,燃料成本等)研究了CET和CT的影响。使用有用的表示法来表示结果:电力成本与效率,电力成本与特定工作之间的关系,以及电力成本与工厂设计参数(例如,压力比)之间的关系。最后,讨论了使用CET可以促进先进能源系统的广泛使用的方法,该系统效率更高,污染更少。特别是介绍并讨论了CET和CT对固体氧化物燃料电池(SOFC)和燃气轮机联合循环的影响。

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