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CO_2 Capture in a Chemical Looping Combustion Power Plant Evaluated With an Advanced Exergetic Analysis

机译:通过高级能谱分析评估化学循环燃烧发电厂中的CO_2捕集

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摘要

CO_2 capture and storage (CCS) is a way to minimize harmful emissions generated from the combustion of fossil fuels in power plants. Measures to increase the thermody-namic efficiency of power plants incorporating CCS can improve their economic viability, as well as reduce the environmental impact of such applications. Exergy-based analyses are tools that aid the evaluation of energy conversion systems and reveal paths to improve them. In this article, an advanced exergetic analysis is applied to a near-zero-emission power plant that incorporates chemical looping combustion. The final goal is to reveal ways toward a more efficient and less polluting operation of the power plant. The objectives of the article further include the quantification of the different parts of the exergy destruction and the demonstration of the advantages of using such an advanced method. It has been found that most of the exergy destruction of the plant is endogenous and, for the majority of the components, unavoidable. When calculating the total avoidable exergy destruction caused by each component, it is found that the most important plant component is the reactor unit, followed by the expander and the compressor of the gas turbine. Lastly, the potential for improvement is found to lie mainly with the internal operation of the components, while the interactions among the plant components are less significant.
机译:CO_2捕获和存储(CCS)是一种将发电厂中化石燃料燃烧所产生的有害排放降至最低的方法。采取措施提高采用CCS的电厂的热力自然效率,可以改善其经济可行性,并减少此类应用的环境影响。基于火用的分析是有助于评估能量转换系统并揭示改进之路的工具。在本文中,将先进的能量分析应用于结合了化学循环燃烧的近零排放发电厂。最终目标是揭示使电厂更高效,污染更少的方法。本文的目标还包括对火用破坏的不同部分进行量化,并证明使用这种先进方法的优势。已经发现,大多数植物的火用破坏是内源的,并且对于大多数成分而言是不可避免的。在计算由每个组件引起的总可避免的火用破坏时,发现最重要的工厂组件是反应堆单元,其次是燃气轮机的膨胀机和压缩机。最后,发现改进的潜力主要在于组件的内部操作,而工厂组件之间的交互作用则不那么重要。

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