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An energetic analysis of CO_2 capture on a gas turbine combining flue gas recirculation and membrane separation

机译:结合烟气再循环和膜分离的燃气轮机捕获CO_2的能量分析

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摘要

Post-combustion Carbon Capture and Storage (CCS) is currently intensively investigated as a key issue for the mitigation of greenhouse gases emissions. A very large number of studies is dedicated to coal power plants. In this paper, the possibility to achieve carbon capture on a gas turbine, based on a combination of flue gas recycle and membrane separation is reported. Membrane processes are effectively known to offer attractive performances in terms of energy efficiency, as soon as concentrated and/or pressure mixtures have to be treated. Two different flow schemes have been simulated and compared: flue gas recycle with air combustion and flue gas recycle with an oxygen enriched feed mixture. The energy requirement of the different processes, expressed in GJ (thermal basis) per ton of recovered CO_2, and the size of the membrane capture process (expressed in m~2 of membrane area) have been systematically estimated for different membrane separation performances. It is shown that an overall energy requirement down to 2.6 GJ per ton can possibly be achieved when optimal operating conditions, based on oxygen enriched air (OEA) combustion together with a highly selective membrane (CO_2/N2 selectivity of 200) are combined. Additional possibilities in order to minimise the energy penalty of the process are discussed.
机译:燃烧后碳捕集与封存(CCS)目前作为减少温室气体排放的关键问题进行了深入研究。大量研究致力于燃煤电厂。在本文中,报告了结合烟气再循环和膜分离技术在燃气轮机上实现碳捕集的可能性。一旦必须处理浓缩的和/或压力的混合物,就有效地已知膜工艺在能量效率方面提供有吸引力的性能。模拟并比较了两种不同的流量方案:带空气燃烧的烟气再循环和带富氧进料混合物的烟气再循环。对于不同的膜分离性能,已经系统地估算了不同过程的能量需求,以每吨回收的CO_2的GJ(热基)表示,以及膜捕获过程的大小(以m〜2的膜面积表示)。结果表明,将基于富氧空气(OEA)燃烧和高选择性膜(CO_2 / N2选择性为200)组合在一起的最佳运行条件,可以将总能量需求降低至每吨2.6 GJ。为了最小化过程的能量损失,讨论了其他可能性。

著录项

  • 来源
    《Energy》 |2012年第1期|p.167-175|共9页
  • 作者单位

    LRGP (UPR CNRS 3349). Universite de Lorraine, ENSIC, 1 rue Crandville, 54001 Nancy, France;

    UMR 6614 CORIA, INSA de Rouen, Avenue de l'University BP 08, 76801 Saint-Etienne du Rouvray, France;

    UMR 6614 CORIA, INSA de Rouen, Avenue de l'University BP 08, 76801 Saint-Etienne du Rouvray, France;

    Stanbridge Capital, 6 West 18th Street, New York, NY 10011, USA;

    LRGP (UPR CNRS 3349). Universite de Lorraine, ENSIC, 1 rue Crandville, 54001 Nancy, France;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    CO_2; capture; gas turbine; membranes; flue gas;

    机译:CO_2;捕获;燃气轮机;膜烟气;

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