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Chemical looping processes for CO_2 capture and carbonaceous fuel conversion - prospect and opportunity

机译:用于CO_2捕集和含碳燃料转化的化学循环过程-前景和机遇

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摘要

Chemical looping processes offer a compelling way for effective and viable carbonaceous fuel conversion into clean energy carriers. The uniqueness of chemical looping processes includes their capability of low cost in situ carbon capture, high efficiency energy conversion scheme, and advanced compatibility with state-of-the-art technologies. Based on the different functions of looping particles, two types of chemical looping technologies and associated processes have been developed. Type I chemical looping systems utilize oxygen carrier particles to perform the reduction-oxidation cycles, while Type II chemical looping systems utilize CO_2 carrier particles to conduct carbonation-calcination cycles. The exergy analysis indicates that the chemical looping strategy has the potential to improve fossil fuel conversion schemes. Chemical looping particle performance and looping reactor engineering are the key drivers to the success of chemical looping process development. In this work, the desired particle characterization and recent progress in mechanism studies are generalized, which is followed by a discussion on the looping reactor design. This perspective also illustrates various chemical looping processes for combustion and gasification applications. It shows that both Type I and Type II looping processes have great potentials for flexible and efficient production of electricity, hydrogen and liquid fuels.
机译:化学循环过程为有效有效地将碳质燃料转化为清洁能源载体提供了一种引人注目的方法。化学循环工艺的独特性包括低成本的原位碳捕获能力,高效的能量转换方案以及与最新技术的先进兼容性。基于成环颗粒的不同功能,开发了两种类型的化学成环技术和相关的方法。 I型化学回路系统利用氧载体颗粒执行还原-氧化循环,而II型化学回路系统利用CO_2载体颗粒进行碳化-煅烧循环。火用分析表明,化学循环策略具有改善化石燃料转化方案的潜力。化学回路颗粒的性能和回路反应器工程是化学回路工艺开发成功的关键驱动力。在这项工作中,概括了所需的颗粒表征和机理研究的最新进展,随后讨论了循环反应器的设计。该透视图还说明了用于燃烧和气化应用的各种化学循环过程。结果表明,I型和II型循环工艺都具有灵活,高效地生产电,氢和液体燃料的巨大潜力。

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  • 来源
    《Energy & environmental science》 |2012年第6期|p.7254-7280|共27页
  • 作者单位

    Department of Chemical and Biomolecular Engineering, The Ohio State University, Columbus, Ohio 43210, USA;

    Department of Chemical and Biomolecular Engineering, The Ohio State University, Columbus, Ohio 43210, USA;

    Department of Chemical and Biomolecular Engineering, The Ohio State University, Columbus, Ohio 43210, USA;

    Department of Chemical and Biomolecular Engineering, The Ohio State University, Columbus, Ohio 43210, USA;

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