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Carbon Dioxide Reforming of Methane To Produce Synthesis Gas over Metal-Supported Catalysts: State of the Art

机译:甲烷的二氧化碳重整以在金属负载的催化剂上生产合成气:最新技术

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摘要

Carbon dioxide reforming of methane produces synthesis gas with a low hydrogen to carbon monoxide ratio, which is desirable for many industrial synthesis processes. This reaction also has very important environmental implications since both methane and carbon dioxide contribute to the greenhouse effect. Converting these gases into a valuable feedstock may significantly reduce the atmospheric emissions of CO_2 and CH_4. In this paper, we present a comprehensive review on the thermodynamics, catalyst selection and activity, reaction mechanism, and kinetics of this important reaction. Recently, research has centered on the development of catalysts and the feasible applications of this reaction in industry. Group Ⅷ metals supported on oxides are found to be effective for this reason. However, carbon deposition causing catalyst deactivation is the major problem inhibiting the industrial application of the CO_2/CH_4 reaction. Ni-based catalysts impregnated on certain supports show carbon-free operation and thus attract much attention. To develop an effective catalyst for CO_2 reforming of CH_4 and accelerate the commercial application of the reaction, the following are identified to be the most important areas for future work: (1) selection of metal and support and studying the effect of their interaction on catalyst activity; (2) the effect of different promoter on catalyst activity; (3) the reaction mechanism and kinetics; and (4) pilot reactor performance and scale-up operation.
机译:甲烷的二氧化碳重整产生具有低氢与一氧化碳比的合成气,这对于许多工业合成方法而言是期望的。该反应还具有非常重要的环境影响,因为甲烷和二氧化碳都对温室效应有贡献。将这些气体转化为有价值的原料可以显着减少大气中CO_2和CH_4的排放。在本文中,我们对这一重要反应的热力学,催化剂选择和活性,反应机理和动力学进行了全面综述。最近,研究集中在催化剂的开发和该反应在工业上的可行性应用。由于这个原因,发现负载在氧化物上的第Ⅷ族金属是有效的。然而,引起催化剂失活的碳沉积是阻碍CO_2 / CH_4反应的工业应用的主要问题。浸渍在某些载体上的镍基催化剂显示出无碳操作,因此引起了广泛关注。为了开发一种有效的CH_4的CO_2重整催化剂并加速反应的商业应用,以下是未来工作中最重要的领域:(1)金属和载体的选择以及研究它们之间的相互作用对催化剂的影响活动; (2)不同助催化剂对催化剂活性的影响; (3)反应机理和动力学; (4)中试反应堆性能和按比例放大运行。

著录项

  • 来源
    《Energy & Fuels》 |1996年第4期|p.896-904|共9页
  • 作者单位

    Department of Chemical Engineering, The University of Queensland, St. Lucia, QLD 4072, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 TK-;
  • 关键词

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