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首页> 外文期刊>Energy & fuels >Oxidative Degradation of Aminosilica Adsorbents Relevant to Postcombustion CO_2 Capture
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Oxidative Degradation of Aminosilica Adsorbents Relevant to Postcombustion CO_2 Capture

机译:与燃烧后CO_2捕集有关的氨基二氧化硅吸附剂的氧化降解

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摘要

Coal-fired power plant flue gas exhaust typically contains 3-10% oxygen. While it is known that the mono-ethanolamine (MEA) oxidative degradation rate is a critical parameter affecting liquid amine absorption processes, the effect of oxygen on the stability of solid amine adsorbents remains unexplored. Here, oxidative degradation of aminosilica materials is studied under accelerated oxidizing conditions to assess the stability of different supported amine structures to oxidizing conditions. Adsorbents constructed using four different silane coupling agents are evaluated, three with a single primary, secondary, or tertiary amine at the end of a propyl surface linker, with the fourth having one secondary propylamine separated from a primary amine by an ethyl linker. Under the experimental conditions used in this study, it was found that both amine type and proximity had a significant effect on oxidative degradation rates. In particular, the supported primary and tertiary amines proved to be stable to the oxidizing conditions used, whereas the secondary amines degraded at elevated treatment temperatures. Because secondary amines are important components of many supported amine adsorbents, it is suggested that the oxidative stability of such species needs to be carefully considered in assessments of postcombustion CO_2 capture processes based on supported amines.
机译:燃煤电厂的烟气排放通常包含3-10%的氧气。虽然已知单乙醇胺(MEA)的氧化降解速率是影响液体胺吸收过程的关键参数,但氧对固体胺吸附剂稳定性的影响仍待探索。在此,在加速氧化条件下研究了氨基二氧化硅材料的氧化降解,以评估不同负载胺结构对氧化条件的稳定性。评估了使用四种不同的硅烷偶联剂构造的吸附剂,其中三种在丙基表面连接剂的末端带有一个伯,仲或叔胺,第四种具有一个仲丙基胺与一个伯胺通过乙基连接剂隔开。在这项研究中使用的实验条件下,发现胺的类型和邻近度都对氧化降解速率有显着影响。特别地,负载的伯胺和叔胺被证明对所用的氧化条件稳定,而仲胺在升高的处理温度下降解。由于仲胺是许多负载型胺吸附剂的重要组成部分,因此建议在基于负载型胺的燃烧后CO_2捕集过程评估中需要仔细考虑此类物种的氧化稳定性。

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  • 来源
    《Energy & fuels》 |2011年第mayajuna期|p.2405-2415|共11页
  • 作者单位

    School of Chemical & Biomolecular Engineering, Georgia Institute of Technology, 311 Ferst Drive, Atlanta, Georgia 30332, United States;

    School of Chemical & Biomolecular Engineering, Georgia Institute of Technology, 311 Ferst Drive, Atlanta, Georgia 30332, United States;

    School of Chemical & Biomolecular Engineering, Georgia Institute of Technology, 311 Ferst Drive, Atlanta, Georgia 30332, United States;

    School of Chemical & Biomolecular Engineering, Georgia Institute of Technology, 311 Ferst Drive, Atlanta, Georgia 30332, United States;

  • 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
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