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Theoretical study on COS oxidation mechanism

机译:COS氧化机理的理论研究

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摘要

COS is the most abundant sulfur containing compound in the atmosphere that could cause serious adverse effects on human health and environment. Understanding the oxidation mechanism of COS is with great significance in controlling and utilization reduced sulfur (CS2 and COS). In this study, density function theory (DFT) and multi-reference configuration interaction with Davidson correction (MRCI+Q) methods were adopted to investigate the oxidation mechanism of COS. All energies were refined at CCSD(T)/CBS level and subsequently used to deduce the kinetic parameters. The critical mechanism was validated by experiments results. It was found that the oxidation of COS is initiated through three channels. In COS+COS channel, S-2 (a(1) Delta(g)) is first produced and then oxidized to SO(X-3 Sigma). In COS+O-2 channel, COS combines O-2 (X-3 Sigma(g)) to yield SO(X-3 Sigma, a(1) Delta) and CO2 (X-1 Sigma(g)). In COS dissociation channel, atomic sulfur S(P-3, D-1) will be primarily generated and subsequently oxidized to SO(X-3 Sigma) and O(P-3). Oxidation of SO(X-3 Sigma) could either result in O(P-3) formation. At higher COS concentration, O(P-3) formed through three initiation channels will react with COS to produce S(P-3) and SO(X-3 Sigma), both of which will be oxidized finally to SO2(X-1 A(1)) to reproduce O(P-3). Reaction of COS+O(P-3) is the dominating consumption reaction of COS. The major products of COS oxidation are CO(a(1) Delta) and CO2(X-1 Sigma(g)) and SO2(X-1 A(1)). The ratio of CO/CO2 in products is mainly affected by the branching fraction of COS+O(P-3). Based on the rate coefficient calculated at CCSD(T)/CBS level, a comprehensive kinetic model was developed to predict the COS oxidation process. The modeling results are in agreement with experiment data. (C) 2020 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:COS是大气中最丰富的含硫化合物,这可能导致对人体健康和环境的严重不利影响。理解COS的氧化机理在控制和利用还原硫(CS2和COS)方面具有重要意义。在该研究中,采用密度函数理论(DFT)和与大卫校正(MRCI + Q)方法的多参考配置相互作用来研究COS的氧化机制。所有能量都在CCSD(T)/ CBS水平上并随后使用推断出动力学参数。实验结果验证了关键机制。发现COS的氧化通过三个通道启动。在COS + COS通道中,首先产生S-2(A(1)δ(g)),然后氧化为(x-3 sigma)。在COS + O-2通道中,COS将O-2(X-3 Sigma(G))结合在一起(X-3 Sigma,A(1)δ)和CO2(X-1 sigma(G))。在COS解离通道中,将主要产生并随后将原子硫S(P-3,D-1)氧化成(x-3 sigma)和O(p-3)。所以(x-3 sigma)的氧化可以导致O(p-3)形成。在较高的COS浓度下,通过三个引发通道形成的O(P-3)将与COS产生(P-3)等(x-3 sigma)反应,这两者将最终氧化成SO 2(X-1 (1))再现o(p-3)。 COS + O(p-3)的反应是COS的主要消耗反应。COS氧化的主要产物是CO(A(1)δ)和CO2(X-1 sigma(G))和SO2(X-1 a(1))。产物中的CO / CO 2的比例主要受COS + O(P-3)的分支级分的影响。基于CCSD(T)/ CBS级别计算的速率系数,开发了一种综合动力学模型来预测COS氧化过程。建模结果与实验数据一致。 (c)2020燃烧研究所。由elsevier Inc.出版的所有权利保留。

著录项

  • 来源
    《Combustion and Flame》 |2020年第11期|311-325|共15页
  • 作者单位

    Cent South Univ Sch Met & Environm Changsha 410083 Hunan Peoples R China|Cent South Univ Natl Engn Lab High Efficient Recovery Refractory Changsha 410083 Hunan Peoples R China;

    Cent South Univ Sch Met & Environm Changsha 410083 Hunan Peoples R China|Cent South Univ Natl Engn Lab High Efficient Recovery Refractory Changsha 410083 Hunan Peoples R China;

    Cent South Univ Sch Met & Environm Changsha 410083 Hunan Peoples R China|Cent South Univ Natl Engn Lab High Efficient Recovery Refractory Changsha 410083 Hunan Peoples R China;

    Yangtze Normal Univ Coll Mat Sci & Engn Chongqing 408100 Peoples R China;

    Cent South Univ Sch Met & Environm Changsha 410083 Hunan Peoples R China|Cent South Univ Natl Engn Lab High Efficient Recovery Refractory Changsha 410083 Hunan Peoples R China;

    Cent South Univ Sch Met & Environm Changsha 410083 Hunan Peoples R China|Cent South Univ Natl Engn Lab High Efficient Recovery Refractory Changsha 410083 Hunan Peoples R China;

  • 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
  • 关键词

    DFT; COS oxidation; Mechanism; Kinetic model;

    机译:DFT;COS氧化;机制;动力学模型;

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