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Numerical assessment of Tognotti determination of CO_2/CO production ratio during char oxidation

机译:炭氧化过程中Tognotti测定CO_2 / CO生成比的数值评估

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摘要

A review of the experimental investigations of the CO_2/CO production ratio during the high temperature oxidation of carbon reveals a wide variation in this critical parameter for determining the char combustion temperature and burning rate. Of the studies that have been performed, the experiment used by Tog-notti et al. [5], with small, laser-heated, electrodynamically levitated Spherocarb particles in cool surroundings, appears to be the most promising for giving accurate results. Proper interpretation of the results from Tognotti's study requires assumptions of kinetically controlled combustion behavior, negligible CO conversion either within the particle pores or in the boundary layer, and a uniform particle temperature. To evaluate whether the Tognotti data in fact fulfill these assumptions, we have employed a detailed model of porous particle combustion to simulate the Tognotti experiments. The model results indicate that particle temperatures were uniform and there was negligible oxidation of CO either within the particle or in the particle boundary layer over the range of particle temperatures that was used to determine the Tognotti CO_2/CO production ratio correlations. On the other hand, the model results show that O_2 diffusional resistance became important for temperatures greater than 1050 K in the Tognotti experiments. However, because of the low sensitivity of the observed CO_2/CO production ratio to the local oxygen concentration, computational analysis also shows that the influence of this Zone Ⅱ combustion behavior on the measured CO_2/CO production ratio is quite minor. Therefore, it appears that the empirical correlation derived by Tognotti et al. [5] to describe the CO_2/CO production ratio during high temperature char oxidation is credible, though its temperature range of empirical validation is limited to less than 1250 K.
机译:对碳高温氧化过程中CO_2 / CO生成比的实验研究的回顾表明,用于确定焦炭燃烧温度和燃烧速率的该关键参数存在很大差异。在已经进行的研究中,Tog-notti等人使用的实验。 [5],在凉爽的环境中,用小的,激光加热的,电动悬浮的Spherocarb颗粒似乎是最有希望提供准确结果的方法。对Tognotti的研究结果的正确解释需要以下假设:动力学控制的燃烧行为,颗粒孔内或边界层中的CO转化率可忽略不计以及均匀的颗粒温度。为了评估Tognotti数据实际上是否满足这些假设,我们采用了多孔颗粒燃烧的详细模型来模拟Tognotti实验。模型结果表明,颗粒温度是均匀的,并且在用于确定Tognotti CO_2 / CO产生比相关性的整个颗粒温度范围内,在颗粒内部或在颗粒边界层中的CO氧化程度均可以忽略不计。另一方面,模型结果表明,在Tognotti实验中,O_2的扩散阻力对于温度高于1050 K变得重要。但是,由于观测到的CO_2 / CO产生率对局部氧浓度的敏感性较低,计算分析还表明,Ⅱ区燃烧行为对测得的CO_2 / CO产生率的影响很小。因此,看来Tognotti等人得出的经验相关性。 [5]描述高温焦炭氧化过程中的CO_2 / CO生成比是可信的,尽管其经验验证的温度范围限于小于1250K。

著录项

  • 来源
    《Combustion and Flame》 |2013年第9期|1827-1834|共8页
  • 作者单位

    Combustion Research Facility, Sandia National Laboratories, Livermore, CA 94550, United States;

    Combustion Research Facility, Sandia National Laboratories, Livermore, CA 94550, United States,Institute for Thermodynamics and Energy Conversion, Vienna University of Technology, Vienna A-1060, Austria;

    Combustion Research Facility, Sandia National Laboratories, Livermore, CA 94550, United States;

    School of Chemical and Biomolecular Engineering, University of Sydney, NSW 2006, 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
  • 关键词

    Char combustion; Kinetics; CO_2/CO production ratio; Oxy-fuel;

    机译:炭燃烧;动力学;CO_2 / CO产生率;含氧燃料;

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