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Study of the evolution of particle size distributions and its effects on the oxidation of pulverized coal

机译:粒度分布演变及其对煤粉氧化的影响研究

摘要

This paper discusses the factors influencing the evolution of particle size during the combustion of pulverized coal, as well as their consequences for the interpretation of burnout curves. A detailed experimental characterization of the evolution of the particle size distribution (PSD) of a pulverized coal (anthracite) burned under realistic conditions in an entrained flow reactor is presented and used as the reference data for the subsequent analysis. The data show evidence for particle fragmentation at relatively short times (or, equivalently, high unburnt fractions). The formation of fragments comparable in size to the parent coal/char particles is modeled with a simple fragmentation scheme, which results in an improved reproduction of the PSD's evolution. The effects of fragmentation on the burnout curves are then studied in detail. An enhancement of their curvature is observed, which results in a better fit of the experimental data; in particular, the high conversion range, where the largest discrepancies between predictions and measurements are usually found, is well reproduced with this >extended> model. Simultaneously, the increase of specific surface caused by particle fragmentation causes an increase in the conversion rate, and a smaller total conversion time. To fit the experimental data, new optimal kinetic parameters are calculated. Finally, the potential relevance of fragmentation in the simulation of industrial pf plants is discussed. © 2007 The Combustion Institute.
机译:本文讨论了影响煤粉燃烧过程中粒度演变的因素,以及它们对燃尽曲线解释的影响。提出了在夹带流动反应器中在实际条件下燃烧的煤粉(无烟煤)的粒度分布(PSD)演变的详细实验表征,并用作后续分析的参考数据。数据显示出在相对较短的时间内(或等效地,未燃烧的分数很高)颗粒破碎的证据。用简单的破碎方案对大小与母煤/焦炭颗粒相当的碎片的形成进行了建模,从而改善了PSD演变过程的再现性。然后详细研究碎裂对燃尽曲线的影响。观察到它们的曲率增强,从而使实验数据更好地拟合。特别是,高转换范围(通常在预测和测量之间存在最大差异)可以通过此>扩展>模型很好地重现。同时,由颗粒破碎引起的比表面积的增加导致转化率的增加和总转化时间的缩短。为了拟合实验数据,计算了新的最佳动力学参数。最后,讨论了碎片化在工业粉煤厂模拟中的潜在相关性。 ©2007燃烧研究所。

著录项

  • 作者

    Jiménez S.; Ballester J.;

  • 作者单位
  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 eng
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