首页> 外文会议>6th European Conference on Industrial Furnaces and Boilers Vol.1, Apr 2-5, 2002, Estoril-Lisboa, Portugal >Influence of Varying O_2 and CO_2 Concentration on Soot Formation and Oxidation
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Influence of Varying O_2 and CO_2 Concentration on Soot Formation and Oxidation

机译:O_2和CO_2浓度变化对烟灰形成和氧化的影响

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The influence of oxygen and carbon dioxide concentration on soot was studied by laser diagnostics and TEM(Transmission Electron Microscopy) Photograph in axisymmetric coflowing non-premixed flame. Combined LII(Laser Induced Incandescence), TIRE-LII(Time Resolved LII), and elastic scattering methods were used to measure soot volume fraction, primary particle size and number concentration in laminar non-premixed flames. Soot was also directly sampled with thermophoretic method, then soot morphology was analyzed by TEM Photography. When we make a comparison between the soot distribution observed by laser diagnostics and that of TEM analysis, soot diameter and number concentration reveal agreement. Using carbon dioxide as diluents instead of nitrogen in coflow, primary particle size and soot volume fraction abruptly decrease while number concentration increase. As the oxygen concentration in coflow increases, soot inception and primary particle size increase, however the soot containing area in flame becomes small because the soot oxidation rate increase due to higher temperature and higher oxygen fraction.
机译:通过激光诊断和TEM(透射电子显微镜)照片研究了轴对称共流非预混火焰中氧气和二氧化碳浓度对烟灰的影响。结合使用LII(激光诱导白炽灯),TIRE-LII(时间分辨LII)和弹性散射方法来测量层状非预混火焰中的烟尘体积分数,一次粒径和数量浓度。还通过热泳法直接对烟灰进行采样,然后通过TEM摄影分析烟尘的形态。当我们比较激光诊断所观察到的烟尘分布和TEM分析的烟尘分布时,烟尘直径和数量浓度显示出一致性。使用二氧化碳代替二氧化碳作为稀释剂时,一次粒径和烟灰体积分数会突然减小,而数浓度会增加。随着气流中氧浓度的增加,烟灰的形成和初级粒径增加,但是火焰中烟灰的包含区域变小,因为烟灰的氧化速率由于较高的温度和较高的氧含量而增加。

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