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氧氣高爐循環煤氣加熱過程中的析碳行為

Carbon deposition reaction based on heating recycling gas of oxygen blast furnaces

  • 摘要: 以氧氣高爐循環煤氣加熱工藝為背景,在實驗室條件下研究了CO和H2體積分數較高的煤氣加熱時的析碳行為。實驗結果表明,溫度和CO2體積分數是影響析碳反應的重要因素。在300-700℃范圍內,當溫度低于500℃時,析碳反應速度隨溫度的升高而增加;當高于此溫度時,反應速度隨溫度的升高而下降。析碳反應包括CO分解析碳反應以及CO和H2的混合析碳反應。對比熱力學理論與實驗現象分析了析碳過程中以上兩個反應可能起到的作用。采用掃描電鏡,從微觀結構上觀察了500~700℃時加熱過程中析出碳的形態并研究了析碳行為。另外,隨著CO2體積分數的增加,析碳反應速率逐漸降低。在500℃和600℃時,CO2體積分數的增加對析碳行為有較大抑制作用,尤其在500℃時這種抑制作用更加明顯。

     

    Abstract: Taking the heating process of recycling-gas for oxygen blast furnaces as a research background, carbon deposition behavior in heating at higher CO and H2 volume fractions was investigated under a laboratory condition. The results indicate that temperature and CO2 volume fraction are important factors for carbon deposition. In the temperature range of 300℃ to 700℃, the carbon deposition rate increases with the increase of temperature below 500℃, but deceases when above 500℃. The carbon deposition includes CO decomposition and carbon deposition reaction by the hybrid of CO and H2, each possible role of which was analyzed through comparing the thermodynamic theory and experimental phenomena in the carbon deposition. The morphology of deposited carbon and the carbon deposition behavior in heating from 500℃ to 700℃ were investigated by scanning electron microscopy. In addition, the carbon deposition rate decreases gradually with the increasing of CO2 volume fraction at 500℃ and 600℃, and this inhibition effect on the carbon deposition behavior is greater at 500℃.

     

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