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不同料層高度燒結過程尾氣排放規律

Exhaust emission law at different bed depths in sintering process

  • 摘要: 研究了不同料層高度下燒結過程中尾氣成分(O2、CO2、SO2和NO)的變化規律.結果表明:隨著燒結歷程的推進,尾氣中O2含量降低而CO2含量升高,這主要是因為固體燃料燃燒量逐漸增多;尾氣中SO2、NO的含量亦呈升高趨勢,但幅度很小,這主要是因為燒結料層對SO2有吸收作用,而燃燒帶的CO氣體則可以還原使部分NO分解;在臨近燒結終點時,因料層對SO2的吸收作用消失而使析出作用強化,導致尾氣中SO2含量急劇升高.另外,隨著料層高度的增加,因固體燃料配比相應減小,尾氣中CO2、SO2和NO的含量降低,而O2含量增加.因此,控制高溫區寬度的厚料層燒結技術是我國開展減少燒結尾氣中氣體污染物(CO2、SO2和NO)的有效措施.

     

    Abstract: The change in exhaust composition (such as O2, CO2, SO2 and NO) at different bed depths in sintering process was studied. The results show that with the sintering process proceeding, the quantity of combustion solid fuel increases, therefore the content of O2 decreases and the content of CO2 increases. As SO2 is absorbed by the sinter bed and NO is reduced by CO in the combustion zone, the contents of SO2 and NO increase slowly. Near the burning through point, the absorption of SO2 by the sintering bed disappears and the decomposability of SO2 strengthens, leading to the rapid increase of SO2 content. With the bed depth increasing, the ratio of solid fuel declines, therefore the contents of CO2, SO2 and NO decrease and the content of O2 increases. So controlling the width of the high temperature zone in deep-bed sintering can efficiently reduce gaseous pollutants (CO2, SO2 and NO) in sintering tail gas.

     

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