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YI Zhengming, QIN Jiazhuo, LIU Qiang, DU Dong, ZHANG Dongsheng. EFFECT OF FUEL CHARACTERISTICS ON SINTERING AND FLUE GAS EMISSION OF IRON ORE[J]. ENVIRONMENTAL ENGINEERING , 2022, 40(3): 59-65. doi: 10.13205/j.hjgc.202203010
Citation: YI Zhengming, QIN Jiazhuo, LIU Qiang, DU Dong, ZHANG Dongsheng. EFFECT OF FUEL CHARACTERISTICS ON SINTERING AND FLUE GAS EMISSION OF IRON ORE[J]. ENVIRONMENTAL ENGINEERING , 2022, 40(3): 59-65. doi: 10.13205/j.hjgc.202203010

EFFECT OF FUEL CHARACTERISTICS ON SINTERING AND FLUE GAS EMISSION OF IRON ORE

doi: 10.13205/j.hjgc.202203010
  • Received Date: 2021-05-20
    Available Online: 2022-07-07
  • From the view of solid combustion, the influence of fuel proportioning and particle size on the temperature of combustion layer and sintering atmosphere were studied by sintering pot experiment. The results showed that as the proportion of pulverized coal in the fuel increased from 0 to 100%, the sintering speed and utilization coefficient increased to 4.32 mm/min and 0.13 t/(m2·h), respectively. The sinter drum strength first increased and then decreased, and the drum index reached the peak value of 58.4%, when the pulverized coal ratio was 25%. The NOx concentration in the flue gas was increased by 28.34 mg/m3, and the CO content was increased by 0.72%. CO promoted the reduction reaction of NO and inhibited the formation of NOx. Under full coal condition, with the percentage of fuel with particle size less than 1 mm reduced from 50% to 10%, NOx in flue gas decreased by 51.33 mg/m3; increasing the fuel particle size could reduce the concentration of NOx emission in flue gas. While the sintering time was prolonged, the total NOx emission was increased. The research results could provide theoretical guidance and reference for sintering fuel selection and the reduction of flue gas emission.
  • [1]
    易正明,覃佳卓,邓植丹,等.烧结加湿燃烧对NOx排放影响的研究[J].矿冶工程,2020,40(4):84-87.
    [2]
    ZHOU H, CHENG M, ZHAO J P, et al. Evaluation of the adhering layer ratio of iron ore granules and its influence on combustion-generated NOx emission in iron ore sintering[J]. Journal of Zhejiang University-SCIENCE A, 2018, 19(6):479-490.
    [3]
    易正明,邓植丹,覃佳卓,等.基于RBF-BP混合神经网络的烧结烟气NOx预测[J].钢铁研究学报,2020,32(7):639-646.
    [4]
    阙志刚,吴胜利,艾仙斌,等.固体燃料类型及其燃烧行为对烧结过程NOx排放的影响[J].钢铁研究学报,2019,31(6):507-514.
    [5]
    WU D S, ZHENG B S, TANG X Y,et al. Nitrogen in Chinese coals[J]. Chinese Journal of Geochemistry, 2011, 30(2):248-254.
    [6]
    TAKAZO K, MASAKI H. Utilization of biomass for iron ore sintering[J]. ISIJ International, 2013, 53(9):1599-1606.
    [7]
    杨阳.无烟煤和焦炭的NOx生成规律研究[J].能源工程,2016(1):37-41.
    [8]
    苏玉栋.烧结主要工艺参数对烟气中NOx排放的影响研究[D].上海:上海交通大学,2014.
    [9]
    刘桐,张巧玉,盛建华,等.燃料粒度结构变化对烧结生产的影响[J].烧结球团,2020,45(3):17-21.
    [10]
    朱亚东.烧结固体燃料粒度对烧结矿质量的影响[J].金属世界,2020(3):27-28,32.
    [11]
    蒋大均.燃料结构对烧结性能及综合效果的影响[J].钢铁,2020,55(2):31-41.
    [12]
    阙志刚,吴胜利,艾仙斌.基于优化粗粒级固体燃料赋存形态的铁矿烧结过程NOx减排[J].工程科学学报,2020,42(2):163-171.
    [13]
    蒋大军,何木光,宋剑,等.燃料粒度对烧结性能影响的试验研究[J].钢铁研究,2016,44(4):1-7.
    [14]
    KANG Y, LIU C, ZHANG Y Z, et al. Flue gas circulating sintering based on biomass fuel on reduction of NOx and SO2 emission[J]. ISIJ International, 2020, 60(8):1633-1640.
    [15]
    袁亚强,何志军,韩啸,等.准颗粒中烧结用燃料燃烧特性[J].钢铁研究学报,2020,32(5):386-392.
    [16]
    MO C L, TEO C S, HAMILTON I, et al. Admixing hydrocarbons in raw mix to reduce NOx emission in iron ore sintering process[J]. ISIJ International, 1997, 37(4):350-357.
    [17]
    刘桐,张巧玉,盛建华,等.燃料粒度结构变化对烧结生产的影响[J].烧结球团,2020,45(3):17-21.
    [18]
    徐海芳.烧结矿生产[M].北京:化学工业出版社,2013.
    [19]
    易正明,覃佳卓,姜志伟,等.MgO对高碱度高铝烧结矿的影响[J].钢铁,2021,56(2):50-56.
    [20]
    马鹏楠,程明,周明熙,等.铁矿石烧结过程中不同类型准颗粒的燃烧特性[J].工程科学学报,2019,41(3):41-49.
    [21]
    刘燊辉,白凯凯,倪桂虎,等.燃料粒度对铁矿烧结的影响研究[J].烧结球团,2019,44(6):17-22.
    [22]
    刘东辉,李俊华,彭悦,等.工艺参数对烧结燃料NOx排放浓度的影响[J].钢铁钒钛,2020,41(1):70-74.
    [23]
    WATERS A G, LITSTER J D, NICOL S K. A mathematical model for the prediction of granule size distribution for multicomponent sinter feed[J]. ISIJ International, 2007, 29(4):274-283.
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