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Appropriate Technology Parameters of Iron Ore Sintering Process with Flue Gas Recirculation

机译:烟气再循环铁矿石烧结工艺的适当技术参数

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Flue gas recirculation (FGR) is being introduced into the sintering process with the aim of reducing the emissions of pollutants. The influences of FRG ratio and circulating flue gas properties such as components, contents and temperature on sintering process are researched. The results show that a cleaning production with good sinter indexes can be obtained in the case of FGR ratio of 30–40%. As the circulating flue gas passes through the sintering bed, the combustion speed of fuel is reduced with O_(2) content decreasing; CO in circulating flue gas can be reused due to its post-combustion in the sinter zone; the combustion speed and efficiency of fuel are reduced if CO_(2) content is too high; the velocity of gas-solid heat transfer is increased while the condensation at over-wet zone is intensified with the increase of H_(2)O(g) content; and the thermal state of sintering bed is improved if the temperature of circulating flue gas is not too high. The sinter indices can be maintained in case of FGR with 15 vol%O_(2), 6 vol%CO_(2), less than 8 vol%H_(2)O(g) and 150–250°C of inlet gas.
机译:烟气再循环(FGR)被引入烧结过程中,目的是减少污染物的排放。研究了FRG比和循环烟气成分,含量和温度等对烧结过程的影响。结果表明,当FGR比率为30–40%时,可以获得良好的烧结指数的清洁生产。随着循环烟气通过烧结床,燃料的燃烧速度随着O_(2)含量的降低而降低;循环烟道气中的一氧化碳由于在烧结区内的后燃烧而可以再利用。如果CO_(2)含量太高,则会降低燃料的燃烧速度和效率;随着H_(2)O(g)含量的增加,气固传热速度加快,过湿区的凝结加剧。如果循环烟气的温度不太高,则会改善烧结床的热状态。在FGR为15vol%O_(2),6vol%CO_(2),小于8vol%H_(2)O(g)和150-250°C进气的情况下,可以保持烧结指数。

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