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首页> 外文期刊>Combustion Science and Technology >NUMERICAL SIMULATION OF CO AND NO EMISSIONS DURING CONVERTER OFF-GAS COMBUSTION IN THE COOLING STACK
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NUMERICAL SIMULATION OF CO AND NO EMISSIONS DURING CONVERTER OFF-GAS COMBUSTION IN THE COOLING STACK

机译:冷却堆中转化炉废气燃烧过程中一氧化碳和零排放的数值模拟

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摘要

Oxygen converter steelmaking produces a large amount of high temperature off-gas. During pre- and postcombustion of converter off-gas in the cooling stack, CO concentration at the outlet is always over emissions standards, and NO emission is still paid little attention. In the article, CO and NO emissions are investigated during converter off-gas combustion by computational fluid dynamics (CFD). The simulation results indicate that CO emission is above 0.5%-2%, and NO emission is up to 150 ppmv at the precombustion stage of off-gas during 7-15% of blowing oxygen time. The poor mixing of both off-gas and the air that is sucked in, and too high combustion temperature (above 2000° C) result in high CO emission. In order to increase combustion efficiency of off-gas and to reduce CO concentration, the air supply mode must be improved to effectively organize the mixing of off-gas and air in the cooling stack. The high combustion temperature of off-gas and the poor mixing of both off-gas and the air that is sucked in facilitate the formation of thermal-NO during the pre- and postcombustion of off-gas. In order to reduce NO emission, both the air stoichiometry and temperature profiles in the cooling stack must be controlled.
机译:氧气转炉炼钢会产生大量的高温废气。在冷却烟囱中的转炉废气燃烧之前和之后,出口处的CO浓度始终超过排放标准,而NO排放仍然很少受到关注。在本文中,通过计算流体动力学(CFD)研究了转炉废气燃烧过程中的CO和NO排放。模拟结果表明,在吹氧时间的7-15%时,在废气​​的预燃烧阶段,CO排放量高于0.5%-2%,NO排放量高达150 ppmv。废气和吸入的空气混合不良,并且燃烧温度过高(高于2000°C)会导致大量CO排放。为了提高废气的燃烧效率并降低CO浓度,必须改进空气供应方式,以有效地组织废气和空气在冷却烟囱中的混合。废气的高燃烧温度以及废气与被吸入的空气混合不良,会在废气的燃烧前和燃烧后形成热NO。为了减少NO排放,必须控制冷却烟囱中的空气化学计量和温度分布。

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