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Mathematical Modeling and Exergy Analysis of Blast Furnace Operation With Natural Gas Injection

机译:高炉喷吹天然气的数学建模与火用分析

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Blast furnace operation with natural gas (NG) injection is one of the effective measures to save energy, reduce CO_2 emission, and decrease environmental load for iron and steel industry. Numerical simulations on blast furnace operation with NG injection through tuyeres are performed in this paper by raceway mathematical model, multi-fluid blast furnace model, and exergy analytical model. With increasing NG injection volume, the simulation results are shown as follows: (1) the theoretical flame temperature and bosh gas volume can be constant by decreasing blast volume and increasing oxygen enrichment. (2) The utilization rate of CO enhances while that of H_2 decreases. The proportion of H_2 in indirect reduction tends to be increased, which accelerates the reduction of burdens. The pressure drop shows that the permeability of blast furnace gets better. The blast furnace productivity is increased from 2.07 to 3.081- m~(-3)-day~(_1). The silicon content in hot metal is decreased from 0.26% to 0.05%. When BF operation with 125.4 kg tHM~(-1) NG injection, coke rate and carbon emission rate are decreased by 27.2% and 32.2%, respectively. (3) The thermodynamic perfection degree is increased from 88.40% to 90.50%, the exergy efficiency is decreased from 51.94% to 49.02% and the chemical exergy of top gas is increased from 4.69 to 6.22 GJ-tHM~(-1). It is important to strengthen the recycling of top gas.
机译:高炉喷吹天然气(NG)是钢铁行业节能,减少CO_2排放,降低环境负荷的有效措施之一。本文通过滚道数学模型,多流体高炉模型和火用分析模型,对通过风口注入天然气的高炉运行进行了数值模拟。随着天然气注入量的增加,模拟结果如下:(1)通过减少鼓风量和增加氧气富集,理论火焰温度和波什气体量可以保持恒定。 (2)CO利用率提高,而H_2利用率降低。 H_2在间接还原中的比例趋于增加,从而加速了负担的减轻。压降表明高炉的渗透性更好。高炉生产率从2.07增加到3.081- m〜(-3)-day〜(_1)。铁水中的硅含量从0.26%降低到0.05%。高炉喷吹125.4 kg tHM〜(-1)NG后,焦炭率和碳排放率分别降低了27.2%和32.2%。 (3)热力学完善度从88.40%提高到90.50%,火用效率从51.94%降低到49.02%,炉顶气化学火用从4.69 GJ-tHM〜(-1)增加。加强炉顶煤气的回收很重要。

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