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Research on the Post-reaction Strength of Iron Coke Hot Briquette Under Different Conditions

机译:不同条件下铁焦热煤层后反应强度的研究

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摘要

The utilization of iron coke hot briquette (ICHB) prepared by carbonizing iron ore–coal composite agglomerate made from hot-pressing the mixture of iron ore and blended coal has been considered to be an effective countermeasure to improve blast furnace ironmaking reaction efficiency and to reduce carbon emissions. The strength of ICHB after gasification reaction is overestimated by the Chinese National Standard (GB/T 4000/2008, equivalent to the Nippon Steel Corporation method) and should be evaluated by different methods. In this study, the post-reaction strength of ICHB with the addition of different ratios of iron ore under various conditions was experimentally investigated to illuminate the degradation mechanism of ICHB reacted with CO~(2). The results showed that, with increasing the iron ore addition ratio from 0% to 20%, the reactivity of ICHB reacted with CO~(2)at 1100°C for 2?h is remarkably increased, due to the catalytic effect of metallic iron in ICHB, while the post-reaction strength is distinctly decreased. Furthermore, stopping at the weight loss ratio of 20%, the strengths of ICHB after reaction at 1100°C under a CO~(2)atmosphere and a CO~(2)/CO=1/1 atmosphere are clearly reduced, from 89.74% to 75.93% and from 85.24% to 73.65%, respectively. Meanwhile, the post-reaction strength of ICHB under CO~(2)is greater than that obtained under CO~(2)/CO=1/1 atmosphere, since there is more time for the reaction gas to diffuse from the exterior to the interior of the ICHB under the latter condition. Additionally, the post-reaction strength of ICHB decreases with increasing weight loss ratio regardless of the reaction gas composition; however, it can be maintained at a high level.
机译:通过碳化铁矿石 - 煤复合凝聚制备的铁焦热团块(ICHB)的利用被认为是改善高炉炼铁反应效率和减少的有效对策。碳排放量。气化反应后ICHB的强度被中国国家标准(GB / T 4000/2008相当于Nippon Steel Corporation方法),并且应通过不同的方法进行评估。在该研究中,通过在各种条件下添加不同比例的ICHB的后反应强度进行了实验研究,以照亮与CO〜(2)反应的ICHB的降解机制。结果表明,随着金属铁的催化作用,随着0%至20%的铁矿矿加法比从0%〜20%增加,ICHB的反应性显着增加了2μl2ΩH在ICHB中,虽然反应后强度明显减少。此外,在CO〜(2)气氛中,在1100℃下反应后的重量损失比例为20%,CO〜(2)/ CO = 1/1大气中的反应后的ICHB的强度明显减少,从89.74 %〜75.93%,分别为85.24%至73.65%。同时,CO〜(2)下的ICHB的后反应强度大于CO〜(2)/ CO = 1/1 / 1型气氛中获得的,因为还有更多的时间促进反应气体从外部扩散到后者条件下的ICHB的内部。另外,无论反应气体组合物如何,ICHB的后反应强度随着减肥比的增加而降低;但是,它可以保持在高水平。

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