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Investigation on Gasification Reaction Behavior and Kinetic Analysis of Iron Coke Hot Briquette under Isothermal Conditions

机译:等温条件下铁焦热煤层气化反应行为及动力学分析研究

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摘要

Gasification reaction behavior of iron coke as well as kinetic parameters is extremely important for its quality evaluation and practical application in an actual blast furnace. However, there are few researches on the gasification behavior of iron coke, especially for iron coke hot briquette (ICHB) prepared by hot briquetting process. In this paper, the gasification reaction behavior of ICHB is experimentally investigated under isothermal conditions. Meanwhile, the kinetic analysis for the gasification process of ICHB and the related mechanism are carried out. The results demonstrate that the increase of the reaction temperature causes the significant rise of the carbon conversion rate and the reaction rate of ICHB, while the post-reaction strength is evidently decreased. The size degradation of ICHB after reaction is increasingly serious as the reaction temperature goes up, and more pores as well as cracks are generated inside the gasified ICHB. During the gasification, the reduction of iron oxide, the oxidization of metal iron, and the generation reaction of fayalite are concomitantly occurred. The most probable mechanism function is confirmed. Based on this model, the activation energy and pre-exponential factor are conducted, which are 144.77 kJ mol(-1) and 999.37 min(-1), respectively.
机译:铁焦的气化反应行为以及动力学参数对于其在实际高炉中的质量评估和实际应用非常重要。然而,少数关于铁焦的气化行为的研究,特别是对于通过热压块工艺制备的铁焦热团体(ICHB)。本文在等温条件下实验研究了ICHB的气化反应行为。同时,进行了ICHB的气化过程的动力学分析和相关机制。结果表明,反应温度的增加导致碳转化率的显着上升和ICHB的反应速率,而后反应性强度明显降低。当反应温度上升时,反应后,反应后的ICHB的尺寸越来越严重,并且在气化ICHB中产生更多的孔以及裂缝。在气化过程中,伴随着减少氧化铁,金属铁的氧化和脱铝的产生反应。确认最可能的机制功能。基于该模型,进行激活能量和预指数因子,分别为144.77 kJ摩尔(-1)和999.37分钟(-1)。

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