首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Mathematical modeling of the reaction in an iron ore pellet using a mixture of hydrogen,water vapor,carbon monoxide and carbon dioxide:an isothermal study
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Mathematical modeling of the reaction in an iron ore pellet using a mixture of hydrogen,water vapor,carbon monoxide and carbon dioxide:an isothermal study

机译:使用氢气,水蒸气,一氧化碳和二氧化碳的混合物对铁矿石球团中的反应进行数学建模:等温研究

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摘要

A mathematical time-dependent and isothermal model based on the grain model has been developed to simulate the kinetic and thermal behaviors of a porous iron oxide pellet undergoing chemical reactions with a mixture of hydrogen,carbon monoxide,carbon dioxide and water vapor.Its novelty consists in fact that it can deal with a multi-species reducing gas and oxide pellet.In spite of previous models in which the pure reductant was applied as reducing gas,this model can indicate an actual view of pellet reduction including the effects of reducing gas utility and reducing gas ratio.A finite volume fully implicit technique was applied for solving the governing equations.The model has been validated by comparing with experimental results from the literature.Finally,the effects of reducing gas parameters including gas ratio,gas utility,temperature,and pellet characteristics such as diameter,porosity and tortuosity factor on the rate of reduction have been investigated.
机译:建立了基于颗粒模型的时变等温数学模型,以模拟多孔氧化铁颗粒与氢,一氧化碳,二氧化碳和水蒸气的混合物进行化学反应的动力学和热行为。尽管它以前可以使用纯还原剂作为还原气体,但该模型可以显示出实际的颗粒还原观点,包括还原气体效用的效果。应用有限体积全隐式技术求解控制方程。通过与文献实验结果比较,验证了模型的有效性。最后,提出了降低气体参数的方法,包括气体比,燃气利用率,温度,研究了球团矿的粒径,孔隙率和曲折度等特征对还原速率的影响。

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