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Numerical Analysis of Effect of Water Gas Shift Reaction on Flash Reduction Behavior of Hematite with Syngas

机译:水煤气变换反应对赤铁矿合成气闪蒸还原行为影响的数值分析

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The water gas shift reaction (WGSR) is the most important side reaction in direct iron reduction processes in syngas. In this study, an Euler-Lagrange model has been developed to simulate the flash reduction behavior of hematite with syngas in a drop tube reactor. Based on model validation, the effect of WGSR on the flash reduction is investigated by comparing results predicted by models with and without WGSR. Results indicate that the WGSR has a minor effect in CO–H_(2) system while a major effect in H_(2)–CO–CO_(2)–H_(2)O system. The difference of gas composition caused by WGSR leads to a difference of gas reduction capacity, which results in different reduction behavior. The relationship between the composition of gas mixture and the equilibrium constant of WGSR determines the direction of WGSR and thus determines the positive or negative effect of WGSR on the reduction process. The higher oxygen partial pressure and temperature, the stronger influence of WGSR can be considered to have.
机译:在合成气中直接铁还原过程中,水煤气变换反应(WGSR)是最重要的副反应。在这项研究中,已经开发了一个欧拉-拉格朗日模型来模拟赤铁矿与合成气在滴管反应器中的闪蒸减少行为。基于模型验证,通过比较使用和不使用WGSR的模型预测的结果,研究了WGSR对减少毛刺的影响。结果表明,WGSR在CO–H_(2)系统中影响较小,而在H_(2)–CO–CO_(2)–H_(2)O系统中影响较大。 WGSR引起的气体成分的差异导致气体还原能力的差异,从而导致不同的还原行为。气体混合物的成分与WGSR平衡常数之间的关系决定了WGSR的方向,从而确定了WGSR对还原过程的正向或负向影响。氧分压和温度越高,WGSR的影响就越强。

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