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含碳球團直接還原過程的數值模擬

Numerical Simulation of Direct Reduction Process of Carbon-Bearing Pellets

  • 摘要: 基于質量守恒方程、能量守恒方程及化學反應速度式,建立了描述含碳球團直接還原過程的數學模型,用此模型所做的數值計算結果與試驗結果基本吻合。數值模擬結果表明:影響含碳球團還原速率的最重要因素是爐溫,含碳球團應在盡可能高的爐溫下焙燒;雖然大球的還原速度開始階段較慢,但焙燒時間足夠長時,不論球大小,都可達到高金屬化率;只有配碳量足夠時才能獲得較快的還原速率和較高的還原度。

     

    Abstract: Based on equations of mass conservation, energy conservation and chemical reaction rates, a mathematical model of direct reduction process of carbon-bearing pellets was developed. The calculated results of mathematical model agree with the experimental results. Numerical simulation results are shown as follows:Furnace temperature is the most important factor affecting on the reduction rate of pellets, so that it is necessary to heat carbon-bearing pellets under high furnace temperature. Either for larger pellets or for smaller pellets high metallization can be obtained when the heating time is long enough, although the reduction rate of larger pellets is lower than of smaller pellets during the beginning period. For realizing higher metallization and faster reduction rate, the pellets should contain sufficient carbon.

     

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