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鐵酸鎂生成反應非等溫動力學

Non-isothermal kinetics of the synthesis reaction of magnesium ferrite

  • 摘要: 為了研究鎂鐵質材料中粘結相鐵酸鎂的生成反應過程,使用輕燒鎂粉和分析純試劑Fe2O3粉混合料,在靜態空氣中分別以10,15,20 K·min-1的升溫速率進行了鐵酸鎂合成反應的DSC實驗研究,并用Kissinger、Flynn-Wall-Ozawa和Achar-Brindley-Sharp-Wendworth三種方法進行了反應動力學特征參數計算.研究結果顯示,鐵酸鎂生成機理滿足隨機形核與長大機理模型,反應的活化能介于626.83~652.60 kJ·mol-1之間.

     

    Abstract: Magnesium ferrite is a kind of main bonding phase in magnesia refractory materials. Using the powder mixture of active magnesia and chemical reagent Fe2O3 as starting raw materials, DSC experiments of the synthesis reaction of magnesium ferrite were conducted respectively at scanning rates of 10, 15, 20 K·min-1 in static air. The kinetic parameters of the synthesis reaction of magnesium ferrite were calculated by the Kissinger equation, the Flynn-Wall-Ozawa equation and the Achar-Brindley-Sharp-Wend-worth equation. The results show that the formation mechanism of magnesium ferrite obeys the random nucleation and rapid growth model, and the activation energy of the reaction is between 626.83 and 652.60 kJ·mol-1.

     

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