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鐵基載氧體化學鏈燃燒還原過程的數學模型

Mathematical model of the reduction process of iron-based oxygen carriers in chemical looping combustion

  • 摘要: 為了研究鐵基載氧體的反應特性,基于未反應縮核模型建立了移動床內鐵基載氧體顆粒還原過程的一維數學模型.模型中考慮了鐵基載氧體與H2、CO的多級還原反應,氣體組分體積分數模擬值與實驗值的平均誤差為6.9%,總還原度的平均誤差為11.2%.研究表明:鐵基載氧體在移動床反應器內最終還原度約為23%,主要進行的反應是第一級和第二級還原反應,第一級和第二級還原度分別為95%和40%;提高反應器內溫度、選擇合適的載氧體粒徑及氣固比有助于增加反應的深度,提高合成氣及鐵基載氧體的利用率,載氧體粒徑建議取1~2 mm.

     

    Abstract: To study the reaction characteristics of iron-based oxygen carriers, a one-dimensional mathematical model was developed for the reduction process of iron-based oxygen carriers in moving beds based on the unreacted shrinking core model. In this model, the multi-stage reduction between iron-based oxygen carriers and H2/CO was considered. The average error of gas species concentration between the simulative and experimental values is 6.92%, and the average error of reduction is 11.16%. The results show that the final reduction rate of iron-based oxygen carriers is about 23%, with the main reactions including the first-stage reduction and the second-stage one, whose reduction rate is 95% and 40%, respectively. A higher reaction temperature, suitable diameter of oxygen carrier particles and suitable gas-solid ratio are helpful to improve the depth of reaction and enhance the utilization efficiency of syngas and iron-based oxygen carriers. The recommended particle diameter is 1 to 2 mm.

     

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