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首页> 外文期刊>Chemical Engineering Science >DEACTIVATION MODEL FOR TEXTURAL EFFECTS ON KINETICS OF GAS-SOLID NONCATALYTIC REACTIONS CHAR GASIFICATION WITH CO2
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DEACTIVATION MODEL FOR TEXTURAL EFFECTS ON KINETICS OF GAS-SOLID NONCATALYTIC REACTIONS CHAR GASIFICATION WITH CO2

机译:气固正催化反应炭焦化气化动力学的质构失活模型

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Variation of the reactivity of a solid reactant due to changes in number of working active sites and pore structure was represented by a deactivation model. The model was shown to give good aggreement with the experimental data obtained for the gasification of chars of different lignites. All the kinetic data obtained at different temperatures (800 degrees-950 degrees C) and also for different types of coals were represented with a single generalized relation. The increase of the surface area of the char at the initial stages of gasification did not cause a corresponding increase in the reaction rate. Results indicated that the surface was composed of highly reactive and less reactive sites. It was shown that the reactivity of unit surface area of the solid reactant first showed a rapid decrease due to decrease of number of more reactive sites at the initial stages and then reached to about one fourth of its initial value. [References: 16]
机译:失活模型表示由于工作活性位点数量和孔结构的变化而引起的固体反应物反应性的变化。结果表明,该模型与气化不同褐煤所获得的实验数据具有很好的一致性。在一个不同的温度(800摄氏度至950摄氏度)以及不同类型的煤中获得的所有动力学数据都用一个广义的关系表示。在气化初始阶段,焦炭表面积的增加并未引起反应速率的相应增加。结果表明,该表面由高反应性和低反应性部位组成。结果表明,固体反应物单位表面积的反应性首先由于在初始阶段更多反应位点数量的减少而迅速降低,然后达到其初始值的约四分之一。 [参考:16]

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