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Effect of Changes in Mechanical Properties of Coke Matrix Caused by CO2 or H2O Gasification Reaction on the Strength of Lump Coke

机译:CO 2 2 2 2 o气化反应引起的焦化基质力学性能变化的影响块焦强度

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In this study, we evaluated the effect of the CO_(2) or H_(2)O gasification reaction on the mechanical property of the coke matrix by measuring the elastic modulus of the coke matrix before and after the gasification reaction. We also investigated the effect of the distribution of the elastic modulus in the coke matrix on the strength of the lump coke by conducting the fracture analysis for the coke model with porosity of 0–0.4 in which the distribution of the elastic modulus obtained by the experiment was reflected. The nanoindentation measurements of the elastic modulus of the coke matrix before and after the gasification reaction implied that the distribution of the elastic modulus in the coke matrix differs depending on the gasification agent. In the case of the CO_(2) gasification reaction, both the coke matrices with high and low elastic moduli were consumed by the gasification. On the other hand, in the case of the H_(2)O gasification reaction, only the coke with an elastic modulus of over 30 GPa before the reaction was consumed by the gasification reaction. Also, the numerical results showed that the distribution of the elastic modulus in the coke matrix affects the strength of the coke model with low porosity whereas the one did not affect that with high porosity.
机译:在该研究中,我们通过测量气化反应前后焦质基质的弹性模量来评估CO_(2)或H_(2)o气化反应对焦矩阵的力学性质的影响。我们还研究了通过对0-0.4的孔隙率进行焦炭模型进行焦炭分析来调查焦炭基质中的弹性模量对块焦强度的影响。通过实验获得的弹性模量的分布反映了。气化反应前后焦质基质的弹性模量的纳米indentation测量暗示焦质基质中弹性模量的分布取决于气化剂。在CO_(2)气化反应的情况下,气化消耗具有高和低弹性模量的焦炭矩阵。另一方面,在H_(2)o气化反应的情况下,在通过气化反应消耗反应之前,仅在反应消耗之前仅具有超过30GPa的弹性模量的焦炭。而且,数值结果表明,焦化矩阵中的弹性模量的分布影响了低孔隙率的焦炭模型的强度,而是用高孔隙率不影响其的焦炭模型。

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