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Effect of pore structure and matrix reactivity on coke reactivity and post-reaction strength

机译:孔结构和基质反应性对焦炭反应性和后反应性强度的影响

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Metallurgical coke accounts for a significant portion of the costs associated with blast furnace operations. The coke reactivity index (CRI) and coke strength after reaction (CSR), determined via the Nippon Steel Corporation test, are the most popular indexes for estimating the high-temperature properties of coke. Multiple factors affect the coke solution-loss reaction, and the CRI and CSR depend on the composition and structure of the coke. The pore structure is one of the most important factors affecting this reaction. The effect of the pore structure on the coke reactivity was determined by quantitatively evaluating the CRI and CSR of 10 types of coke. In each case, the corresponding structure was determined via image analysis. Furthermore, the initial reaction rate of the coke matrix was determined via thermogravimetric analysis of the fine grains. Mathematical models, quantitatively describing the CRI and CSR, were formulated via multiple linear regression, and the fit of the results to the experimental data was verified via the regression coefficient and a significance test. The models indicated that pores with sizes of 60-120 mm have a strong positive impact on CRI. In the case of invariant CRI, the high reactivity of the matrix has a positive impact on the post-reaction strength of the coke.
机译:冶金焦炭占与高炉操作相关的成本的重要部分。通过Nippon Steel Corporation试验确定反应(CSR)后的焦炭反应性指数(CRI)和焦强度是估算焦炭高温性质的最流行的指标。多种因素影响焦炭溶液损失反应,CRI和CSR取决于焦炭的组成和结构。孔隙结构是影响该反应的最重要因素之一。通过定量评价10种焦炭的CRI和CSR来确定孔结构对焦炭反应性的影响。在每种情况下,通过图像分析确定相应的结构。此外,通过热晶粒的热重分析测定焦化基质的初始反应速率。通过多元线性回归配制数学模型,定量地描述CRI和CSR,并通过回归系数和显着性测试验证了结果对实验数据的拟合。该模型表示,尺寸为60-120mm的孔对CRI具有强烈的积极影响。在不变的CRI的情况下,基质的高反应性对焦炭后反应强度产生正影响。

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