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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Characterization of microstructure and strength of coke particles and their dependence on coal properties
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Characterization of microstructure and strength of coke particles and their dependence on coal properties

机译:焦炭微观结构和强度的表征及其对煤炭性能的依赖性

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Microstructural features of coke particles are crucial for determining the performance of cokes in ironmaking blast furnaces. An analytical study was carried out to examine coke microstructure using image analysis. The microstructure parameters were correlated to the tensile strength of cokes. Coke properties were related to coal fluidity data based on Gieseler Plastometer measurements and other coal properties including quantitative mineralogy of coals using SIROQUANT analysis. Based on the microstructural data, a new modified microstructural parameter (S+) is proposed to characterize the heterogeneous nature of the physical structure of coke particles. The modified parameter was shown to have a good correlation with the tensile strength of coke as well as with the plastic range of the parent coals. Coal rank was shown to have a strong influence on the thermo-plasticity, with the results showing that there is an increase in both the maximum fluidity and plastic range of coals with increasing volatile matters of coal. The study highlighted the significance of coal mineral chemistry on coke particle characteristics from the observation that kaolinite-rich coals displayed a better correlation with the proposed modified parameter as well as the coke strength under the tested conditions. Stamp charging is also shown to have a positive impact on the microstructure as well as mechanical strength of cokes. This study has implications for the optimisation of the impact of coal chemistry and process conditions on coke quality. (C) 2017 Elsevier B.V. All rights reserved.
机译:焦炭颗粒的微观结构特征对于确定在炼铁炉中焦炭的性能至关重要。进行了使用图像分析检查焦质组织的分析研究。微观结构参数与焦炭的拉伸强度相关。焦炭性质与基于Gieseler Plastometer测量和其他煤层的煤流动性数据有关,包括使用Siroquant分析的煤的定量矿物学。基于微观结构数据,提出了一种新的改进的微结构参数(S +)来表征焦炭颗粒物理结构的异质性质。显示改性参数与焦炭的拉伸强度以及母体煤的塑料范围具有良好的相关性。煤炭等级显示对热塑性的强烈影响,结果表明,煤的最大流动性和塑料范围的增加随着较大的煤炭而增加。该研究强调了煤矿化学对焦炭颗粒特征的意义,观察到高岭石煤与所提出的改性参数显示更好的相关性以及测试条件下的焦炭强度。邮票充电也显示对微观结构的积极影响以及焦炭的机械强度。本研究对优化煤化学和工艺条件对焦质的影响有影响。 (c)2017 Elsevier B.v.保留所有权利。

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