锰矿混合烧结工艺及其对烧结矿性能的影响

Yuxian Han, Haijuan Wang, Guohong Deng, Longxing Wang, Zhanbing Yang
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引用次数: 0

摘要

在埋弧炉(SAF)中直接使用锰粉会导致炉料渗透率低,本质上增加了焦炭和电能的消耗。在工业上,为了更好地利用锰粉,节约能源和成本,锰矿石的烧结工艺尤为重要。本研究选取了3种不同的Mn矿石,研究了矿石比例和碱度对烧结矿性能的影响。进行了小规模和中试烧结试验。对烧结矿在室温下的物理性能进行了测试,并用x射线衍射仪(XRD)和光学显微镜对烧结矿进行了检测,研究了烧结矿的矿物相组成和显微结构。结果表明:在低碱度范围内,碱度的增加会使烧结矿的强度下降,孔隙率降低;在目前的实验条件下,碱度为0.7的方案1和方案4是较好的工艺参数,并将其应用于烧结罐的中试实验。中试实验结果表明,烧结矿的强度随着碳添加量的增加而增加,10%的碳添加量是目前研究的最佳碳含量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mix-Sintering Process of Manganese Ores and Its Effects on the Properties of Sinters
Direct use of manganese fines in the submerged arc furnace (SAF) will lead to the low permeability of the charge, essentially increase the consumption of coke and electric energy. In order to make better use of manganese fines as well as to save energy and cost in the industry, the sintering process of manganese ore is particularly important. In current study, three different Mn ores are selected to study the effect of ore proportion and basicity on the properties of sinters. Both small scale and pilot scale sintering experiments were carried out. Physical properties of the sinters at room temperature were examined and the sinters were also detected by X-ray diffraction (XRD) and optical microscope to investigate the mineral phase compositions and microstructures afterwards. The results showed that in the range of low basicity, the increase of basicity will make the strength of sinter deteriorate and the porosity decrease. Under the current experimental conditions, scheme 1 and scheme 4 with basicity of 0.7 are the better process parameters, which are applied for the pilot experiment in the sintering pot. And the pilot experimental results shown that the strength of sinter increases with the increase of carbon addition and 10% carbon addition is the optimal carbon content in the current study.
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