首页> 外文会议>Iron Ore Conference >Iron Ore Geometallurgy - Examining the Influence of Ore Composition on Sinter Phase Mineralogy and Sinter Strength
【24h】

Iron Ore Geometallurgy - Examining the Influence of Ore Composition on Sinter Phase Mineralogy and Sinter Strength

机译:铁矿石几何冶金 - 检查矿石组合物对烧结相矿物学和烧结强度的影响

获取原文

摘要

The properties of iron ore sinter - commonly defined by measures of tumble strength, reduction degradation and reducibility - have a major impact on blast furnace performance. These properties are largely influenced by raw material properties, in particular the bulk ore composition. Despite this importance, there is a lack of quantitative data on the impact of ore chemical composition on iron ore sintering. This is surprising since the levels of Fe, SiO_2, Al_2O_3, P, MgO and other elements, together with the nature of the minerals in the fine ore, play a major role in determining the abundance and type of high-temperature bonding phases that form during sintering. It is the abundance and nature of the high-temperature bonding phase (s) that directly influences sinter quality. This study combines in situ diffraction experiments in model sinter systems with laboratory-based compact sinter tests using natural ores to examine the links between iron ore composition and sintering temperature and their effects on standard metallurgical sinter quality test methods. Results help to establish the critical compositional and thermal parameters that control the bonding phase chemistry, which in turn influences the physical characteristics of the sinter matrix. This information should enable operators to predict optimum sinter operating conditions based on the initial chemistry and mineralogy of the iron ore fines and recognise the chemical modifications to the original iron ore fines required to produce high-quality iron ore sinter.
机译:铁矿石烧结性的性质 - 通常通过倾斜强度,减少降低和再减排的测量来定义 - 对高炉性能产生重大影响。这些性质主要受原料特性的影响,特别是散装矿石组合物。尽管这一重要性,但缺乏有关矿石化学成分对铁矿石烧结的影响的定量数据。由于Fe,SiO_2,Al_2O_3,P,MgO和其他元素的水平与细矿石中的矿物质的性质一起起到令人惊讶的是,在确定形成的高温键合阶段的丰度和类型时起主要作用在烧结期间。它是直接影响烧结品质的高温粘合阶段的丰富和性质。该研究与使用天然矿石的实验室型紧凑型烧结系统在模型烧结体系中的原位衍射实验结合,以检查铁矿石组合物和烧结温度之间的链接及其对标准冶金烧结质量试验方法的影响。结果有助于建立控制粘合相化学的临界成分和热参数,这反过来影响烧结基质的物理特性。该信息应使运营商能够根据铁矿石粉末的初始化学和矿物质来预测最佳的烧结操作条件,并识别生产高质量铁矿石烧结所需的原铁矿料的化学修饰。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号