首页> 外文会议>TMS annual meeting exhibition;International symposium on high-temperature metallurgical processing >Effects of Hydrogen-Enriched Reduction on Metallurgical Properties of Iron-Bearing Burdens Under BF Operation with COG Injection
【24h】

Effects of Hydrogen-Enriched Reduction on Metallurgical Properties of Iron-Bearing Burdens Under BF Operation with COG Injection

机译:COG注入高炉操作下富氢还原对含铁负荷冶金性能的影响。

获取原文

摘要

Coke oven gas (COG) injection is considered as one of feasible measures to reduce carbon emission of BF. The effects of COG injection on the reduction of iron-bearing burdens were numerically simulated by means of multi-fluid BF model, which revealed that with increasing COG injection rate, solid temperature gradually decrease, in-furnace H_2 concentration increases, the reduction of magnetite and wustite by H_2 is evidently accelerated, the reaction rate of wustite by H_2 reduction is enhanced and the reduction degree of mixed burdens is strengthened. Under this hydrogen-enriched condition, metallurgical properties of iron-bearing burdens were experimentally investigated. The GB/T13242-91 test results showed that with increasing COG injection rate, the reduction swelling index of oxidized pellets decreases while the reduction ratio of pellets increases. The softening-melting tests suggested that softening interval of mixed burdens increases from 163.6 to 228.3 ℃ while melting interval decreases from 147.3 to 92.4 ℃. The cohesive zone moves downwards and becomes narrow. The permeability of mixed burdens is improved. In terms of metallurgical properties of iron-bearing burdens, COG injection benefits to improve BF performance.
机译:焦炉煤气(COG)的注入被认为是减少高炉碳排放的可行措施之一。通过多流体高炉模型数值模拟了COG注入对减轻铁负荷的影响,结果表明,随着COG注入速率的增加,固体温度逐渐降低,炉内H_2浓度增加,磁铁矿减少。明显地促进了由H_2引起的索氏体,提高了由H_2还原引起的索氏体的反应速率,增强了混合负荷的还原度。在这种富氢条件下,实验研究了含铁物料的冶金性能。 GB / T13242-91试验结果表明,随着COG注入速率的增加,氧化球团的还原溶胀指数减小,而球团的还原率增大。软化熔融试验表明,混合物料的软化间隔从163.6升高到228.3℃,熔融间隔从147.3降低到92.4℃。内聚区向下移动并变窄。混合物料的渗透性得到改善。就含铁物料的冶金性能而言,COG注入有利于提高高炉性能。

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