首页> 外文期刊>International Journal of Minerals,Metallurgy and Materials >Development of carbon composite iron ore micropellets by using the microfines of iron ore and carbon-bearing materials in iron making
【24h】

Development of carbon composite iron ore micropellets by using the microfines of iron ore and carbon-bearing materials in iron making

机译:使用铁矿石和铁制造中的铁矿石和碳材料的微细纤维开发碳复合铁矿石微孔

获取原文
获取原文并翻译 | 示例
       

摘要

Iron ore microfines and concentrate have very limited uses in sintering processes. They are used in pelletization; however, this process is cost intensive. Furthermore, the microfines of non-coking coal and other carbon-bearing materials, e.g., blast-furnace flue dust (BFD) and coke fines, are not used extensively in the metallurgical industry because of operational difficulties and handling problems. In the present work, to utilize these microfines, coal composite iron oxide micropellets (2-6 mm in size) were produced through an innovative technique in which lime and molasses were used as binding materials in the micropellets. The micropellets were subsequently treated with CO2 or the industrial waste gas to induce the chemical bond formation. The results show that, at a very high carbon level of 22wt% (38wt% coal), the cold crushing strength and abrasion index of the micropellets are 2.5-3 kg/cm(2) and 5wt%-9wt%, respectively; these values indicate that the pellets are suitable for cold handling. The developed micropellets have strong potential as a heat source in smelting reduction in iron making and sintering to reduce coke breeze. The micropellets produced with BFD and coke fines (8wt%-12wt%) were used in iron ore sintering and were observed to reduce the coke breeze consumption by 3%-4%. The quality of the produced sinter was at par with that of the conventional blast-furnace sinter.
机译:铁矿石微纤维和浓缩物在烧结过程中使用非常有限。它们用于造粒;但是,这个过程是成本密集的。此外,由于运营困难和处理问题,非焦煤和其他碳含量材料的微细纤维,例如炭燃料灰尘(例如,Blast-Furnace烟尘(BFD)和焦炭含量,在冶金行业中并非广泛使用。在本工作中,利用这些微纤维,通过一种创新的技术制造煤复合氧化铁微壳(尺寸为2-6mm),其中使用石灰和糖蜜作为微孔中的结合材料。随后用CO 2或工业废气处理微孔,以诱导化学键形成。结果表明,在22wt%(38wt%煤)的非常高的碳水平下,微孔的冷碎强度和磨损指数分别为2.5-3kg / cm(2)和5wt%-9wt%;这些值表明颗粒适用于冷处理。开发的微壳具有强大的潜在作为热源,即铁制造和烧结减少以减少焦炭微风。用BFD和焦炭产生的微孔(8wt%-12wt%)用于铁矿石烧结中,并观察到将焦炭微风消耗降低3%-4%。产生的烧结炉的质量与传统的高炉烧结液相同。

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