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The use of iron ore fines in cold-bonded self-reducing composite pellets

机译:在冷粘合自降复合颗粒中使用铁矿粉

摘要

The feasibility of producing Direct Reduced Iron from cold-bonded self-reducing composite pellets made from Anglo American Kumba Iron Ore Sishen upgraded slimes was considered on laboratory scale. Composite pellets were made by mixing Sishen upgraded slimes, coke and different binders using a pelletizing disc by addition of moisture. Binders investigated were dextrin, carboxymethylcellulose, calcium-lignosulphonate and combination of dextrin and bentonite. Dry strengths in excess of 300 N /pellet were attained by curing the pellets under ambient conditions. Dry strength of composite pellets increased with increase in binder quantity and decreased with increase in coke quantity. The composite pellets reduced within 20 minutes to degrees of metallisation in excess of 90 % at 1100 oC, with decrepitation indices significantly below 5 %. The degree of metallisation of composite pellets increased with an increase in reduction temperature (from 1000 to 1100 oC), reduction time (20 vs. 40 minutes) and coke quantity (15 vs. 20 wt. %). Carboxymethylcellulose was identified as the most economical and suitable binder for the Sishen upgraded slimes.
机译:在实验室规模上,考虑了由英美资源集团的昆巴铁矿石Sishen升级粘泥制成的冷粘结自还原复合颗粒生产直接还原铁的可行性。复合粒料是通过使用造粒盘通过添加水分将Sishen改良的煤泥,焦炭和不同的粘合剂混合而制成的。研究的粘合剂是糊精,羧甲基纤维素,木质素磺酸钙以及糊精和膨润土的组合。通过在环境条件下固化粒料,获得超过300 N /粒的干强度。复合颗粒的干强度随粘结剂量的增加而增加,随焦炭量的增加而下降。在1100 oC下,复合材料球团在20分钟内还原到金属化程度超过90%,并且爆破指数显着低于5%。随着还原温度(从1000到1100 oC),还原时间(20对40分钟)和焦炭量(15对20 wt。%)的增加,复合颗粒的金属化程度增加。羧甲基纤维素被认为是Sishen升级粘液最经济,最合适的粘合剂。

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    Nikai Innocent;

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  • 年度 2016
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