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一种从高炉粉尘制备碳化铁和碳精矿的新技术。

A Novel Technique for the Preparation of Iron Carbide and Carbon Concentrate from Blast Furnace Dust.

作者信息

Chen Dong, Guo Hongwei, Li Peng, Wu Feibao, Lv Yanan, Yan Bingji, Zhao Wei, Su Yifan

机构信息

School of Iron and Steel, Soochow University, Suzhou 215131, China.

Department of Mechanical and Electrical Engineering, Suzhou Institute of Industrial Technology, Suzhou 215104, China.

出版信息

Materials (Basel). 2022 Nov 20;15(22):8241. doi: 10.3390/ma15228241.

Abstract

Blast furnace (BF) dust is a typical refractory iron resource. A novel technology-based utilization of BF dust as iron carbide and carbon concentrate by applying carburization roasting followed by magnetic separation and acid leaching is proposed. Under optimized conditions, an electric arc furnace (EAF) burden assaying 80.79% Fe and 7.63% C with a corresponding iron recovery rate of 87.26% and a carbon concentrate assaying 67.06% C with a corresponding carbon recovery rate of 81.23% were prepared. Furthermore, the carburization behavior and separation mechanism were revealed using X-ray powder diffraction, scanning electron microscopy, and optical microscopy. The results show that the separation efficiency of iron carbide, gangue, and carbon is very low. NaSO is a highly effective additive to strengthen the separation efficiency as it can enhance the carburization index, enlarge the iron carbide particle size, improve the embed embedded relationship of iron carbide and gangue, and promote the gangue leaching efficiency. The study demonstrates that preparation of iron carbide and carbon concentrate from BF dust using the proposed technology is a feasible method.

摘要

高炉(BF)粉尘是一种典型的难处理铁资源。提出了一种基于新技术的利用高炉粉尘通过渗碳焙烧、磁选和酸浸制备碳化铁和碳精矿的方法。在优化条件下,制备了铁含量为80.79%、碳含量为7.63%的电弧炉(EAF)炉料,铁回收率为87.26%,以及碳含量为67.06%的碳精矿,碳回收率为81.23%。此外,利用X射线粉末衍射、扫描电子显微镜和光学显微镜揭示了渗碳行为和分离机理。结果表明,碳化铁、脉石和碳的分离效率非常低。NaSO是一种高效添加剂,可提高分离效率,因为它可以提高渗碳指数,增大碳化铁颗粒尺寸,改善碳化铁与脉石的镶嵌关系,并提高脉石浸出效率。研究表明,采用所提出的技术从高炉粉尘制备碳化铁和碳精矿是一种可行的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0254/9699354/0ae67ce15fbd/materials-15-08241-g001.jpg

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