Interface wetting behavior between iron and coke during the carbon dissolution process in a blast furnace

被引:0
|
作者
Zhan W.-L. [1 ]
Zhu H.-B. [1 ]
He Z.-J. [1 ]
Sun C. [1 ]
Yu Y.-C. [2 ]
Pang Q.-H. [1 ]
Zhang J.-H. [1 ]
机构
[1] School of Materials and Metallurgy, University of Science and Technology Liaoning, Anshan
[2] Ansteel Engineering Technology Corporation Limited, Anshan
来源
He, Zhi-Jun (hzhj2002@126.com) | 2020年 / Science Press卷 / 42期
关键词
Carbon dissolution; Coke; Contact angle; Surface energy; Wetting behavior;
D O I
10.13374/j.issn2095-9389.2019.09.18.003
中图分类号
学科分类号
摘要
Good gas permeability is an essential factor for the smooth operation and high performance in the lower part of the blast furnace. Under the present low carbon blast furnace smelting conditions, the coke layer is thinner, and the proportion of the molten metal in the coke layer is significantly higher, resulting in a major reduction in gas permeability, which seriously affects blast furnace operations. Also, the lower thickness of the coke layer weakens the process of solid-liquid carbon dissolution when the molten iron passes through the coke layer, which reduces the carbon content of the molten iron and further deepens the erosion of the refractory by the unsaturated molten iron. The carbon dissolution in the molten iron in a blast furnace core was measured by a high-temperature vacuum wettability test tool that analyzed the interface wetting activity between Fe-C melts with specific carbon mass fraction (3.8%, 4.3%, 4.8%) and 99.9% of high temperatures graphite plates. Besides, the scanning electron microscope (SEM) and energy dispersive spectroscopy (EDS) were used to analyze the graphite substrate's carburizing morphology and carburizing distances. The results show that, with the increase of carbon content, the interface contact angle becomes bigger. The contact angle decreases with time, and eventually reaches a steady-state during the melting process, and the Fe-C melt with saturated carbon cannot be wet. The scanning electron microscopy analysis shows that a spherical cap-like depression is created by a cross-section of the Fe-C melt and the graphite substrate, and the radius and volume of the depression decrease with increasing carbon content. The study of the EDS scanning analysis shows that the amount of dissolved carbon atoms in the graphite substrate penetrates the Fe-C melt and decreases with increasing initial carbon concentration. The smaller the carburizing effect, the better the wetting is conducive to carbon mass transfer. It is found that by measuring carburizing of the carbon atoms in the graphite substrate into the Fe-C melt by calculating the surface energy reduces the surface energy between the two. Thus, the surface tension decreases and the melt spreads slowly with contact angle gradually decreasing during melting. © All right reserved.
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页码:595 / 601
页数:6
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共 25 条
  • [1] Chang Z Y, Wang P, Zhang J L, Et al., Effect of CO<sub>2</sub> and H<sub>2</sub>O on gasification dissolution and deep reaction of coke, Int J Miner Metall Mater, 25, 12, (2018)
  • [2] Wang X L., Metallurgy of Iron and Steel (Ironmaking), (2013)
  • [3] Guo W T, Xue Q G, Ling C, Et al., Influence of pore structure features on the high temperature tensile strength of coke, Chin J Eng, 38, 7, (2016)
  • [4] Natsui S, Kikuchi T, Suzuki R O, Et al., Characterization of liquid trickle flow in poor-wetting packed bed, ISIJ Int, 55, 6, (2015)
  • [5] Ichikawa K, Kashihara Y, Oyama N, Et al., Evaluating effect of coke layer thickness on permeability by pressure drop estimation model, ISIJ Int, 57, 2, (2017)
  • [6] Geleta D D, Lee J, Effects of particle diameter and coke layer thickness on solid flow and stress distribution in BF by 3D discrete element method, Metall Mater Trans B, 49, 6, (2018)
  • [7] Sun M M, Zhang J L, Li K J, Et al., Dissolution behaviors of various carbonaceous materials in liquid iron: interaction between graphite and iron, JOM, 71, 12, (2019)
  • [8] Mansuri I A, Khanna R, Rajarao R, Et al., Recycling waste CDs as a carbon resource: dissolution of carbon into molten iron at 1550 ℃, ISIJ Int, 53, 12, (2013)
  • [9] Zhang Z J, Zhang J L, Jiao K X, Et al., Research progress of iron carburization in blast furnace, 6th International Symposium on High-Temperature Metallurgical Processing, (2015)
  • [10] Hua F B, Zhang W, Zhu L, Et al., Carburizing behavior of molten iron in coke bed, J Iron Steel Res, 31, 7, (2019)