首页|Al2O3对含钛高炉渣熔化特性的热力学模拟

Al2O3对含钛高炉渣熔化特性的热力学模拟

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含钛高炉渣是高炉冶炼过程中的副产物,研究含钛高炉渣熔化特性对优化高炉冶炼过程和提高炉渣处理效率提供了理论依据.以四川省德胜钢铁有限公司含钛高炉渣为研究对象,采用FactSage®热力学软件模拟研究不同含量的Al2O3对含钛高炉渣的熔化特性的影响.研究发现,Al2O3对含钛高炉渣开始熔化温度、完全熔化温度均有影响,其中对含钛高炉渣开始熔化温度影响效果不显著,开始熔化温度约为1164℃;对含钛高炉渣开始熔化温度影响效果较为显著,完全熔化温度约为1439℃,Al2O3含量每增加0.5%,含钛高炉渣完全熔化温度降低约3℃.研究结果为高炉冶炼过程中炉渣的管理提供了重要的理论依据.
Al2O3 Thermodynamic Simulation of the Melting Characteristics of Titanium-containing High Furnace Slag
Titanium high slag is a byproduct in the blast furnace smelting process,and studying the melting characteristics of titanium high slag provides a theoretical basis for optimizing the blast furnace smelting process and improving the efficiency of blast furnace slag treatment process.Then the effect of Al2O3 with different content was investigated.It is found that Al2O3 has an effect on the initial melting temperature and complete melting temperature of high titanium slag,and the effect on the initial melting temperature is about 1164℃;on the initial melting temperature of high titanium slag,the complete melting temperature is about 1439℃.For each 0.5%increase of Al2O3 content,the complete melting temperature of high titanium slag decreases by about 3℃.The results provide an important theoretical basis for the management of slag during blast fur-nace smelting.

Al2O3titanium containing high slagmelting characteristicsFactSage®thermodynamic simulation

张平、张士举、闫大波、张云程

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乐山职业技术学院新能源与材料学院,四川 乐山 614000

攀枝花学院钒钛学院,四川 攀枝花 617000

四川德胜集团钒钛有限公司,四川 乐山 614000

Al2O3 含钛高炉渣 熔化特性 FactSage® 热力学模拟

乐山市重点科技计划项目乐山职业技术学院课题

23SZD008KY2023009

2024

新疆钢铁
新疆维吾尔自治区金属学会

新疆钢铁

影响因子:0.081
ISSN:1672-4224
年,卷(期):2024.(3)