碱度对 СаО - SiO2 - 18 % Cr2O3 - 6 % B2O3 - 3 % Аl2O3 - 8 % МgO 系炉渣物理性质的影响

A. A. Babenko, R. R. Shartdinov, A. G. Upolovnikova, A. N. Smetannikov, D. A. Lobanov, A. V. Dolmatov
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引用次数: 0

摘要

利用振动粘度计、热力学模型和拉曼光谱,研究了碱度对СаО - SiO2 - 18 % Cr2O3 - 6 % B2O3 - 3 % Аl2O3 - 8 % МgO 体系(碱度范围(B = CaO/SiO2 )从 1.0 到 2.5)炉渣的粘度、结晶起始温度、相组成和结构的影响。结果表明,炉渣的物理性质取决于聚合度和相组成的平衡。碱度为 1.0 的酸性炉渣属于 "长 "炉渣,其特点是高温相的比例增加,最高可达 34.1%。然而,尽管高温相的比例是低温相比例的 1.6 倍,但它们的特点是硅酸盐结构更简单,在结晶开始温度为 1530 °C 时,粘度不超过 0.25 Pa-s。随着所研究氧化物体系炉渣碱性的增加(达到 2.5)以及高温相比例的增加(几乎增加了 5.9 倍),形成了更为复杂的硅酸盐结构。由此产生的四配位结构元素 [CrO4] 和 [AlO4] 嵌入硅酸盐结构并使其复杂化,从而增加了聚合度。因此,在碱度为 2.5 时,由于炉渣中高温相的比例较高以及聚合过程的发展,炉渣的结晶起始温度升高到 1700 ℃,其粘度在 1670 ℃ 时达到 1.0 Pa-s。
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Influence of basicity on physical properties of slags of the СаО – SiO2 – 18 % Cr2O3 – 6 % B2O3 – 3 % Аl2O3 – 8 % МgO system
Influence of basicity on viscosity, crystallization onset temperature, phase composition, and structure of slags of the СаО – SiO2 – 18 % Cr2O3 – 6 % B2O3 – 3 % Аl2O3 – 8 % МgO system in the basicity range (B = CaO/SiO2 ) from 1.0 up to 2.5 was studied using vibrational viscometry, thermodynamic modeling, and Raman spectroscopy. It was established that the physical properties of slags depend on the balance of polymerization degree and phase composition. Acid slags with a basicity of 1.0 belong to the category of “long” slags and are characterized by an increased proportion of high-temperature phases up to 34.1 %. However, despite the fact that the proportion of high-temperature phases is 1.6 times higher compared to the proportion of low-temperature ones, they are characterized by a simpler silicate structure, providing a viscosity of no more than 0.25 Pa·s at a crystallization onset temperature of 1530 °C. An increase in basicity of slags of the studied oxide system (up to 2.5), along with an increase in the proportion of high-temperature phases (by almost 5.9 times), is accompanied by formation of a more complex silicate structure. The resulting four-coordination structural elements [CrO4] and [AlO4] are embedded in the silicate structure and complicate it, which increases the polymerization degree. Thus, at basicity of 2.5, due to a high proportion of high-temperature phases in the slag and development of polymerization process, slag crystallization onset temperature increases to 1700 °C and its viscosity reaches 1.0 Pa·s at a temperature of 1670 °C.
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