Viscosities and structures of SiO2-CaO-3wt%MgO-10wt%Fe2O3-10wt%Al2O3-Cr2O3 coal slags

IF 3.2 3区 材料科学 Q1 MATERIALS SCIENCE, CERAMICS Journal of Non-crystalline Solids Pub Date : 2024-10-11 DOI:10.1016/j.jnoncrysol.2024.123253
Renze Xu , Zhen Wang , Haichuan Xu
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Abstract

The effects of Cr2O3 on viscosities and structure evolutions of SiO2-CaO-3wt%MgO-10wt%Fe2O3–10wt%Al2O3-(1–5wt%)Cr2O3 coal slags were investigated in this work. The viscosity of the coal slag decreased with increasing the Cr2O3 content in coal slags. The role of Cr2O3 in present systems was clarified. Cr2O3 was a basic oxide in the coal slags, and Cr3+mainly entered into the slag structures as the form of CrO6 units to occupy the octahedral positions, which could depolymerize the complex structures. With the addition of Cr2O3 into coal slags, the mole ratio of O2- and O- raised while the mole fraction of O0 declined, suggesting Cr2O3 simplified the whole structure of the coal slags and adding Cr2O3 to the present slags could lead to a lower viscosity. The variations of slag viscosities were consistent with the change tendencies of structures analyzed by Raman spectra, 27Al NMR and O1s XPS.
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SiO2-CaO-3wt%MgO-10wt%Fe2O3-10wt%Al2O3-Cr2O3 煤渣的粘度和结构
本文研究了 Cr2O3 对 SiO2-CaO-3wt%MgO-10wt%Fe2O3-10wt%Al2O3-(1-5wt%)Cr2O3 煤渣粘度和结构演变的影响。煤渣的粘度随着煤渣中 Cr2O3 含量的增加而降低。澄清了 Cr2O3 在现有体系中的作用。Cr2O3 是煤渣中的碱性氧化物,Cr3+ 主要以 CrO6 单元的形式进入煤渣结构,占据八面体位置,从而使复杂结构解聚。在煤渣中加入 Cr2O3 后,O2- 和 O- 的摩尔比升高,而 O0 的摩尔分数下降,这表明 Cr2O3 简化了煤渣的整体结构,在现有煤渣中加入 Cr2O3 可降低煤渣粘度。煤渣粘度的变化与拉曼光谱、27Al NMR 和 O1s XPS 分析的结构变化趋势一致。
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来源期刊
Journal of Non-crystalline Solids
Journal of Non-crystalline Solids 工程技术-材料科学:硅酸盐
CiteScore
6.50
自引率
11.40%
发文量
576
审稿时长
35 days
期刊介绍: The Journal of Non-Crystalline Solids publishes review articles, research papers, and Letters to the Editor on amorphous and glassy materials, including inorganic, organic, polymeric, hybrid and metallic systems. Papers on partially glassy materials, such as glass-ceramics and glass-matrix composites, and papers involving the liquid state are also included in so far as the properties of the liquid are relevant for the formation of the solid. In all cases the papers must demonstrate both novelty and importance to the field, by way of significant advances in understanding or application of non-crystalline solids; in the case of Letters, a compelling case must also be made for expedited handling.
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