碱度对 CaO-SiO2-FexO 熔渣密度、表面张力和结构的影响

IF 3.2 3区 材料科学 Q1 MATERIALS SCIENCE, CERAMICS
Yihui Ma , Yunming Gao , Chang Liu , Guangqiang Li
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引用次数: 0

摘要

结合垂滴法以及红外和拉曼光谱检测,研究了碱度对 CaO-SiO2-10 % FexO 熔渣的密度和表面张力特性以及结构的影响。结果发现,随着碱度从 0.5 增加到 1,在相同温度下密度和表面张力值都会增加。同时,炉渣中 Si-O 基团的复杂结构发生解聚,[FeO6]9- 单元的面积比例从 13.0% 降至 8.3%,[FeO4]5- 单元的面积比例从 2.9% 显著增至 18.6%。决定 [FeO6]9- 和 [FeO4]5- 单元的面积比例和结构演变的关键因素是碱性,而不是 Fe2+ 和 Fe3+ 离子的相对含量。总体而言,炉渣聚合度取决于 Si-O 基团的结构而不是 Fe-O 基团的结构,这导致密度和表面张力随着碱度的增加而增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of basicity on density, surface tension and structure of CaO-SiO2-FexO molten slag

Combined with the pendant drop method and infrared and Raman spectroscopic detection, the effect of the basicity on the density and surface tension properties and the structure of CaO-SiO2–10 % FexO slag was investigated. With increasing basicity from 0.5 to 1, it is found that the density and surface tension values increase at the same temperature. Meanwhile, the complex structures of Si-O groups in the slag depolymerize, the area proportion of [FeO6]9- units decreases from 13.0 % to 8.3 % and that of [FeO4]5- units increases significantly from 2.9 % to 18.6 %. The key factor determining the area proportion and structural evolution of [FeO6]9- and [FeO4]5- units is the basicity rather than the relative contents of Fe2+ and Fe3+ ions. Overall, the slag polymerization degree depends on the structures of Si-O groups rather than on those of Fe-O groups, which leads to increases in the density and surface tension with increasing basicity.

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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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