Thermodynamic Stability and Dissolution of Calcium Fluoride of Phosphogypsum Solidified in Cement-Based Cementing Materials in Bicarbonate Solution

IF 1.1 4区 材料科学 Q3 Engineering Materials Science-Poland Pub Date : 2023-06-12 DOI:10.5755/j02.ms.33694
Jianhui Fan, Xuebing Wang, Shengbo Guo
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Abstract

Cement-based cementitious materials present an alkaline environment and mainly exist in the form of Ca(OH)2. Phosphogypsum, as a retarder of cementitious materials, is often added to cement instead of gypsum, and the fluorine by-product of phosphogypsum is also fixed in the form of CaF2. These cement-based materials often serve in environments containing carbonate groundwater, which changes the stability of solidified CaF2. This paper studied the solid and liquid changes in Ca(OH)2-CaF2, Ca(OH)2-CaF2-HCO3, CaF2-HCO3-OH systems, and therefore studied the solubility of the by-product CaF2 of phosphogypsum in the groundwater containing HCO3- anion after curing in the cement-based cementitious system through experiments and thermodynamic equation simulation. The results showed that the dissolved Ca2+ of Ca(OH)2 led to the dissolution of CaF2, which led to a significant reduction in the F- anion concentration. However, with the increase of HCO3- concentration in groundwater, the F- anion concentration of Ca(OH)2-CaF2-HCO3 system increased, and the main product formed in the solid phase was calcium carbonate; The dissolution of F- anions in CaF2-HCO3-OH system also increased with the increase of HCO3- concentration. Therefore, the influence of HCO3- in groundwater should be considered when using phosphogypsum instead of gypsum as a retarder in cement-based cementitious materials.
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水泥基固井材料中磷石膏固化氟化钙在碳酸氢盐溶液中的溶解及热力学稳定性
水泥基胶凝材料呈现碱性环境,主要以Ca(OH)2的形式存在。磷石膏作为胶凝材料的缓凝剂,经常代替石膏加入水泥中,磷石膏的氟副产物也以CaF2的形式固定。这些水泥基材料通常用于含有碳酸盐地下水的环境,这会改变固化CaF2的稳定性。本文研究了Ca(OH)2-CaF2、Ca(OH。结果表明,Ca(OH)2的Ca2+溶解导致CaF2的溶解,从而导致F-阴离子浓度显著降低。但随着地下水中HCO3-浓度的增加,Ca(OH)2-CaF2-HCO3体系的F-阴离子浓度增加,固相中形成的主要产物为碳酸钙;F-阴离子在CaF2-HCO3-OH体系中的溶解也随着HCO3-浓度的增加而增加。因此,在水泥基胶凝材料中使用磷石膏代替石膏作为缓凝剂时,应考虑地下水中HCO3-的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Materials Science-Poland
Materials Science-Poland 工程技术-材料科学:综合
CiteScore
1.70
自引率
18.20%
发文量
0
审稿时长
6.2 months
期刊介绍: Material Sciences-Poland is an interdisciplinary journal devoted to experimental research into results on the relationships between structure, processing, properties, technology, and uses of materials. Original research articles and review can be only submitted.
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