工业副产物合成硫铝酸钙-白石水泥的水化及物理力学性能

A. Rungchet, P. Chindaprasirt, C. Poon, K. Pimraksa
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引用次数: 1

摘要

研究了波特兰水泥混合硫铝酸钙-白石(CŜAB)水泥,以改善其结合性能和特定应用的和易性。粘结剂由硫铝酸钙、烟气脱硫石膏和普通硅酸盐水泥(OPC)组成。在本研究中,观察了OPC含量(25%、50%、75% wt%)作为CŜAB替代品对粘合剂水化行为和物理力学性能的影响。以工业副产物粉煤灰、烟气脱硫石膏、富铝污泥为原料,采用水热煅烧法制备了CŜAB水泥。结果表明,OPC替代CŜAB水泥延长了膏体的凝结时间。OPC含量越高,水化率越低,这是由于硫铝酸钙和梅氏岩等快速凝固相的稀释。硫铝酸钙水泥的水化产物为钙矾石和Al(OH)3,具有较高的早期强度。从6 h开始,OPC的硅酸三钙相水化生成水合硅酸钙。由于Al(OH)3与OPC中的alite相或CŜAB水泥中的belite相发生反应,在低OPC含量的混合物中也发现了Stratlingite。钙矾石在后期还能与Al(OH)3反应生成单硫酸盐。早期力学性能主要由硫铝酸钙相决定,后期力学性能主要由OPC相提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hydration and Physico-mechanical Properties of Blended Calcium Sulfoaluminate-belite Cement Made of Industrial By-products
Portland cement blended Calcium Sulfoaluminate-belite (CŜAB) cements were studied in order to improve its binding properties and workability for specific applications. The binders consisted of calcium sulfoaluminatebelite, Flue Gas Desulfurization-gypsum and Ordinary Portland Cement (OPC). In this research, effects of OPC contents (25, 50, 75 wt%) as a CŜAB replacement on hydration behaviors and physico-mechanical properties of the binders were observed. Used CŜAB cement was synthesized using industrial by-products viz., fly ash, Flue Gas Desulfurization-gypsum, Al-rich sludge as starting materials via hydrothermal-calcination method. The results revealed that the replacement of CŜAB cement with OPC extended the setting times of pastes. The reduction of hydration rate with higher OPC content was due to dilution of fast setting phases such calcium sulfoaluminate and mayenite. Hydration products of calcium sulfoaluminate cement were ettringite responsible for high early strength together with Al(OH)3. From 6 h onwards, hydration of tricalcium silicate phase from the OPC generated calcium silicate hydrate. Stratlingite was also found in low OPC content mix resulting from the reaction between the Al(OH)3 and either alite phase in OPC or belite phase in CŜAB cement. Ettringite could also react with Al(OH)3 to generate monosulfate at later ages. The calcium sulfoaluminate phase was mainly responsible for the early mechanical properties, while OPC played an important role to improve strength at later ages.
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