Zhang Yannian, Zhang Xiangkun, Gu Xiaowei, Wang Ting, Liu Bonan
School of Civil Engineering, Shenyang Jianzhu University, Shenyang 110168, China.
Science and Technology Innovation Center of Smart Water and Resource Environment, Northeastern University, Shenyang 110819, China.
Materials (Basel). 2022 May 27;15(11):3851. doi: 10.3390/ma15113851.
In order to control energy consumption and reduce pollution, the use of supplementary cementitious materials (SCMs) instead of cement to produce green cementitious materials can save energy, reduce emissions and achieve sustainable development. This study demonstrates the possibility of developing SCMs with iron tailings (IOTs), fly ash (FA) and ceramic powder (CP) ternary system, as well as the optimization and improvement scheme of gelation activation. The effects of activator dosage, mix ratio and substitution rate on mechanical properties of ternary SCMs system were investigated. The formation and evolution of hydration products were analyzed by differential thermogravimetric analysis (DTA) and scanning electron microscopy (SEM). The results of the study show that there is synergy in the system. The results show that there is synergy in the system and the hydration reaction is sufficient. At the substitution rate of 30%, the doping ratio of IOTs, CP and FA is 1:2:2 and the Ca(OH) is 0.6%, the strength reaches 39.9 MPa and the activity index is 91.5%, which can provide a basis for the application and more in-depth study of IOTs multi SCMs.
为了控制能源消耗和减少污染,使用辅助胶凝材料(SCMs)替代水泥来生产绿色胶凝材料可以节约能源、减少排放并实现可持续发展。本研究论证了开发铁尾矿(IOTs)、粉煤灰(FA)和陶瓷粉(CP)三元体系SCMs的可能性,以及胶凝活化的优化和改进方案。研究了活化剂用量、配合比和取代率对三元SCMs体系力学性能的影响。通过差示热重分析(DTA)和扫描电子显微镜(SEM)分析了水化产物的形成和演变。研究结果表明该体系存在协同效应。结果表明该体系存在协同效应且水化反应充分。在取代率为30%、IOTs、CP和FA的掺杂比例为1:2:2且Ca(OH)₂为0.6%时,强度达到39.9MPa,活性指数为91.5%,可为IOTs多元SCMs的应用和更深入研究提供依据。