Fan Wei-Jie, Wang Xiao-Yong, Park Ki-Bong
Department of Architectural Engineering, Kangwon National University, Chuncheon-Si 200-701, Korea.
Materials (Basel). 2015 Sep 7;8(9):5933-5952. doi: 10.3390/ma8095282.
High-calcium fly ash (FH) is the combustion residue from electric power plants burning lignite or sub-bituminous coal. As a mineral admixture, FH can be used to produce high-strength concrete and high-performance concrete. The development of chemical and mechanical properties is a crucial factor for appropriately using FH in the concrete industry. To achieve sustainable development in the concrete industry, this paper presents a theoretical model to systematically evaluate the property developments of FH blended concrete. The proposed model analyzes the cement hydration, the reaction of free CaO in FH, and the reaction of phases in FH other than free CaO. The mutual interactions among cement hydration, the reaction of free CaO in FH, and the reaction of other phases in FH are also considered through the calcium hydroxide contents and the capillary water contents. Using the hydration degree of cement, the reaction degree of free CaO in FH, and the reaction degree of other phases in FH, the proposed model evaluates the calcium hydroxide contents, the reaction degree of FH, chemically bound water, porosity, and the compressive strength of hardening concrete with different water to binder ratios and FH replacement ratios. The evaluated results are compared to experimental results, and good consistencies are found.
高钙粉煤灰(FH)是发电厂燃烧褐煤或次烟煤产生的燃烧残渣。作为一种矿物掺合料,FH可用于生产高强度混凝土和高性能混凝土。化学和力学性能的发展是在混凝土行业中合理使用FH的关键因素。为了实现混凝土行业的可持续发展,本文提出了一个理论模型,用于系统评估FH掺合混凝土的性能发展。所提出的模型分析了水泥水化、FH中游离CaO的反应以及FH中除游离CaO之外的其他相的反应。还通过氢氧化钙含量和毛细水含量考虑了水泥水化、FH中游离CaO的反应以及FH中其他相的反应之间的相互作用。利用水泥的水化程度、FH中游离CaO的反应程度以及FH中其他相的反应程度,所提出的模型评估了不同水胶比和FH替代率下硬化混凝土的氢氧化钙含量、FH的反应程度、化学结合水、孔隙率和抗压强度。将评估结果与实验结果进行比较,发现具有良好的一致性。