Yang Xiaoyun, Zhang Yan, Li Zhuhan, Wang Minglei
College of Energy and Transportation Engineering, Inner Mongolia Agricultural University, Hohhot 010018, China.
Department of Civil Engineering, University of Victoria, Victoria, BC V8P 5C2, Canada.
Polymers (Basel). 2021 Nov 28;13(23):4160. doi: 10.3390/polym13234160.
Coal gangue-slag geopolymer is a kind of environment-friendly material with excellent engineering performance and is formed from coal gangue and slag after excitation by an alkaline activator. In this study, three kinds of coal gangue-slag geopolymer were activated by different activators, and the compressive and flexural strengths of water and sulphate solutions in the wetting-drying (W-D) cycles were compared. The microscopic mechanism was analyzed by the XRD, the FTIR and the SEM. The following conclusions are drawn: The influence of W-D cycles on flexural strength was greater than compressive strength. The water migration and the recombination of geopolymers lead to the change of colour, as well as the reduction of flexural strength and compressive strength of geopolymers. The SH geopolymer had excellent anti-erosion ability in terms of flexural strength, and the reason for this was the recombination and polymerization reaction of geopolymer being weaker than the SS and the SSG. The corrosion resistance of the SS was reflected in the compressive strength, because its geopolymerization reaction was fierce, which produced more Na-rich C-N-A-S-H, N-A-S-H and C-A-S-H gels. Therefore, the compressive strength could still reach more than 39 MPa after 150 cycles. Sulfate solution could effectively control the reduction of compressive strength of the SH and the SS geopolymers during W-D cycles. The SSG had the worst corrosion resistance.
煤矸石-矿渣地质聚合物是一种具有优异工程性能的环保材料,由煤矸石和矿渣在碱性激发剂激发后形成。本研究采用不同激发剂对三种煤矸石-矿渣地质聚合物进行激发,并比较了干湿循环下其在水和硫酸盐溶液中的抗压强度与抗折强度。通过XRD、FTIR和SEM分析其微观机理,得出以下结论:干湿循环对抗折强度的影响大于抗压强度。地质聚合物的水分迁移和重新组合导致颜色变化,同时地质聚合物的抗折强度和抗压强度降低。SH地质聚合物在抗折强度方面具有优异的抗侵蚀能力,原因是其地质聚合物的重新组合和聚合反应比SS和SSG弱。SS的耐腐蚀性体现在抗压强度上,因为其地质聚合反应剧烈,生成了更多富钠的C-N-A-S-H、N-A-S-H和C-A-S-H凝胶。因此,经过150次循环后,抗压强度仍能达到39MPa以上。硫酸盐溶液能有效控制干湿循环过程中SH和SS地质聚合物抗压强度的降低。SSG的耐腐蚀性最差。