Wang Xianchen, Li Xianhai, Zhong Yanxia, Li Hong, Wang Jie
Moutai Institute, Renhuai 564507, China.
Mining College, Guizhou University, Guiyang 550025, China.
ACS Omega. 2023 Dec 27;9(1):1870-1880. doi: 10.1021/acsomega.3c08560. eCollection 2024 Jan 9.
The wide application of concrete prepared with coal gangue (CG) as an aggregate (CPCGA) is limited because of the low mechanical strength and strong water absorption capacity of CG. This paper used silica fume (SF) to improve the performance of the interfacial transition zone (ITZ) in CPCGA and revealed the enhancement mechanism. The results showed that the compressive strength of CPCGA prepared with cement replaced by a suitable amount of SF at the age of 28 days increased by more than 30%, and the flexural strength increased by over 20%. The SF could effectively reduce the porosity and micropore size in the ITZ of CPCGA, and the porosity of the ITZ in CPCGA added with 7.50% SF decreased by 44.22, 46.16, and 24.46% at distances from the aggregate surface of 10, 50, and 100 μm, respectively, compared with CPCGA without SF. Further research showed that Ca(OH) (CH) generated in the cement hydration reaction reacted with a large amount of active SiO in SF to restrain the formation of coarse CH in the ITZ of CPCGA, and the calcium silicate hydrate (C-S-H) gel generated filled the ITZ micropores to reduce the ITZ porosity further. Moreover, the reaction of SF and CH helped to promote the hydration reaction of cement to proceed thoroughly in CPCGA, thus improving CPCGA performance.
由于煤矸石(CG)机械强度低且吸水性强,以其为骨料制备的混凝土(CPCGA)的广泛应用受到限制。本文采用硅灰(SF)来改善CPCGA中界面过渡区(ITZ)的性能,并揭示其增强机理。结果表明,用适量SF替代水泥制备的CPCGA在28天龄期时的抗压强度提高了30%以上,抗折强度提高了20%以上。SF能有效降低CPCGA中ITZ的孔隙率和微孔尺寸,与不含SF的CPCGA相比,添加7.50% SF的CPCGA在距骨料表面10、50和100μm处ITZ的孔隙率分别降低了44.22%、46.16%和24.46%。进一步研究表明,水泥水化反应生成的Ca(OH)₂(CH)与SF中大量的活性SiO₂反应,抑制了CPCGA中ITZ粗大CH的形成,生成的硅酸钙水化物(C-S-H)凝胶填充了ITZ微孔,进一步降低了ITZ孔隙率。此外,SF与CH的反应有助于促进水泥在CPCGA中的水化反应充分进行,从而改善CPCGA性能。