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低碳凝胶混凝土的强度和耐久性增强

Strength and durability enhancement of low carbon gel concrete.

作者信息

Jia Yang, Zhang Jianfeng, Cao Ya, Liu Shiqi, Zhou Zichen, Li Mingxia

机构信息

Wuhan Research Institute of Metallurgical Construction, MCC, Wuhan, China.

Changjiang River Scientific Research Institute, Wuhan, China.

出版信息

PLoS One. 2025 Jun 3;20(6):e0324319. doi: 10.1371/journal.pone.0324319. eCollection 2025.

Abstract

In order to reduce the difficulty of concrete preparation, reduce the environmental hazards caused by concrete materials and their preparation process, and meet the development trend of energy saving and emission reduction, this study proposes a low-carbon gel material composed of slag powder, fly ash and gypsum for concrete preparation. Low-carbon gel concrete was made with the ingredients of slag powder, fly ash and gypsum with a water-cement ratio of 0.38 and a ratio of slag powder to fly ash of 1:1.The compressive, flexural and tensile strengths of low-carbon gel concrete samples with different ratios were tested by standard concrete strength test methods to assess their durability properties, and the effects of different ratios of slag powder, admixture and gypsum on the material properties of low-carbon gel were analyzed. concrete material properties with different proportions of slag powder, admixtures and gypsum were analyzed. The experimental results showed that low-carbon gel concrete materials outperformed traditional concrete materials in terms of compressive strength, flexural strength, and tensile strength. After 28 days of curing, the compressive strength of low-carbon gel concrete was 20% higher than that of conventional concrete, and the carbonation depth was reduced by 30.77%. The results indicate that the low-carbon gel concrete materials proposed in this study have excellent strength and durability, and can improve the performance of conventional concrete. This material provides a green and sustainable solution for the modern construction industry, contributing to the sustainable development of the construction sector and the global fight against climate change.

摘要

为降低混凝土制备难度,减少混凝土材料及其制备过程对环境的危害,顺应节能减排发展趋势,本研究提出一种由矿渣粉、粉煤灰和石膏组成的用于混凝土制备的低碳胶凝材料。以矿渣粉、粉煤灰和石膏为原料,水灰比为0.38,矿渣粉与粉煤灰比例为1:1制备低碳胶凝混凝土。采用标准混凝土强度试验方法测试不同配比的低碳胶凝混凝土试件的抗压、抗折和抗拉强度,以评估其耐久性性能,并分析不同比例的矿渣粉、掺和料和石膏对低碳胶凝材料性能的影响。分析了不同比例的矿渣粉、掺和料和石膏对混凝土材料性能的影响。试验结果表明,低碳胶凝混凝土材料在抗压强度、抗折强度和抗拉强度方面均优于传统混凝土材料。养护28天后,低碳胶凝混凝土的抗压强度比普通混凝土高20%,碳化深度降低了30.77%。结果表明,本研究提出的低碳胶凝混凝土材料具有优异的强度和耐久性,能够改善传统混凝土的性能。该材料为现代建筑业提供了一种绿色可持续的解决方案,有助于建筑行业的可持续发展以及全球应对气候变化的行动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5e0/12133175/e7ccf531d8b7/pone.0324319.g001.jpg

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