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掺入废玻璃和微碳酸钙的经济高效且环保的活性粉末混凝土的多标准优化

Multi-Criteria Optimization of Cost-Effective and Environmentally Friendly Reactive Powder Concrete Incorporating Waste Glass and Micro Calcium Carbonate.

作者信息

Abellán-García Joaquín, Daza Nemesio, Molinares Marielena, Abbas Yassir M, Khan Mohammad Iqbal

机构信息

Department of Civil and Environmental Engineering, Universidad Del Norte, Barranquilla 081007, Colombia.

Department of Civil Engineering, Universidad Simón Bolivar, Barranquilla 111321, Colombia.

出版信息

Materials (Basel). 2023 Sep 27;16(19):6434. doi: 10.3390/ma16196434.

Abstract

In pursuit of developing an eco-friendly and cost-effective reactive powder concrete (RPC), we utilized a multi-objective optimization technique. This approach pivoted on the incorporation of byproducts, with a spotlight on ground glass powder (GP) as a pivotal supplementary cementitious material (SCM). Our goal was twofold: engineering cost-efficient concrete while maintaining environmental integrity. The derived RPC showcased robust mechanical strength and impressive workability. Rigorous evaluations, containing attributes like compressive strength, resistance to chloride ion penetration, ultrasonic pulse speed, and drying shrinkage, highlighted its merits. Notably, the optimized RPC, despite an insignificant decrease in compressive strength at 90 days compared to its traditional counterpart, maintained steady strength augmentation over time. The refinement process culminated in a notable 29% reduction in ordinary Portland cement (OPC) usage and a significant 64% decrease in silica fume (SF), with the optimized mix composition being 590 for cement, 100 for SF, 335 for GP, and 257 kg/m for calcium carbonate. Additionally, the optimized RPC stood out due to the enhanced rheological behavior, influenced by the lubricative properties of calcium carbonate and the water conservation features of the glass powder. The reactive properties of SF, combined with GP, brought distinct performance variations, most evident at 28 days. Yet, both mixtures exhibited superior resistance to chloride, deeming them ideal for rigorous settings like coastal regions. Significantly, the RPC iteration, enriched with selective mineral admixtures, displayed a reduced tendency for drying-induced shrinkage, mitigating potential crack emergence.

摘要

为了开发一种环保且经济高效的活性粉末混凝土(RPC),我们采用了多目标优化技术。这种方法以掺入副产品为核心,特别关注磨细玻璃粉(GP)作为关键的辅助胶凝材料(SCM)。我们的目标有两个:设计出经济高效的混凝土,同时保持环境完整性。所得的RPC表现出强大的机械强度和出色的工作性能。包含抗压强度、抗氯离子渗透、超声脉冲速度和干燥收缩等特性的严格评估突出了其优点。值得注意的是,优化后的RPC尽管与传统RPC相比在90天时抗压强度略有下降,但随着时间的推移强度仍保持稳定增长。优化过程最终使普通硅酸盐水泥(OPC)的用量显著减少了29%,硅灰(SF)减少了64%,优化后的配合比为水泥590、SF 100、GP 335和碳酸钙257kg/m³。此外,优化后的RPC因其流变行为得到改善而脱颖而出,这受到碳酸钙的润滑特性和玻璃粉的保水特性的影响。SF与GP的反应特性带来了明显的性能差异,在28天时最为明显。然而,两种混合物都表现出优异的抗氯化物性能,使其成为沿海地区等恶劣环境的理想选择。值得注意的是,富含选择性矿物掺合料的RPC迭代显示出干燥收缩趋势降低,减少了潜在裂缝的出现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8347/10573875/24c95f3936e5/materials-16-06434-g001.jpg

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