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评估大理石粉尘粉末和粉煤灰在高强度混凝土性能和可持续性方面的综合利用。

Evaluation of combined utilization of marble dust powder and fly ash on the properties and sustainability of high-strength concrete.

机构信息

Department of Civil Engineering, Mehran University of Engineering and Technology, Shaheed Zulfiqar Ali Bhutto Campus, Khairpur Mirs', 66020, Sindh, Pakistan.

Department of Civil Engineering, Quaid-E-Awam University of Engineering, Science & Technology, Nawabshah, 67450, Sindh, Pakistan.

出版信息

Environ Sci Pollut Res Int. 2022 Apr;29(19):28005-28019. doi: 10.1007/s11356-021-18379-1. Epub 2022 Jan 5.

Abstract

With the recent increase in demand for high-strength concrete, higher cement content is utilized, which has increased the need for cement. The cement industry is one of the most energy-consuming sectors globally, contributing to 10% of global carbon dioxide (CO) gas emissions and global warming. Similarly, with rapid urbanization and industrialization, a vast number of by-products and waste materials are being generated in abundance, which causes environmental and health issues. Focusing on these two issues, this study aimed to develop an M50-grade eco-friendly high-strength concrete incorporating waste materials like marble dust powder (MDP) and fly ash (FA) as partial cement replacement. 2.5%, 5%, 7.5%, and 10% MDP and FA by weight of total binder was utilized combinedly, such that the 5%, 10%, 15%, and 20% cement content was replaced, respectively. The fresh state properties in terms of workability and hardened state properties in terms of compressive and flexural strengths were evaluated at 7, 14, 28, 56, and 90 days. Furthermore, to assess the environmental impact of MDP and FA, the embodied carbon and eco-strength efficiency were calculated. Based upon the results, it was observed that a combined 10% (5% MDP and 5% FA) achieved the highest strength; however, 15% (7.5% MDP and 7.5% FA) substitution could be optimal. Furthermore, the combined utilization of FA and MDP also enabled a reduction in the total embodied carbon. It decreased the cost of concrete, resulting in an eco-friendly, high-strength concrete.

摘要

随着高强度混凝土需求的增加,使用了更高的水泥含量,这增加了对水泥的需求。水泥行业是全球最耗能的行业之一,占全球二氧化碳(CO)气体排放和全球变暖的 10%。同样,随着城市化和工业化的快速发展,大量的副产品和废物大量产生,这导致了环境和健康问题。关注这两个问题,本研究旨在开发一种 M50 级环保型高强度混凝土,其中包含大理石粉尘粉末(MDP)和粉煤灰(FA)等废料作为部分水泥替代物。以总胶凝材料的重量计,MDP 和 FA 的掺量分别为 2.5%、5%、7.5%和 10%,分别替代 5%、10%、15%和 20%的水泥含量。在 7、14、28、56 和 90 天评估了工作性能方面的新拌状态性能和抗压和抗弯强度方面的硬化状态性能。此外,为了评估 MDP 和 FA 的环境影响,计算了碳含量和生态强度效率。根据结果,观察到 10%(5% MDP 和 5% FA)的组合实现了最高强度;然而,15%(7.5% MDP 和 7.5% FA)的替代可能是最佳的。此外,FA 和 MDP 的组合利用还减少了总碳含量。它降低了混凝土的成本,从而生产出一种环保、高强度的混凝土。

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