高性能混凝土中回收废料利用评估综述

Al Mashhadani D. A. Jasim, Leong Sing Wong, S. Kong, Ahmed W. Al-Zand, Midhin A. K. Midhin
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引用次数: 0

摘要

废料的处理及其对环境的不利影响已成为全世界关注的问题,并破坏了脆弱的生态平衡。随着建筑行业可持续发展意识的不断增强,回收利用废料生产高性能混凝土(HPC)显得尤为重要。这与联合国第十二个可持续发展目标(SDG)相一致,强调负责任的生产和消费,尤其是利用废弃材料和节能方法生产高性能混凝土。本综述考虑到相关文献,对有目的地利用回收废料来改善高性能混凝土的工程特性进行了评估。其中包括对使用不同类型的回收废料制造的高性能混凝土的强度发展、吸水性、微观结构和 X 射线衍射 (XRD) 分析进行比较评估。研究的主要结果表明,使用低于 25% 的焚烧底灰(IBA)和加入 40% 的铜渣可以提高 HPC 的机械性能。此外,在自密实 HPC 中,再生粗骨料(RCA)可替代 50% 的传统骨料,且对耐久性能的影响极小。在 HPC 水泥替代物研究中,粉煤灰、硅灰和偏高岭土因其可用性而备受关注,其中粉煤灰在用作 15% 水泥替代物时显示出显著的耐久性。这篇详尽的综述为在开发环境友好型 HPC 的过程中优化利用回收废料提供了宝贵的见解。Doi: 10.28991/CEJ-2023-09-11-020 全文:PDF
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An Evaluative Review of Recycled Waste Material Utilization in High-Performance Concrete
The disposal of waste materials and their adverse effects on the environment have become a worldwide concern, disturbing the fragile ecological equilibrium. With growing awareness of sustainability in the construction industry, it is of great importance to recycle waste materials for producing high-performance concrete (HPC). This aligns with the twelfth Sustainable Development Goal (SDG) of the United Nations, emphasizing responsible production and consumption, especially concerning the production of HPC using waste materials and energy-efficient methods. The review evaluates the purposeful utilization of recycled waste materials to improve the engineering characteristics of HPC, taking into consideration pertinent literature. It encompasses a comparative evaluation of strength development, water absorption, microstructures, and x-ray diffraction (XRD) analyses of HPC manufactured with different types of recycled waste materials. The key result of the review showed that using incinerated bottom ash (IBA) below 25% and incorporating 40% copper slag can enhance HPC’s mechanical performance. Additionally, recycled coarse aggregate (RCA) can replace up to 50% of conventional aggregate in self-compacting HPC with minimal impact on durability properties. In HPC cement substitution research, fly ash, silica fume, and metakaolin are prominent due to their availability, with fly ash showing remarkable durability when used as a 15% cement replacement. This thorough review offers valuable insights for optimizing the utilization of recycled waste materials in the development of environmentally friendly HPC. Doi: 10.28991/CEJ-2023-09-11-020 Full Text: PDF
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