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审视粉煤灰用于可持续混凝土建筑的终点影响、挑战及机遇。

Examining the endpoint impacts, challenges, and opportunities of fly ash utilization for sustainable concrete construction.

作者信息

Orozco Christian, Tangtermsirikul Somnuk, Sugiyama Takafumi, Babel Sandhya

机构信息

Sirindhorn International Institute of Technology, Thammasat University, Pathum Thani, 12120, Thailand.

Graduate School of Engineering, Hokkaido University, Sapporo, Hokkaido, 060-8628, Japan.

出版信息

Sci Rep. 2023 Oct 25;13(1):18254. doi: 10.1038/s41598-023-45632-z.

Abstract

Fly ash has been widely used as a cement substitute to improve the sustainability of concrete. Although the advantages of fly ash have been extensively documented, there is a gap in understanding why its use in mass concrete applications remains low in some countries, such as the Philippines. Thus, this work aims to understand the issues that impede waste utilization, particularly fly ash in the concrete construction industry, quantify the impact of the current practice, and identify opportunities for sustainable fly ash utilization. Endpoint impact analysis was conducted through the life cycle using SimaPro 9.3 to quantify the impacts on human health, ecosystem, and resources of 31 concrete mixtures of low, normal, and high strength design with 0 to 20% fly ash as cement replacement. In-depth, semi-structured interviews with key stakeholders were undertaken to determine the institutional, economic, social, and technological challenges related to the utilization of waste materials in large-scale concrete construction. More than 90% of the total impact of concrete contributes to damage to human health, primarily caused by global warming and fine particulate matter. The use of fly ash at 20% replacement by weight of cement benefits resources more significantly than human health and the ecosystem. The use of chemical admixture to improve strength has a significant impact on resources. High fly ash replacement for normal and high-strength concrete has a greater reduction in all endpoint categories than for low-strength design. Recommendations are proposed to maximize the beneficial impact of using fly ash in the concrete industry.

摘要

粉煤灰已被广泛用作水泥替代品,以提高混凝土的可持续性。尽管粉煤灰的优势已被广泛记录,但在理解为何在某些国家(如菲律宾)其在大体积混凝土应用中的使用量仍然较低方面存在差距。因此,这项工作旨在了解阻碍废物利用的问题,特别是混凝土建筑行业中的粉煤灰,量化当前做法的影响,并确定可持续利用粉煤灰的机会。使用SimaPro 9.3通过生命周期进行终点影响分析,以量化31种低、中、高强度设计的混凝土混合物(粉煤灰替代水泥的比例为0至20%)对人类健康、生态系统和资源的影响。对关键利益相关者进行了深入的半结构化访谈,以确定与大规模混凝土建筑中废物利用相关的制度、经济、社会和技术挑战。混凝土总影响的90%以上导致对人类健康的损害,主要由全球变暖和细颗粒物引起。以重量计20%的粉煤灰替代水泥对资源的益处比对人类健康和生态系统的益处更为显著。使用化学外加剂提高强度对资源有重大影响。与低强度设计相比,中、高强度混凝土中高比例的粉煤灰替代在所有终点类别中的减少幅度更大。提出了一些建议,以最大限度地提高混凝土行业使用粉煤灰的有益影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b288/10600155/b8dc294e5f81/41598_2023_45632_Fig1_HTML.jpg

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