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开伯尔-普赫图赫瓦省甘蔗渣灰在可持续混凝土中的力学性能和环境性能

Mechanical and environmental performance of sugarcane Bagasse Ash from Khyber Pakhtunkhwa in sustainable concrete.

作者信息

Ullah Muhammad Fahad, Tang Hesheng, Ullah Arshad, Toth Zsolt, Ahmad Mahmood, Alzlfawi Abdullah

机构信息

Department of Disaster Mitigation for Structures, College of Civil Engineering, Tongji University, Shanghai, 200092, China.

Department of Geotechnical Engineering, College of Civil Engineering, Tongji University, Shanghai, China.

出版信息

Sci Rep. 2025 Jul 8;15(1):24571. doi: 10.1038/s41598-025-10383-6.

Abstract

In recent decades, the partial substitution of cement with sugarcane bagasse ash (SCBA) has received attention for construction applications because of its pozzolanic characteristics. However, regional-scale studies are encouraged to increase the use of SCBA at the industrial level. Limited literature is available on the effect of SCBA on concrete Alkali-silica reactivity (ASR), CO emissions and economic feasibility. In the current study, the influence of adding 0%, 5%, 10%, and 15% locally available SCBA from Khyber Pakhtunkhwa on the consistency, mechanical strength, ASR, N adsorption, mineralogy, microstructure, and elemental compositions of concrete was investigated. In addition, CO emissions and cost analysis were conducted for all the concrete mixes. Experimental findings revealed that consistency increased with the addition of SCBA percentages, whereas a delay in the setting time was recorded. The Compressive strength (CS) and split tensile strength for all SCBA-based mixtures increased with ageing, due to the finer particles and higher surface area of SCBA. Additionally, SCBA effectively reduces the expansion resulting from the alkali-silica reaction. The incorporation of SCBA significantly improved the microstructure with no sign of cracks, resulting in higher reactivity and the formation of additional CSH gel than the control mix. The findings confirmed that incorporating 10% of SCBA resulted in eco-friendly construction material with enhanced strength and cost savings. Furthermore, this study is beneficial to promote the use of locally available SCBA in concrete instead of disposal in landfills.

摘要

近几十年来,用甘蔗渣灰(SCBA)部分替代水泥因其火山灰特性而在建筑应用中受到关注。然而,鼓励进行区域规模的研究以提高SCBA在工业层面的使用。关于SCBA对混凝土碱-硅反应性(ASR)、CO排放和经济可行性影响的文献有限。在本研究中,研究了添加0%、5%、10%和15%来自开伯尔-普赫图赫瓦省的当地可用SCBA对混凝土的稠度、力学强度、ASR、氮吸附、矿物学、微观结构和元素组成的影响。此外,还对所有混凝土混合料进行了CO排放和成本分析。实验结果表明,随着SCBA添加量的增加,稠度增加,而凝结时间有所延迟。由于SCBA颗粒更细且比表面积更大,所有基于SCBA的混合料的抗压强度(CS)和劈裂抗拉强度随龄期增加。此外,SCBA有效降低了碱-硅反应产生的膨胀。SCBA的掺入显著改善了微观结构,没有裂纹迹象,与对照混合料相比,反应活性更高且形成了额外的CSH凝胶。研究结果证实,掺入10%的SCBA可得到具有增强强度且节省成本的环保建筑材料。此外,本研究有利于促进在混凝土中使用当地可用的SCBA,而不是将其丢弃在垃圾填埋场。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b942/12238258/ab4631fdbc8d/41598_2025_10383_Fig1_HTML.jpg

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