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香蕉树叶灰作为胶凝材料对混凝土抗硫酸盐和酸侵蚀耐久性的影响。

Effect of banana tree leaves ash as cementitious material on the durability of concrete against sulphate and acid attacks.

作者信息

Bhutto Shahzeb, Abro Fahad-Ul-Rehman, Ali Mohsin, Buller Abdul Salam, Bheel Naraindas, Gamil Yaser, Najeh Taoufik, Deifalla Ahmed Farouk, Ragab Adham E, Almujibah Hamad R

机构信息

Department of Civil Engineering, Mehran University of Engineering and Technology, Jamshoro, 76090, Sindh, Pakistan.

Graduate School of Urban Innovation, Department of Civil Engineering, Yokohama National University, Kanagawa, 240-8501, Japan.

出版信息

Heliyon. 2024 Apr 6;10(7):e29236. doi: 10.1016/j.heliyon.2024.e29236. eCollection 2024 Apr 15.

Abstract

The construction industry's rapid growth poses challenges tied to raw material depletion and increased greenhouse gas emissions. To address this, alternative materials like agricultural residues are gaining prominence due to their potential to reduce carbon emissions and waste generation. In this context this research optimizes the use of banana leaves ash as a partial cement substitution, focusing on durability, and identifying the ideal cement-to-ash ratio for sustainable concrete. For this purpose, concrete mixes were prepared with BLA replacing cement partially in different proportions i.e. (0 %, 5 %, 10 %, 15 %, & 20 %) and were analyzed for their physical, mechanical and Durability (Acid and Sulphate resistance) properties. Compressive strength, acid resistance and sulphate resistance testing continued for 90 days with the intervals of 7, 28 and 90 days. The results revealed that up to 10 % incorporation of BLA improved compressive strength by 10 %, while higher BLA proportions (up to 20 %) displayed superior performance in durability tests as compared to the conventional mix. The results reveal the potentials of banana leave ash to refine the concrete matrix by formation of addition C-S-H gel which leads towards a better performance specially in terms of durability aspect. Hence, banana leaf ash (BLA) is an efficient concrete ingredient, particularly up to 10 % of the mix. Beyond this threshold, it's still suitable for applications where extreme strength isn't the primary concern, because there may be a slight reduction in compressive strength.

摘要

建筑业的快速发展带来了与原材料枯竭和温室气体排放增加相关的挑战。为应对这一问题,诸如农业残余物等替代材料因其具有减少碳排放和废弃物产生的潜力而日益受到关注。在此背景下,本研究优化了香蕉叶灰作为部分水泥替代品的使用,重点关注耐久性,并确定可持续混凝土的理想水泥与灰的比例。为此,制备了不同比例(即0%、5%、10%、15%和20%)的用香蕉叶灰部分替代水泥的混凝土混合物,并对其物理、力学和耐久性(耐酸和耐硫酸盐性)性能进行了分析。抗压强度、耐酸性和耐硫酸盐性测试持续90天,间隔为7天、28天和90天。结果表明,掺入高达10%的香蕉叶灰可使抗压强度提高10%,而与传统混合物相比,较高比例(高达20%)的香蕉叶灰在耐久性测试中表现出更优异的性能。结果揭示了香蕉叶灰通过形成额外的C-S-H凝胶来优化混凝土基体的潜力,这尤其在耐久性方面带来更好的性能。因此,香蕉叶灰是一种有效的混凝土成分,特别是在混合物中占比高达10%时。超过这个阈值,它仍然适用于不以极限强度为主要关注点的应用,因为抗压强度可能会略有降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7986/11004408/ba246562fba9/gr1.jpg

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