Gerges Najib N, Issa Camille A, Khalil Nariman J, Aintrazi Sarah
Department of Civil Engineering, Lebanese American University, Byblos, Lebanon.
Department of Civil Engineering, University of Balamand, Balamand, Lebanon.
Sci Rep. 2024 Jul 13;14(1):16189. doi: 10.1038/s41598-024-65516-0.
Concrete, the construction industry's most utilized construction material, has transformed the environment and the modern built-up lifestyle. Although concrete is a first-rate supplier to the carbon footprint, it is imperative for buildings to display sustainable characteristics. Scholars have explored techniques to lessen the carbon footprint and the way to put into effect strategic waste control plans in which waste is reused. This study explores the dual benefits wherein concrete ingredients are replaced through abandoned waste which reduces the unwanted waste materials that have a substantial carbon footprint and thus results in the recycling of waste as part of a sustainable economic system. In this study, timber ash is utilized as a partial substitute for sand and cement, crumb rubber and waste glass as a partial substitute for sand, recycled concrete, and waste glass as a substitute for gravel. Characteristics studies were done to check the influence of each waste replacement on the modulus of elasticity of concrete. More than sixty-five combinations of waste have been examined to attain the modulus of elasticity of concrete. A total of about 200 concrete cylinders were cast to provide at least three cylinders for each generated data point. Three different ASTM standards were utilized to determine the modulus of elasticity of each mix. Four mixes comprising of the combination of two waste materials and two mixes comprising of the combination of three waste materials replacing natural materials were determined to exhibit an equal or superior modulus of elasticity of the control mix of 25 GPa.
混凝土作为建筑行业使用最为广泛的建筑材料,改变了环境和现代的建筑生活方式。尽管混凝土是碳足迹的主要来源之一,但建筑具备可持续特性至关重要。学者们已探索出减少碳足迹的技术以及实施战略废物管理计划(即将废物再利用)的方法。本研究探讨了双重益处,即通过废弃废物替代混凝土成分,这减少了具有大量碳足迹的无用废料,从而实现废物回收,成为可持续经济系统的一部分。在本研究中,木灰被用作沙子和水泥的部分替代品,碎橡胶和废玻璃用作沙子的部分替代品,再生混凝土和废玻璃用作砾石的替代品。进行了特性研究,以检验每种废物替代对混凝土弹性模量的影响。已对超过65种废物组合进行了研究,以得出混凝土的弹性模量。总共浇筑了约200个混凝土圆柱体,以便为每个生成的数据点至少提供三个圆柱体。使用三种不同的美国材料与试验协会(ASTM)标准来测定每种混合物的弹性模量。已确定由两种废料组合而成的四种混合物以及由三种废料替代天然材料组合而成的两种混合物,其弹性模量与25吉帕的对照混合物相等或更高。