Civil Engineering Department, Engineering Faculty, Firat University, 23119 Elazig, Turkey.
Waste Manag. 2022 Jun 1;146:53-65. doi: 10.1016/j.wasman.2022.04.045. Epub 2022 May 11.
This study aims to examine the mechanical, environmental, and economic properties of recycled aggregate concretes produced using emerged recycled concrete aggregates from the buildings that were demolished in a controlled way after the 24 January 2020, Elazig-Sivrice earthquake. For this purpose, 24 series of recycled aggregate concretes were produced, water-to-cement ratios of 0.30-0.35-0.40-0.45-0.50, and cement dosages were chosen as 320-370-420 kg/m. 100% recycled concrete aggregate was used in the prepared concrete mixtures. Analyses were made on the response surface method using the mixture ratios and test results of 24 series. The effectiveness of the developed models was examined on 6 Control recycled aggregate concrete. Then, Energy Consumption, Global Warming Potential, Waste Generation, and Abiotic Depletion were considered to assess the environmental impacts of recycled aggregate concretes. In order to make environmental and economic comparisons of recycled aggregate concretes and natural aggregate concretes according to these impact categories, 4 different scenarios were developed. Then, a detailed feasibility analysis was made for 4 different scenarios, and the economic results of recycled aggregate concretes and natural aggregate concretes were evaluated. Regarding the arisen millions of tons of waste materials and newly constructed buildings after the earthquake, recycling waste materials is considered crucial. Therefore, a holistic assessment was taken with this study, and the usability of recycled concrete aggregates was examined in detail.
本研究旨在研究使用在 2020 年 1 月 24 日埃尔祖鲁姆-锡夫里切地震后以受控方式拆除的建筑物中产生的新兴再生混凝土骨料生产的再生骨料混凝土的机械、环境和经济特性。为此,生产了 24 系列再生骨料混凝土,水灰比为 0.30-0.35-0.40-0.45-0.50,水泥用量选为 320-370-420kg/m。在制备的混凝土混合物中使用了 100%的再生混凝土骨料。使用混合物比例和 24 系列的测试结果,通过响应面法进行了分析。在 6 个对照再生骨料混凝土上检查了开发模型的有效性。然后,考虑能源消耗、全球变暖潜力、废物产生和非生物消耗来评估再生骨料混凝土的环境影响。为了根据这些影响类别对再生骨料混凝土和天然骨料混凝土进行环境和经济比较,制定了 4 种不同的方案。然后,对 4 种不同的方案进行了详细的可行性分析,并评估了再生骨料混凝土和天然骨料混凝土的经济结果。考虑到地震后产生的数百万吨废物和新建筑,回收废物被认为至关重要。因此,本研究进行了全面评估,并详细检查了再生混凝土骨料的可用性。