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以电子垃圾塑料部分替代粗集料对塑料混凝土进行性能评估

Performance Evaluation of Plastic Concrete Modified with E-Waste Plastic as a Partial Replacement of Coarse Aggregate.

作者信息

Ahmad Farhan, Jamal Arshad, Mazher Khwaja Mateen, Umer Waleed, Iqbal Mudassir

机构信息

Civil Engineering Department, Faculty of Engineering Sciences, National University of Modern Languages, Rawalpindi 44000, Pakistan.

Department of Civil and Environmental Engineering, College of Design and Built Environment, King Fahd University of Petroleum & Minerals, Dhahran 31261, Saudi Arabia.

出版信息

Materials (Basel). 2021 Dec 27;15(1):175. doi: 10.3390/ma15010175.

Abstract

Plastic electronic waste (E-waste) is constantly growing around the world owing to the rapid increase in industrialization, urbanization, and population. The current annual production rate of E-waste is 3-4% in the world and is expected to increase to 55 million tons per year by 2025. To reduce the detrimental impact on the environment and save natural resources, one of the best solutions is to incorporate waste plastic in the construction industry to produce green concrete. This study examines the use of manufactured plastic coarse aggregate (PCA) obtained from E-waste as a partial replacement of natural coarse aggregate (NCA) in concrete. Six types of concrete mix with 10%, 20%, 30%, 40%, and 50% substitution of NCA (by volume) with PCA are prepared and tested. This study investigates the effect of manufactured PCA on the fresh and hardened characteristics of concrete. The properties of recycled plastic aggregate concrete (RPAC) studied include workability, fresh density, dry density, compressive strength (CS), splitting tensile strength (STS), flexural strength (FS), sorptivity coefficient, abrasion resistance, ultrasonic pulse velocity (UPV), and alternate wetting and drying (W-D). The results indicate that the CS, STS, and FS of RPAC declined in the range of 9.9-52.7%, 7.8-47.5%, and 11-39.4%, respectively, for substitution ratios of 10-50%. However, the results also indicate that the incorporation of PCA (10-50%) improved the workability and durability characteristics of concrete. A significant decrement in the sorptivity coefficient, abrasion loss, and UPV value was observed with an increasing amount of PCA. Furthermore, RPAC containing different percentages of PCA revealed better results against alternate W-D cycles with respect to ordinary concrete.

摘要

由于工业化、城市化和人口的快速增长,全球范围内的塑料电子垃圾(电子垃圾)数量持续增加。目前,全球电子垃圾的年增长率为3%-4%,预计到2025年将增至每年5500万吨。为减少对环境的不利影响并节约自然资源,最佳解决方案之一是将废塑料应用于建筑业以生产绿色混凝土。本研究探讨了将从电子垃圾中获取的人造塑料粗骨料(PCA)作为天然粗骨料(NCA)的部分替代品用于混凝土的情况。制备并测试了六种混凝土混合物,其中PCA替代NCA的比例(按体积计)分别为10%、20%、30%、40%和50%。本研究调查了人造PCA对混凝土新拌及硬化性能的影响。所研究的再生塑料骨料混凝土(RPAC)的性能包括工作性、新拌密度、干密度、抗压强度(CS)、劈裂抗拉强度(STS)、抗弯强度(FS)、吸水率系数、耐磨性、超声脉冲速度(UPV)以及干湿循环(W-D)。结果表明,对于10%-50%的替代率,RPAC的CS、STS和FS分别下降了9.9%-52.7%、7.8%-47.5%和11%-39.4%。然而,结果还表明,掺入PCA(10%-50%)改善了混凝土的工作性和耐久性。随着PCA用量的增加,吸水率系数、磨损损失和UPV值显著降低。此外,与普通混凝土相比,含有不同百分比PCA的RPAC在干湿循环试验中表现出更好的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0455/8745999/c62b01fdb052/materials-15-00175-g001.jpg

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