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废发动机油作为沥青再生和改性的可持续方法:综述

Waste engine oil as a sustainable approach for asphalt rejuvenation and modification: A review.

作者信息

Mehmood Raza, Jakarni Fauzan Mohd, Muniandy Ratnasamy, Hassim Salihudin, Nik Daud Nik Norsyahariati, Ansari Anwaar Hazoor

机构信息

Department of Civil Engineering, Faculty of Engineering, Universiti Putra Malaysia, 43400, UPM, Serdang, Selangor, Malaysia.

Department of Civil Engineering, Faculty of Engineering, Balochistan University of Information Technology, Engineering, and Management Sciences, 87300, Quetta, Pakistan.

出版信息

Heliyon. 2024 Nov 27;10(23):e40737. doi: 10.1016/j.heliyon.2024.e40737. eCollection 2024 Dec 15.

Abstract

The significant growth in road infrastructure worldwide over the last decade has resulted in a notable increase in the demand for asphalt binder. However, the utilization of asphalt binder in the road industry poses challenges to environmental sustainability and economic standpoints. The application of vehicular loads and exposure to environmental factors throughout the service life of roads contribute to the deterioration of binder properties, such as hardening and aging, ultimately leading to premature road failure. Therefore, researchers have strived to explore further alternative materials to overcome these challenges, to improve the performance of flexible pavements. Waste Engine Oil (WEO) is one such material that has shown promising effects on asphalt binder. This review aims to conduct an in-depth analysis of previous literature to explore the potential utilization of WEO as a modifier and rejuvenator for asphalt binders. WEO effectively rejuvenates aged asphalt binders, however, the required quantity for rejuvenation varies depending on asphalt characteristics. It was found that the inclusion of the WEO as asphalt modifier significantly affects the high-temperature properties of the WEO-modified asphalt binder. Conversely, WEO addition enhances lower temperature properties, improving thermal and fatigue resistance. Furthermore, the compromise properties of WEO-modified asphalt are enhanced by incorporating various additional additives such as lignin, SBS, polyphosphoric acid and crumb rubber. It was revealed that composite modification can partially substitute 8-15 % asphalt binder, which would be a way forward in cost-effective sustainable construction in the pavement industry. However, additional research is necessary to explore futuristic advancements in WEO modification technology.

摘要

在过去十年中,全球道路基础设施显著增长,导致对沥青结合料的需求显著增加。然而,道路行业中沥青结合料的使用对环境可持续性和经济角度都构成了挑战。在道路的整个使用寿命期间,车辆荷载的作用以及环境因素的影响会导致结合料性能恶化,如硬化和老化,最终导致道路过早损坏。因此,研究人员一直在努力探索更多替代材料来克服这些挑战,以提高柔性路面的性能。废机油(WEO)就是这样一种对沥青结合料显示出有前景效果的材料。本综述旨在对以往文献进行深入分析,以探索废机油作为沥青结合料改性剂和再生剂的潜在用途。废机油能有效再生老化的沥青结合料,然而,所需的再生用量因沥青特性而异。研究发现,将废机油作为沥青改性剂加入会显著影响废机油改性沥青结合料的高温性能。相反,添加废机油可增强低温性能,提高热稳定性和抗疲劳性。此外,通过加入各种额外的添加剂,如木质素、SBS、多聚磷酸和废橡胶粉,废机油改性沥青的综合性能得到增强。研究表明,复合改性可部分替代8% - 15%的沥青结合料,这将是路面行业经济高效可持续建设的一条前进道路。然而,有必要进行更多研究以探索废机油改性技术未来的进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/09a3/11647856/bfbdc248a617/gr1.jpg

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