Hu Jingxuan, Jiang Xueliang, Chu Yaming, Xu Song, Xu Xiong
School of Materials Science and Engineering, Wuhan Institute of Technology, Wuhan 430205, China.
School of Chemical and Materials Engineering, College of Post and Telecommunication of WIT, Wuhan 430073, China.
Polymers (Basel). 2024 Aug 31;16(17):2494. doi: 10.3390/polym16172494.
To solve the problems on resource utilization and environmental pollution of waste concrete and waste polypropylene (PP) plastics, the recycling of them into asphalt pavement is a feasible approach. Considering the high melting temperature of waste PP, this study adopted a thermal-and-mechanochemical method to convert waste PP into high-performance warm-mix asphalt modifiers (PPMs) through the hybrid use of dicumyl peroxide (DCP), maleic anhydride (MAH), and epoxidized soybean oil (ESO) for preparing an asphalt mixture (RCAAM) containing recycled concrete aggregate (RCA). For the prepared RCAAM containing PPMs, the mixing temperature was about 30 °C lower than that of the hot-mix RCAAM containing untreated PP. Further, the high-temperature property, low-temperature crack resistance, moisture-induced damage resistance, and fatigue resistance of the RCAAM were characterized. The results indicated that the maximum flexural strain of the RCAAM increased by 7.8~21.4% after using PPMs, while the sectional fractures of the asphalt binder were reduced after damaging at low temperature. The use of ESO in PPMs can promote the cohesion enhancement of the asphalt binder and also improve the high-temperature deformation resistance and fatigue performance of the RCAAM. Notably, the warm-mix epoxidized PPMA mixture worked better close to the hot-mix untreated PPMA mixture, even after the mixing temperature was reduced by 30 °C.
为解决废弃混凝土和废弃聚丙烯(PP)塑料的资源利用及环境污染问题,将它们回收用于沥青路面是一种可行的方法。考虑到废弃PP的高熔点,本研究采用热-机械化学方法,通过混合使用过氧化二异丙苯(DCP)、马来酸酐(MAH)和环氧大豆油(ESO),将废弃PP转化为高性能温拌沥青改性剂(PPM),用于制备含有再生混凝土骨料(RCA)的沥青混合料(RCAAM)。对于制备的含PPM的RCAAM,其拌和温度比含未处理PP的热拌RCAAM低约30℃。此外,对RCAAM的高温性能、低温抗裂性、抗水损害性和疲劳性能进行了表征。结果表明,使用PPM后,RCAAM的最大弯拉应变提高了7.8%~21.4%,同时低温破坏后沥青胶结料的断面裂缝减少。在PPM中使用ESO可促进沥青胶结料的粘结增强,还能提高RCAAM的高温抗变形能力和疲劳性能。值得注意的是,即使拌和温度降低30℃,温拌环氧PPMA混合料的性能仍接近热拌未处理PPMA混合料。