Polyethylene based on molecular weight design for eco‐friendly asphalt

Author:

Li Mengru1,Luo Chunjia12,Zhu Liuyu1,Cong Peiliang1,Li Huayi3,Chen Xi1,Zhang Yanmei1,Chao Min1,Yan Luke1ORCID

Affiliation:

1. School of Materials Science & Engineering Chang'an University Xi'an China

2. Key Laboratory of Road Construction Technology and Equipment, MOE Chang'an University Xi'an China

3. Key Laboratory of Engineering Plastics, Institute of Chemistry, Chinese Academy of Sciences Beijing China

Abstract

AbstractPolyethylene (PE) is widely used as a modifier for asphalt due to its low cost. However, PE increases the high‐temperature viscosity of asphalt, leading to higher construction temperatures and harmful emissions. In this study, PE‐modified asphalt with good road performance, energy saving and emission reduction was synthesized by adjusting the molecular weight (Mw) of PE. By studying the effect of PE with different Mw on the viscosity of asphalt, the Mw of PE that can reduce the high‐temperature viscosity of asphalt was concluded and the target product PE‐4 was synthesized. PE reduces the high‐temperature viscosity of asphalt when its Mw is less than the critical molecular weight (Mc) for molecular chain entanglement in the molten state. PE‐4 successfully reduced the high‐temperature viscosity of matrix asphalt. The pavement performance of PE‐4 modified asphalt was characterized. The results showed that PE‐4 reduced the penetration of asphalt, and improved its softening point, ductility, and rutting resistance. PE‐4 modified asphalt is an eco‐friendly asphalt with good road performance. The above data proved that PE with Mw less than Mc makes PE a promising asphalt modifier, which is beneficial to the green utilization of PE.

Funder

China Postdoctoral Science Foundation

National Natural Science Foundation of China

Publisher

Wiley

Subject

Materials Chemistry,Polymers and Plastics,Surfaces, Coatings and Films,General Chemistry

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