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◆ Journal of Applied Polymer Science2026-04-01· Materials science

Valorization of Waste Polyethylene Into High‐Performance Bitumen Materials Using Ethylene‐Vinyl Acetate as a Compatibilizer

Qi‐Rong Li, Haihua Li, Ji‐Wei Liu, Ke‐Qiang Sun, Shao‐Xin Liu, Peng Yang, Chun‐Long Xiong, Hong‐Xiang Zhou, Meng‐Zhi Zhou, Zhi‐Yong Tan, Jun‐Feng Su

原始摘要(英文原文)· Original abstract
ABSTRACT The global plastic waste crisis necessitates a portfolio of innovative and complementary recycling strategies, particularly, for polyethylene (PE), which constitutes a significant fraction of postconsumer waste. This study introduces a practical method to valorize waste PE in bitumen by using ethylene‐vinyl acetate (EVA) as a macromolecular compatibilizer, overcoming the severe thermodynamic immiscibility that typically leads to phase separation and poor pavement performance. This approach refined the composite morphology, reducing the dispersed polymer domain size from 200–500 nm to 50–150 nm, and enhanced storage stability (softening point difference Δ T = 2.9°C). The optimized hybrid binder (3% waste PE and 2% EVA) demonstrated a superior balance of properties: increased high‐temperature stiffness (softening point = 59.5°C; G * = 9.2 kPa), restored flexibility (ductility = 60 cm), and improved resistance to rutting ( G */sin δ = 9.77 kPa) and low‐temperature cracking (creep stiffness, S = 295 MPa at −18°C). Performance validation at the asphalt mixture level confirmed a 130% improvement in dynamic stability (2880 cycles/mm) and excellent moisture resistance (tensile strength ratio = 84.0%). This work provides a feasible complementary pathway to transform challenging postconsumer PE waste into a high‐performance paving material, contributing to the resolution of both environmental and infrastructural challenges.
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Valorization of Waste Polyethylene Into High‐Performance Bitumen Materials Using Ethylene‐Vinyl Acetate as a Compatibilizer — 科研速览 Science Skim