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◆ Green Energy & Environment2026-01-13· Polyolefin

Efficient polyolefin plastic upcycling into jet fuel components over a Fe/Beta catalyst in decalin

Xingyu Zhang, Aoyi Tang, Youjing Tu, Ruikai Li, Yao Zhang, Ze Jun Song, Xinhao Shen, Junhong Liu, Yuan Liang, Shenggang Li, Lingzhao Kong

原始摘要(英文原文)· Original abstract
Jet-range hydrocarbons were produced from polyolefin waste via a one-pot conversion of high-density polyethylene (HDPE) in decalin using a bifunctional Fe/Beta catalyst. Operating at 300 °C for 90 min afforded a liquid yield of 84.0 wt%, with 96.9 area% in the kerosene cut (C 8 –C 16 ). The liquid product is rich in cycloalkanes (61.8 area%) and paraffins (24.4 area%), while aromatics remain limited (13.8 area%), consistent with aviation fuel specifications. Structure–performance analysis links the high activity and selectivity to uniformly dispersed Fe nanoparticles (2–5 nm) cooperating with tuned Brønsted/Lewis acidity on Beta zeolite. This metal–acid synergy enables controlled C–C scission and efficient hydrogenation, suppressing olefin accumulation and over-aromatization, thereby enhancing fuel quality. The results demonstrate a practical, mild route to upgrade plastic waste into drop-in jet-fuel components.
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