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May 28, 2026Carbon and Hydrogen1 citationsOpen Access

Insight of Elementary Steps on the Polyethylene and Polypropylene Co‐Pyrolysis

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NXNaiwen XuLZLiang ZOUNHNa Hua

Key Points

  • This research aims to explore the mechanisms behind the co‐pyrolysis of polyethylene (PE) and polypropylene (PP) and their effects on product yield.
  • Employed pyrolysis with gas chromatography and mass spectrometry (Py–GC/MS) to analyze product yields.
  • Examined variations in product distribution at different PE and PP blending ratios.
  • Utilized computational modeling to understand intermolecular reactions.
  • The yield of normal hydrocarbons in co‐pyrolysis is significantly higher than predicted from individual pyrolysis behaviors.
  • Intermolecular hydrogen transfer between PP carbon radicals and PE chains promotes increased hydrocarbon production.
  • A synergistic effect was observed, enhancing overall product yield in the co‐pyrolysis system.

Abstract

ABSTRACT Pyrolysis with gas chromatography & mass spectrometry (Py–GC/MS) technique was employed to analyze the yield variation of products from PE and PP co‐pyrolysis at various blending ratios, aiming to explore the PE–PP co‐pyrolysis mechanism focus on the variations in the products distribution. The results indicate that a synergistic effect exists in the co‐pyrolysis of PE and PP. The actual yield of normal hydrocarbons in the co‐pyrolysis system is significantly higher than the theoretical weighted average yield estimated from the individual pyrolysis behavior of each component. The key to this synergistic effect in the PE–PP co‐pyrolysis system lies in the intermolecular hydrogen transfer reaction. In addition, suggested from computational modeling, the secondary carbon radicals generated from PP pyrolysis undergo intermolecular hydrogen transfer with PE chains, which promotes the pyrolysis of PE, thereby producing more normal hydrocarbon products.

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Cite This Study

Xu et al. (2026) studied this question.

synapsesocial.com/papers/6a17ddab3fad632b0f9da5d2https://doi.org/10.1002/cbh2.70069
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