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◆ Journal of Analytical and Applied Pyrolysis2026-05-08· Syngas

Hydrogen-rich syngas production by pyrolysis-catalytic steam reforming of waste plastic over metal-loaded carbon catalysts

Yukun Li, Zhiheng Ma, Bingyang Li, Meiqian Chen, Hui Zhou, Paul T. Williams

原始摘要(英文原文)· Original abstract
The pyrolysis-catalytic steam reforming of waste plastic offers a promising route for the sustainable production of hydrogen-rich syngas. In this study, a series of carbon-supported metal catalysts (Zn/C, Cu/C, and Fe/C) with a nominal metal loading of 5 wt% were prepared and systematically evaluated for the pyrolysis-catalytic steam reforming of high-density polyethylene in a two-stage reactor system. The structural evolution of fresh and used catalysts was comprehensively characterized using scanning electron microscopy coupled with energy-dispersive X-ray spectroscopy, X-ray diffraction, and N 2 physisorption analyses. The carbon support provides a porous and thermally stable framework that enables uniform metal dispersion and minimizes structural interference, allowing the catalytic roles of different metal species to be systematically evaluated. The results demonstrate that metal species distinctly regulate product distribution, carbon conversion pathways, and hydrogen potential, following the order of Fe/C > Cu/C > Zn/C. Density functional theory (DFT) calculations reveal that these differences originate from the coupled effects of hydrocarbon activation and water dissociation on metal surfaces. This work establishes a clear structure-performance-mechanism relationship and provides mechanistic insights for the rational utilization of metal-containing waste-derived char catalysts in pyrolysis-catalytic steam reforming systems.
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Hydrogen-rich syngas production by pyrolysis-catalytic steam reforming of waste plastic over metal-loaded carbon catalysts — 科研速览 Science Skim