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  4. Multi-scale designed CoxMn3–xO4spinels: Smart pre-catalysts towards high-efficiency pyrolysis-catalysis recycling of waste plastics
 
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2023
Journal Article
Title

Multi-scale designed CoxMn3–xO4spinels: Smart pre-catalysts towards high-efficiency pyrolysis-catalysis recycling of waste plastics

Abstract
In this work, multiscale designed 3-dimensional (3D) rose-like CoxMn3–xO4 spinel smart pre-catalysts that can self-convert into the targeted active site-rich Co/MnO catalysts were developed for the high-efficiency conversion of waste plastics. At a pre-catalyst to plastic weight ratio of 1:14, the carbon nanotube composites (CNCs) and H2 yield can reach 41 wt% and 36 mmol·g˗1pla., while the specific CNCs and H2 yield can be as high as 7.48 g˗1cat. and 634 mmol·g˗1pla.·g˗1cat. The latter is more than one order of magnitude higher than reported in the literature. Density functional theory calculations indicate that the Co/MnO catalyst exhibits excellent activity in the dissociation of alkanes (e.g., CH4). The resulting CNCs demonstrated excellent discharge capability and extended cycling performance when used as a lithium-ion battery anode. This work revealed an innovative recipe and novel insight for developing advanced catalyst materials as the next generation catalysts for the conversion of waste plastics.
Author(s)
Liu, Xingmin
Xu, Dan
Ding, Hui
Widenmeyer, Marc
Xie, Wenjie
Mellin, Maximilian
Qu, Fangmu
Chen, Guoxing  
Fraunhofer-Einrichtung für Wertstoffkreisläufe und Ressourcenstrategie IWKS  
Zhang, Yeshui
Zhang, Zhenyu
Rashid, Aasir
Molina-Luna, Leopoldo
Hofmann, Jan Philipp
Riedel, Ralf R.
Brett, Dan J.L.
Weidenkaff, Anke  orcid-logo
Fraunhofer-Einrichtung für Wertstoffkreisläufe und Ressourcenstrategie IWKS  
Journal
Applied catalysis. B, Environmental  
DOI
10.1016/j.apcatb.2022.122271
Language
English
Fraunhofer-Einrichtung für Wertstoffkreisläufe und Ressourcenstrategie IWKS  
Keyword(s)
  • Carbon nanotube composites

  • Co Mn O spinels x 3–x 4

  • H production 2

  • Pyrolysis-catalysis

  • Waste plastics

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