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Catalytic co-pyrolysis of rice straw and polystyrene for selective production of monocyclic aromatic hydrocarbons

4Citations signalées, ce qui n’est pas une note de qualité
2Institutions déclarées
1Pays d’affiliation déclarés

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Le résumé fourni par la source

Catalytic co-pyrolysis facilitates the efficient valorization of biomass and plastic waste while significantly boosting the yield of aromatic compounds in the pyrolysis products. In this study, catalytic co-pyrolysis of rice straw (RS) and polystyrene (PS) at a 1:1 mass ratio (designated as RS-PS) was carried out at 700 ℃ and pyrolysis gas chromatography-mass spectrometry (Py-GC/MS) was used for analysis. The catalysts HZSM-5, Co/HZSM-5 and Pr/HZSM-5 were analyzed using X-ray diffraction (XRD), scanning electron microscopy (SEM) and Fourier transform infrared spectroscopy (FTIR) for characterization. The characterization analysis indicated that the introduction of Co and Pr did not change the surface functional groups and crystal structure of HZSM-5. The consequence demonstrated that the three catalysts accelerated the generation of monocyclic aromatic hydrocarbons (MAH) and were resistant to the formation of oxygen-containing compounds, and the modification of Co and Pr also inhibited the formation of N-compounds. Compared with HZSM-5 and Co/HZSM-5, Pr/HZSM-5 had better catalytic effect on RS-PS, it had higher selectivity for MAH and inhibited oxygen-containing compounds more thoroughly. When the mass ratio of Pr/HZSM-5 to RS-PS was maintained at 2:1, the MAH yield was the highest (90.47 %), while the formation of polycyclic aromatic hydrocarbons (PAHs) remained comparatively low at 7.07 %. The introduction of Pr metal site, improved the acidity and catalytic performance of HZSM-5 molecular siolites, thereby promoting Diels-Alder reactions between furans and olefins, facilitating aromatization during pyrolysis, and ultimately increasing the MAH content. It also promoted the conversion of phenols, furans and other oxygenated compounds into aromatic hydrocarbons through decarbonylation, decarboxylation, and dehydroxylation reactions, while simultaneously strengthening the suppression of oxygenated compound formation. This study can provide a promising catalytic strategy for the efficient valorization of biomass and plastic waste resources. The introduction of Pr enhanced the Diels-Alder reaction between furans and olefins, promoted the aromatization reaction during the pyrolysis process, and increased the aromatic hydrocarbons content.

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Le contrôle bibliographique ouvert

DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
Catalytic co-pyrolysis of rice straw and polystyrene for selective production of monocyclic aromatic hydrocarbons
Date Crossref
01/01/2026
Éditeur
Elsevier BV
Type
journal-article

Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.

Où se fait cette recherche

  • Henan University of Technology Institute for Carbon Neutrality pays non établi dans la notice
    Université ou école supérieure
  • Changzhou University Institute of Urban and Rural Mining pays non établi dans la notice
    Université ou école supérieure
  • School of Environmental Engineering pays non établi dans la notice
    Université ou école supérieure
  • Zhengzhou International Cooperation Base for Science and Technology on Carbon Neutrality of Organic Solid Waste Conversion pays non établi dans la notice
    Institution

Institute for Carbon Neutrality — Henan University of Technology, Institute of Urban and Rural Mining — Changzhou University et School of Environmental Engineering, avec 1 autre affiliation.

Une affiliation ne permet pas de déduire la nationalité d’un auteur.

Les sujets associés

Thermochemical Biomass Conversion ProcessesZeolite Catalysis and SynthesisThermal and Kinetic Analysis

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