Improvement in the production of aromatics from pyrolysis of plastic waste over Ga-modified ZSM-5 catalyst under C1-gas environment

  • Shim, Haneul
  • Pyo, Sumin
  • Kumar, Avnish
  • Khani, Yasin
  • Choi, Siyoung Q.
  • ... Cho, Kanghee
  • 외 2명
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초록

This study explores, for the first time, the influence of various C1 gases, such as methane (CH4), carbon dioxide (CO2), and biogas (CH4 + CO2), on catalytic pyrolysis of plastic waste (polypropylene) to evaluate their potential in producing aromatic hydrocarbons. Also, this study used the 0.5 wt%, 1 wt%, 3 wt%, and 5 wt% Ga-modified ZSM-5 catalyst and its reduction-oxidation processed catalysts owing to their promising catalytic properties. According to the results, the highest yield (39.5 wt%) of BTEX (benzene, toluene, xylene, and ethylbenzene) was achieved under CH4 over RO-GHZ(1) catalyst among all tested conditions. The reduction-oxidation process not only promotes a significant reduction of the Ga-size but also induces its diffusion inside the pore, compared to GHZ(1). This leads to the formation of highly active GaO+ ionic species, balancing the Lewis/Br & ouml;nsted ratio, thereby accelerating the aromatization reaction. The effect of Ga loading on the RO-GHZ catalyst was also evaluated systematically, which showed a negative impact on the BTEX yield owing to the lowering in the concentration of active GaO+ species. A detailed catalyst characterization supports the experimental results well. (c) 2025, Dalian Institute of Chemical Physics, Chinese Academy of Sciences. Published by Elsevier B.V. All rights reserved.

키워드

PolypropylenePyrolysisGa-loaded HZSM-5MethaneReduction-oxidationPROPANE AROMATIZATIONCO-AROMATIZATIONMETHANEHZSM-5CONVERSIONZEOLITESGALLIUMBIOMASSACTIVATIONBENZENE
제목
Improvement in the production of aromatics from pyrolysis of plastic waste over Ga-modified ZSM-5 catalyst under C1-gas environment
저자
Shim, HaneulPyo, SuminKumar, AvnishKhani, YasinChoi, Siyoung Q.Cho, KangheeLee, JechanPark, Young-Kwon
DOI
10.1016/S1872-2067(25)64683-3
발행일
2025-06
유형
Article
저널명
Chinese Journal of Catalysis
73
페이지
368 ~ 383