Reaction synergy of bimetallic catalysts on ZSM-5 support in tailoring plastic pyrolysis for hydrogen and value-added product production

被引:8
作者
Fu, Wenming [2 ,3 ]
Cheng, Yoke Wang [3 ,4 ]
Xu, Dequan [2 ,3 ]
Zhang, Yaning [1 ]
Wang, Chi-Hwa [2 ,3 ]
机构
[1] Harbin Inst Technol HIT, Sch Energy Sci & Engn, Harbin 150001, Peoples R China
[2] Natl Univ Singapore, Dept Chem & Biomol Engn, 4 Engn Dr 4, Singapore 117585, Singapore
[3] Energy & Environm Sustainabil Solut Megac E2S2, Campus Res Excellence & Technol Enterprise CREATE, Singapore 138602, Singapore
[4] Natl Univ Singapore, NUS Environm Res Inst, 1 Create Way,Create Tower 15-02, Singapore 138602, Singapore
基金
中国国家自然科学基金; 新加坡国家研究基金会;
关键词
Plastic; Catalytic pyrolysis; NiCo binary; Hydrogen production; Jet fuel; BIOMASS; GASIFICATION; POLYETHYLENE; AROMATICS; ZEOLITE; CE;
D O I
10.1016/j.apenergy.2024.123853
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Hydrogen, viz. a green energy carrier, is poised to considerably contribute to the empowerment of a sustainable society. By valorizing plastics, catalytic pyrolysis was envisaged as a promising route to produce green hydrogen and value-added product here. Firstly, the screening of optimal catalyst support (from activated carbon and four zeolites: M-zeolite, B-zeolite, Y-zeolite, ZSM-5) was executed by studying catalytic polypropylene (PP) pyrolysis over supported Ni catalysts. In view of the highest H2 yield (19.2 mmol/gPP) of Ni/ZSM-5, ZSM-5 was put forth as the optimal catalyst support. Then, the identification of optimal active metal (from Ni, Fe, Co, FeNi, FeCo, and NiCo) was performed by running the catalytic PP pyrolysis over ZSM-5 supported catalysts. For catalytic PP pyrolysis, NiCo/ZSM-5 was the optimal catalyst with the highest H2 yield (28.7 mmol/gPP), while the resulting pyrolysis oil demonstrated potential for use as jet fuel. From catalytic pyrolysis of various plastics over NiCo/ ZSM-5, polystyrene gave the highest H2 composition (83.2 vol%) of pyrolysis gas and high composition (52.8 area%) of benzocyclobutene (useful chemicals for semiconductor and microelectronics fields) in pyrolysis oil. Lastly, the catalytic mechanism was discussed based on the results, revealing NiCo's remarkable enhancement in H 2 yield to 28.7 mmol/g, which surpassed the individual yields of Ni (19.2 mmol/g) and Co (10.2 mmol/g), thereby underscoring the synergistic effect of NiCo. This study supports the recycling of plastics waste into hydrogen energy and valuable products, contributing to environmental pollution mitigation.
引用
收藏
页数:16
相关论文
共 50 条
  • [1] Catalytic Pyrolysis of Waste Polyethylene Using Combined CaO and Ga/ZSM-5 Catalysts for High Value-Added Aromatics Production
    Fu, Linchen
    Xiong, Qingang
    Wang, Qinhui
    Cai, Li
    Chen, Zhaohui
    Zhou, Yefeng
    ACS SUSTAINABLE CHEMISTRY & ENGINEERING, 2022, 10 (29) : 9612 - 9623
  • [2] Enhanced aromatics production via co-pyrolysis of biomass and plastic by Zn modified ZSM-5 catalysts
    Sun, Daoxuan
    Sun, Laizhi
    Han, Dong
    Chen, Lei
    Yang, Shuangxia
    Li, Tianjin
    Dong, Zhiguo
    Zhao, Baofeng
    Xu, Meirong
    Tian, Shue
    Xie, Xinping
    Si, Hongyu
    Hua, Dongliang
    JOURNAL OF ANALYTICAL AND APPLIED PYROLYSIS, 2025, 189
  • [3] Metal-doped high silica ZSM-5 nanocatalyst for efficient conversion of plastic to value-added hydrocarbons
    Rahimi, Samira
    Yousefi, Mohammad Reza
    Rostamizadeh, Mohammad
    POLYMER DEGRADATION AND STABILITY, 2021, 191
  • [4] Self-assembly kieselguhr-based ZSM-5 for catalytic pyrolysis of mask waste to produce high value-added aromatics
    Gu, Yufei
    Ge, Hucheng
    Liu, Yuke
    Wei, Qi
    Gao, Tianhua
    Gu, Hengshuo
    Fu, Hongbing
    Li, Fuwei
    Lin, Hongfei
    Miao, Lei
    Li, Zhixia
    FUEL, 2024, 358
  • [5] Catalytic pyrolysis of plastic wastes with two different types of catalysts: ZSM-5 zeolite and Red Mud
    Lopez-Urionabarrenechea, A.
    de Marco, I.
    Caballero, B. M.
    Laresgoiti, M. F.
    Adrados, A.
    Aranzabal, A.
    APPLIED CATALYSIS B-ENVIRONMENTAL, 2011, 104 (3-4) : 211 - 219
  • [6] Synergy between vanadium and molybdenum in bimetallic ZSM-5 supported catalysts for ethylene ammoxidation
    Rhimi, Baker
    Mhamdi, Mourad
    Kalevaru, Venkata Narayana
    Martin, Andreas
    RSC ADVANCES, 2016, 6 (70): : 65866 - 65878
  • [7] Ni/CeO2/ZSM-5 catalysts for the production of hydrogen from the pyrolysis-gasification of polypropylene
    Wu, Chunfei
    Williams, Paul T.
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2009, 34 (15) : 6242 - 6252
  • [8] Aromatics production with metal oxides and ZSM-5 as catalysts in catalytic pyrolysis of wood sawdust
    Che, Qingfeng
    Yang, Minjiao
    Wang, Xianhua
    Chen, Xu
    Chen, Wei
    Yang, Qing
    Yang, Haiping
    Chen, Hanping
    FUEL PROCESSING TECHNOLOGY, 2019, 188 : 146 - 152
  • [9] Adjustment of the ZSM-5 zeolite support towards the efficient hydrogen production by ethanol steam reforming on cobalt catalysts
    Grzybek, Gabriela
    Greluk, Magdalena
    Patulski, Piotr
    Stelmachowski, Pawel
    Tarach, Karolina
    Slowik, Grzegorz
    Rotko, Marek
    Valencia, Susana
    Rey, Fernando
    Gora-Marek, Kinga
    CHEMICAL ENGINEERING JOURNAL, 2023, 467
  • [10] Catalytic fast pyrolysis with metal-modified ZSM-5 catalysts in inert and hydrogen atmospheres
    Stanton, Alexander R.
    Iisa, Kristiina
    Yung, Matthew M.
    Magrini, Kimberly A.
    JOURNAL OF ANALYTICAL AND APPLIED PYROLYSIS, 2018, 135 : 199 - 208