Catalytic upgrading of bio-oil model mixtures in the presence of microporous HZSM-5 and γ-Al2O3 based Ni, Ta and Zr catalysts

被引:7
|
作者
Guvenc, Can [1 ]
Alan, Enez [1 ]
Degirmencioglu, Pinar [1 ]
Ozcan, Merve Celik [1 ]
Karaman, Birce Pekmezci [1 ]
Oktar, Nuray [1 ]
机构
[1] Gazi Univ, Dept Chem Engn, Ankara, Turkiye
关键词
Mesoporous alumina; Bio-fuel; Bio-oil; Gasoline; Isoparaffin; Br onsted acidity; BIOMASS PYROLYSIS OIL; CO-CRACKING; ACETIC-ACID; GASOLINE; ZEOLITE; HYDROGENATION; PERFORMANCE; FRACTION;
D O I
10.1016/j.fuel.2023.128870
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
Bio-fuel production from bio-oil was investigated in the presence of microporous HZSM-5 and Al2O3 (MA) based catalysts. This study focused on the catalytic upgrading of a model bio-oil compound with ethanol for bio-fuel production. The model compound containing hydroxypropanol/furfural/formic acid: 4/6.5/5 by volume was used as a bio-oil mixture. Activity tests were performed under atmospheric pressure with a volumetric feed ratio of 30/70 bio-oil mixture/ethanol using a 0.5 g catalyst. In the reaction studies performed on the commercial microporous HZSM-5 catalyst, the optimum co-cracking temperature was determined as 400 degrees C. Mesoporous & gamma;-Al2O3 support was synthesized by the evaporation-induced self-assembly (EISA) synthesis method, and Ni, Ta, and Zr metals were incorporated into the structure of the catalyst by the impregnation method to improve the surface acidity. The synthesized catalysts were characterized by X-ray diffraction (XRD), X-ray absorption near edge spectroscopy (XANES), N2 adsorption-desorption, scanning electron microscopy energy dispersive spectroscopy (SEM/EDS), X-ray fluorescence (XRF), Fourier-transformed infrared spectroscopy (FTIR), pyridine adsorbed diffuse reflectance FTIR spectroscopy (DRIFTS), and thermogravimetric/differential thermal analysis (TGA-DTA). Monometallic and pure alumina catalysts indicated an ordered mesoporous structure with surface area values 106-389 m2/g. Lewis and Bronsted acid sites associated with mild acidity were observed in the DRIFTS results of the 10 wt% Zr-containing alumina catalyst (10Zr@MA). The highest oil phase selectivity and isoparaffin selectivity in oil phase values were obtained in the presence of 10Zr@MA as 17.22% and 80.96%, respectively. 10Zr@MA catalyst showed the best catalytic activity compared to other catalysts, with 9.54% coke formation.
引用
收藏
页数:12
相关论文
共 50 条
  • [31] Production of aromatic hydrocarbons by co-cracking of bio-oil and ethanol over Ga2O3/HZSM-5 catalysts
    Xing Zhang
    Jingfeng Wu
    Junhao Chen
    Liang Lu
    Lingjun Zhu
    Shurong Wang
    Chinese Journal of Chemical Engineering, 2022, 46 (06) : 126 - 133
  • [32] Production of aromatic hydrocarbons by co-cracking of bio-oil and ethanol over Ga2O3/HZSM-5 catalysts
    Zhang, Xing
    Wu, Jingfeng
    Chen, Junhao
    Lu, Liang
    Zhu, Lingjun
    Wang, Shurong
    CHINESE JOURNAL OF CHEMICAL ENGINEERING, 2022, 46 : 126 - 133
  • [33] Products characterization for fast in-situ catalytic pyrolysis of bio-oil over Ni/Al2O3
    Deng, Zengtong
    Wang, Yi
    Hu, Song
    Su, Sheng
    Jiang, Long
    Xiang, Jun
    2020 INTERNATIONAL SYMPOSIUM ON ENERGY ENVIRONMENT AND GREEN DEVELOPMENT, 2021, 657
  • [34] Nickel and cobalt incorporated mesoporous HZSM-5 catalysts for biofuel production from bio-oil model compounds
    Karaman, Birce Pekmezci
    RESEARCH ON CHEMICAL INTERMEDIATES, 2024, 50 (09) : 4465 - 4483
  • [35] Catalysts of Ni/α-Al2O3 and Ni/La2O3-αAl2O3 for hydrogen production by steam reforming of bio-oil aqueous fraction with pyrolytic lignin retention
    Valle, Beatriz
    Remiro, Aingeru
    Aguayo, Andres T.
    Bilbao, Javier
    Gayubo, Ana G.
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2013, 38 (03) : 1307 - 1318
  • [36] A green method to increase yield and quality of bio-oil: ultrasonic pretreatment of biomass and catalytic upgrading of bio-oil over metal (Cu, Fe and/or Zn)/γ-Al2O3
    Karnjanakom, Surachai
    Guan, Guoqing
    Asep, Bayu
    Du, Xiao
    Hao, Xiaogang
    Yang, Jingxuan
    Samart, Chanatip
    Abudula, Abuliti
    RSC ADVANCES, 2015, 5 (101): : 83494 - 83503
  • [37] Co-cracking of bio-oil model compound mixtures and ethanol over different metal oxide-modified HZSM-5 catalysts
    Wang, Shurong
    Cai, Qinjie
    Chen, Junhao
    Zhang, Li
    Zhu, Lingjun
    Luo, Zhongyang
    FUEL, 2015, 160 : 534 - 543
  • [38] Upgrading of Kraft Lignin-Derived Bio-Oil over Hierarchical and Nonhierarchical Ni and/or Zn/HZSM5 Catalysts
    Agarwal, Ashutosh
    Park, Seong-Jae
    Park, Jeong-Hun
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2019, 58 (51) : 22791 - 22803
  • [39] Upgrading pyrolysis bio-oil to hydrocarbon enriched biofuel over bifunctional Fe-Ni/HZSM-5 catalyst in supercritical methanol
    Cheng, Shouyun
    Wei, Lin
    Julson, James
    Muthukumarappan, Kasiviswanathan
    Kharel, Parashu Ram
    FUEL PROCESSING TECHNOLOGY, 2017, 167 : 117 - 126
  • [40] Effects of Preparation Method on the Performance of Ni/Al2O3 Catalysts for Hydrogen Production by Bio-Oil Steam Reforming
    Xinbao Li
    Shurong Wang
    Qinjie Cai
    Lingjun Zhu
    Qianqian Yin
    Zhongyang Luo
    Applied Biochemistry and Biotechnology, 2012, 168 : 10 - 20