STUDY ON HYDROGEN PRODUCTION OYF BIO-OIL CATALYTIC REFORMING BY CHARCOAL CATALYST

被引:0
|
作者
Zhang, Y. H. [1 ]
机构
[1] Guangdong Univ Petrochem Technol, Coll Chem Engn, Maoming 525000, Peoples R China
来源
关键词
catalyzes; stability; char; gas cleaning; steam reforming process; BIOMASS GASIFICATION; AIR GASIFICATION; FLUIDIZED-BED; TAR; PYROLYSIS; GAS; DECOMPOSITION; REDUCTION; CRACKING; OLIVINE;
D O I
10.15666/aeer/1704_85418553
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
In this study Charcoal was used as a primary bio-oil steam reforming catalyst. The performance of the catalyst was investigated. The dynamic parameters of the first order dynamic equation were calculated. The stability of charcoal was also examined. The results indicated that first, when reforming temperatures were lower than 700 degrees C, the bio-oil contents in the outlet dry gas were very high. This indicated unsuitability for further catalytic reforming over a metal catalyst. Second, the catalytic activity of charcoal became very significant under high temperature conditions (>= 800 degrees C); thus, the apparent activation energy of the first order kinetic rate constant is 56.98 kJ/mol, and the pre-exponential factor is 1.58 x 10(4) s(-1). Third, the bio-oil contents in the outlet dry gas varied from a decrease to a slight increase in the first 2 h under a catalytic reforming temperature of 900 degrees C, a WHSV (weight hourly space velocity) of 2.6 h(-1), a bio-oil feeding rate of 47.02 g/h, and a S/B (mass steam-to-bio-oil) ratio of 2. Overall, the charcoal exhibited an excellent bio-oil removal rate (conversion > 99.6%) and the bio-oil contents in the outlet dry gas were lower than 1.89 g/Nm(3), hence signifying suitability for further reforming over metal catalysts.
引用
收藏
页码:8541 / 8553
页数:13
相关论文
共 50 条
  • [41] Hydrogen production from pine and poplar bio-oils by catalytic steam reforming. Influence of the bio-oil composition on the process
    Remon, J.
    Broust, F.
    Volle, G.
    Garcia, L.
    Arauzo, J.
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2015, 40 (16) : 5593 - 5608
  • [42] Combined effect of bio-oil composition and temperature on the stability of Ni spinel derived catalyst for hydrogen production by steam reforming
    Garcia-Gomez, Naiara
    Valecillos, Jose
    Valle, Beatriz
    Remiro, Aingeru
    Bilbao, Javier
    Gayubo, Ana G.
    FUEL, 2022, 326
  • [43] Steam reforming of model compounds from bio-oil for hydrogen production over Pd/HZSM-5 Catalyst
    Wang, Qi
    Guo, Long
    Li, Xinbao
    ADVANCES IN CHEMICAL ENGINEERING II, PTS 1-4, 2012, 550-553 : 558 - +
  • [44] Hydrogen Production by Low-temperature Steam Reforming of Bio-oil over Ni/HZSM-5 Catalyst
    Qiu, Song-bai
    Gong, Lu
    Liu, Lu
    Hong, Cheng-gui
    Yuan, Li-xia
    Li, Quan-xin
    CHINESE JOURNAL OF CHEMICAL PHYSICS, 2011, 24 (02) : 211 - 217
  • [45] Study on Catalytic Pyrolysis of Manchurian Ash for Production of Bio-Oil
    Wang, Shurong
    Liu, Qian
    Wang, Kaige
    Guo, Xiujuan
    Luo, Zhongyang
    Cen, Kefa
    Fransson, Torsten
    INTERNATIONAL JOURNAL OF GREEN ENERGY, 2010, 7 (03) : 300 - 309
  • [46] Effects of Current on Microcosmic Properties of Catalyst and Reforming of Bio-oil
    Yuan, Li-xia
    Ye, Tong-qi
    Gong, Fei-yan
    Li, Quan-xin
    CHINESE JOURNAL OF CHEMICAL PHYSICS, 2009, 22 (01) : 34 - 40
  • [47] Effect of the pre-reforming by Fe/bio-char catalyst on a two-stage catalytic steam reforming of bio-oil
    Liu, Qicong
    Xiong, Zhe
    Syed-Hassan, Syed Shatir A.
    Deng, Zengtong
    Zhao, Xingyu
    Su, Sheng
    Xiang, Jun
    Wang, Yi
    Hu, Song
    FUEL, 2019, 239 : 282 - 289
  • [48] Effect of mixing bio-oil aqueous phase model compounds on hydrogen production in non-catalytic supercritical reforming
    Gutierrez Ortiz, F. J.
    Campanario, F. J.
    Ollero, P.
    REACTION CHEMISTRY & ENGINEERING, 2017, 2 (05): : 679 - 687
  • [49] Electrochemical catalytic reforming of oxygenated-organic compounds: a highly efficient method for production of hydrogen from bio-oil
    Yuan, Lixia
    Chen, Yaqiong
    Song, Chongfu
    Ye, Tongqi
    Guo, Qingxiang
    Zhu, Qingshi
    Torimoto, Youshifumi
    Li, Quanxin
    CHEMICAL COMMUNICATIONS, 2008, (41) : 5215 - 5217
  • [50] Hydrogen production from catalytic reforming of the aqueous fraction of pyrolysis bio-oil with modified Ni-Al catalysts
    Yao, Dingding
    Wu, Chunfei
    Yang, Haiping
    Hu, Qiang
    Nahil, Mohamad A.
    Chen, Hanping
    Williams, Paul T.
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2014, 39 (27) : 14642 - 14652