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Bio-Oil as Substitute of Phenol for Synthesis of Resol-Type Phenolic Resin as Wood Adhesive by
  • Dong, Fangjia
  • Wang, Mingcun
  • Wang, Zhehui
Source: International Journal of Chemical Reactor Engineering
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Bio-Oil Heavy Fraction as a Feedstock for Hydrogen Generation Via Chemical Looping Process: Reactor Design and Hydrodynamic Analysis by
  • Zeng, Dewang
  • Xiao, Rui
  • Zhang, Shuai
  • Zeng, Jimin
Source: International Journal of Chemical Reactor Engineering
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Catalytic Steam Re Forming of Bio-Oil Aqueous Fraction for Hydrogen Production Over Ni-Mo Supported on Modified Sepiolite Catalysts by
  • liu, Shaomin
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Carbon Deposition on Ni/Zro2-Ceo2 Catalyst During Steam Re Forming of Acetic Acid by
  • Hu, Rong-Rong
  • Yan, Chang-Feng
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Production of a Hydrogen-Rich Gas from Fast Pyrolysis Bio-Oils: Comparison Between Homogeneous and Catalytic Steam Re Forming Routes by
  • Remon, J
  • Broust, F
  • Valette, J
  • Chhiti, Y
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Distributed Production of Hydrogen by Auto-Thermal Re Forming of Fast Pyrolysis Bio-Oil by
  • Czernik, S
  • French, Richard
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Catalytic Steam Re Forming of Bio-Oil by
  • Dahl, S. D
  • Trane, R
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Experimental Research on Acetic Acid Steam Re Forming Over Co-Fe Catalysts and Subsequent Density Functional Theory Studies by
  • li, Xinbao
  • Wang, Shurong
  • Guo, Long
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Sustainable Hydrogen Production from Steam Re Forming of Bio-Oil Model Compound Based on Carbon Deposition/Elimination by
  • Wu, C
  • liu, R
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Thermodynamic Analysis of Aqueous Phase Re Forming of Three Model Compounds in Bio-Oil for Hydrogen Production by
  • Xie, Jianjun
  • Su, Deren
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Economic Assessment of Flash Co-Pyrolysis of Short Rotation Coppice and Biopolymer Waste Streams by
  • Comelissen, T
  • Kuppens, T
Source: Journal of Environmental Management
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Production of Synthesis Gas by Partial Oxidation and Steam Re Forming of Biomass Pyrolysis Oils by
  • Rennard, David
  • French, Rick
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Bio-Oil Steam Re Forming, Partial Oxidation Or Oxidative Steam Re Forming Coupled with Bio-Oil Dry Re Forming to Eliminate Co2 Emission by
  • Hu, Xun
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Hydrogen Production from Bio-Oil Aqueous Fraction with in Situ Carbon Dioxide Capture by
  • Yan, Chang-Feng
  • Hu, En-Yuan
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Hydrogen Production from Catalytic Steam Re Forming of Bio-Oil Aqueous Fraction Over Ni/Ceo2-Zro2 Catalysts by
  • Cheng, Fei-Fei
  • Yan, Chang-Feng
  • Hu, Rong-Rong
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Non-Catalytic Partial Oxidation of Bio-Oil to Synthesis Gas for Distributed Hydrogen Production by
  • Mardani, Jonathan R
  • Dibenedetto, Joelie
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Hydrogen Production by Low-Temperature Re Forming of Organic Compounds in Bio-Oil Over a Cnt-Promoting Ni Catalyst by
  • Hou, Tao
  • Yuan, lixia
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Thermodynamic Analysis of Steam Assisted Conversions of Bio-Oil Components to Synthesis Gas by
  • Aktas, Seda
  • Karakaya, Mustafa
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Thermodynamic Analysis of Hydrogen Production Via Autothermal Steam Re Forming of Selected Components of Aqueous Bio-Oil Fraction by
  • Vagia, Ekaterini Ch
  • Lemonidou, Angeliki A
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Production of Hydrogen from Bio-Oil Using Cao As A Co2 Sorbent by
  • Kinoshita, C. M
  • Turn, S. Q
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
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