Upgrading the characteristics of the bio-oil obtained from rapeseed oil cake pyrolysis through the catalytic treatment of its vapors

被引:22
作者
David, E. [1 ]
Kopac, J. [2 ]
机构
[1] Natl Inst Cryogen & Isotop Technol, St Uzinei 4,PO Raureni,POB 7, Rm Valcea 240050, Romania
[2] Univ Ljubljana, Fac Mech Engn, Askerceva 6, SI-1000 Ljubljana, Slovenia
关键词
Fe2O3/ZSM-5; catalyst; Rapeseed oil cake; Fixed bed reactor; Catalytic pyrolysis; Improved bio-oil; WET PEROXIDE OXIDATION; FE-ZSM-5; CATALYST; CO-CRACKING; BIOMASS; CONVERSION; ZSM-5; HYDROCARBONS; ZEOLITES; GASOLINE; ETHANOL;
D O I
10.1016/j.jaap.2019.104638
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
The present work is aimed to investigate the upgrading of rapeseed oil cake pyrolysis bio-oil (PBO) through catalytic treatment of its vapors in a fixed bed reactor. In this regard, HZSM-5 zeolite and promoted Fe2O3/ZSM5 samples were prepared. The HZSM-5 zeolite was synthesized by NaOH treatment and then it was used as support material to obtain Fe2O3-ZSM-5 catalysts (2.5-10 wt% Fe2O3 load) produced by metalorganic chemical vapour deposition (MOCVD). The support material and catalysts prepared were characterized by BET, XRD, SEM, EDX methods. The Fe2O3-ZSM-5 catalysts were then used in the study on improving the characteristics of the rapeseed oil cake pyrolysis bio-oil through catalytic treatment of its vapors.The results obtained by non-catalytic and catalytic pyrolysis experiments showed that bio-oil yields have decreased in the presence of catalysts. In addition, the bio-oil composition was determined by GC/MS method and it was observed that Fe2O3/ ZSM-5 catalyst lead to a significant improved quality of the pyrolysis bio-oil in comparison with product obtained by non-catalytic process. The catalyst improved the oxygen removal process from the organic phase of pyrolysis bio-oil and further increased the quantity of desirable products such as aromatic and phenolics compounds.
引用
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页数:11
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共 47 条
[1]   Synthetic fuel production from cottonseed: Fast pyrolysis and a TGA/FT-IR/MS study [J].
Apaydin-Varol, Esin ;
Uzun, Basak Burcu ;
Onal, Eylem ;
Putun, Ayse E. .
JOURNAL OF ANALYTICAL AND APPLIED PYROLYSIS, 2014, 105 :83-90
[2]   MOCVD growth of porous cerium oxide thin films on silicon substrate [J].
Avril, L. ;
Zanfoni, N. ;
Simon, P. ;
Imhoff, L. ;
Bourgeois, S. ;
Domenichini, B. .
SURFACE & COATINGS TECHNOLOGY, 2015, 280 :148-153
[3]   Review of fast pyrolysis of biomass and product upgrading [J].
Bridgwater, A. V. .
BIOMASS & BIOENERGY, 2012, 38 :68-94
[4]   Thermogravimetric analysis of the rapeseed cake [J].
Çulcuoglu, E ;
Ünay, E ;
Karaosmanoglu, F .
ENERGY SOURCES, 2001, 23 (10) :889-895
[5]   Syngas conversion to gasoline-range hydrocarbons over Pd/ZnO/Al2O3 and ZSM-5 composite catalyst system [J].
Dagle, Robert A. ;
Lizarazo-Adarme, Jair A. ;
Dagle, Vanessa Lebarbier ;
Gray, Michel J. ;
White, James F. ;
King, David L. ;
Palo, Daniel R. .
FUEL PROCESSING TECHNOLOGY, 2014, 123 :65-74
[6]   Enhancement of aromatics production from catalytic pyrolysis of biomass over HZSM-5 modified by chemical liquid deposition [J].
Dai, Gongxin ;
Wang, Shurong ;
Huang, Shuqiong ;
Zou, Qun .
JOURNAL OF ANALYTICAL AND APPLIED PYROLYSIS, 2018, 134 :439-445
[7]   Catalytic Fast Pyrolysis: A Review [J].
Dickerson, Theodore ;
Soria, Juan .
ENERGIES, 2013, 6 (01) :514-538
[8]   Production of renewable phenolic resins by thermochemical conversion of biomass: A review [J].
Effendi, A. ;
Gerhauser, H. ;
Bridgwater, A. V. .
RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2008, 12 (08) :2092-2116
[9]   Catalytic pyrolysis of biomass for biofuels production [J].
French, Richard ;
Czernik, Stefan .
FUEL PROCESSING TECHNOLOGY, 2010, 91 (01) :25-32
[10]   Methanol and ethanol conversion into hydrocarbons over H-ZSM-5 catalyst [J].
Hamieh, S. ;
Canaff, C. ;
Ben Tayeb, K. ;
Tarighi, M. ;
Maury, S. ;
Vezin, H. ;
Pouilloux, Y. ;
Pinard, L. .
EUROPEAN PHYSICAL JOURNAL-SPECIAL TOPICS, 2015, 224 (09) :1817-1830