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Production and fuel properties of fast pyrolysis oil/bio-diesel blends
Authors:Manuel Garcia-Perez  Jun Shen  Xiao Shan Wang  Chun-Zhu Li
Affiliation:a Department of Chemical Engineering, Monash University, Victoria 3800, Australia
b Department of Biological Systems Engineering, Washington State University, Pullman, WA, 99164, USA
c Department of Chemical Engineering, Taiyuan University of Technology, Taiyuan, Shanxi, 030024, People's Republic of China
d Curtin Center for Advanced Energy Science and Engineering, Curtin University of Technology, GPO Box U1987, Perth, WA 6845, Australia
Abstract:This paper describes the production and fuel properties of fast pyrolysis oil/bio-diesel blends. The bio-oils used in this study were produced from the fast pyrolysis of woody biomasses, oil mallee and pine. The bio-diesel employed was derived from canola vegetable oil. The conditions used to prepare the bio-oil/bio-diesel blends, as well as some of the fuel properties of the resulting bio-diesel rich phase, are reported. The experimental results show that the solubility of fast pyrolysis oils in bio-diesel is not as high as was previously reported for decanted oils obtained by Auger pyrolysis. The carboxylic acids, mono-phenols, furans and lignin derived oligomers were the compounds most soluble in bio-diesel, while the sugars, on the other hand, showed poor solubility. Although the presence of phenols enhances the oxidation stability of the bio-diesel rich phases, other fuel properties deteriorate. For example, the content of solid residues increased primarily because of the solubilisation of lignin derived oligomers, which were quantified by UV-fluorescence. Concentrations as high as 3.5 mass % of these compounds were observed in the bio-diesel rich phase. The solubility of bio-oil in bio-diesel was enhanced by using ethyl acetate/bio-diesel blends. Some fuel properties of the bio-diesel rich phase, after the removal of ethyl acetate, are reported.
Keywords:Bio-oil  Bio-diesel  Pyrolysis  Fuel properties
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