The transesterification of palm oil and methanol catalyzed by Bronsted acidic ionic liquids was investigated. Four eco-friendly Bronsted acidic ionic liquids were prepared and their structures were characterized by NMR, FT-IR and TG-DTG. The results demonstrated that [CyN1,1PrSO3H][p-TSA] was more efficient than the other ionic liquids and chosen as catalyst for further research. The influences of various reaction parameters on the conversion of palm oil to biodiesel were performed, and the orthogonal test was investigated to seek the optimum reaction conditions, which were illustrated as follows: methanol to oil mole ratio of 24:1, catalyst dosage of 3.0 wt% of oil, reaction temperature of 120 degrees C, reaction time of 150 min, and the biodiesel yield achieved 98.4%. In addition, kinetic study was established for the conversion process, with activation energy and pre-exponential factor of 122.93 kJ.mol(-1) and 1.83 x 10(15), respectively. Meanwhile, seven-time recycling runs of ionic liquid were completed with ignorable loss of its catalyst activity. The refined biodiesel met the biodiesel standard EN 14214. (C) 2017 The Chemical Industry and Engineering Society of China, and Chemical Industry Press. All rights reserved.
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School of Chemical Engineering, Fuzhou UniversitySchool of Chemical Engineering, Fuzhou University
Yaoyao Feng
Ting Qiu
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School of Chemical Engineering, Fuzhou UniversitySchool of Chemical Engineering, Fuzhou University
Ting Qiu
Jinbei Yang
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School of Chemical Engineering, Fuzhou University
School of Ocean Science and Biochemistry Engineering, Fuqing Branch of Fujian Normal UniversitySchool of Chemical Engineering, Fuzhou University
Jinbei Yang
Ling Li
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School of Chemical Engineering, Fuzhou UniversitySchool of Chemical Engineering, Fuzhou University
Ling Li
Xiaoda Wang
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School of Chemical Engineering, Fuzhou UniversitySchool of Chemical Engineering, Fuzhou University
Xiaoda Wang
Hongxing Wang
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School of Chemical Engineering, Fuzhou UniversitySchool of Chemical Engineering, Fuzhou University