Esterification of oily-FFA and transesterification of high FFA waste oils using novel palm trunk and bagasse-derived catalysts
Ezebor, F.
2014
Source PublicationEnergy Conversion and Management
ISSN0196-8904
Volume88Issue:0Pages:1143-1150
AbstractWaste cooking oil is increasingly becoming a significant component of biodiesel feedstock and its conversion to FAME requires coupling of esterification and transesterification processes. In this study, new environmentally benign catalysts were prepared from oil palm trunk and sugarcane bagasse, which are sustainable because of the superfluity of oil palm trunk and abundant supply of bagasse. Effect of preparation variable, surface acidity and textural properties, pre-esterification of FFA in oil matrices and transesterification of waste oil under pseudo-infinite methanol and conventional methods were investigated. The preparation variable, H2SO4 impregnation time showed marginal effect on sulfonic acid density after 6 h, and the corresponding values for 6-10 h impregnations were 1.33 /- 0.01-1.41 /- 0.01mmol g(-1) for OPT and 1.44 /- 0.01-1.48 /- 0.01mmol g(-1) for SCB catalysts. In esterification of palmitic acid, activity of catalysts with different H2SO4 impregnation time correlates with their sulfonic acid density. The catalysts demonstrated rapid esterification of FFA in oil matrices under pseudo infinite methanol, reducing its content from 42 wt.% to <1 wt.% in just 15 min. Similarly, the conversions of waste oil by OPT and SCB derived catalysts were 80.6% and 83.2%, respectively after 4 h under pseudo-infinite methanol, and 43.7% and 45%, respectively after 6 h under conventional method. These catalysts have shown remarkable properties that are suitable for biodiesel production from waste oil. (C) 2014 Elsevier Ltd. All rights reserved.
Document Type期刊论文
Identifierhttps://ir.xtbg.ac.cn/handle/353005/7907
Collection热带植物资源可持续利用重点实验室特色文献_小桐子相关文献
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GB/T 7714
Ezebor, F.. Esterification of oily-FFA and transesterification of high FFA waste oils using novel palm trunk and bagasse-derived catalysts[J]. Energy Conversion and Management,2014,88(0):1143-1150.
APA Ezebor, F..(2014).Esterification of oily-FFA and transesterification of high FFA waste oils using novel palm trunk and bagasse-derived catalysts.Energy Conversion and Management,88(0),1143-1150.
MLA Ezebor, F.."Esterification of oily-FFA and transesterification of high FFA waste oils using novel palm trunk and bagasse-derived catalysts".Energy Conversion and Management 88.0(2014):1143-1150.
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