Production of Jatropha biodiesel fuel over sulfonic acid-based solid acids
Chen, S. Y.
2014
Source PublicationBioresource Technology
ISSN0960-8524
Volume157Pages:346-350
AbstractSulfonic acid-functionalized platelet SBA-15 mesoporous silica with an acid capacity of 2.44 mmol H g-cat(-1) (shortly termed 15SA-SBA-15-p) was one-pot synthesized by co-condensation method. When applied as solid acid catalyst in synthesis of Jatropha biodiesel fuel (BDF), the 15SA-SBA-15-p catalyst showed higher activity and resistances to water and free fatty acid (FFA) than commercial sulfonic resins of Amberlyst-15 and SAC-13. For the continuous Jatropha BDF production, a steady 75-78 wt% of fatty acid methyl ester (FAME) content was obtained over 15SA-SBA-15-p catalyst at 150 degrees C for 75 h, whereas the Amberlyst-15 and SAC-13 catalysts were quickly deactivated due to the decomposition of thermally unstable framework and serious leaching of sulfonic acids. More importantly, the quality, stability and cold flow characteristic of Jatropha BDF synthesized by 15SA-SBA-15-p catalyst were better than those synthesized by Amberlyst-15 and SAC-13 catalysts, making the blending with petro-diesel an easy task. (C) 2014 Elsevier Ltd. All rights reserved.
Document Type期刊论文
Identifierhttps://ir.xtbg.ac.cn/handle/353005/7287
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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Chen, S. Y.. Production of Jatropha biodiesel fuel over sulfonic acid-based solid acids[J]. Bioresource Technology,2014,157:346-350.
APA Chen, S. Y..(2014).Production of Jatropha biodiesel fuel over sulfonic acid-based solid acids.Bioresource Technology,157,346-350.
MLA Chen, S. Y.."Production of Jatropha biodiesel fuel over sulfonic acid-based solid acids".Bioresource Technology 157(2014):346-350.
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