Sulfonated SnO nanocatalysts a self-propagating combustion method for esterification of palm fatty acid distillate
Biodiesel derived from palm fatty acid distillate (PFAD) was produced via catalytic esterification using sulfonated tin oxide (HSO 3 − /SnO 2 ) as the superacid solid catalyst. In this work, the SnO 2 catalyst was synthesised by the self-propagating combustion (SPC) method, and activated using chlor...
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Veröffentlicht in: | RSC advances 2020-08, Vol.1 (49), p.29187-2921 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Biodiesel derived from palm fatty acid distillate (PFAD) was produced
via
catalytic esterification using sulfonated tin oxide (HSO
3
−
/SnO
2
) as the superacid solid catalyst. In this work, the SnO
2
catalyst was synthesised by the self-propagating combustion (SPC) method, and activated using chlorosulfonic acid. The SPC method was able to produce nano-sized particles with homogenous size and shape that were anchored with many HSO
3
−
ions, resulting in more exceptional acid properties that effectively esterified the PFAD feedstock into FAMEs (fatty acid methyl esters). Several studies based on metal oxide-based catalysts were also included for comparison. Under the optimised conditions of 9 : 1 (methanol-to-PFAD molar ratio), 4 wt% (catalyst loading), 100 °C (reaction temperature) and 3 h (reaction time), the FFA conversion and FAME yield were 98.9% and 93.8%, respectively. Besides, the sulfonated SnO
2
-spc catalyst can be reused in up to five consecutive cycles with an acceptable esterification performance and minimal sulfur leaching. It is worth mentioning that the SPC method is a greener and simpler technique to obtain the nanocatalysts. Overall, the production of FAME from low value, cheaper, abundant, and non-edible PFAD feedstock, assisted by a non-transition metal oxide of sulfonated SnO
2
catalyst, could reduce the cost of biodiesel production.
A facile SPC method gave a superacid sulfonated tin oxide nanocatalyst for the esterification of low-cost palm fatty acid distillate into biodiesel. |
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ISSN: | 2046-2069 |
DOI: | 10.1039/d0ra05110a |