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  4. Preparation and characterization of mesoporous polymer-based solid acid catalysts for biodiesel production via transesterification of palmitic oils
 
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Preparation and characterization of mesoporous polymer-based solid acid catalysts for biodiesel production via transesterification of palmitic oils

Journal
Catalysis Today
Date Issued
2021
Author(s)
Lin K.-S
Mdlovu N.V
Chan H.-Y
KEVIN CHIA-WEN WU  
Wu J.C.-S
Huang Y.-T.
JEFFREY CHI-SHENG WU  
DOI
10.1016/j.cattod.2021.11.017
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85119428069&doi=10.1016%2fj.cattod.2021.11.017&partnerID=40&md5=e1f6161d053e67b43441515428f50a9b
https://scholars.lib.ntu.edu.tw/handle/123456789/598212
Abstract
The hydrophobic and spherical PDVB-x-MeCN (x: molar ratio of p-styrene sulfonate/divinylbenzene; x = 0.0, 0.1, 0.3, 0.5, and 1.0) catalyst was synthesized via polymerization and the ion-exchange process. Moreover, the hydrophobic property of PDVB-x-MeCN with high contact angles (> 124.0?) was directly observed with a contact angle analyzer. The most appropriate x value of PDVB-x-MeCN for free fatty acid (FFA) removal and biodiesel production was 0.5, which was identified with gas chromatography (GC). During a 6-h transesterification-esterification, FFA removal and biodiesel yield of PDVB-0.5-MeCN reached 83.2% and 83.3%, respectively, at a ratio 45/1 (v/v) of methanol/palmitic acid mixture, approaching that of the Amberlyst 15 ones (83.4%). On the basis of these results, waste oils containing FFA can be transesterified efficiently from triglycerides and FFA into biodiesel. ? 2021 Elsevier B.V.
Subjects
Biodiesel
Esterification
Fatty free acid removal
Polymer-based solid acidic catalyst
Transesterification
Catalysts
Contact angle
Esters
Gas chromatography
Hydrophobicity
Ion exchange
Molar ratio
Palmitic acid
Styrene
Acidic catalysts
Biodiesel production
Free acids
Free fatty acid
Mesoporous polymers
Polymer based
Solid acid catalysts
Transesterifications
SDGs

[SDGs]SDG11

Type
journal article

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