Repo Dosen ULM

Selective hydroconversion of coconut oil-derived lauric acid to alcohol and aliphatic alkane over MoOx-modified Ru catalysts under mild conditions; Royal Society of Chemistry

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dc.contributor.author Sutomo, Sutomo
dc.date.accessioned 2023-02-09T01:28:46Z
dc.date.available 2023-02-09T01:28:46Z
dc.date.issued 2022-05-03
dc.identifier.citation 10.1039/d2ra02103j en_US
dc.identifier.uri https://repo-dosen.ulm.ac.id//handle/123456789/27118
dc.description.abstract Molybdenum oxide-modified ruthenium on titanium oxide (Ru–(y)MoOx/TiO2; y is the loading amount of Mo) catalysts show high activity for the hydroconversion of carboxylic acids to the corresponding alcohols (fatty alcohols) and aliphatic alkanes (biofuels) in 2-propanol/water (4.0/1.0 v/v) solvent in a batch reactor under mild reaction conditions. Among the Ru–(y)MoOx/TiO2 catalysts tested, the Ru– (0.026)MoOx/TiO2 (Mo loading amount of 0.026 mmol g 1) catalyst shows the highest yield of aliphatic n-alkanes from hydroconversion of coconut oil derived lauric acid and various aliphatic fatty acid C6– C18 precursors at 170–230 C, 30–40 bar for 7–20 h. Over Ru–(0.026)MoOx/TiO2, as the best catalyst, the hydroconversion of lauric acid at lower reaction temperatures (130 $ T # 150 C) produced dodecane-1-ol and dodecyl dodecanoate as the result of further esterification of lauric acid and the corresponding alcohols. An increase in reaction temperature up to 230 C significantly enhanced the degree of hydrodeoxygenation of lauric acid and produced n-dodecane with maximum yield (up to 80%) at 230 C, H2 40 bar for 7 h. Notably, the reusability of the Ru–(0.026)MoOx/TiO2 catalyst is slightly limited by the aggregation of Ru nanoparticles and the collapse of the catalyst structure. en_US
dc.language.iso en en_US
dc.publisher Royal Society of Chemistry, RSC Advances en_US
dc.relation.ispartofseries 2022;12
dc.subject Selective hydroconversion en_US
dc.title Selective hydroconversion of coconut oil-derived lauric acid to alcohol and aliphatic alkane over MoOx-modified Ru catalysts under mild conditions; Royal Society of Chemistry en_US
dc.type Article en_US


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