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Hydrogenation of methyl sorbate and soybean esters with polymer‐bound metal catalysts
Author(s) -
Frankel E. N.,
Friedrich J. P.,
Bessler T. R.,
Kwolek W. F.,
Holy N. L.
Publication year - 1980
Publication title -
journal of the american oil chemists' society
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.512
H-Index - 117
eISSN - 1558-9331
pISSN - 0003-021X
DOI - 10.1007/bf02662056
Subject(s) - linolenate , catalysis , degree of unsaturation , chemistry , selectivity , polymer , organic chemistry , polymer chemistry , medicinal chemistry , fatty acid
New polymer‐bound hydrogenation catalysts were made by complexing PdCl 2 , RhCl 3 ·3H 2 O, or NiCl 2 with anthranilic acid anchored to chloromethylated polystyrene. The Pd(II) and Ni(II) polymers were reduced to the corresponding Pd(O) and Ni(O) catalysts with NaBH 4 . In the hydrogenation of methyl sorbate, these polymer catalysts were highly selective for the formation of methyl 2‐hexenoate. The diene to monoene selectivity decreased in the order: Pd(II), Pd(O), Rh(I), Ni(II), Ni(O). Kinetic studies support 1,2‐reduction of the Δ4 double bond of sorbate as the main path of hydrogenation. In the hydrogenation of soybean esters, the Pd(II) polymer catalysts proved superior because they were more active than the Ni(II) polymers and produced less trans unsaturation than the Rh(I) polymers. Hydrogenation with Pd(II) polymers at 50~100 C and 50 to 100 psi H 2 decreased the linolenate content below 3% and increased trans unsaturation to 10~26%. The linolenate to linoleate selectivity ranged from 1.6 to 3.2. Reaction parameters were analyzed statistically to optimize hydrogenation. Recycling through 2 or 3 hydrogenations of soybean esters was demonstrated with the Pd(II) polymers. In comparison with commercial Pd‐on‐alumina, the Pd(II) polymers were less active and as selective in the hydrogenation of soybean esters but more selective in the hydrogenation of methyl sorbate.

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