A comprehensive two-scale model for predicting the oxidizability of fatty acid methyl ester mixtures

被引:1
作者
Touffet, Maxime [1 ]
Smith, Paul [1 ]
Vitrac, Olivier [2 ]
机构
[1] Cargill R&D Ctr Europe, Global Core R&D, Havenstr 84, B-1800 Vilvoorde, Belgium
[2] Univ Paris Saclay, UMR SayFood Paris Saclay Food & Bioprod Engn Res U, INRAE, F-91120 Palaiseau, France
关键词
Oil thermooxidation; Predictive modeling; Fatty acid methyl esters; Oxidation; Co-oxidation; Geometric mean rule; Hydroperoxides; Radical-chain reactions; ABSOLUTE RATE CONSTANTS; ALKYL RADICALS; OLEIC-ACID; HYDROCARBON AUTOXIDATION; ALIPHATIC SUBSTITUTIONS; OXIDATION STABILITY; THERMAL-OXIDATION; KINETIC-MODEL; OIL; HYDROPEROXIDES;
D O I
10.1016/j.foodres.2023.113289
中图分类号
TS2 [食品工业];
学科分类号
0832 ;
摘要
The intricate mechanisms of oil thermooxidation and their accurate prediction have long been hampered by the combinatory nature of propagation and termination reactions involving randomly generated radicals. To unravel this complexity, we suggest a two-scale mechanistic description that connects the chemical functions (scale 1) with the molecular carriers of these functions (scale 2). Our method underscores the importance of accounting for cross-reactions between radicals in order to fully comprehend the reactivities in blends. We rigorously tested and validated the proposed two-scale scheme on binary and ternary mixtures of fatty acid methyl esters (FAMEs), yielding three key insights: (1) The abstraction of labile protons hinges on the carrier, defying the conventional focus on hydroperoxyl radical types. (2) Termination reactions between radicals adhere to the geometric mean law, exhibiting symmetric collision ratios. (3) The decomposition of hydroperoxides emerges as a monomolecular process above 80 degrees C, challenging the established combinatorial paradigm. Applicable across a wide temperature range (80 degrees C to 200 degrees C), our findings unlock the production of blends with controlled thermooxidation stability, optimizing the use of vegetable oils across applications: food science, biofuels, and lubricants.
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页数:17
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