首页> 外文期刊>Grasas y Aceites: International Journal of Fats and Oils >Relationship between changes in peroxide value and conjugated dienes during oxidation of sunflower oils with different degree of unsaturation.
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Relationship between changes in peroxide value and conjugated dienes during oxidation of sunflower oils with different degree of unsaturation.

机译:不同不饱和度的葵花籽油氧化过程中过氧化物值变化与共轭二烯之间的关系。

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摘要

Peroxide value and the determination of conjugated dienes by UV absorption at 232 nm are normally applied alternatively for the evaluation of primary oxidation compounds. The objective of this study was to define the relationship between both indexes during oil oxidation in sunflower oils with different degree of unsaturation. The oils studied were conventional sunflower oil (SO) and high oleic sunflower oil (HOSO). For comparative purposes, methyl linoleate, whose hydroperoxides are conjugated diene hydroperoxides, was also studied. Samples were oxidized at 40 °C in the dark. In order to accelerate oxidation at 40 °C, the natural antioxidants present in the oils were removed, and a high surface to oil volume ratio (0.8 cm-1) was applied to guarantee total air availability. Linear regressions with high correlation coefficients between peroxide values and conjugated dienes were found for the three lipid systems studied (0.9988, 0.9991 and 0.9977 for methyl linoleate, SO and HOSO, respectively). Significant differences in the slopes of the lines were found (0.0974, 0.0854 and 0.0503 for methyl linoleate, SO and HOSO, respectively), indicating the formation of non-conjugated hydroperoxides from oleic acid in the oils, even in the oxidation of SO with a high degree of unsaturation. Consequently, only peroxide value would be reliable for the evaluation of primary oxidation compounds in oils of different degree of unsaturation, unless adequate calibration lines (peroxide value versus conjugated dienes) are applied.
机译:通常,过氧化值和通过232 nm处的UV吸收测定共轭二烯的方法通常可用于评估初级氧化化合物。这项研究的目的是确定具有不同不饱和度的葵花籽油在氧化过程中两个指标之间的关系。所研究的油为常规葵花籽油(SO)和高油酸葵花籽油(HOSO)。为了比较,还研究了其氢过氧化物为共轭二烯氢过氧化物的亚油酸甲酯。样品在黑暗中于40°C氧化。为了在40°C时加速氧化,去除了油中存在的天然抗氧化剂,并应用了高的表面与油体积比(0.8 cm-1)以保证总的空气利用率。对于所研究的三种脂质体系,发现过氧化物值与共轭二烯之间具有高相关系数的线性回归(亚油酸甲酯,SO和HOSO分别为0.9988、0.9991和0.9977)。发现线的斜率存在显着差异(亚油酸甲酯,SO和HOSO分别为0.0974、0.0854和0.0503),这表明油中油酸会形成非共轭氢过氧化物,即使在SO与四氯化碳的氧化作用下也是如此。高度不饱和因此,除非应用了足够的校准线(过氧化物值与共轭二烯),否则只有过氧化物值才可用于评估不同不饱和度的油中的初级氧化化合物。

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