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A novel approach to monitor the oxidation process of different types of heated oils by using chemometric tools

机译:一种使用化学计量工具监测不同类型的加热油的氧化过程的新方法

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摘要

The oxidative stability of seven oils with different fatty acid profiles was assessed. Oxidation at 0, 2 and 4 h at 180 °C was monitored by measuring the absorbance of thiobarbituric acid reactive substances (TBARS) along the absorption spectrum (300–600 nm), the volatile aldehydes (HS-SPME–GC–MS) and the fatty acid profile (FID-GC).TBARS absorption spectrum behavior depended on the lipid composition of heated oils. Higher absorbance increments during heating were noticed at 390 nm compared to 532 nm (from 2 to 21 fold higher depending on the oil), pointing to its better sensitivity to detect oxidation. Furthermore, a close relationship between ABS390, the loss of polyunsaturated fatty acids and their corresponding oxidation compounds (volatile aldehydes) was revealed by Principal Component Analysis.Multiparametric equations allowed predicting the formation of volatile aldehydes of heated oils by measuring only two parameters: TBARS390 during their heating, and the lipid profile in unheated oils (MUFA, ω-3 and ω-6). Results pointed out the interest of choosing ABS390 when the oxidative evolution of vegetable oils under heating is assessed by the TBARS test.
机译:评估了七种具有不同脂肪酸谱的油的氧化稳定性。通过测量沿吸收光谱(300–600 nm)的硫代巴比妥酸反应性物质(TBARS),挥发性醛(HS-SPME–GC–MS)的吸光度来监测180°C在0、2和4 h时的氧化TBARS吸收光谱行为取决于加热油的脂质组成。与532 nm相比,在390 nm处观察到加热过程中的吸光度增加更高(取决于油,高2至21倍),这表明其检测氧化的灵敏度更高。此外,通过主成分分析揭示了ABS390,多不饱和脂肪酸及其相应的氧化化合物(挥发性醛)的损失之间的密切关系。多参数方程式仅通过测量以下两个参数即可预测加热油中挥发性醛的形成:TBARS390它们的加热以及未加热油(MUFA,ω-3和ω-6)中的脂质分布。结果指出,当通过TBARS测试评估加热下植物油的氧化放出时,选择ABS390的兴趣。

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