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首页> 外文期刊>Chemistry and Physics of Lipids >A detailed identification study on high-temperature degradation products of oleic and linoleic acid methyl esters by GC-MS and GC-FTIR
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A detailed identification study on high-temperature degradation products of oleic and linoleic acid methyl esters by GC-MS and GC-FTIR

机译:GC-MS和GC-FTIR对油酸和亚油酸甲酯高温降解产物的详细鉴定研究

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摘要

GC-MS and GC-FTIR were complementarily applied to identify oxidation compounds formed under frying conditions in methyl oleate and linoleate heated at 180 °C. The study was focused on the compounds that originated through hydroperoxide scission that remain attached to the glyceridic backbone in fats and oils and form part of non-volatile molecules. Twenty-one short-chain esterified compounds, consisting of 8 aldehydes, 3 methyl ketones, 4 primary alcohols, 5 alkanes and 1 furan, were identified. In addition, twenty non-esterified volatile compounds, consisting of alcohols, aldehydes and acids, were also identified as major non-esterified components. Furanoid compounds of 18 carbon atoms formed by a different route were also identified in this study. Overall, the composition of the small fraction originated from hydroperoxide scission provides a clear idea of the complexity of the new compounds formed during thermoxidation and frying.
机译:互补应用GC-MS和GC-FTIR鉴定在油炸条件下在加热到180°C的油酸甲酯和亚油酸酯中形成的氧化化合物。该研究的重点是通过氢过氧化物裂解产生的化合物,这些化合物保持附着在脂肪和油脂中的甘油主链上,并形成非挥发性分子的一部分。鉴定了二十一种短链酯化化合物,该化合物由8个醛,3个甲基酮,4个伯醇,5个烷烃和1个呋喃组成。另外,由醇,醛和酸组成的二十种未酯化的挥发性化合物也被确定为主要的未酯化组分。在这项研究中还鉴定了通过不同途径形成的18个碳原子的呋喃类化合物。总的来说,源自氢过氧化物断裂的小部分成分清楚地表明了在热氧化和油炸过程中形成的新化合物的复杂性。

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