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首页> 外文期刊>European Journal of Lipid Science and Technology >Detection of adulteration of sesame and peanut oils via volatiles by GC x GC-TOF/MS coupled with principal components analysis and cluster analysis
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Detection of adulteration of sesame and peanut oils via volatiles by GC x GC-TOF/MS coupled with principal components analysis and cluster analysis

机译:GC x GC-TOF / MS结合主成分分析和聚类分析通过挥发物检测芝麻和花生油的掺假

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The method of headspace coupled with comprehensive two-dimensional GC-time-of-flight MS (HS-GC x GC-TOF/MS) was applied to differentiate the volatile flavor compounds of three types of pure vegetable oils (sesame oils, peanut oils, and soybean oils) and two types of adulterated oils (sesame oils and peanut oils adulterated with soybean oils). Thirty common volatiles, 14 particular flavors and two particular flavors were identified from the three types of pure oils, from the sesame oils, and from the soybean oils, respectively. Thirty-one potential markers (variables), which are crucial to the forming of different vegetable oil flavors, were selected from volatiles in different pure and adulterated oils, and they were analyzed using the principal component analysis (PCA) and cluster analysis (CA) approaches. The samples of three types of pure vegetable oil were completely classified using the PCA and CA. In addition, minimum adulteration levels of 5 and 10% can be differentiated in the adulteration of peanut oils and sesame oils with soybean oils, respectively. Practical applications: The objective was to develop one kind of potential differentiated method to distinguish high cost vegetable oils from lower grade and cheaper oils of poorer quality such as soybean oils. The test result in this article is satisfactory in discriminating adulterated oils from pure vegetable oils, and the test method is proved to be effective in analyzing different compounds. Furthermore, the method can also be used to detect other adulterants such as hazelnut oil and rapeseed oil. The method is an important technical support for public health against profit-driven illegal activities.
机译:顶空方法结合全面的二维飞行时间质谱(HS-GC x GC-TOF / MS)来区分三种类型的纯植物油(芝麻油,花生油)的挥发性风味化合物和大豆油)和两种掺假油(芝麻油和掺有豆油的花生油)。从三种类型的纯油,芝麻油和大豆油中分别鉴定出30种常见挥发物,14种特殊香精和两种特殊香精。从不同的纯净油和掺假油中的挥发物中选择了31种对形成不同植物油风味至关重要的潜在标记(变量),并使用主成分分析(PCA)和聚类分析(CA)对其进行了分析。方法。使用PCA和CA对三种类型的纯植物油样品进行了完全分类。此外,在花生油和芝麻油与大豆油的掺假中,最低掺假水平分别为5%和10%。实际应用:目的是开发一种潜在的区分方法,以区分高成本的植物油与低品质和劣质的廉价油,例如大豆油。本文的测试结果在区分adult杂油和纯植物油方面是令人满意的,并且该测试方法被证明可以有效地分析不同的化合物。此外,该方法还可以用于检测其他掺杂物,例如榛子油和菜籽油。该方法是公共卫生防范以利益为导向的非法活动的重要技术支持。

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