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Chemometric Discrimination of the Geographical Origin of Three Greek Cultivars of Olive Oils by Stable Isotope Ratio Analysis

机译:通过稳定同位素比分析对三种希腊品种橄榄油品种的地理来源的化学计量判断

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摘要

Α stable isotope ratio mass spectrometer was used for stable isotope ratio (i.e., δ13C, δ18O, and δ2H) measurements, achieving geographical discrimination using orthogonal projections to latent structures discriminant analysis. A total of 100 Greek monovarietal olive oil samples from three different olive cultivars (cv. Koroneiki, cv. Lianolia Kerkyras, and cv. Maurolia), derived from Central Greece and Peloponnese, were collected during the 2019–2020 harvest year aiming to investigate the effect of botanical and geographical origin on their discrimination through isotopic data. The selection of these samples was made from traditionally olive-growing areas in which no significant research has been done so far. Samples were discriminated mainly by olive cultivar and, partially, by geographical origin, which is congruent with other authors. Based on this model, correct recognition of 93.75% in the training samples and correct prediction of 100% in the test set were achieved. The overall correct classification of the model was 91%. The predictability based on the externally validated method of discrimination was good (Q2 (cum) = 0.681) and illustrated that δ18O and δ2H were the most important isotope markers for the discrimination of olive oil samples. The authenticity of olive oil based on the examined olive varieties can be determined using this technique.
机译:α稳定同位素比质谱仪用于稳定同位素比(即Δ13C,Δ18O和Δ2H)测量,使用正交突起实现地理识别,以潜伏结构判别分析。来自三种不同橄榄品种的100个希腊单体橄榄油样品(CV.Koroneiki,CV。Lianolia Kerkyras和Cv。Maurolia)来自希腊中部和伯罗奔尼撒,于2019 - 2020年收获年度旨在调查植物和地理位源对通过同位素数据辨别的影响。这些样品的选择是由传统的橄榄树生长区域制成,其中到目前为止没有进行重大研究。样品主要由橄榄品种歧视,部分地是由地理来源的,这与其他作者一致。基于该模型,实现了在训练样品中的正确识别93.75%,并在测试集中的校正预测100%。该模型的整体正确分类为91%。基于外部验证的辨别方法的可预测性是良好的(Q2(暨)= 0.681),并说明Δ18O和Δ2H是用于寡核样品辨别的最重要的同位素标记。可以使用该技术确定基于所检查的橄榄品种的橄榄油真实性。

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