Nasr Emna G, Epova Ekaterina, Souissi Radhia, Abderrazak Houyem, Sebilo Mathieu, Donard Olivier F X
Institut des Sciences Analytiques et de Physicochimie pour l'Environnement et les Matériaux, Université de Pau et des Pays de l'Adour, Pau 64000, France.
Laboratoire des matériaux utiles, Institut National de Recherche et d'Analyse Physicochimique Technopole de Sidi Thabet, Ariana 2020, Tunisia.
J Agric Food Chem. 2025 Mar 12;73(10):6151-6157. doi: 10.1021/acs.jafc.4c10734. Epub 2025 Feb 27.
The measurement of Sr/Sr isotope ratios is a powerful tool for determining the geographical origin of food products, helping to fight against food fraud. This study evaluates the potential of Sr isotopic ratios for tracing the provenance of Tunisian olive oil. Soil, roots, leaves, olive oil, and pomace were analyzed from multiple orchards across Tunisia. A strong correlation ( = 0.99, < 0.001) between the Sr/Sr isotope ratio of olive oil and the paired soil confirms the geological influence. Statistical analysis (ANOVA, > 0.05) demonstrated that extraction methods for the production of olive oil do not significantly alter the Sr isotopic signature. These findings establish Sr isotope analysis as a robust, processing-independent geographical tracer. By developing a Sr isotope database for Tunisian olive oil, this study provides a scientific framework for authentication, supporting regulatory efforts to prevent mislabeling and protect product integrity in global markets.
锶/锶同位素比值的测量是确定食品地理来源的有力工具,有助于打击食品欺诈行为。本研究评估了锶同位素比值在追溯突尼斯橄榄油产地方面的潜力。对突尼斯多个果园的土壤、根系、树叶、橄榄油和果渣进行了分析。橄榄油的锶/锶同位素比值与配对土壤之间存在很强的相关性(r = 0.99,p < 0.001),证实了地质影响。统计分析(方差分析,p > 0.05)表明,橄榄油生产的提取方法不会显著改变锶同位素特征。这些发现确立了锶同位素分析作为一种强大的、与加工无关的地理示踪剂。通过建立突尼斯橄榄油的锶同位素数据库,本研究提供了一个认证的科学框架,支持监管努力,以防止全球市场上的误标并保护产品完整性。