4.7 Article

The Mineral Oil Hydrocarbon Paradox in Olive Pomace Oils

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FOODS
卷 12, 期 3, 页码 -

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MDPI
DOI: 10.3390/foods12030434

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GCxGC-TOF/MS; hydrocarbons; mineral oil; MOSH-MOAH; olive pomace oil; online HPLC-GC-FID

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The aim of this study was to determine the content of mineral oil hydrocarbons (MOH) in olive pomace oil and contribute to the monitoring required by EFSA. The study provided information on the concentrations and molecular mass profiles of MOH, as well as identified the structures that prove the harmless nature of the mineral oil aromatic hydrocarbon (MOAH) fraction. The results showed that the C25-C35 fraction is the main fraction to which humans are exposed through olive pomace oil, with concentrations dependent on the extraction process.
The aim of this work was to understand the actual content of mineral oil hydrocarbons (MOH) in olive pomace oil in order to contribute to the monitoring requested by EFSA for the food groups making a relevant impact on human background exposure. Such information will complement both the information inferred from the limits established by the EU and the interpretation of the coming toxicological risk assessment. At the same time, the origin of such a group of compounds is discussed. From the raw material to the commercial product, olive pomace oils were sampled and analyzed at different points and/or conditions. Through the ultimate online HPLC-GC-FID system, we gathered information on the MOH concentrations and molecular mass profiles (C-fractions), and through GCxGC-TOF/MS, we identified the key structures that prove the innocuousness of the mineral oil aromatic hydrocarbon (MOAH) fraction. Our approaches provided chromatographic signals on the C10-C50 range, rendering 33-205 mg/kg mineral oil saturated hydrocarbon (MOSH) and 2-55 mg/kg MOAH in the commercial product. The results confirmed that the C25-C35 cut is the main fraction to which humans are exposed via olive pomace oil, showing concentrations highly dependent on the extraction process. Moreover, the identification of the main MOAH groups showed that in olive pomace oil, mainly 1- and 2-ring species were present, being virtually free of the carcinogenic 3-7 ring aromatics.

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