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Keywords = reology

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24 pages, 3434 KiB  
Review
Demystifying E407 and E407a Additives (Carrageenans) Through Their Gastronomic Alchemy: A Contribution to Increase Consumer Sovereignty
by Carla Matos, Manuela M. Moreira, Hélio Loureiro and Lígia Rebelo Gomes
Gastronomy 2024, 2(4), 191-214; https://doi.org/10.3390/gastronomy2040014 - 4 Dec 2024
Viewed by 3070
Abstract
Food waste has been recognized as an environmentally damaging practice that is ethically wrong and does not contribute to sustainable development. According to the Food and Agriculture Organization of the United Nations, one-third of the food produced each year for human consumption is [...] Read more.
Food waste has been recognized as an environmentally damaging practice that is ethically wrong and does not contribute to sustainable development. According to the Food and Agriculture Organization of the United Nations, one-third of the food produced each year for human consumption is wasted. The use of additives can help to prevent food waste if they can overcome the problem of the limited supply of natural ingredients, increase the shelf life of food, and simplify cooking procedures. Therefore, the demystification of food additives, as well as their importance and uses, will help to increase consumers’ consciousness and enable them to make informed choices. This work reviews the physical/chemical properties of carrageenans, which are widely used as thickening and stabilizing agents in a wide range of everyday foods. This critical revision was made through bibliographic searches between January and May 2024 in the PubMed and Web of Science databases. The following keywords, in English, were used: “carrageenan*” and “additive*”, combined with the Boolean operator “AND”. Depending on the field of knowledge, another keyword was added to the search, such as, for instance, “chemical composition*”, “physical properties*”, “reology*”, “legal framework*”, “extraction*”, or “molecular cuisine*”. Additionally, the search allowed us to highlight how carrageenans can contribute to a better result in the final preparation of food and how they can be used in modern cuisine using simple molecular gastronomy recipes. Full article
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20 pages, 3245 KiB  
Article
Varietal and Geographical Origin Characterization of Peaches and Nectarines by Combining Analytical Techniques and Statistical Approach
by Gabriella Tamasi, Claudia Bonechi, Gemma Leone, Marco Andreassi, Marco Consumi, Paola Sangiorgio, Alessandra Verardi, Claudio Rossi and Agnese Magnani
Molecules 2021, 26(14), 4128; https://doi.org/10.3390/molecules26144128 - 7 Jul 2021
Cited by 7 | Viewed by 3288
Abstract
Prunus persica L. is one of the most important fruit crops in European production, after grapes, apples, oranges and watermelons. Most varieties are rich in secondary metabolites, showing antioxidant properties for human health. The purpose of this study was to develop a chemical [...] Read more.
Prunus persica L. is one of the most important fruit crops in European production, after grapes, apples, oranges and watermelons. Most varieties are rich in secondary metabolites, showing antioxidant properties for human health. The purpose of this study was to develop a chemical analysis methodology, which involves the use of different analytical-instrumental techniques to deepen the knowledge related to the profile of metabolites present in selected cultivars of peaches and nectarines cultivated in the Mediterranean area (Southern Italy). The comparative study was conducted by choosing yellow-fleshed peaches (RomeStar, ZeeLady) and yellow-fleshed nectarines (Nectaross, Venus) from two geographical areas (Piana di Sibari and Piana di Metaponto), and by determining the chemical parameters for the flesh and skin that allow for identification of any distinctive varietal and/or geographical characteristics. A combined analytical and chemometric approach was used, trough rheological, thermogravimetric (TGA), chromatographic (HPLC-ESI-MS), spectroscopic (UV-Vis, ATR-FTIR, NMR) and spectrometric (ToF-SIMS) analysis. This approach allowed us to identify the characterizing parameters for the analysis of a plant matrix so that the developed methodology could define an easily exportable and extendable model for the characterization of other types of vegetable matrices. Full article
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