Preservation of Food with High Oil Content by Supercritical Impregnation Techniques

Q3 Chemical Engineering Chemical engineering transactions Pub Date : 2021-07-01 DOI:10.3303/CET2187091
C. Cejudo, M. Gallardo, M. T. Fernández-Ponce, L. Casas, C. Mantell, E. M. Ossa
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引用次数: 1

Abstract

Nuts are very important foods for human nutrition due to their high content of mono- and polyunsaturated fatty acids. However, they are substrates very sensitive to oxidation, appearing rancidity that affects both the taste and the smell, that led to the consumer’s rejection. To avoid this, the food industry uses some strategies that sometimes substantially alter the composition and nutritional value of nuts. A promising possibility for the conservation and stability against its oxidation is to impregnate a natural antioxidant such as methyl gallate using CO2 in supercritical conditions. This technology is being used recently for the impregnation of different natural substances on polymers for its use in the food and biomedicine field. However, the direct supercritical impregnation of compounds into food has been scarcely investigated.In the present work, it is studied the effect of pressure and temperature in the impregnation process of methyl gallate on peeled peanuts. Additionally, the effect of the depressurization rate and impregnation time was studied at the most convenient conditions. The results obtained indicate the best conditions for impregnation were reached at 150 bar and 45 oC. These conditions improved the antioxidant capacity of the nuts while preserving the quality by avoiding breakages during the process.
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超临界浸渍技术在高含油食品保鲜中的应用
坚果富含单不饱和脂肪酸和多不饱和脂肪酸,是人体营养的重要食物。然而,它们是对氧化非常敏感的基质,出现酸败,影响味道和气味,导致消费者拒绝。为了避免这种情况,食品工业采用了一些策略,有时会大大改变坚果的成分和营养价值。在超临界条件下用CO2浸渍天然抗氧化剂(如没食子酸甲酯)是保存和稳定其氧化的一个很有希望的可能性。该技术最近被用于将不同的天然物质浸渍在聚合物上,以用于食品和生物医药领域。然而,化合物直接超临界浸渍食品的研究却很少。本文研究了没食子酸甲酯浸渍过程中压力和温度对花生去皮的影响。此外,在最适宜的条件下,研究了减压速率和浸渍时间的影响。结果表明,最佳浸渍条件为150 bar和45℃。这些条件提高了坚果的抗氧化能力,同时避免了加工过程中的破损,从而保持了坚果的质量。
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来源期刊
Chemical engineering transactions
Chemical engineering transactions Chemical Engineering-Chemical Engineering (all)
CiteScore
1.40
自引率
0.00%
发文量
0
审稿时长
6 weeks
期刊介绍: Chemical Engineering Transactions (CET) aims to be a leading international journal for publication of original research and review articles in chemical, process, and environmental engineering. CET begin in 2002 as a vehicle for publication of high-quality papers in chemical engineering, connected with leading international conferences. In 2014, CET opened a new era as an internationally-recognised journal. Articles containing original research results, covering any aspect from molecular phenomena through to industrial case studies and design, with a strong influence of chemical engineering methodologies and ethos are particularly welcome. We encourage state-of-the-art contributions relating to the future of industrial processing, sustainable design, as well as transdisciplinary research that goes beyond the conventional bounds of chemical engineering. Short reviews on hot topics, emerging technologies, and other areas of high interest should highlight unsolved challenges and provide clear directions for future research. The journal publishes periodically with approximately 6 volumes per year. Core topic areas: -Batch processing- Biotechnology- Circular economy and integration- Environmental engineering- Fluid flow and fluid mechanics- Green materials and processing- Heat and mass transfer- Innovation engineering- Life cycle analysis and optimisation- Modelling and simulation- Operations and supply chain management- Particle technology- Process dynamics, flexibility, and control- Process integration and design- Process intensification and optimisation- Process safety- Product development- Reaction engineering- Renewable energy- Separation processes- Smart industry, city, and agriculture- Sustainability- Systems engineering- Thermodynamic- Waste minimisation, processing and management- Water and wastewater engineering
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