芒果果实对流脱水过程中快速场循环1H-NMR弛豫特性研究

Q3 Chemical Engineering Chemical engineering transactions Pub Date : 2021-07-01 DOI:10.3303/CET2187030
G. Adiletta, D. Albanese, M. Matteo, L. Cinquanta, O. Corona, C. Citra, P. Conte
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引用次数: 0

摘要

在地中海地区,包括意大利,芒果的种植正在增加,在西西里岛的第勒尼安海岸,一种利基生产已经发展起来。这些水果富含抗氧化物质,呈现出令人愉悦的味道和香气,是消费者感官接受的基本品质。然而,作为更年期水果,芒果非常容易腐烂,因为它们在收获后迅速成熟。因此,世界上许多地区每年损失大量的芒果。为了防止这种情况,干燥技术被广泛使用。它可以延长水果的保质期。为了优化这一过程,有必要加深对干燥对水果中残余水的结构和流动性的影响的认识。本文研究了不同温度对流干燥对Keitt芒果果实快速场循环质子核磁共振(FFC 1H-NMR)弛豫特性、水分活度和收缩率的影响。对芒果果实的FFC - 1H-NMR弛豫研究表明,对流干燥不仅导致芒果组织内总体含水量的减少,而且还导致相同水分的逐渐固定,这取决于温度。从定性和微生物学的角度来看,结果可能表明干果中更多的固定水的测量可以用来预测它们的保质期。
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Fast field cycling 1H-NMR relaxation properties during convective dehydration of mango fruits
The cultivation of mango fruits is increasing in the Mediterranean areas, including Italy, where a niche production has developed in the Tyrrhenian coast of Sicily. These fruits are rich in antioxidant substances, presenting a pleasant taste and aroma, fundamental qualities for the sensory acceptance of consumers. However, being climacteric fruits, mangoes are highly perishable, due to their rapid ripening after harvesting. As a result, large amounts of mangoes are lost annually in many areas of the world. In order to prevent this, the drying technique is widely used. It allows to lengthen the shelf-life of the fruits. In order to optimize this process, it is necessary to deepen the knowledge on the drying effects on the structure and mobility of the residual water in the fruit. The objective of this paper is to describe the effects of convective drying at different temperatures on the Fast Field Cycling Proton Nuclear Magnetic Resonance (FFC 1H-NMR) relaxation properties, water activity and shrinkage in Keitt mango fruits. The FFC 1H-NMR relaxometry investigations on mango fruits revealed that the convective drying lead not only to a reduction in the overall water content within the mango tissues, but also to a progressive immobilization of the same water, depending on the temperature. From a qualitative and microbiological point of view, the results may indicate that the measure of more immobilised water in the dried fruits can be useful to predict their shelf-life.
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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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