热液蒸发对越南红龙果贮藏稳定性及理化特性的影响

Q3 Chemical Engineering Chemical engineering transactions Pub Date : 2021-07-01 DOI:10.3303/CET2187029
T. Nguyen, D. Pham, Thị Phương Chu, Ngoc Ha Vu, W. Samhaber, Minh Tan Nguyen
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引用次数: 1

摘要

红火果(Hylocereus polyrhizus)是一种富含维生素C、维生素a、蛋白质、多酚和类黄酮的热带水果。因此,这种水果可以加工成不同的高价值产品。浓缩果汁贮藏寿命长,运输成本低于鲜榨果汁。以越南平顺省红龙果为原料,采用常温常压下的新型蒸发法浓缩红龙果汁。所得浓缩物在13.8 ~ 60°Brix范围内,多酚含量(92.89%)和类黄酮含量(98.58%)均保持在90%以上;维生素C和β花青素的保留率分别为70.17%和74%。同时,在40°C的真空蒸发技术下,可以保留大约。红龙浓缩果汁中含有57%的维生素C和40%的甜菜花青素。火龙果浓缩液经4℃保存8周后,甜菜菁苷的保留率为85.76%,维生素C的保留率为81.55%,35℃JEVA蒸发法制备的火龙果浓缩液稳定性明显高于鲜榨果汁。这些结果表明,JEVA蒸发比真空蒸发能提供更好的产品。JEVA蒸发法具有大规模生产红龙果汁的潜力。
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Impact of Jeva Evaporation on Storage Stability and Physiochemical Characteristics of Vietnam Red Dragon Fruit (hylocereus Polyrhizus)
Red dragon fruit (Hylocereus polyrhizus) is a tropical fruit rich in nutrients vitamin C, vitamin A, protein, polyphenols, and flavonoids. The fruit can be, therefore, processed into different high valued products. Concentrated fruit juice had a long storage life with lesser transportation cost than that of fresh juice. Juice of red dragon fruit from Binh Thuan Province in Vietnam was concentrated using novel evaporation launched under ambient pressure and moderate temperature named JEVA. The obtained concentrates were from 13.8°Brix to above 60°Brix, while at the same time, it allowed retaining more than 90% polyphenol content (92.89%) and flavonoid content (98.58%); the retention of vitamin C and betacyanin content was 70.17% and 74%, respectively. Meanwhile, the evaporation under vacuum technology at 40°C allows retaining approx. 57% vitamin C and 40% betacyanin in red dragon fruit juice concentrate. With betacyanin retention of 85.76% and vitamin C retention of 81.55% after 8-weeks-storage at 4°C, dragon fruit concentrate obtained by JEVA evaporation at 35°C showed much higher stability than that of fresh juices. These obtained results suggested that JEVA evaporation can offer a better product than vacuum evaporation. JEVA evaporation is highly potential for launching in a large scale to process red dragon fruit juice.
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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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