Recent progress in food processing applications of air impingement technology: A review

IF 12 1区 农林科学 Q1 FOOD SCIENCE & TECHNOLOGY
Özgül Altay, Esin Selçuk, Ömer Abacı, Funda Erdem, S. Nur Dirim, Utku Şentürk, Figen Kaymak-Ertekin
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引用次数: 0

Abstract

Air impingement method has been widely used in a variety of industrial applications, such as textile and paper drying, turbine cooling, and glass quenching, because it is an efficient technology with high heat and mass transfer rates. This technology has received increasing interest in the field of food processing over the last two decades, such as drying, baking, blanching, freezing, and thawing. In a food processing equipment using air impingement, jets of high-velocity air (with speeds of 10–50 m/s) are directed at a food product. The performance of the system is influenced by several critical elements, including jet velocity, nozzle array diameter and layout, jet distance, and boundary layer characteristics. The use of computational fluid dynamics, an emerging tool, has been shown to be valuable in the analysis of fluid flow and heat and mass transfer in jet impingement systems. The physical properties of impinging jets, such as turbulent mixing in the free jet zone, stagnation, boundary layer formation, recirculation, and their interactions with food products in terms of heat and mass transfer, have been discussed in this article. The benefits and disadvantages of air jet impingement technology in different food processing applications together with potential trends for improving impingement technology performance were identified and discussed. This review not only contributes to a better understanding of the research status of impingement technology on food processing but also triggers new research opportunities in this field in order to provide more healthy and nutritious food in a more sustainable way to the world's growing population.

空气冲击技术在食品加工中的应用进展
空气冲击法是一种传热传质率高的高效技术,已广泛应用于各种工业应用,如纺织品和纸张干燥、涡轮冷却和玻璃淬火等。在过去的二十年里,这项技术在食品加工领域得到了越来越多的关注,比如干燥、烘烤、焯水、冷冻和解冻。在使用空气撞击的食品加工设备中,高速空气射流(速度为10-50米/秒)直接射向食品。射流速度、喷嘴阵列直径和布局、射流距离和边界层特性等因素对系统性能有重要影响。计算流体动力学是一种新兴的工具,在分析射流撞击系统中的流体流动和传热传质方面具有重要的价值。本文讨论了冲击射流的物理性质,如自由射流区的湍流混合、停滞、边界层的形成、再循环以及它们在传热传质方面与食品的相互作用。分析了空气射流冲击技术在不同食品加工应用中的优缺点,并讨论了提高冲击技术性能的潜在趋势。本文综述不仅有助于更好地了解食品加工冲击技术的研究现状,也为今后食品加工冲击技术的研究提供了新的契机,以期为世界不断增长的人口提供更健康、更营养的食品。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
26.20
自引率
2.70%
发文量
182
期刊介绍: Comprehensive Reviews in Food Science and Food Safety (CRFSFS) is an online peer-reviewed journal established in 2002. It aims to provide scientists with unique and comprehensive reviews covering various aspects of food science and technology. CRFSFS publishes in-depth reviews addressing the chemical, microbiological, physical, sensory, and nutritional properties of foods, as well as food processing, engineering, analytical methods, and packaging. Manuscripts should contribute new insights and recommendations to the scientific knowledge on the topic. The journal prioritizes recent developments and encourages critical assessment of experimental design and interpretation of results. Topics related to food safety, such as preventive controls, ingredient contaminants, storage, food authenticity, and adulteration, are considered. Reviews on food hazards must demonstrate validity and reliability in real food systems, not just in model systems. Additionally, reviews on nutritional properties should provide a realistic perspective on how foods influence health, considering processing and storage effects on bioactivity. The journal also accepts reviews on consumer behavior, risk assessment, food regulations, and post-harvest physiology. Authors are encouraged to consult the Editor in Chief before submission to ensure topic suitability. Systematic reviews and meta-analyses on analytical and sensory methods, quality control, and food safety approaches are welcomed, with authors advised to follow IFIS Good review practice guidelines.
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