Ozone treatment on cucumber and tomato during simulated retail storage

Q3 Agricultural and Biological Sciences Progress in Agricultural Engineering Sciences Pub Date : 2021-08-30 DOI:10.1556/446.2021.30006
M. S. Dam, V. D. Nguyen, T. Zsom, L. Nguyen, G. Hitka
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引用次数: 3

Abstract

The effect of storage temperature and ozone treatment on the post-harvest quality of cucumber and tomato was investigated. Cucumber and tomato were stored together with or without gaseous ozone treatment at 20 8 C and 14 8 C for 16 days. Firmness, color, weight loss, DA index and decay percentage of samples were evaluated during storage period. The results showed that the combination of ozone treatment and cold storage could maintain the quality of these horticultural products and decreased the decay incidence. Additionally, this combination also reduced the weight loss of samples during storage. Furthermore, ozone treatment maintained the green skin color of cucumber. No sign of chilling injury occurred during storage at 14 8 C. Commodities stored with approximately 0.1ppm gaseous ozone at 14 8 C retained the firmness compared to other treatments until the end of the experiment. This study suggests a promising use of gaseous ozone treatment in storage chamber where ethylene-producing and ethylene-sensitive vegetables are stored together.
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模拟零售贮藏过程中黄瓜和番茄的臭氧处理
研究了贮藏温度和臭氧处理对黄瓜和番茄采后品质的影响。黄瓜和番茄在有或没有气体臭氧处理的情况下在20℃和14℃下一起储存16天。在储存期间对样品的硬度、颜色、重量损失、DA指数和衰变百分比进行了评估。结果表明,臭氧处理与冷藏相结合可以保持这些园艺产品的质量,降低腐烂发生率。此外,这种组合还减少了样品在储存过程中的重量损失。此外,臭氧处理保持了黄瓜的绿色皮肤。在14 8 C的储存过程中没有出现冷害的迹象。与其他处理相比,在14 8℃下用约0.1ppm气态臭氧储存的商品在实验结束前保持了硬度。这项研究表明,气态臭氧处理在储存室中有很好的应用前景,在储存室中将产生乙烯的蔬菜和对乙烯敏感的蔬菜一起储存。
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来源期刊
Progress in Agricultural Engineering Sciences
Progress in Agricultural Engineering Sciences Engineering-Industrial and Manufacturing Engineering
CiteScore
1.80
自引率
0.00%
发文量
6
期刊介绍: The Journal publishes original papers, review papers and preliminary communications in the field of agricultural, environmental and process engineering. The main purpose is to show new scientific results, new developments and procedures with special respect to the engineering of crop production and animal husbandry, soil and water management, precision agriculture, information technology in agriculture, advancements in instrumentation and automation, technical and safety aspects of environmental and food engineering.
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