模拟包装番茄的乙烯生产和模拟乙烯清除剂的添加以延长保质期

IF 5.3 2区 农林科学 Q1 FOOD SCIENCE & TECHNOLOGY
Rifah Ediati, Vita Wonoputri, Yazid Bindar, Imron Rosyadi, Made Tri Ari Penia Kresnowati
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引用次数: 0

摘要

包装后的果实产生乙烯的净积累,影响果实数量的峰值和积累速率。本研究利用不同番茄品种和包装数量的数据,建立了一个量化净乙烯产量的模型。乙烯积累最适合用准一级动力学行为来描述,乙烯峰值浓度在1.7 ~ 6.43µL/L之间,这取决于果实质量和品种。利用该模型对乙烯清除剂包装中乙烯浓度的动态变化进行了模拟,并对乙烯清除剂延长番茄货架期所需的乙烯清除剂用量进行了估算。对3种吸附剂Z-KMnO4、Basolite和NZ-Ch进行了评价。模拟结果表明,与Basolite和NZ-Ch相比,Z-KMnO4在降低乙烯浓度方面更有效,并且使用1g Z-KMnO4可以使1kg Optima番茄的成熟延迟28.23 h。该研究强调了在开发乙烯清除剂包装系统中了解乙烯浓度动态的重要性。乙烯的最低浓度是成熟的必要条件。为了使包装好的水果成熟并将保质期延长到目标值,需要一定数量的乙烯清除剂。模型仿真可以用于设计最佳的乙烯清除系统,以实现预期的成熟在目标保质期内。可根据具体品种需求和包装数量设计定制包装方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modelling Ethylene Production in Packaged Tomatoes and Simulating Ethylene Scavenger Addition for Shelf-Life Extension

Packaged fruit produces a net accumulation of ethylene, the number of fruits affecting the peak and rate of accumulation. This study developed a model for quantifying net ethylene production using data from various tomato cultivars and packaging quantities. The ethylene accumulation was best described by the pseudo-first-order kinetic behavior, with peak ethylene concentrations ranging from 1.7 to 6.43 µL/L, depending on fruit mass and cultivars. The developed model was further simulated to estimate the dynamics of ethylene concentration in packaging with ethylene scavengers, estimating the amount of ethylene scavenger needed to extend tomato shelf life. Three scavenger adsorbents, Z-KMnO4, Basolite, and NZ-Ch, were evaluated. The simulations showed that Z-KMnO4 was more effective in reducing ethylene concentration, compared to Basolite and NZ-Ch and that use of 1 g of Z-KMnO4 delayed ripening of 1 kg of Optima tomatoes by 28.23 h. This study emphasized the importance of understanding dynamics in ethylene concentration in developing packaging systems with ethylene scavengers. A minimum ethylene concentration was necessity for ripening. An exact amount of ethylene scavenger was needed to ripen the packaged fruits and extend the shelf life to the targeted value. Model simulation can be used for designing optimal ethylene scavenger systems to achieve desired ripening within the targeted shelf life. A customized packaging solution can be designed based on specific cultivar needs and packaging quantities.

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来源期刊
Food and Bioprocess Technology
Food and Bioprocess Technology 农林科学-食品科技
CiteScore
9.50
自引率
19.60%
发文量
200
审稿时长
2.8 months
期刊介绍: Food and Bioprocess Technology provides an effective and timely platform for cutting-edge high quality original papers in the engineering and science of all types of food processing technologies, from the original food supply source to the consumer’s dinner table. It aims to be a leading international journal for the multidisciplinary agri-food research community. The journal focuses especially on experimental or theoretical research findings that have the potential for helping the agri-food industry to improve process efficiency, enhance product quality and, extend shelf-life of fresh and processed agri-food products. The editors present critical reviews on new perspectives to established processes, innovative and emerging technologies, and trends and future research in food and bioproducts processing. The journal also publishes short communications for rapidly disseminating preliminary results, letters to the Editor on recent developments and controversy, and book reviews.
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