臭氧处理是抑制柑橘蓝霉病和延长货架期的可持续替代方法

Q2 Agricultural and Biological Sciences Agriculture Pub Date : 2024-07-20 DOI:10.3390/agriculture14071196
D. Lemić, M. A. Galešić, Mario Bjeliš, Helena Virić Gašparić
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引用次数: 0

摘要

柑橘类水果,尤其是柑橘,因其营养价值高、烹饪用途广泛而备受全球青睐。然而,采后腐烂(主要由蓝霉菌(Penicillium italicum)感染引起)导致大量食物损失,因此必须采取有效的保鲜策略。传统方法通常依赖杀菌剂,这引起了人们对化学残留和环境影响的担忧。本研究调查了臭氧作为控制柑橘蓝霉病的替代方法的功效。测试了各种气态臭氧处理方法,包括单次、两次和三次处理,持续时间从 10 分钟到 60 分钟不等,浓度从 3.3 ppm 到 20 ppm 不等。此外,还对浓度为 2、4 和 6 ppm 的臭氧水处理进行了评估。为了模拟真实的侵染情况,在对柑橘进行气态臭氧和臭氧水处理之前,先人为地让柑橘感染了 P. italicum 孢子。柑橘的储藏条件受到严格控制,湿度保持在 50-60%,温度保持在 10-12 °C。对每个果实都进行了分析,并在臭氧处理后 2 周和 3 周测定是否存在伊利金杆菌感染。结果表明,臭氧处理大大减少了霉菌的生长,气态臭氧的有效率高达 97.5%,臭氧水处理的保存率在 95% 到 97% 之间。这些结果凸显了臭氧作为安全、高效和可持续的传统杀菌剂替代品的潜力,为延长柑橘的货架期提供了有前途的解决方案。建议进一步开展研究,优化臭氧处理参数,评估其对水果质量和营养成分的长期影响,并改进应用技术,以充分发挥臭氧在柑橘类水果保鲜中的潜力。这种方法不仅能应对粮食安全挑战,还能配合全球减少农业化学投入和促进环境可持续发展的努力。
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Ozone Treatment as a Sustainable Alternative for Suppressing Blue Mold in Mandarins and Extending Shelf Life
Citrus fruits, particularly mandarins, are highly valued globally for their nutritional benefits and versatile culinary uses. However, the challenge of post-harvest decay, primarily due to blue mold (Penicillium italicum) infections, results in significant food losses and necessitates effective preservation strategies. Traditional methods often rely on fungicides, raising concerns about chemical residues and environmental impact. This study investigates the efficacy of ozone as an alternative approach to controlling blue mold in mandarins. Various gaseous ozone treatments were tested, including single, double, and triple treatments, with durations ranging from 10 to 60 min and concentrations from 3.3 to 20 ppm. Additionally, ozonated water treatments were evaluated with concentrations of 2, 4, and 6 ppm. To simulate a realistic infestation scenario, mandarins were artificially infected with P. italicum spores before undergoing both gaseous ozone and ozonated water treatments. The storage conditions for the mandarins were meticulously controlled, maintaining a humidity level of 50–60% and a temperature range of 10–12 °C. Each fruit was analyzed, and the presence of P. italicum infection was determined two and three weeks after the ozonation. Results indicated that ozone treatments significantly reduced mold growth, with gaseous ozone demonstrating efficacy rates up to 97.5% and ozonated water treatments achieving preservation rates between 95% and 97%. These results underscore ozone’s potential as a safe, efficient, and sustainable alternative to conventional fungicides, offering promising solutions for extending the shelf life of mandarins. Further research is recommended to optimize ozone treatment parameters, assess long-term effects on fruit quality and nutritional content, and refine application techniques to harness ozone’s potential in citrus fruit preservation fully. This approach not only addresses food security challenges but also aligns with global efforts to reduce chemical inputs in agriculture and promote environmentally sustainable practices.
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来源期刊
Agriculture
Agriculture Agricultural and Biological Sciences-Horticulture
CiteScore
1.90
自引率
0.00%
发文量
4
审稿时长
11 weeks
期刊介绍: The Agriculture (Poľnohospodárstvo) is a peer-reviewed international journal that publishes mainly original research papers. The journal examines various aspects of research and is devoted to the publication of papers dealing with the following subjects: plant nutrition, protection, breeding, genetics and biotechnology, quality of plant products, grassland, mountain agriculture and environment, soil science and conservation, mechanization and economics of plant production and other spheres of plant science. Journal is published 4 times per year.
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