Dong Xue, Yang Ming, Tang Peian
College of Food Science and Engineering, Nanjing University of Finance and Economics/ Collaborative Innovation Center for Modern Grain Circulation and Safety, NO.3 Wenyuan Road, Xixia District, Nanjing 210023, Jiangsu, China.
Food Chem X. 2025 Jan 31;26:102252. doi: 10.1016/j.fochx.2025.102252. eCollection 2025 Feb.
This study explored the efficacy of CO₂-MA with variable CO₂-O₂ concentrations (TA: 2 % O₂ + 35 % CO₂, TB: 14 % O₂ + 35 % CO₂, TC: 21 % O₂ + 35 % CO₂, TD: 21 % O₂ + 60 % CO₂) in controlling and preserving rice quality. TD exhibited the highest efficacy, achieving rapid and complete pest mortality within 48 h, particularly in the resilient pupal stage, and nearly 100 % mortality under grain-embedded conditions within 10 days. Quality assessments revealed that TD effectively mitigated lipid oxidation by reducing aldehydes and alcohols, major contributors to rice aging and off-flavors while maintaining acceptable enzymatic activities and VOC profiles. Principal component analysis confirmed that TD minimized oxidative stress and preserved desirable sensory attributes more effectively than hypoxic treatments. These findings presented an advancement in sustainable grain storage, with tailored CO₂-O₂ ratios to achieve desirable outcomes as a sustainable strategy for long-term rice storage.
本研究探讨了不同二氧化碳 - 氧气浓度(TA:2%氧气 + 35%二氧化碳,TB:14%氧气 + 35%二氧化碳,TC:21%氧气 + 35%二氧化碳,TD:21%氧气 + 60%二氧化碳)的二氧化碳 - 气调包装(CO₂-MA)在控制和保持大米品质方面的效果。TD表现出最高的效果,在48小时内实现了快速且完全的害虫死亡,尤其是在抗性较强的蛹期,并且在籽粒包埋条件下10天内死亡率接近100%。品质评估表明,TD通过减少醛类和醇类(大米老化和异味的主要促成因素)有效减轻了脂质氧化,同时保持了可接受的酶活性和挥发性有机化合物(VOC)谱。主成分分析证实,与低氧处理相比,TD更有效地最小化了氧化应激并保留了理想的感官属性。这些发现为可持续粮食储存带来了进展,通过定制二氧化碳 - 氧气比例来实现理想结果,作为长期储存大米的可持续策略。