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中国精品科技期刊2020
邹光铭,郭亦佳,崔林晔,等. 电子束辐照预处理核桃青皮对其多糖性质的影响J. 食品工业科技,2026,47(5):1−13. doi: 10.13386/j.issn1002-0306.2025040055.
引用本文: 邹光铭,郭亦佳,崔林晔,等. 电子束辐照预处理核桃青皮对其多糖性质的影响J. 食品工业科技,2026,47(5):1−13. doi: 10.13386/j.issn1002-0306.2025040055.
ZOU Guangming, GUO Yijia, CUI Linye, et al. Effect of Electron Beam Irradiation Pretreatment of Walnut Green Husk on the Properties of Its PolysaccharidesJ. Science and Technology of Food Industry, 2026, 47(5): 1−13. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2025040055.
Citation: ZOU Guangming, GUO Yijia, CUI Linye, et al. Effect of Electron Beam Irradiation Pretreatment of Walnut Green Husk on the Properties of Its PolysaccharidesJ. Science and Technology of Food Industry, 2026, 47(5): 1−13. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2025040055.

电子束辐照预处理核桃青皮对其多糖性质的影响

Effect of Electron Beam Irradiation Pretreatment of Walnut Green Husk on the Properties of Its Polysaccharides

  • 摘要: 为促进核桃青皮的高值化利用,并为核桃青皮在乳化剂、起泡剂和抗氧化剂方向的应用提供理论依据,本研究用不同剂量的电子束辐照(EBI)(0、5、10、25、50 kGy)对核桃青皮进行预处理,并分析其碱提多糖的结构特性、理化性质及功能活性的变化。结果表明,与未处理的核桃青皮多糖相比,低剂量EBI(5 kGy)处理获得的核桃青皮多糖表现出最高的木糖摩尔比(16.31%)、分子量(80.43±2.37 kDa)、粒径(145.99±4.64 nm)、持水和持油能力(40.61 g/g,83.08 g/g)。中等剂量(10和25 kGy)处理的核桃青皮多糖具有较高的糖醛酸含量(35.69%±0.14%,36.02%±0.37%)、优异的热稳定性(熔点分别为84.87 ℃和86.63 ℃)、乳化能力(乳化性能指数:14.41 m2/g和13.64 m2/g)及ABTS+和DPPH自由基清除能力(10 kGy时清除率分别为77.00%和85.47%)。高剂量EBI(50 kGy)处理的核桃青皮多糖具有最高的起泡能力(56.67%),但其他功能活性有所下降。综合考虑核桃青皮多糖的性质,本研究认为10 kG为最佳辐照剂量。

     

    Abstract: In order to promote the high-value utilization of walnut green husk and provide a theoretical basis for its application as emulsifiers, foaming agents, and antioxidants, this study employed electron beam irradiation (EBI) at various doses (0, 5, 10, 25, and 50 kGy) to pretreat walnut green husk. The structural characteristics, physicochemical properties, and functional activities of the alkali-extracted polysaccharides were analyzed and compared following treatment. The results demonstrated that, compared to untreated walnut green husk polysaccharides, those subjected to low-dose EBI (5 kGy) exhibited the highest molar ratio of xylose (16.31%), molecular weight (80.43±2.37 kDa), particle size (145.99±4.64 nm), water/oil retention capacity (40.61 g/g, 83.08 g/g), and viscosity. Polysaccharides from GWH treated with moderate doses (10 and 25 kGy) showed significantly enhanced uronic acid content (35.69%±0.14%, 36.02%±0.37%), exceptional thermal stability (melting points of 84.87 ℃ and 86.63 ℃), emulsion activity (emulsification index: 14.41 m2/g and 13.64 m2/g), and ABTS+/DPPH free radical scavenging capacities (scavenging rates of 77.00% and 85.47% at 10 kGy, respectively). High-dose EBI (50 kGy) treatment of walnut green husk polysaccharides resulted in the highest foaming ability (56.67%), though other functional activities were somewhat reduced. Considering the properties of walnut green husk polysaccharides, this study concludes that 10 kGy is the optimal irradiation dose.

     

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