食品科学 ›› 2026, Vol. 47 ›› Issue (14): 298-308.doi: 10.7506/spkx1002-6630-20251105-038

• 食品工程 • 上一篇    

低温超微粉碎对脐橙全果冻干粉的理化性质及生物活性成分的影响

邵子寒,彭芳刚,何翊,李涛,张群,肖佳豪,苏东林,吴江,毛海峰,李绮丽   

  1. (1.湖南农业大学食品科学技术学院,湖南?长沙 410125;2.湖南省农业科学院湖南省农产品加工与质量安全研究所,湖南?长沙 410125;3.衡阳师范学院生命科学学院,湖南?衡阳 421000;4.湖南鑫洋食品工业有限公司,湖南?湘西 416500;5.湖南省粮食和物资科研设计院,湖南?长沙 410201)
  • 发布日期:2026-08-24
  • 基金资助:
    湖南省重点领域研发计划项目(2024JK2147);湖南省农业科技创新资金项目(2025CX46)

Effect of Low-Temperature Superfine Grinding on the Physicochemical Properties and Bioactive Compounds of Freeze-Dried Whole Navel Orange Powder

SHAO Zihan, PENG Fanggang, HE Yi, LI Tao, ZHANG Qun, XIAO Jiahao, SU Donglin, WU Jiang, MAO Haifeng, LI Qili   

  1. (1. School of Food Science and Technology, Hunan Agricultural University, Changsha 410125, China; 2. Hunan Institute of Agricultural Product Processing and Quality Safety, Hunan Academy of Agricultural Sciences, Changsha 410125, China; 3. School of Life Sciences, Hengyang Normal University, Hengyang 421000, China; 4. Hunan Xinyang Food Industry Co. Ltd., Xiangxi 416500, China; 5. Hunan Academy of Grain and Material Research and Design, Changsha 410201, China)
  • Published:2026-08-24

摘要: 为了更充分地利用脐橙果肉资源,本研究采用低温超微粉碎(low-temperature superfine grinding,LSG)技术对脐橙全果进行处理,获得30、60、90 min不同LSG处理时间的3 种脐橙全果冻干粉(NRYP30、NRYP60、NRYP90),并与普通粉碎得到的脐橙全果粉(navel orange removed yellow peel powder,NRYP)进行比较,对脐橙全果冻干粉的理化性质、微观结构、功能特性进行研究。结果表明:与NRYP组相比,经LSG处理后,脐橙全果冻干粉的粒径显著减小(P<0.05),且随着粉碎时间的延长,粉体平均粒径先减小后增大,粉体颜色变亮变浅,堆积密度减小,流动性变差,持水性无显著变化,持油性、溶解性增加,吸湿性减小;玻璃化转变温度升高,贮藏稳定性增强。同时,红外光谱显示超微粉碎对脐橙全果冻干粉傅里叶变换红外光谱特征吸收影响不大,未产生新的吸收峰。对脐橙全果冻干粉活性成分进行检测发现,经LSG处理后,总酚、总黄酮、抗坏血酸含量在粉碎后均显著提高(P<0.05),其含量分别最高达14.72(NRYP60)、2.25 mg/g(NRYP90)和8.68 mg/g(NRYP90),但总胡萝卜素在长时间粉碎后会呈现先升高后下降的趋势。高效液相色谱结果显示,脐橙全果冻干粉中主要的黄酮类物质为橙皮苷、芸香柚皮苷,在NRYP30时含量最高分别达12 391.63、3 542.85 µg/g,但LSG处理60 min后芸香柚皮苷、橙皮苷、香蜂草苷含量显著降低。抗氧化活性随粉碎时间延长先增后降,NRYP90的总还原能力最强,2,2’-联氮双(3-乙基苯并噻唑啉-6-磺酸)阳离子自由基和1,1-二苯基-2-三硝基苯肼自由基清除率在NRYP60组中达到最高,分别为53.79%和37.50%,NRYP90则显著下降。综上,LSG可改善NRYP物化特性并促进活性成分溶出,但需控制粉碎时间以避免活性成分降解与抗氧化活性下降。

关键词: 脐橙全果冻干粉;低温超微粉碎;理化性质;微观结构;活性成分;还原能力

Abstract: To make more efficient use of navel orange pulp resources, low-temperature superfine grinding (LSG) was applied to process whole navel oranges. Three freeze-dried powders (NRYP30, NRYP60, and NRYP90) were collected at 30, 60, and 90 min of LSG treatment. Navel orange removed yellow peel powder (NRYP) produced by ordinary grinding (OG) was used as a control. The physicochemical properties, microstructure, and functional characteristics of the four powders were systematically investigated. Compared with NRYP, a significant reduction in particle size was observed in the superfine powders (P < 0.05). As the grinding time increased, the average particle size first decreased and then increased, the color became brighter and lighter, the bulk density declined, and the flowability deteriorated. Meanwhile, water-holding capacity showed no significant change, whereas the oil-holding capacity and solubility increased, and the hygroscopicity was reduced. An elevation in the glass transition temperature was also recorded, indicating improved storage stability. Fourier transform infrared (FTIR) spectroscopy revealed that the characteristic absorption peaks of freeze-dried navel orange powder were minimally affected by superfine grinding, with no new absorption peaks observed. After LSG treatment, the contents of total phenols, total flavonoids, and ascorbic acid significantly increased (P < 0.05), with the highest levels reaching 14.72 (NRYP60), 2.25 (NRYP90), and 8.68 mg/g (NRYP90), respectively. However, the total carotene content initially increased and then declined as the grinding time prolonged. High-performance liquid chromatography (HPLC) analysis indicated that the major flavonoids in freeze-dried navel orange powder were hesperidin and narirutin, with their maximum concentrations observed in NRYP30, reaching 12 391.63 µg/g and 3 542.85 µg/g, respectively. After 60 min of LSG treatment, however, the levels of narirutin, hesperidin, and didymin were significantly reduced. Antioxidant activity initially increased and then decreased with prolonged grinding time. NRYP90 exhibited the strongest total reducing capacity. The radical scavenging rates of 2,2’-azino-bis(3-ethylbenzothiazoline-6-sulfonic acid) (ABTS) cation radical and 1,1-diphenyl-2-picrylhydrazyl (DPPH) radical reached the highest values in NRYP60, which were 53.79% and 37.50%, respectively, while those in NRYP90 significantly declined. In summary, LSG can improve the physicochemical properties of whole navel orange powder and promote the release of bioactive components. However, grinding time must be controlled to avoid degradation of active compounds and reduction in antioxidant activity.

Key words: freeze-dried whole navel orange powder; low-temperature superfine grinding; physicochemical properties; microstructure; bioactive components; reducing power

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