食品科学 ›› 2026, Vol. 47 ›› Issue (15): 276-286.doi: 10.7506/spkx1002-6630-20260202-010

• 包装贮运 • 上一篇    下一篇

κ-卡拉胶增强型普鲁兰多糖复合膜的制备及其对蛋白肽粉防潮与速溶性能的影响

吴思雨,房佳璇,李瑞,曾霞丽,孙迪,马庆保,余中节,刘宇,姜维   

  1. (1.浙江海洋大学食品与药学学院,浙江?舟山 316022;2.平阳县科技创新研究院,浙江?温州 325400;3.浙江海洋大学国家海洋设施养殖工程技术研究中心(创新应用研究院),浙江?舟山 316022)
  • 出版日期:2026-08-15 发布日期:2026-08-24
  • 基金资助:
    “十四五”国家重点研发计划项目(2024YFD2101200)

Preparation of κ-Carrageenan-Enhanced Pullulan Composite Film and Its Effect on Moisture Resistance and Solubility of Collagen Peptide Powder

WU Siyu, FANG Jiaxuan, LI Rui, ZENG Xiali, SUN Di, MA Qingbao, YU Zhongjie, LIU Yu, JIANG Wei   

  1. (1. College of Food and Pharmacy, Zhejiang Ocean University, Zhoushan 316022, China; 2. Pingyang Institute of Science and Technology Innovation, Wenzhou 325400, China; 3. National Engineering Research Center for Marine Aquaculture (Innovation and Application Research Institute), Zhejiang Ocean University, Zhoushan 316022, China)
  • Online:2026-08-15 Published:2026-08-24

摘要: 为改善普鲁兰多糖(pullulan,PUL)强亲水性导致薄膜吸湿性高这一缺陷,本研究将κ-卡拉胶(κ-carrageenan,CAR)引入PUL基质中,制备不同CAR添加量(0%~14%)的PUL/CAR复合膜,系统评价CAR对复合膜微观结构、力学性能、光学性能、热封性能、吸湿性及溶解性能的影响。结果表明,添加量8%的CAR(P-8%CAR复合膜)能通过氢键作用与PUL形成致密、相容性良好的网络结构。相较于纯PUL膜,P-8%CAR复合膜的拉伸强度与断裂伸长率得到协同提升,同时吸湿率显著降低(在相对湿度81%条件下从12.28%降至8.92%),水接触角增大,表面亲水性下降。尽管CAR的引入使薄膜溶解时间略有延长,但所有复合膜均在60 s内完全溶解,保持了优异的速溶性。进一步的肽粉包装应用实验表明,使用P-8%CAR复合膜包装肽粉贮藏7 d后,肽粉吸湿率仅增加至8.05%,能够有效延缓蛋白肽粉吸湿劣变,并在贮藏后仍保持良好的速溶性能(90 s内完全溶解)。综上,本研究通过构建PUL/CAR复合体系,成功开发出一种兼具较低吸湿性、良好力学性能、适宜热封强度及快速溶解特性的可食性包装膜,可为速溶类食品的绿色包装提供具有潜力的材料选择与理论依据。

关键词: 普鲁兰多糖;κ-卡拉胶;可食性多糖膜;吸湿性;速溶;热封;食品包装

Abstract: Pullulan (PUL) has strong hydrophilicity, so its films have high hygroscopicity. To address this limitation, κ-carrageenan (CAR) was introduced into the PUL matrix to prepare PUL/CAR composite films with CAR contents ranging from 0% to 14% by solution casting. The effects of CAR content on the structural characteristics, mechanical properties, heat-sealing performance, moisture absorption behavior, and solubility of the films were systematically investigated, and their application performance in peptide powder packaging was evaluated. The results demonstrated that the incorporation of 8% CAR formed a dense and well-compatible network structure with PUL by hydrogen bonding. Compared with pure PUL film, the P-8% CAR composite film exhibited enhanced tensile strength and elongation at break, along with a significantly reduced moisture absorption rate (from 12.28% to 8.92% at 81% relative humidity), an increased water contact angle, and decreased surface hydrophilicity. Although the introduction of CAR slightly prolonged the dissolution time, all composite films completely dissolved within 60 s, maintaining excellent fast solubility. After 7 days of storage, the moisture absorption rate of the peptide powder packaged with the P-8% CAR film increased only to 8.05%, indicating the film could effectively delay moisture-induced deterioration of the peptide powder, and the peptide powder still exhibited good instant solubility (complete dissolution within 90 s). In summary, the PUL/CAR composite film is an edible packaging film with relatively low moisture absorption, good mechanical properties, appropriate heat-seal strength, and rapid dissolution characteristics, providing a promising material choice and theoretical basis for green packaging of instant foods.

Key words: pullulan; κ-carrageenan; edible polysaccharide film; moisture absorption; fast solubility; heat sealing; food packaging

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