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通过掺入羧基化纤维素纳米纤维来制备抗收缩κ-卡拉胶/羧甲基淀粉膜用于水果保鲜。

Fabricating an anti-shrinking κ-carrageenan/sodium carboxymethyl starch film by incorporating carboxylated cellulose nanofibrils for fruit preservation.

机构信息

Key Laboratory of Bio-based Materials Science and Technology of Ministry of Education, Northeast Forestry University, 26th Hexing Road, Xiangfang District, Harbin 150040, PR China.

Key Laboratory of Bio-based Materials Science and Technology of Ministry of Education, Northeast Forestry University, 26th Hexing Road, Xiangfang District, Harbin 150040, PR China.

出版信息

Int J Biol Macromol. 2021 Nov 30;191:706-713. doi: 10.1016/j.ijbiomac.2021.09.134. Epub 2021 Sep 25.

DOI:10.1016/j.ijbiomac.2021.09.134
PMID:34582912
Abstract

A stronger and dimension-stabilized film was obtained using κ-carrageenan and sodium carboxymethyl starch (CMS) with carboxylated cellulose nanocrystals (C-CNC) as a reinforcing agent and anti-shrinkage agent. C-CNC endowed the films with better mechanical properties as well as excellent dimensional stability. The film solutions showed shear thinning and acted as a pseudoplastic fluid. When C-CNC content was increased from 0% to 12%, the tensile strength and elongation at break of the films improved from 23.89 MPa to 38.37 MPa and 21.00% to 27.31%, respectively. The films maintained good thermal stability and barrier performance. The Zeta potential of the film suspension can reach below -30 mV, indicating C-CNC enhanced the electrostatic repulsion in the film-forming system, which favored the network structure more continuous and stable. By virtue of the excellent mechanical properties and dimensional stability, strawberries can be tightly wrapped without cracks by the coatings to delay the deterioration greatly. By comparing the weight loss rate, Vc, total soluble solid, hardness, titratable acid and pH, CCC12-coated strawberries were closer to fresh ones. Therefore, this study has developed a feasible, low-cost and green fruit coating that can be potentially utilized on a large-scale.

摘要

采用κ-卡拉胶和羧甲基淀粉钠(CMS)作为增强剂和防收缩剂,与羧基化纤维素纳米晶体(C-CNC)一起制备出了机械性能更优异、尺寸稳定性更好的薄膜。C-CNC 赋予了薄膜更好的机械性能和出色的尺寸稳定性。薄膜溶液表现出剪切变稀行为,呈假塑性流体特征。当 C-CNC 含量从 0%增加到 12%时,薄膜的拉伸强度和断裂伸长率分别从 23.89 MPa 提高到 38.37 MPa 和从 21.00%提高到 27.31%。薄膜保持了良好的热稳定性和阻隔性能。薄膜悬浮液的 Zeta 电位可达到-30 mV 以下,表明 C-CNC 增强了成膜体系中的静电排斥作用,有利于网络结构更加连续和稳定。由于具有优异的机械性能和尺寸稳定性,涂层可以将草莓紧紧包裹而不会出现裂纹,从而大大延缓草莓的变质。通过比较失重率、Vc、总可溶性固形物、硬度、滴定酸度和 pH 值,CCC12 涂层草莓更接近新鲜草莓。因此,本研究开发了一种可行的、低成本的绿色水果涂层,有望大规模应用。

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