普鲁兰
戊二醛
增塑剂
极限抗拉强度
材料科学
化学工程
透氧性
肿胀 的
接触角
磁导率
甘油
溶解度
食品包装
复合材料
化学
有机化学
氧气
膜
多糖
生物化学
食品科学
工程类
作者
Chieh‐Ting Chen,Kuan‐I Chen,Hsin‐Han Chiang,Yu‐Kuo Chen,Kuan‐Chen Cheng
标识
DOI:10.1111/1750-3841.13577
摘要
Pullulan based films possess several advantages, including high transparency, low toxicity, good biodegradability, good mechanical properties, and low oxygen permeability, are preferable for food packaging. The application of pullulan films on food packaging, however, has inherent disadvantage of high water solubility. In this study, glutaraldehyde and glycerol were used as the cross-linking reagent and the plasticizer respectively to improve water resistance and physical properties of the pullulan films. Effects of cross-linking degree on physical properties, including water absorptions, swelling behaviors, water vapor permeability and tensile strengths of films were evaluated. FTIR results demonstrated that the pullulan films were successfully cross-linked by glutaraldehyde. The tensile strength of pullulan films could be enhanced significantly (P < 0.05) when glutaraldehyde was between 1% and 5% (w/w); nevertheless, the amount of glutaraldehyde above 20% (w/w) led to films brittleness. With the addition of glycerol as a plasticizer enhanced the extensibility of films as well as the hydrophilicity, resulting in higher water vapor permeability.
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