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增塑剂和抗菌剂对基于玉米淀粉-壳聚糖的用于食品包装应用的生物纳米复合膜的功能特性的影响。

Effect of plasticizer and antimicrobial agents on functional properties of bionanocomposite films based on corn starch-chitosan for food packaging applications.

机构信息

Department of Chemical Engineering, Indian Institute of Technology Guwahati, Assam 781039, India.

出版信息

Int J Biol Macromol. 2020 Oct 1;160:571-582. doi: 10.1016/j.ijbiomac.2020.05.242. Epub 2020 May 30.

Abstract

The aim of this study was to evaluate the influence plasticizer (glycerol (GLY)/sorbitol (SOR)) and antimicrobial (potassium sorbate (KS)/grapefruit seed extract (GFSE)) agents on crystallinity, water barrier, mechanical, thermal and anti-fungal properties of prepared with corn starch (CS)-chitosan (CH) nanoclay (Na-MMT) bionanocomposite films. Results showed that CS/CH/nanoclay/SOR/GFSE films exhibit a higher crystallinity than any other bionanocomposite films. Molecular miscibility among corn starch, chitosan (COOH, NH) and nanoclay (AlOH, SiOSi) was exhibited in XRD. Films plasticized with SOR showed the highest tensile strength, lowest film solubility, lowest water vapor permeability and thermal stability. Fourier transform infrared spectroscopy (FTIR) confirmed that the main interactions among the components in a bionanocomposite film are due to hydrogen bonding. Bionanocomposite films containing GFSE showed a maximum zone of inhibition against Aspergillus niger. Synthetic plastic films exhibited fungal growth on 6th day whereas CS/CH/nanoclay/SOR/GFSE films did not show the same up to 20 days when bread samples were packed at 25 °C and 59% RH. CS/CH/nanoclay/SOR/GFSE film could potentially be useful for active packaging in extend the shelf life; maintain its quality and safety of food products thus substituting synthetic plastic packaging materials.

摘要

本研究旨在评估增塑剂(甘油(GLY)/山梨糖醇(SOR))和抗菌剂(山梨酸钾(KS)/柚籽提取物(GFSE))对用玉米淀粉(CS)-壳聚糖(CH)纳米粘土(Na-MMT)制备的生物纳米复合材料薄膜的结晶度、水阻隔性、机械性能、热性能和抗真菌性能的影响。结果表明,CS/CH/纳米粘土/SOR/GFSE 薄膜比任何其他生物纳米复合材料薄膜具有更高的结晶度。XRD 显示了玉米淀粉、壳聚糖(COOH、NH)和纳米粘土(AlOH、SiOSi)之间的分子混溶性。用 SOR 增塑的薄膜表现出最高的拉伸强度、最低的薄膜溶解度、最低的水蒸气透过率和热稳定性。傅里叶变换红外光谱(FTIR)证实了生物纳米复合材料薄膜中各组分之间的主要相互作用是由于氢键。含有 GFSE 的生物纳米复合材料薄膜对黑曲霉表现出最大的抑菌区。合成塑料薄膜在第 6 天表现出真菌生长,而 CS/CH/纳米粘土/SOR/GFSE 薄膜在 25°C 和 59%相对湿度下包装面包样品时,直到 20 天都没有显示出相同的情况。CS/CH/纳米粘土/SOR/GFSE 薄膜可能有助于延长货架期的活性包装;保持食品质量和安全,从而替代合成塑料包装材料。

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