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Mechanical and moisture barrier properties of corn distarch phosphate film influenced by modified microcry stalline corn straw cellulose

机译:经修饰微晶玉米秸秆纤维素影响玉米磷酸磷膜的机械和水分阻隔性能

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BACKGROUND In this paper, a novel modified microcrystalline corn straw cellulose (MMCSC) was prepared by ultrasonic/microwave-assisted treatment. Effective incorporation of MMCSC into corn distarch phosphate (CDP)-based composite films was investigated. RESULTS CONCLUSION As the proportion of MMCSC was increased, tensile strength increased initially before decreasing, and the elongation at break always decreased. The composite film of MMCSC20 showed the lowest water vapor permeability (2.917 x 10(-7) g m(-1) h(-1) Pa-1). The measurement of surface color showed that by the increasing of the MMCSC proportion in composite films, the L-* and b(*) values and the total color difference (Delta E-*) increased, while a(*) values decreased. Fourier transform infrared spectroscopy and X-ray diffraction analysis indicated that, with the incorporation of MMCSC, the stable structure of the films was enhanced through cross-linking and the crystallinity was increased. A scanning electron microscopy study revealed the surface microstructure of films (MMCSC0-MMCSC30) was smooth and homogeneous, and there was no distinct separation in the matrix of composite films. The incorporation of suitable MMCSC could improve the properties of composite films. The CDP-MMCSC films, which are completely biodegradable and environmental friendly, have a high potential to be used for food packaging. (c) 2018 Society of Chemical Industry
机译:背景技术在本文中,通过超声/微波辅助治疗制备了一种新型改性的微晶玉米秸秆纤维素(MMCSC)。研究了研究MMCSC的有效掺入玉米淀粉磷酸盐(CDP)的复合膜。结果结论随着MMCSC的比例增加,抗拉强度最初在减少之前提高,并且断裂的伸长率总是减少。 MMCSC20的复合膜显示出最低的水蒸汽渗透率(2.917×10(-7)G m(-1)H(-1)PA-1)。表面颜色的测量表明,通过增加复合膜中的MMCSC比例,L- *和B(*)值和总色差(Delta E- *)增加,而(*)值降低。傅里叶变换红外光谱和X射线衍射分析表明,随着MMCSC的掺入,通过交联增强膜的稳定结构,并且结晶度增加。扫描电子显微镜研究显示薄膜的表面微观结构(MMCSC0-MMCSC30)光滑且均匀,并且在复合膜的基质中没有明显分离。合适的MMCSC的掺入可以改善复合膜的性质。完全可生物降解和环保的CDP-MMCSC薄膜具有高潜力可用于食品包装。 (c)2018化学工业协会

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