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Effect of carboxymethyl cellulose concentration on physical properties of biodegradable cassava starch-based films

机译:羧甲基纤维素浓度对可降解木薯淀粉基薄膜物理性能的影响

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Background Cassava starch, the economically important agricultural commodity in Thailand, can readily be cast into films. However, the cassava starch film is brittle and weak, leading to inadequate mechanical properties. The properties of starch film can be improved by adding plasticizers and blending with the other biopolymers. Results Cassava starch (5%w/v) based films plasticized with glycerol (30 g/100 g starch) were characterized with respect to the effect of carboxymethyl cellulose (CMC) concentrations (0, 10, 20, 30 and 40%w/w total solid) and relative humidity (34 and 54%RH) on the mechanical properties of the films. Additionally, intermolecular interactions were determined by Fourier transform infrared spectroscopy (FT-IR), melting temperature by differential scanning calorimetry (DSC), and morphology by scanning electron microscopy (SEM). Water solubility of the films was also determined. Increasing concentration of CMC increased tensile strength, reduced elongation at break, and decreased water solubility of the blended films. FT-IR spectra indicated intermolecular interactions between cassava starch and CMC in blended films by shifting of carboxyl (C = O) and OH groups. DSC thermograms and SEM micrographs confirmed homogeneity of cassava starch-CMC films. Conclusion The addition of CMC to the cassava starch films increased tensile strength and reduced elongation at break of the blended films. This was ascribed to the good interaction between cassava starch and CMC. Cassava starch-CMC composite films have the potential to replace conventional packaging, and the films developed in this work are suggested to be suitable for low moisture food and pharmaceutical products.
机译:背景技术木薯淀粉是泰国经济上重要的农业商品,可以很容易地铸成薄膜。但是,木薯淀粉膜脆而薄弱,导致机械性能不足。淀粉膜的性能可以通过添加增塑剂并与其他生物聚合物共混来改善。结果用羧甲基纤维素(CMC)浓度(0%,10%,20%,30%和40%w /%)的效果表征了用甘油(30 g / 100 g淀粉)增塑的木薯淀粉(5%w / v)基薄膜。总固体含量)和相对湿度(34和54%RH)对薄膜的机械性能的影响。另外,通过傅里叶变换红外光谱法(FT-IR),通过差示扫描量热法(DSC)的熔融温度以及通过扫描电子显微镜(SEM)的形态确定分子间的相互作用。还确定了膜的水溶性。 CMC浓度的增加可提高抗张强度,降低断裂伸长率,并降低混合膜的水溶性。 FT-IR光谱表明,木薯淀粉与CMC在混合膜中的分子间相互作用是通过羧基(C = O)和OH基团的转移。 DSC热分析图和SEM显微照片证实了木薯淀粉-CMC膜的均匀性。结论在木薯淀粉膜中添加CMC可以提高混合膜的拉伸强度并降低断裂伸长率。这归因于木薯淀粉和CMC之间的良好相互作用。木薯淀粉-CMC复合膜具有替代传统包装的潜力,并且据此开发的膜建议用于低水分食品和药品。

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