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Effect of citric acid induced crosslinking on the structure and properties of potato starch/chitosan composite films

机译:柠檬酸诱导的交联对马铃薯淀粉/壳聚糖复合膜结构和性能的影响

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Potato starch/chitosan (PS/CS) films cross-linked with citric acid (CA) at different concentrations (5%-20%, w/w, on a dry basis of the weight of PS and CS) were developed via a solution blending-casting method, and their structure, water resistance, physical and mechanical properties, and antimicrobial activity were investigated. Fourier transform infrared spectra, X-ray diffraction and differential scanning calorimetry studies confirmed crosslinking among PS, CS and CA. Scanning electron microscopy images revealed that the cross-sectional fracture surfaces of all the films were smooth and homogenous, while the surface roughness of the CA cross-linked PS/CS films was higher than that of the uncross-linked films as also confirmed by the three-dimensional surface topography images. It was found that the properties of the films changed as the CA content varied, ascribing to the cosslinking and plasticizing effect of CA. The water resistance properties of the CA cross-linked PS/CS films were improved significantly when compared to the uncross-linked films. Moreover, the incorporation of CA could enhance the mechanical and antimicrobial properties of PS/CS films to some extent. Particularly, the results indicated that the films cross-linked with 15% CA showed the best comprehensive properties among all films. For example, the swelling degree of the films with 15% CA decreased from 686.4% to 98.1%, and water vapor permeability decreased from 3.03 x 10(-12) g cm/cm(2).s.Pa to 2.05 x 10(-12) g cm/cm(2).s.Pa, while the tensile strength was 29% higher than that of the uncross-linked film. However, excessive addition of CA in the composite films might solidify crystals on the film surface and have negative effects on their performance. This study provides a simple and effective pathway for preparation of polysaccharide-based films with improved properties, which have a potential as bioactive packaging material for food application.
机译:通过溶液显影以不同浓度(5%-20%,w / w,以PS和CS重量计)的柠檬酸(CA)交联的马铃薯淀粉/壳聚糖(PS / CS)薄膜研究了共混浇铸法及其结构,耐水性,物理机械性能和抗菌活性。傅里叶变换红外光谱,X射线衍射和差示扫描量热法研究证实了PS,CS和CA之间的交联。扫描电子显微镜图像显示,所有膜的断面均光滑且均匀,而CA交联PS / CS膜的表面粗糙度高于未交联膜的表面粗糙度,这一点也得到了证实。三维表面形貌图像。发现膜的性质随CA含量的变化而变化,这归因于CA的共交联和增塑作用。与未交联的膜相比,CA交联的PS / CS膜的耐水性显着提高。此外,掺入CA可以在一定程度上增强PS / CS膜的机械和抗菌性能。特别地,结果表明在所有膜中用15%CA交联的膜显示出最佳的综合性能。例如,CA含量为15%的薄膜的溶胀度从686.4%降至98.1%,水蒸气渗透率从3.03 x 10(-12)g cm / cm(2).s.Pa下降至2.05 x 10( -12)g cm / cm(2).s.Pa,而拉伸强度比未交联膜高29%。但是,在复合膜中过量添加CA可能会固化膜表面的晶体,并对其性能产生负面影响。这项研究为制备具有改进性能的多糖基薄膜提供了简单有效的途径,该薄膜具有潜在的生物活性包装材料,可用于食品中。

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