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首页> 外文期刊>Journal of Materials Science >Preparation and characterization of plasticized gelatin films cross-linked with low concentrations of Glutaraldehyde
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Preparation and characterization of plasticized gelatin films cross-linked with low concentrations of Glutaraldehyde

机译:低浓度戊二醛交联的增塑明胶薄膜的制备与表征

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Thermal and mechanical properties as well as moisture resistance and water vapor barrier properties of films from bovine gelatin added with d-sorbitol (30 wt%) as plasticizer and cross-linked with low amounts of glutaraldehyde (GTA, from 0 to 2 wt%) were investigated to determine their suitability as barrier layers for flexible packaging materials. Results revealed that free amino side chain groups of gelatin decreased with GTA, confirming the occurrence of cross-linking between GTA and gelatin. The extent of cross-linking reaction in the presence of d-sorbitol was lower compared with the unplasticized counterpart suggesting that plasticizer hampers GTA to react. The glass transition temperature (T g) as measured from differential scanning calorimetry (DSC) increased with GTA concentration owing to the formation of more reticulated materials while the incorporation of d-sorbitol led to a small reduction in this parameter due to plasticization. Increasing GTA concentration from 0 to 1 wt% provoked the enhancement of elastic modulus from 3.7 ± 0.2 to 4.9 ± 0.2 GPa. These values reduced significantly by the addition of d-sorbitol, whereas elongation at break improved in about 150%. The optimum formulation for the intended purpose was that containing 1 wt% GTA and 30 wt% d-sorbitol since it exhibited the best set of properties: total soluble mater reduced from 100 to 16%, moisture absorption decreased from 1854.1 ± 85 to 210.4 ± 8%, water vapor permeability at 65% relative humidity improved from 2.42 ± 0.27 to 0.94 ± 0.06 × 10 ~(-14)kg m Pa ~(-1) s ~(-1) m ~(-2), with minor reduction in opacity and with the additional benefit of releasing only 5% of the initial GTA content
机译:加入了d-山梨糖醇(30重量%)作为增塑剂并与少量戊二醛(GTA,0至2重量%)交联的牛明胶薄膜的热,机械性能以及耐湿性和水蒸气阻隔性进行了调查,以确定它们是否适合用作软包装材料的阻隔层。结果表明,明胶的游离氨基侧链基团随GTA降低,证实了GTA与明胶之间发生交联。与未增塑对应物相比,在d-山梨醇存在下的交联反应程度较低,这表明增塑剂阻碍了GTA的反应。由差示扫描量热法(DSC)测得的玻璃化转变温度(T g)随着GTA浓度的增加而增加,这是由于形成了更多的网状材料,而d-山梨糖醇的掺入由于增塑而导致该参数的较小降低。将GTA浓度从0 wt%增加到1 wt%,可以将弹性模量从3.7±0.2 GPa提高到4.9±0.2 GPa。通过添加d-山梨糖醇,这些值显着降低,而断裂伸长率提高了约150%。用于预期目的的最佳配方是含有1 wt%的GTA和30 wt%的D-山梨糖醇,因为它具有最佳的性能:总可溶性物质从100%降低至16%,吸湿率从1854.1±85降低至210.4± 8%,相对湿度为65%时的水蒸气透过率从2.42±0.27提高到0.94±0.06×10〜(-14)kg m Pa〜(-1)s〜(-1)m〜(-2)降低不透明度,并具有仅释放初始GTA含量5%的附加好处

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