增塑剂对罗望子仁多糖生物降解膜性能的影响

Q4 Multidisciplinary
P. Suwanamornlert, Takunrat Taksima, Pongsura Thanyacharoen-anukul
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引用次数: 0

摘要

研究了聚乙二醇400、甘油、山梨醇、吐温80、吐温40、吐温20和吐温20对罗望子核多糖基薄膜的力学、光学和热性能的影响。在罗望子仁多糖中加入增塑剂可改变薄膜的拉伸强度、弹性模量和断裂伸长率。含聚乙二醇400、甘油、山梨醇、吐温20和吐温20的薄膜的拉伸强度低于含吐温80、吐温40和非增塑膜的薄膜。山梨醇塑化膜的力学性能最佳,拉伸强度最低,为6.07 MPa,断裂伸长率最高,为5.91%。含山梨醇的薄膜光学透明度最高,而含聚乙二醇400和甘油的薄膜透明度最低,白度指数最高。差示扫描量热法(DSC)显示,增塑剂的加入增加了聚合物链的迁移率。山梨醇、甘油和吐温20的加入使罗望子仁多糖膜的玻璃化转变温度分别从49.81℃降至20.97℃、42.41℃和42.92℃。山梨糖醇是一种有效的增塑剂,可以改善罗望子仁多糖膜的柔韧性和光学性能。通过研究发现,用山梨醇增塑的罗望子仁多糖薄膜具有用于烹饪和生物医学应用的生物聚合物薄膜的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of Plasticizers on Characterization of Biodegradable Film Based on Tamarind Kernel Polysaccharide
Tamarind kernel polysaccharide-based film was formulated to study the effects of polyethylene glycol 400, glycerol, sorbitol, tween 80, tween 40, tween 20 and span 20 on mechanical, optical, and thermal properties. Addition of plasticizers to tamarind kernel polysaccharide led to changes in tensile strength, elastic modulus, and elongation at break of the films. The tensile strength of films containing polyethylene glycol 400, glycerol, sorbitol, tween 20 and span 20 was lower than films containing tween 80, tween 40 and non-plasticized film. Sorbitol-plasticized film exhibited the best mechanical properties with lowest tensile strength, 6.07 MPa and highest elongation at break 5.91%. Film containing sorbitol also showed highest optical transparency, while polyethylene glycol 400 and glycerol exhibited lowest transparency and highest whiteness index. Differential scanning calorimetry (DSC) revealed that incorporation of plasticizers increased the mobility of the polymer chains. The addition of sorbitol, glycerol, and tween 20 reduced the glass transition temperature of tamarind kernel polysaccharide film from 49.81 to 20.97, 42.41 and 42.92 °C, respectively. Sorbitol proved to be an effective plasticizer for improving flexibility and enhancing the optical property of tamarind kernel polysaccharide film. As a result of the research, it was discovered that tamarind kernel polysaccharide film plasticized with sorbitol has the potential to be used in the creation of biopolymer film for culinary and biomedical applications.
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来源期刊
Journal of Current Science and Technology
Journal of Current Science and Technology Multidisciplinary-Multidisciplinary
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