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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Mechanical properties and biodegradation of thermoplastic starches obtained from grafted starches with acrylics
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Mechanical properties and biodegradation of thermoplastic starches obtained from grafted starches with acrylics

机译:由接枝淀粉与丙烯酸类树脂制得的热塑性淀粉的机械性能和生物降解性

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摘要

The mechanical properties and rate of biodegradation of thermoplastic starch obtained from acrylic grafted starch were evaluated. Thermoplastic starch from ungrafted starch (TPS) and grafted starch (TPGS) were obtained by mixing ungrafted or grafted starch with water and glycerol in a mixer camera. The TPS and TPGS with starch-g-PMMA behave as rigid materials with a high Young's modulus. However, TPGS with starch-g-(PBA-co-PMMA) showed less rigidity. Using dynamic mechanical analysis (DMA), an increase in the flexibility of starch was observed due to the addition of a plasticizer. The susceptibility of TPS and TPGS to biodegradation was evaluated with Aspergillus niger. Good fungus growth was observed after 45 days of incubation on TPS probes, whereas lower fungus growth was observed on TPGS probes. Starch biodegradation was confirmed by minor decomposition temperatures obtained by TGA, which indicated a decrease in the molecular weight of the starch due to enzymatic attack.
机译:评价了由丙烯酸接枝淀粉获得的热塑性淀粉的机械性能和生物降解速率。通过将未接枝或接枝的淀粉与水和甘油在混合机中混合,可以从未接枝淀粉(TPS)和接枝淀粉(TPGS)中获得热塑性淀粉。具有淀粉-g-PMMA的TPS和TPGS表现为高杨氏模量的刚性材料。然而,具有淀粉-g-(PBA-共-PMMA)的TPGS显示出较低的刚性。使用动态力学分析(DMA),由于添加了增塑剂,淀粉的柔韧性得到了提高。用黑曲霉评估TPS和TPGS对生物降解的敏感性。在TPS探针上孵育45天后,观察到良好的真菌生长,而在TPGS探针上观察到较低的真菌生长。通过TGA获得的较小分解温度证实了淀粉的生物降解,这表明由于酶的攻击淀粉的分子量降低了。

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