首页> 外文期刊>Journal of Applied Polymer Science >Tannin improves the processability and delays the biodegradability of poly (lactic acid)‐starch‐based thermoset materials produced by injection molding made with renewable compounds
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Tannin improves the processability and delays the biodegradability of poly (lactic acid)‐starch‐based thermoset materials produced by injection molding made with renewable compounds

机译:单宁可提高可加工性,延缓可再生化合物注塑成型生产的聚(乳酸)淀粉基热固性材料的生物降解性

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摘要

Abstract The incorporation of tannin in bio‐composite biodegradable thermoset materials (BTM) based on poly (lactic acid), starch, sugarcane fiber, and nutrient compounds, to achieve an alternative material for conventional plastics processed by injection molding aiming environmental applications was investigated. The biodegradation of injection molded BTM dog‐bone shape specimens prepared with and without incorporation of 1 tannin extract was evaluated up to 60 days with overall characterization by scanning electron microscopy, Fourier transform–infrared spectroscopy, thermogravimetric analyzer, and X‐ray diffraction. The BTM produced with 1 tannin showed reduced molding defects with an increased productivity of up to 82, improved mechanical properties and reduced biodegradation of samples buried in an organic substrate. Based on physicochemical characterization, the observed delay in biodegradation of BTM induced by tannin is suggested to result from its tight interaction with the starch and lignocellulosic fibers, acting as antimicrobial agent and reducing the hydrophilicity of blends. Natural polyphenols such as tannins are suitable additives to improve the processability of injection molded bio‐composites and to extend the lifetime of biodegradable materials subjected to contact with high microbial load substrates, such as pots and buckets used to grow plants.
机译:摘要 研究了在聚乳酸、淀粉、甘蔗纤维和营养物质基的生物复合可生物降解热固性材料(BTM)中掺入单宁,以环境为目标,实现常规注塑成型塑料的替代材料。通过扫描电子显微镜、傅里叶变换-红外光谱、热重分析仪和 X 射线衍射,对添加和不添加 1% 单宁提取物制备的注塑成型 BTM 狗骨形样品的生物降解进行了长达 60 天的评估。用1%单宁生产的BTM减少了成型缺陷,生产率提高了82%,改善了机械性能,并减少了埋在有机基材中的样品的生物降解。基于物理化学表征,观察到的单宁诱导的BTM生物降解延迟是由于其与淀粉和木质纤维素纤维的紧密相互作用,起到抗菌剂的作用并降低了共混物的亲水性。单宁等天然多酚是合适的添加剂,可改善注塑成型生物复合材料的可加工性,并延长与高微生物负荷基材接触的可生物降解材料的使用寿命,例如用于种植植物的花盆和水桶。

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