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Evaluation of biodegradation of polylactic acid mineral composites in composting conditions

机译:对堆肥条件下聚乳酸矿物复合材料生物降解的评价

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In this study, the enhancement of the biodegradation rate of polylactic acid (PLA) filled with commercially available soil amendment product (NTM) or a nanoclay (Cloisite 25A) were evaluated. Cloisite 25A and NTM were incorporated into PLA at 5, 10, 20 (w/w) through melt blending. Transmission electron micrographs revealed particles with a wide range of sizes that were formed by clumping of many smaller particles. The particles showed good dispersion in PLA by scanning electron microscopy. Under standard composting conditions using a standard technique for aerobic biodegradation of plastic materials, it was shown that the addition of NTM enhanced the biodegradation rate of PLA composites by 3- to 4-fold compared to neat PLA. Linear kinetics were used to obtain induction periods, half-lives, and rates of mineralization. Finally, mechanical and thermomechanical properties of these blends were compared with PLA. Published 2020. This article is a U.S. Government work and is in the public domain in the USA. J. Appl. Polym. Sci. 2020, 137, 48939.
机译:在该研究中,评估填充有市售土壤炔丙酯(NTM)或纳米粘土(Cloisite 25a)的聚乳酸(PLA)的生物降解率的增强。通过熔融混合将Cloisite 25A和NTM掺入PLA中,通过熔融共混。透射电子显微照片揭示了具有多种尺寸的颗粒,该尺寸由许多较小的颗粒块块形成。通过扫描电子显微镜,颗粒在PLA中显示出良好的分散。在使用标准技术的标准堆肥条件下,使用塑料材料的有氧生物降解的标准技术,结果表明,与整洁PLA相比,NTM的添加增强了PLA复合材料的生物降解速率3至4倍。线性动力学用于获得诱导期,半衰期和矿化率。最后,将这些共混物的机械和热机械性能与PLA进行比较。公布了2020年。本文是美国政府工作,并在美国的公共领域。 J. Appl。聚合物。 SCI。 2020,137,48939。

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