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Effect of Cellulose and Cellulose Nanocrystal Contents on the Biodegradation under Composting Conditions of Hierarchical PLA Biocomposites

机译:纤维素和纤维素纳米晶体含量对分层PLA生物复合材料的堆肥条件下的生物降解的影响

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摘要

In this work, the effect of microfibrillated cellulose (MFC) and cellulose nanocrystals (CNCs) on the biodegradation, under composting conditions, of hierarchical PLA biocomposites (HBCs) was studied using a full 22 factorial experimental design. The HBCs were prepared by extrusion processing and were composted for 180 days. At certain time intervals, the specimens were removed from the compost for their chemical, thermal and morphological characterizations. An ANOVA analysis was carried out at different composting times to study MFC and CNCs’ effects on biodegradation. The specimen’s mass loss and molecular weight loss were selected as independent variables. The results show that the presence of MFC enhances the PLA biodegradation, while with CNCs it decreases. However, when both cellulosic fibers are present, a synergistic effect was evident—i.e., in the presence of the MFC, the inclusion of the CNCs accelerates the HBCs biodegradation. Analysis of the ANOVA results confirms the relevance of the synergistic role between both cellulosic fibers over the HBC biodegradation under composting conditions. The results also suggest that during the first 90 days of incubation, the hydrolytic PLA degradation prevails, whereas, beyond that, the enzymatic microbial biodegradation dominates. The SEM results show MFC’s presence enhances the surface biodeterioration to a greater extent than the CNCs and that their simultaneous presence enhances PLA biodegradation. The SEM results also indicate that the biodegradation process begins from hydrophilic cellulosic fibers and promotes PLA biodegradation.
机译:在这项工作中,使用完整的22因子实验设计研究了微纤化纤维素(MFC)和纤维素纳米晶(CNC)对分层PLA生物复合材料料(HBC)的生物降解的生物降解的影响。通过挤出加工制备HBCS,堆肥180天。在某些时间间隔,从堆肥中除去标本以获得化学,热和形态表征。在不同的堆肥时间进行ANOVA分析,以研究MFC和CNCS对生物降解的影响。将标本的质量损失和分子量损失选择为独立变量。结果表明,MFC的存在增强了PLA生物降解,而CNC将减少。然而,当存在纤维素纤维时,在MFC的存在下,纤维素纤维的协同效应是显而易见的效果。包含CNCs加速HBC生物降解。 ANOVA结果的分析证实了在堆肥条件下通过HBC生物降解在纤维素纤维之间的协同作用的相关性。结果还表明,在孵育的前90天期间,水解PLA降解普遍存在,而超出该酶促微生物降解占主导地位。 SEM结果显示MFC的存在比CNC在更大程度上增强表面生物,并且它们的同时存在增强了PLA生物降解。 SEM结果还表明生物降解过程从亲水纤维素纤维开始并促进PLA生物降解。

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