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Renewable resource-based green composites of surface-treated spent coffee grounds and polylactide: Characterisation and biodegradability

机译:经表面处理的废咖啡渣和聚丙交酯的可再生资源基绿色复合材料:表征和生物降解性

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摘要

The morphology, mechanical properties, and biodegradability of composite materials containing polylactide (PLA) and spent coffee grounds (SCG) were evaluated. Maleic-anhydride-grafted polylactide (PLA-g-MA) and treated, i.e. cross-linked, spent coffee grounds (TSCG) were used to enhance the desired characteristics of these composites. PLA-g-MA/TSCG materials exhibited desirable mechanical properties relative to those of PLA/SCG. This effect was attributed to greater compatibility between the grafted polymer and TSCG. The dispersion of TSCG in the PLA-g-MA matrix was highly homogeneous due to ester formation and resulted in branched and cross-linked macromolecules. Additionally, the PLA-g-MA/TSCG composites exhibited lower melt viscosities and were therefore more easily processed. The water resistance of the PLA-g-MA/TSCG composite was greater than that of PLA/SCG and the mass losses following burial in soil compost indicated that both materials were biodegradable, especially at high levels of SCG substitution. The PLA/SCG and PLA-g-MA/TSCG composites were more biodegradable than neat PLA.
机译:评价了包含聚丙交酯(PLA)和废咖啡渣(SCG)的复合材料的形态,力学性能和生物降解性。用马来酸酐接枝的聚丙交酯(PLA-g-MA)和处理过的即交联的废咖啡渣(TSCG)来增强这些复合材料的所需特性。相对于PLA / SCG,PLA-g-MA / TSCG材料表现出理想的机械性能。该效果归因于接枝聚合物与TSCG之间的更大相容性。由于酯的形成,TSCG在PLA-g-MA基质中的分散性非常均匀,并导致分支和交联的大分子。另外,PLA-g-MA / TSCG复合材料表现出较低的熔体粘度,因此更易于加工。 PLA-g-MA / TSCG复合材料的耐水性大于PLA / SCG,并且在土壤堆肥中埋葬后的质量损失表明这两种材料都是可生物降解的,尤其是在SCG替代水平较高的情况下。 PLA / SCG和PLA-g-MA / TSCG复合材料比纯PLA更具生物降解性。

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