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首页> 外文期刊>Polymer Degradation and Stability >Graphene modifies the biodegradation of poly(lactic acid)-thermoplastic cassava starch reactive blend films
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Graphene modifies the biodegradation of poly(lactic acid)-thermoplastic cassava starch reactive blend films

机译:石墨烯修饰聚乳酸-热塑性木薯淀粉活性共混物膜的生物降解

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Biobased blend films produced from poly(lactic acid) (PLA), thermoplastic cassava starch (TPCS), and reinforced with graphene nanoplatelets (GRH) were evaluated in compost and inoculated vermiculite under composting conditions for 120 days. A reduction of the molecular number of the PLA fraction in the blends indicated early hydrolytic degradation. A priming effect was observed in compost for the physical blend of PLA with TPCS. A high biodegradation rate was observed for the TPCS fraction in each tested sample. In inoculated vermiculite, the addition of GRH resulted in a decreased hydrolytic degradation rate for PLA-GRH, attributed to the natural barrier offered by GRH to diffusion of water into the PLA matrix. In compost, incorporation of GRH at 0.1% wt. also resulted in a decreased abiotic degradation rate for PLA. Films containing GRH were associated with a longer lag-phase. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在堆肥和接种ver石中堆肥120天,评估了由聚乳酸(PLA),热塑性木薯淀粉(TPCS)以及石墨烯纳米片(GRH)增强的生物基混合膜。共混物中PLA馏分的分子数减少表明早期水解降解。 PLA和TPCS的物理混合物在堆肥中观察到了引发作用。在每个测试样品中,TPCS组分均观察到较高的生物降解率。在接种ver石中,添加GRH导致PLA-GRH的水解降解率降低,这归因于GRH提供的天然屏障,使水扩散到PLA基质中。在堆肥中,以0.1%wt的比例加入GRH。还导致PLA的非生物降解速率降低。含有GRH的薄膜与较长的滞后阶段有关。 (C)2019 Elsevier Ltd.保留所有权利。

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