Degradation Behaviour of Arrowroot Fibre (Maranta Arundinacea) Reinforced Arrowroot Starch Biocomposite Films

J. Tarique, S.M. Sapuan, E.S. Zainudin, A. Khalina, R.A. Ilyas
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引用次数: 2

Abstract

This research is being driven by environmental legislation that requires the consumption and usage of environmentally friendly products. The focus of this research is to develop and characterize thermoplastic arrowroot starch (TPAS) based biocomposite films incorporating arrowroot fibre (AF) at various compositions (0–10 wt.%) using the solution casting method. The biodegradation behaviour of newly developed composite films was examined. The average degradation rates of TPAS and TPAS/AF–10 films were 8 and 9.84%/day, respectively. The soil burial results revealed that the weight loss of TPAS/AF biocomposite films was higher compared to TPAS film. The biocomposite films revealed arrowroot fibre, a novel waste resource that is both eco-friendly and simple to produce. Overall, incorporating arrowroot fibre with TPAS film improves biodegradability, making them more suitable for environmentally friendly food packaging.
竹纤维增强竹淀粉生物复合膜的降解行为
这项研究是由环境立法推动的,该立法要求消费和使用环境友好型产品。本研究的重点是利用溶液铸造法开发和表征含有不同成分(0-10 wt.%)的竹纤维(AF)的热塑性竹淀粉(TPAS)基生物复合薄膜。研究了新研制的复合膜的生物降解性能。TPAS和TPAS/ AF-10膜的平均降解率分别为8%和9.84%/d。土壤掩埋结果表明,TPAS/AF生物复合膜的失重率高于TPAS膜。这种生物复合薄膜揭示了竹纤维,这是一种既环保又易于生产的新型废物资源。总的来说,将竹纤维与TPAS膜结合可以提高生物降解性,使其更适合环保食品包装。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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