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首页> 外文期刊>Journal of Materials Research and Technology >Recent developments in sustainable arrowroot (Maranta arundinacea Linn) starch biopolymers, fibres, biopolymer composites and their potential industrial applications: A review
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Recent developments in sustainable arrowroot (Maranta arundinacea Linn) starch biopolymers, fibres, biopolymer composites and their potential industrial applications: A review

机译:最近可持续葛根(Maranta Arundinacea Linn)淀粉生物聚合物,纤维,生物聚合物复合材料及其潜在工业应用的发展:综述

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Raising environmental awareness had forced researchers to explore the potential and implementation of environmentally friendly materials as alternatives for conventional materials. Environmentally friendly materials are biodegradable, safer, non-toxic, lightweight, cheap, and readily available. Arrowroot starch has a high content of amylose (~35.20%) which makes it suitable for better film production. Starch extracted from arrowroot rhizomes can be blended, plasticized with other polymers, or reinforced with fibres to improve their properties. The melt blended glycidyl methacrylate-grafted polylactide (PLA-g-GMA) and treated arrowroot fiber (TAF) treated with coupling agent developed PLA-g-GMA/TAF composite, which showed better properties than the PLA/AF composite. To the best of our knowledge, no comprehensive review paper was published on arrowroot fibres, starch biopolymer, and its biocomposites before. The present review focuses on recent works related to the properties of arrowroot fibres and starch, and their fabrication as biocomposites. The review also reveals the vast potential of arrowroot fibres and starch for food industries, medicines, textiles, biofuel, pulp, and paper-making industries, bioenergy, packaging, automotive, and many more.
机译:提高环境意识迫使研究人员探讨环保材料的潜在和实施作为常规材料的替代品。环保材料是可生物降解的,更安全,无毒,轻巧,便宜,随时可用。 arranroot淀粉具有高含量的直链淀粉(〜35.20%),这使其适用于更好的薄膜生产。可以将淀粉从箭头根茎中提取,与其他聚合物塑化,或用纤维加固以改善它们的性质。用偶联剂经过PLA-G-GMA / TAF复合材料处理PLA-G-GMA / TAF复合物处理的熔融混合丙烯酸缩水甘油(PLA-G-GMA)和处理的弓形纤维(TAF),其显示比PLA / AF复合材料更好的性能。据我们所知,在Arrarroot纤维,淀粉生物聚合物和其生物复合材料之前没有公布全面的审查文件。本综述重点介绍了与葛根纤维和淀粉的性质有关的最近作品,以及它们作为生物复合材料的制造。审查还揭示了葛根纤维和淀粉的巨大潜力,用于食品工业,药品,纺织品,生物燃料,纸浆和造纸工业,生物能源,包装,汽车等等。

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