纳米纤维素增强木薯淀粉纳米复合膜

Q2 Physics and Astronomy Physical Sciences Reviews Pub Date : 2023-06-01 DOI:10.1515/psr-2022-0014
Nazrin Asmawi, R. A. Ilyas, Muhammad Huzaifah Mohd Roslim, L. Rajeshkumar, W. Abotbina, E. Syafri, R. Jumaidin, R. Syafiq, S. Rafiqah, R. Ridwan, S. Jusoh, Mohd Zuhri Mohamed Yusoff
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引用次数: 3

摘要

近年来,研究人员热衷于开发可再生和环保的替代生物塑料材料,以取代从原油和其他石油基来源获得的材料。为了给下一代创造一个可持续的未来,已经不断采取这些替代措施。由于生物基替代品的诸多优点,包括生物可降解性、生物相容性、无毒性和结构灵活性,研究人员正在关注生物基替代品。目前,聚乳酸、聚丁二酸丁二酯、聚L -丙交酯、聚羟基丁酸酯、聚羟基碱盐等生物基材料存在的主要问题是生产成本。与木薯淀粉相比,成本便宜得多,约为0.32美元/公斤,而其他生物基的成本约为1.2-2.4美元/公斤。将生物质转化为有用的材料已经成为一种潮流,因为它降低了库存成本,并旨在开发一种源自自然的材料。从生物来源开发纳米复合材料已经被研究人员逐步试验,而淀粉、纤维素和糖原等多糖的提取也有助于纳米生物复合材料的发展。玉米淀粉是主要的从玉米中提取的生物塑料材料,它可以处理各种增强材料,使生物复合材料具有更好和增强的性能。木薯淀粉是从木薯植物中提取的最经济、最廉价的多糖,在开发生物复合材料方面具有更大的潜力。木薯淀粉基生物复合膜的开发具有广泛的应用前景,主要用于食品包装。本文对木薯淀粉的提取、制备及其性质进行了综述。对木薯淀粉及其复合材料的性能进行了较为全面的研究。综述了木薯淀粉生物复合薄膜在食品包装中的应用及其面临的挑战。
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Cassava starch nanocomposite films reinforced with nanocellulose
Abstract Recent researchers are keen on developing alternative bioplastic materials from renewable and eco-friendly sources to replace the materials obtained from crude oil and other petroleum-based sources. The measures for these replacements have been made continuously to create a sustainable future for the forthcoming generations. Researchers are focusing on bio-based alternatives due to their numerous benefits, including biodegradability, biocompatibility, nontoxicity, and structural flexibility. The main problem on the current bio-based material such as poly lactic acid, poly butylene succinate and poly L lactide, polyhydroxybuturate, and polyhydroxyalkalonates is the cost of production. Compare with cassava starch, the cost is much cheaper around 0.32 $/kg compare with other bio-based will cost around 1.2–2.4 $/kg. Conversion of biomass into useful materials has been the order of the day, as it reduces the cost of inventory and aims to develop a nature-derived material. The development of nanocomposites from biological sources has progressively experimented with the researchers and the deriving of polysaccharides such as starch, cellulose, and glycogen has aided the development of nanobiocomposites. Corn starch has been the dominant bioplastic material derived out of corn which can handle a variety of reinforcements and render a biocomposite material with better and enhanced properties. Cassava starch is the most economic and cheap polysaccharide derived from the cassava plant and has a greater potential to act as biopolymer material for the development of biocomposites. The development of cassava starch-based biocomposite film was widely used for a wide range of applications mainly for food packaging applications. This review focuses on the extraction, preparation, and properties of cassava starch from cassava plants. The properties of the cassava starch and its composites were also comprehensively dealt with. The development of biocomposite films based on cassava starch for food packaging applications has been reviewed along with the challenges associated with it.
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来源期刊
Physical Sciences Reviews
Physical Sciences Reviews MULTIDISCIPLINARY SCIENCES-
CiteScore
2.40
自引率
0.00%
发文量
173
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