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淀粉和卡拉胶协同作用对麒麟菜复合膜形成的影响:物理化学和可降解性能。

Synergistic effects of starch and carrageenan from Kappaphycus alvarezii in composite film formation: Physicochemical and degradable properties.

机构信息

Department of Biological Sciences, School of Medical and Life Sciences, Sunway University, No. 5, Jalan University, Bandar Sunway, Petaling Jaya 47500, Selangor, Malaysia.

Sunway Centre for Electrochemical Energy and Sustainable Technology (SCEEST), School of Engineering and Technology, Sunway University, No. 5, Jalan University, Bandar Sunway, Petaling Jaya 47500, Selangor, Malaysia.

出版信息

Int J Biol Macromol. 2024 Oct;278(Pt 4):135205. doi: 10.1016/j.ijbiomac.2024.135205. Epub 2024 Sep 10.

Abstract

Rising concerns around plastic pollution from single-use plastic (SUPs), especially food packaging, have driven interest in sustainable alternatives. As such, algae biomass has gained attention for bioplastic production due to algae's rapid growth and abundant polysaccharides. This research focuses on extracting carrageenan from Kappaphycus alvarezii, extensively cultivated in Sabah, Malaysia, and utilizing it in combination with starch and glycerol to develop algae-based films. The physicochemical properties and degradation rate of these films were evaluated, revealing that the addition of carrageenan enhanced overall thermal stability meanwhile increasing water solubility, water content but reducing the degradation rate and swelling degree. This is primarily due to the crystalline structures of carrageenan, which provide a more rigid arrangement compared to the network of starch polymers. However, the incorporation of starch into the blends has enhanced the elongation and surface morphology, resulting in more balanced properties. Overall, these carrageenan films displayed impressive thermal, mechanical, and biodegradability characteristics, establishing their viability as substitutes for conventional plastics.

摘要

人们对一次性塑料(SUPs),特别是食品包装造成的塑料污染的担忧日益加剧,这促使人们对可持续替代品产生了兴趣。由于藻类生长迅速且富含多糖,藻类生物量在生物塑料生产方面受到关注。本研究专注于从马来西亚沙巴州广泛种植的麒麟菜(Kappaphycus alvarezii)中提取卡拉胶,并将其与淀粉和甘油结合,开发藻类基薄膜。评估了这些薄膜的物理化学性质和降解率,结果表明,卡拉胶的添加增强了整体热稳定性,同时提高了水溶性、水含量,但降低了降解率和溶胀度。这主要是由于卡拉胶的结晶结构与淀粉聚合物的网络相比提供了更刚性的排列。然而,淀粉的掺入增强了共混物的拉伸性能和表面形貌,从而使性能更加均衡。总的来说,这些卡拉胶薄膜表现出令人印象深刻的热学、力学和生物降解特性,证明它们有潜力替代传统塑料。

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