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Evaluation of the thermomechanical properties and biodegradation of brown rice starch-based chitosan biodegradable composite films

机译:糙米淀粉基壳聚糖生物降解复合膜的热机械性能及生物降解评价

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摘要

Biodegradable films composed of starch and chitosan plasticized by palm oil were fabricated via a solvent casting technique. In this study, the influence of the ratio of brown rice starch and chitosan on the mechanical, thermal, antimicrobial, and morphological properties of the films was investigated. Antimicrobial films with a smooth surface and a compact structure of brown rice starch were obtained. The results showed that a higher proportion of chitosan in the polymer blends resulted in a substantial enhancement in the tensile strength (TS) and thermal stability of the film. The TS values for BRS100, BRS30CH70, BRS50CH50, BRS70CH30, and CH100 were 3.7, 15.2, 10.2, 9.3, and 8.8 MPa, respectively, and the elongation at break (EB) values of the BRS100, BRS3OCH70, BRS5OCH50, BRS70CH30, and CH100 samples were 395%, 34.7%, 7.3%,11.5%, and 6.9%, respectively. The addition of chitosan to the brown rice starch samples resulted in a reduced water uptake of the film. The film with a balanced ratio of brown rice starch and chitosan exhibited excellent water resistance, with its water absorption being the lowest among all of the studied compositions. (C) 2020 Elsevier B.V. All rights reserved.
机译:通过溶剂铸造技术制造由棕榈油塑化的淀粉和壳聚糖组成的可生物降解的薄膜。在该研究中,研究了糙米淀粉和壳聚糖比例对薄膜的机械,热,抗微生物和形态学性质的影响。获得具有光滑表面和糙米淀粉的紧凑结构的抗微生物膜。结果表明,聚合物共混物中的壳聚糖比例较高导致胶粘强度(TS)和膜的热稳定性的显着增强。 BRS100,BRS30CH70,BRS50CH50,BRS70CH30和CH100的TS值分别为3.7,15.2,10.2,9.3和8.8MPa,BRS100,BRS3OCH70,BRS5OCH50,BRS70CH30和CH100的断裂(EB)值分别为3.7%,15.2,10.2,9.3和8.8MPa样品分别为395%,34.7%,7.3%,11.5%和6.9%。向糙米淀粉样品中加入壳聚糖导致膜的吸水性降低。具有糙米淀粉和壳聚糖的平衡比率的薄膜表现出优异的耐水性,其吸水性是所有研究组合物中最低的水。 (c)2020 Elsevier B.v.保留所有权利。

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