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首页> 外文期刊>Indian Journal of Weed Science >Additive properties of mint weed in polyfilms
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Additive properties of mint weed in polyfilms

机译:薄荷杂草在薄膜中的添加特性

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Biopolymer films have been regarded as potential replacements for synthetic petrochemical based polymers for different uses mainly in pharmaceuticals and packaging applications in view of strong awareness towards more environmental friendly materials.Polysaccharide-mucilage and lignin concentrate were isolated from the mint weed {Hyptis suaveolens). Potato starch was modified and starch-lignin-mucilage-polyvinyl alcohol was prepared in different composition from lignin and mucilage isolates of H. suaveolens. The physical properties like film appearance, opacity, swelling per cent and mechanical properties namely tensile strength and elongation per cent of polyfilms were measured. Acetylated starch with lignin isolates showed good elongation % (17.43±0.24) in comparison to native starch films (2.62±0.11). Acetylation increased the tensile strength while Hyptis lignin increased the elongation per cent of films. The tensile strength of mucilage and polyvinyl film blend was found to be decreased significantly. This study revealed that lignin and mucilage blends are compatible with starch and synthetic polymers which could be advantageous for cost reduction with improved properties and enhanced increase range of application.
机译:鉴于人们对更环保的材料的强烈意识,生物聚合物薄膜被认为是主要用于医药和包装用途的合成石化聚合物的潜在替代品,这些聚合物主要用于制药和包装应用中。对马铃薯淀粉进行了改性,并从木质素和suaveolens的粘液分离物中制备了不同组成的淀粉-木质素-粘液-聚乙烯醇。测量了诸如薄膜外观,不透明性,溶胀率和机械性能的物理性能,即薄膜的拉伸强度和伸长率。与天然淀粉膜(2.62±0.11)相比,带有木质素分离物的乙酰化淀粉显示出良好的伸长百分比(17.43±0.24)。乙酰化增加了抗张强度,而Hyptis木质素增加了薄膜的伸长率。发现粘胶和聚乙烯薄膜共混物的拉伸强度显着降低。这项研究表明,木质素和粘胶混合物与淀粉和合成聚合物相容,这可能有利于降低成本,同时具有改善的性能和更大的应用范围。

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