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Biocomposites from Rice Straw Nanofibers: Morphology Thermal and Mechanical Properties

机译:稻草纳米纤维的生物复合材料:形态热和机械性能

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摘要

Agricultural residues are major potential resources for biomass and for material production. In this work, rice straw residues were used to isolate cellulose nanofibers of different degree of oxidation. Firstly, bleached rice fibers were produced from the rice straw residues following chemical extraction and bleaching processes. Oxidation of rice fibers mediated by radical 2,2,6,6-tetramethylpiperidine 1-oxyl (TEMPO) at pH 10 was then applied to extract rice cellulose nanofibers, with diameters of 3–11 nm from morphological analysis. The strengthening capacity of rice nanofibers was tested by casting nanocomposite films with poly(vinyl alcohol) polymer. The same formulations with eucalyptus nanofibers were produced as comparison. Their thermal and mechanical performance was evaluated using thermogravimetry, differential scanning calorimetry, dynamic mechanical analysis and tensile testing. The glass transition of nanocomposites was shifted to higher temperatures with respect to the pure polymer by the addition of rice cellulose nanofibers. Rice nanofibers also acted as a nucleating agent for the polymer matrix. More flexible eucalyptus nanofibers did not show these two phenomena on the matrix. Instead, both types of nanofibers gave similar stiffening (as Young’s modulus) to the matrix reinforced up to 5 wt.%. The ultimate tensile strength of nanocomposite films revealed significant enhancing capacity for rice nanofibers, although this effect was somehow higher for eucalyptus nanofibers.
机译:农业残留物是生物质和材料生产的主要潜在资源。在这项工作中,稻草残留物被用于分离不同氧化程度的纤维素纳米纤维。首先,经过化学提取和漂白处理后,由稻草残渣生产的漂白稻米纤维。然后在pH 10下,通过自由基2,2,6,6-四甲基哌啶1-氧基(TEMPO)介导的米纤维氧化,从形态分析中提取直径为3–11 nm的米纤维素纳米纤维。通过用聚乙烯醇聚合物浇铸纳米复合薄膜来测试稻米纳米纤维的增强能力。作为比较,生产了具有桉树纳米纤维的相同配方。使用热重分析,差示扫描量热法,动态力学分析和拉伸测试对它们的热和机械性能进行了评估。通过添加大米纤维素纳米纤维,相对于纯聚合物,纳米复合材料的玻璃化转变温度提高了。大米纳米纤维还充当聚合物基质的成核剂。更柔韧的桉树纳米纤维在基质上未显示这两种现象。取而代之的是,两种类型的纳米纤维都具有与增强至5 wt。%的基体相似的刚度(按杨氏模量计)。纳米复合薄膜的极限拉伸强度显示出对稻米纳米纤维的显着增强能力,尽管对于桉树纳米纤维而言,这种效果要更高。

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