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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Preparation and characterization of starch-based composite films reinforced by cellulose nanofibers
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Preparation and characterization of starch-based composite films reinforced by cellulose nanofibers

机译:纤维素纳米纤维增强淀粉基复合膜的制备与表征

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The current study deals with the preparation and characterization of polysaccharide-based biocomposite films acquired by the incorporation of cellulose nanofiber within glycerol plasticized matrix formed by starch. The application of starch-based films is limited due to highly hydrophilic nature and poor mechanical properties. These problems are solved by forming a nanocomposite of thermoplastic starch (TPS) as matrix and cellulose nanofiber (CNF) as reinforcement. CNF is successfully prepared from short henequen fibers which consist of almost 60% cellulose by a chemo-mechanical process. TPS/CNF composite films are prepared by the polymer solution casting method, and their characterizations are obtained by water vapor transmission rate (WVTR), atomic force microscopy (AFM), oxygen transmission rate (OTR), X-ray diffraction, light transmittance and tensile test. The 0.4 wt% CNF loaded TPS films showed approximately the maximum improvement in tensile strength. Tensile strength and elastic modulus increased by up to 80% and 170% respectively. Above 0.5 wt% CNF, tensile strength starts to deteriorate. WWII and OTR results show improvement in water vapor barrier properties of TPS matrix. The AFM analysis shows the topography of the surface of the nanocomposite. The morphology of nanofibers is studied by using the scanning electron microscopy (SEM) and the transmission electron microscopy (TEM). (C) 2018 Elsevier B.V. All rights reserved.
机译:目前的研究涉及通过在淀粉形成的甘油增塑基质中掺入纤维素纳米纤维掺入的基于多糖的生物复合膜的制备和表征。由于高水水性和机械性能差,淀粉基薄膜的应用受到限制。通过将热塑性淀粉(TPS)作为基质和纤维素纳米纤维(CNF)形成作为增强来解决这些问题。 CNF由短纯纤维成功制备,由化疗机械过程组成几乎60%纤维素。通过聚合物溶液铸造方法制备TPS / CNF复合膜,其表征通过水蒸气透射率(WVTR),原子力显微镜(AFM),氧传输速率(OTR),X射线衍射,透光率和拉伸试验。 0.4wt%CNF负载的TPS膜显示出抗拉强度的最大提高。拉伸强度和弹性模量分别增加高达80%和170%。高于0.5wt%CNF,拉伸强度开始劣化。 WWII和OTR结果表明了TPS基质水蒸气屏障性质的提高。 AFM分析显示了纳米复合材料表面的形貌。通过使用扫描电子显微镜(SEM)和透射电子显微镜(TEM)来研究纳米纤维的形态。 (c)2018年elestvier b.v.保留所有权利。

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