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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Preparation and properties of glycerol plasticized-starch (GPS)/cellulose nanoparticle (CN) composites
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Preparation and properties of glycerol plasticized-starch (GPS)/cellulose nanoparticle (CN) composites

机译:甘油增塑淀粉(GPS)/纤维素纳米颗粒(CN)复合材料的制备及性能

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In this paper, cellulose nanoparticles (CN) were coagulated from a NaOH/urea/H2O solution of microcrystalline cellulose (MC) using an ethanol/HCl aqueous solution as the precipitant. CN ranged in size from about 50 to 100 nm. Compared to MC, CN formed a new crystalline lattice of cellulose II. The glycerol plasticized-wheat starch (GPS)/CN nanocomposites were prepared using CN as filler in GPS matrix by a casting process. At a low loading level, CN was dispersed evenly in the GPS matrix. The tensile strength increased from 3.15 to 10.98 MPa when CN content went from 0 to 5 wt.%. CN may increase the thermal stability of GPS/CN composites. Moreover, water vapor permeability decreased from 5.75 x 10~(-10) to 3.43 x 10~(-10) g m~(-1) s~(-1) Pa~(-1). The improvements in these properties may be attributed to the good interaction between CN filler and GPS matrix because of the similar polysaccharide structures of cellulose and starch.
机译:在本文中,使用乙醇/ HCl水溶液作为沉淀剂,将纤维素纳米颗粒(CN)从微晶纤维素(MC)的NaOH /脲/ H2O溶液中凝结。 CN的尺寸范围为约50至100nm。与MC相比,CN形成了纤维素II的新晶格。以CN为填充剂,通过浇铸法制备了甘油增塑淀粉(GPS)/ CN纳米复合材料。在低负载水平下,CN均匀分散在GPS矩阵中。当CN含量从0到5wt。%时,抗张强度从3.15MPa增加到10.98MPa。 CN可能会增加GPS / CN复合材料的热稳定性。此外,水蒸气透过率从5.75×10〜(-10)降低到3.43×10〜(-10)g m·(-1)s·(-1)Pa·(-1)。由于纤维素和淀粉的多糖结构相似,CN填料与GPS基质之间的良好相互作用可改善这些特性。

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