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Fabrication and evaluation of regenerated celluloseanoparticle fibers from lignocellulosic biomass

机译:木质纤维素生物质的再生纤维素/纳米颗粒纤维的制备与评价

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摘要

This paper presents a new approach for converting lignocelluloses biomass into regenerated cellulose fibers. A major research objective is to examine the effectiveness of nanoparticles as cellulose fillers on improving thermal and mechanical properties of the regenerated cellulose fibers. Pure wood and bagasse cellulose solutions and celluloseanoparticle composite solutions were prepared using N-methyl-morpholine-N-oxide (NMMO) solvent, and were spun into filament fiber through an extruding device. The thermal analysis methods of TGA and DSC were used for characterizing the solution properties. The regenerated bagasse cellulose fiber was also compared with regenerated wood cellulose fiber and nanoparticle/cellulose fibers in terms of mechanical strength and elongation. Distribution of nanoparticles in the cellulose matrix was evaluated using a method of image analysis for fiber photomicrographs. Tested results indicated that the tensile strength of the regenerated bagasse cellulose fiber was considerably lower than that of the regenerated wood cellulose fiber but the elongation was consistent between these two fibers. The research also revealed that adding a small amount of nanoparticles to fill in the wood cellulose matrix resulted in an increase of the cellulose fiber tensile strength and modulus by 14% and 6% respectively, and a decrease of cellulose glass transition temperature. The nanoparticle distribution in the cellulose matrix was correctly detected by a computing image technique based on a mean shift method.
机译:本文提出了一种将木质纤维素生物质转化为再生纤维素纤维的新方法。一个主要的研究目标是研究纳米颗粒作为纤维素填料在改善再生纤维素纤维的热和机械性能方面的有效性。使用N-甲基-吗啉-N-氧化物(NMMO)溶剂制备纯木材和蔗渣纤维素溶液以及纤维素/纳米颗粒复合溶液,然后通过挤出设备将其纺成长丝纤维。用TGA和DSC的热分析方法表征溶液的性质。还就机械强度和伸长率将再生的蔗渣纤维素纤维与再生的木质纤维素纤维和纳米颗粒/纤维素纤维进行了比较。使用纤维显微照片的图像分析方法评估纤维素基质中纳米颗粒的分布。测试结果表明,再生的蔗渣纤维素纤维的拉伸强度显着低于再生的木质纤维素纤维,但是在这两种纤维之间的伸长率是一致的。研究还表明,添加少量纳米颗粒填充木材纤维素基体可使纤维素纤维的拉伸强度和模量分别提高14%和6%,并降低纤维素玻璃化转变温度。通过基于均值平移法的计算图像技术正确地检测了纤维素基质中的纳米颗粒分布。

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