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Preparation and application of nanocellulose from Miscanthus × giganteus to improve the quality of paper for bags

机译:芒草×纳米纤维素的制备与应用提高纸袋品质。

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We present the study of the preparation of pulp and nanocellulose from Miscanthus × giganteus to improve the qualityof the paper for bags. The organosolv miscanthus pulp (OMP) was prepared by the environmentally friendly organosolvmethod—cooking in a solution of peracetic acid at the first stage and the alkaline treatment at the second stage. Nanocellulosewas obtained by hydrolysis of never-dried OMP and subsequent ultrasonic treatment. Structural changes andcrystallinity index of OMP and nanocellulose were studied by SEM and FTIR methods. X-ray diffraction analysis confirmedan increase in the crystallinity of OMP and nanocellulose as a result of thermochemical treatment. The nanocellulose had adensity of up to 1.6 g/cm~3, transparency up to 82%, a crystallinity index of 76.5%, and tensile strength up to 195 MPa. TheAFM showed that the particles of nanocellulose have a diameter in the range from 10 to 20 nm. A TGA analysis confirmedthat nanocellulose films have a denser structure and lower mass loss in the temperature range 320–440℃ compared toOMP. We established the positive effect of nanocellulose application on the physical and mechanical properties of paperfor bags. The application of nanocellulose allows replacing synthetic reinforcing materials and more expensive sulfateunbleached pulp with waste paper in the production of paper and cardboard.
机译:我们提出了从芒草×巨型果肉制备纸浆和纳米纤维素以提高质量的研究纸袋。用环保型有机溶剂制得的有机溶剂桂花浆(OMP)方法-在第一步的过乙酸溶液中蒸煮,在第二步的碱处理。纳米纤维素通过从未干燥的OMP的水解和随后的超声波处理获得三氯甲烷。结构变化和通过SEM和FTIR方法研究了OMP和纳米纤维素的结晶度。确认X射线衍射分析由于热化学处理,OMP和纳米纤维素的结晶度增加。纳米纤维素具有密度达1.6 g / cm〜3,透明度达82%,结晶度达76.5%,拉伸强度达195 MPa。的原子力显微镜(AFM)显示纳米纤维素颗粒的直径为10至20nm。 TGA分析已确认相比于320-440℃,纳米纤维素膜具有更致密的结构和更低的质量损失OMP。我们确定了纳米纤维素对纸的物理和机械性能的积极影响袋。纳米纤维素的应用可以替代合成增强材料和更昂贵的硫酸盐未漂白的纸浆和废纸在纸和纸板的生产中。

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