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Improvement of mechanical and oxygen barrier properties of cellulose films by controlling drying conditions of regenerated cellulose hydrogels

机译:通过控制再生纤维素水凝胶的干燥条件,改善纤维素膜的机械和氧气阻隔性能

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摘要

Mechanical, thermal and oxygen barrier properties of regenerated cellulose films prepared from aqueous cellulose/alkali/urea solutions can be markedly improved by controlling the drying conditions of the films. By pre-pressing followed by vacuum drying under compression, the tensile strength, Young’s modulus, coefficient of thermal expansion and oxygen permeability of the dried films reached 263 MPa, 7.3 GPa, 10.3 ppm K−1 and 0.0007 ml μm m−2 day−1 kPa−1, respectively. Thus, films produced in this way show the highest performance of regenerated cellulose films with no orientation of cellulose chains reported to date. These improved properties are accompanied by a clear increase in cellulose II crystallinity from 50 to 62% during pre-pressing/press-vacuum drying process. At the same time, the film density increased from 1.45 to 1.57 g cm−3, and the moisture content under equilibrium conditions decreased from 14.1 to 9.8%. Hence, the aqueous alkali/urea solvent system has potential applications in producing new and environmentally friendly cellulose films with high performances through control of the drying conditions.
机译:由纤维素/碱/脲水溶液制备的再生纤维素膜的机械,热和氧阻隔性能可通过控制膜的干燥条件而得到显着改善。通过预压,然后在压缩条件下进行真空干燥,干燥膜的拉伸强度,杨氏模量,热膨胀系数和透氧性分别达到263 MPa,7.3 GPa,10.3 ppm K -1 和0.0007。 mlμmm -2 天 -1 kPa -1 。因此,以这种方式生产的膜显示出迄今为止没有报道的纤维素链取向的再生纤维素膜的最高性能。在预压/压真空干燥过程中,这些改善的性能伴随着纤维素II结晶度从50%明显增加到62%。同时,膜密度从1.45 g cm -3 增加到1.57 g cm -3 ,平衡条件下的水分含量从14.1下降到9.8%。因此,碱/脲水溶液水溶液通过控制干燥条件在生产高性能的新型环保纤维素膜方面具有潜在的应用。

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