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Preparation and Characterization of Regenerated Cellulose Film from a Solution in Lithium Bromide Molten Salt Hydrate

机译:溴化锂熔盐水合物溶液中纤维素膜的制备与表征

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摘要

In this study, the molten salt hydrate of lithium bromide (LiBr) was utilized as a non-derivatizing cellulose dissolution solvent to prepare regenerated cellulose films for kraft pulp. The effects of LiBr concentrations (60, 62, and 65 wt %) and dissolving time (from 5 to 40 min with the interval of 5 min) on the structures and the properties of the films were investigated. Fourier transform infrared (FT-IR) and cross-polarization magic-angle spinning carbon-13 nuclear magnetic resonance (CP/MAS 13C NMR) characterizations verified the breakage of inter- and intra-cellulose hydrogen bonds during the regeneration, resulting in the disruption of the crystalline structure of cellulose. X-ray diffraction (XRD) data indicated that the regeneration converted the polymorphism of cellulose from I to II as well as decreased its crystallinity. Ultraviolet-visible spectra (UV-Vis) and scanning electron microscopy (SEM) analyses revealed the excellent optical transparency of the films to visible light due to the complete dissolution of cellulose fibers as well as the sufficient breaking of the inter- and intra-cellulose hydrogen bonds. In terms of tensile testing, tuning LiBr concentrations and dissolving time could increase the elongation at break and tensile strength of the films. The maximum elongation at break of 26% and tensile strength of 67 MPa were achieved when the films prepared in 65 wt % LiBr for 10 and 15 min, respectively. These results indicated the great potential of the cellulose films for packaging use.
机译:在这项研究中,将溴化锂(LiBr)的熔融盐水合物用作非衍生纤维素溶解溶剂,以制备牛皮纸浆的再生纤维素膜。研究了溴化锂浓度(60、62和65 wt%)和溶解时间(5至40分钟,间隔5分钟)对薄膜结构和性能的影响。傅里叶变换红外(FT-IR)和交叉极化魔角旋转碳13核磁共振(CP / MAS 13 C NMR)表征验证了纤维素间和纤维素内氢键的断裂在再生过程中,导致纤维素晶体结构的破坏。 X射线衍射(XRD)数据表明,再生将纤维素的多态性从I转化为II,并且降低了其结晶度。紫外可见光谱(UV-Vis)和扫描电子显微镜(SEM)分析显示,由于纤维素纤维完全溶解以及纤维素间和纤维素内的充分破坏,薄膜对可见光具有出色的光学透明性氢键。在拉伸试验方面,调整LiBr浓度和溶解时间可增加薄膜的断裂伸长率和拉伸强度。当在65 wt%的LiBr中分别制备10和15分钟时,薄膜的最大断裂伸长率达到26%,拉伸强度达到67 MPa。这些结果表明纤维素膜用于包装的巨大潜力。

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