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Application of nanocomposite cellulose fibers with luminescent properties to paper functionalization

机译:具有发光特性的纳米复合纤维素纤维在纸张功能化中的应用

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Cellulose fibres modified with the luminescent inorganic compound were obtained by using N-methylmorpholine-N-oxide as a direct solvent. The fibres were cut and introduced to the unrefined and refined paper pulp samples. Schopper-Riegler value of the pulps were measured and the laboratory paper samples were formed. Observations under UV radiation showed that the cellulose luminescent fibres were randomly and even scattered in the paper and were well visible. Measurements of the paper properties such as tensile index, Elmendorf tear resistance, Bendtsen air permeability, Bendtsen roughness, folding endurance, bursting strength and tensile energy absorption were carried out and the scanning electron microscopy (SEM) analysis was used for the assessment of the paper structure and the bonding properties of the luminescent fibres. SEM analysis showed that the cellulose man-made fibres create microfibril network and have excellent compatibility with the paper. The results showed that cellulose man-made fibres with luminescent properties express similar properties to natural cellulose fibres (e.g. external fibrillation and bonding properties) which are useful for the purpose of secure paper production. Cellulose man-made fibres introduced to the paper do not have any disadvantageous impact on paper properties.
机译:通过使用N-甲基吗啉-N-氧化物作为直接溶剂,获得了用发光无机化合物改性的纤维素纤维。切割纤维并将其引入未精制和精制的纸浆样品中。测量纸浆的Schopper-Riegler值,并形成实验纸样品。在紫外线辐射下的观察表明,纤维素发光纤维无规甚至分散在纸中,并且清晰可见。进行了纸张性能的测量,例如拉伸指数,埃尔曼多夫抗撕裂性,本特森透气性,本特森粗糙度,耐折性,破裂强度和拉伸能吸收率,并将扫描电子显微镜(SEM)分析用于评估纸张发光纤维的结构和粘合性能。 SEM分析表明,纤维素人造纤维形成微纤维网,并与纸具有优异的相容性。结果表明,具有发光性能的纤维素人造纤维表现出与天然纤维素纤维相似的性能(例如外部原纤化和粘合性能),其对于安全纸生产是有用的。引入纸中的纤维素人造纤维对纸性能没有不利影响。

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