首页> 外文期刊>Journal of Applied Polymer Science >A new method to visualize and characterize the pore structure of TENCEL (R) (Lyocell) and other man-made cellulosic fibres using a fluorescent dye molecular probe
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A new method to visualize and characterize the pore structure of TENCEL (R) (Lyocell) and other man-made cellulosic fibres using a fluorescent dye molecular probe

机译:使用荧光染料分子探针可视化和表征TENCEL(R)(Lyocell)和其他人造纤维素纤维的孔结构的新方法

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The internal porous structures of the man-made cellulosic fibers Lyocell (TENCEL (R)), Modal, and Viscose fibers were visualized by applying fluorescence microscopy on fiber cross sections. The fiber pore structure was probed by the optical brightener Uvitex BHT, and the dye penetration depth was measured. The main differences in the pore structures of these three fiber types could be visualized. Only TENCEL shows a significant difference between dried and never-dried fibers. A fiber structure model of TENCEL was obtained, which discriminates three different porous zones with respect to dye diffusion kinetics. The results are discussed in relationship with the fiber physical and chemical properties. The dye penetration depth and kinetics in TENCEL fibers was found to be sensitive to the production and treatment conditions, in particular to changes in the pore system by drying, and following alkali swelling processes. The performance of surface-specific enzymatic peeling could also be observed. (C) 2007 Wiley Periodicals, Inc.
机译:通过在纤维横截面上应用荧光显微镜观察人造纤维素纤维Lyocell(TENCEL),莫代尔纤维和粘胶纤维的内部多孔结构。用荧光增白剂Uvitex BHT探测纤维孔结构,并测量染料渗透深度。可以看到这三种纤维类型的孔结构的主要差异。只有TENCEL在干燥和未干燥的纤维之间显示出显着差异。获得了TENCEL的纤维结构模型,该模型在染料扩散动力学方面区分了三个不同的多孔区域。讨论了与纤维物理和化学性质有关的结果。发现TENCEL纤维中的染料渗透深度和动力学对生产和处理条件敏感,特别是对干燥和随后的碱溶胀过程引起的孔系统变化敏感。还可以观察到表面特异性酶促剥离的性能。 (C)2007 Wiley期刊公司

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