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Inverse gas chromatography as a tool to characterize ligno-cellulosic fibers modified for composite applications

机译:反相气相色谱法作为表征改性用于复合材料的木质纤维素纤维的工具

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Inverse gas chromatography (IGC) was used to characterize ligno-cellulosic fiber modified for composite applications. The surface properties of the paper fiber was modified by solution grafting of maleic anhydride functionalized polypropylene (PPgMA): We have investigated the influence of the maleic anhydride content and the chain length of the PPgMA on the surface modifications involved in the solution grafting process. Using IGC at infinite dilution, the evolution of the dispersive component of surface energy with such treatments and the variation of the paper fiber acid/base behavior was determined. The treatment by PPgMA was found to reduce the acidic character of the paper fiber and to enhance its basic character. Moreover, increasing the chain length of the PPgMA resulted in a reduction of both the hydrophilic character of the fiber and its acidic character, while increasing the anhydride content of the PPgMA enhanced the basic character of the fiber. Finally, using IGC at finite concentration, it is observed that reducing the chain length of PPgMA contributes to reducing the specific area of the paper fiber. [References: 26]
机译:反相气相色谱法(IGC)用于表征改性后用于复合材料的木质纤维素纤维。纸纤维的表面性能通过马来酸酐官能化聚丙烯(PPgMA)的溶液接枝改性:我们研究了马来酸酐含量和PPgMA的链长对溶液接枝过程中涉及的表面改性的影响。使用无限稀释的IGC,可以确定经过这种处理后表面能分散成分的演变以及纸纤维酸/碱行为的变化。发现用PPgMA处理降低了纸纤维的酸性并增强了其碱性。此外,增加PPgMA的链长导致纤维的亲水特性和其酸性特性均降低,而增加PPgMA的酸酐含量则增强了纤维的基本特性。最后,使用有限浓度的IGC,可以观察到降低PPgMA的链长有助于降低纸纤维的比表面积。 [参考:26]

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