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XPS Characterization of Fiber Surface of Chemithermomechanical Pulp Fibers Modified by White-Rot Fungi

机译:白腐真菌修饰的化学机械浆粕纤维纤维表面的XPS表征

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摘要

In tile present paper, the fiber surface chemistry of eucalyptus chemithenaomechanical pulp ibers before and after fungal modification was studied with X-ray photoelectron spectroscopy. The results show that the fungal modified chemithermomechanical pulp fibers had a higher 0/C ratios and lower C1 percentage than the control pulp fibers and the C1s peak shifted to high binding energy direction. This implies that fungal modified fibers have less lignin and extractives and more hydrophilic groups and carbohydrate on the surface, which is preferred in helpful to forming hydrogen bond. The X-ray photoelectron spectroscopy quantified analysis of surface lignin and extractives contents showed that the content of lignin and extractives contents of fungal modified fiber decreased by 8.3 % and 55.9 %, respectively. However, bulk lignin and extractives contents of fungal modified fiber decreased only by 2.5 % and 11.1%, respectively. This indicated that the degradation of lignin and extractives mainly took place on fiber surface.
机译:在本文中,利用X射线光电子能谱研究了真菌改性前后桉木机械纸浆纤维的纤维表面化学性质。结果表明,真菌修饰的化学机械木浆纤维比对照木浆纤维具有更高的0 / C比和更低的C1百分比,并且C1s峰向高结合能方向移动。这意味着真菌修饰的纤维在表面上具有较少的木质素和提取物,并且具有更多的亲水基团和碳水化合物,这在有助于形成氢键方面是优选的。 X射线光电子能谱对表面木质素和提取物含量的定量分析表明,木质素含量和真菌改性纤维的提取物含量分别降低了8.3%和55.9%。然而,真菌改性纤维的木质素和提取物的含量仅分别降低了2.5%和11.1%。这表明木质素和提取物的降解主要发生在纤维表面。

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