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Surface characteristics of thermomechanical pulps; the influence of defibration temperature and refining

机译:热机械纸浆的表面特性;解纤温度和精制的影响

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The surface properties of thermomechanical pulps (TMP) were characterized by atomic force microscopy (AFM) and X-ray photoelectron spectroscopy (XPS). Finnish and French spruce samples representing two different defibration temperatures as well as two different stages of refining were studied. In addition, samples from an RTS process were studied. The XPS results showed that the surface content of non-cellulosic components was higher for Finnish spruce compared with the French pulp samples. Different wood fibre cell wall structures and transition lamellae within the cell walls with characteristic microfibril orientation were identified by AFM. Besides the morphological features, the homogeneity of the surfaces was studied with AFM with respect to adhesion and stiffness. The refining was concluded to result in a cleavage taking place either within the secondary cell wall or at primary/secondary cell wall interface. No randomly oriented microfibrillar network structures typical for the primary cell wall were observed. The RTS process resulted in most homogeneous samples whereas heterogeneous structures with even damaged microfibrils were observed for e.g. the stage-2 refined TMP. (C) 2003 Elsevier B.V. All rights reserved. [References: 26]
机译:通过原子力显微镜(AFM)和X射线光电子能谱(XPS)表征了热机械纸浆(TMP)的表面性能。研究了代表两个不同解纤温度以及两个不同精制阶段的芬兰和法国云杉样品。另外,还研究了来自RTS工艺的样品。 XPS结果表明,与法国纸浆样品相比,芬兰云杉的非纤维素成分的表面含量更高。通过AFM鉴定出具有特征性微纤丝取向的不同木纤维细胞壁结构和细胞壁内的过渡层。除了形态特征外,还用AFM研究了表面的均匀性,包括附着力和刚度。得出的结论是精制导致在次要细胞壁内或在主/次要细胞壁界面处发生裂解。没有观察到原代细胞壁典型的随机取向的微纤维网络结构。 RTS过程导致大多数均质样品,而观察到的异质结构甚至破坏了微原纤维。第二阶段精制的TMP。 (C)2003 Elsevier B.V.保留所有权利。 [参考:26]

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