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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >How cellulose nanofibrils and cellulose microparticles impact paper strength - A visualization approach
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How cellulose nanofibrils and cellulose microparticles impact paper strength - A visualization approach

机译:纤维素纳米纤维和纤维素微粒如何冲击纸张强度 - 一种可视化方法

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摘要

Cellulosic nanomaterials are in the focus of academia and industry to realize light-weight biobased materials with remarkable strength. While the effect is well known, the distribution of these nanomaterials are less explored, particularly for paper sheets. Here, we explore the 3D distribution of micro and nanosized cellulosic particles in paper sheets and correlate their extent of fibrillation to the distribution inside the sheets and subsequently to paper properties. To overcome challenges with contrast between the particles and the matrix, we attached probes on the cellulose nano/microparticles, either by covalent attachment of fluorescent dyes or by physical deposition of cobalt ferrite nanoparticles. The increased contrast enabled visualization of the micro and nanosized particles inside the paper matrix using multiphoton microscopy, X-ray microtomography and SEMEDX. The results indicate that fibrillary fines enrich at pores and fiber-fiber junctions, thereby increasing the relative bonded area between fibers to enhance paper strength while CNF seems to additionally form an inner 3D network.
机译:纤维素纳米材料是学术界和工业界关注的焦点,以实现具有显著强度的轻质生物基材料。虽然这种效应是众所周知的,但对这些纳米材料的分布研究较少,尤其是对纸张。在这里,我们探索了纸张中微米和纳米纤维素颗粒的三维分布,并将其纤颤程度与纸张内部的分布以及随后的纸张性能关联起来。为了克服粒子和基质之间对比度的挑战,我们通过荧光染料的共价连接或钴铁氧体纳米颗粒的物理沉积将探针连接到纤维素纳米/微粒上。增强的对比度使得利用多光子显微镜、X射线显微层析成像和SEMEDX可以看到纸基质中的微米和纳米颗粒。结果表明,纤维状细颗粒在孔隙和纤维连接处富集,从而增加纤维之间的相对粘合面积以提高纸张强度,而CNF似乎还形成了内部3D网络。

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