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Pulp Fines—Characterization Sheet Formation and Comparison to Microfibrillated Cellulose

机译:纸浆细粉-表征片形成以及与微纤化纤维素的比较

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摘要

In the pulp and paper industry different types of pulp or fiber fines are generated during the pulping (primary fines, mechanical fines), and/or the refining process (secondary fines). Besides fibers, these cellulosic microparticles are a further component of the paper network. Fines, which are defined as the fraction of pulp that is able to pass through a mesh screen or a perforated plate having a hole diameter of 76 μm, are known to influence the properties of the final paper product. To better understand the effect and properties of this material, fines have to be separated from the pulp and investigated as an independent material. In the present study, fines are isolated from the pulp fraction by means of a laboratory pressure screen. To allow for further processing, the solids content of the produced fines suspension was increased using dissolved air flotation. Morphological properties of different types of fines and other cellulosic microparticles, such as microfibrillated celluloses (MFC) are determined and compared to each other. Furthermore, handsheets are prepared from these materials and properties, such as apparent density, contact angle, modulus of elasticity, and strain are measured giving similar results for the analyzed types of fines in comparison to the tested MFC grades. The analysis of the properties of fiber fines contributes on the one hand to a better understanding of how these materials influences the final paper products, and on the other hand, helps in identifying other potential applications of this material.
机译:在纸浆和造纸工业中,制浆过程中会产生不同类型的纸浆或纤维细粉(初级细粉,机械细粉)和/或精制过程(次级细粉)。除了纤维之外,这些纤维素微粒也是纸网络的另一个组成部分。已知细粉会影响最终纸制品的性能,细粉定义为能够通过筛孔或孔径为76μm的多孔板的纸浆部分。为了更好地了解这种材料的效果和特性,必须将细粉与纸浆分开,并作为独立的材料进行研究。在本研究中,通过实验室压力筛将细粉与纸浆分离。为了进行进一步处理,使用溶解的气浮法提高了生产的细粉悬浮液的固体含量。确定不同类型的微粒和其他纤维素微粒(例如微纤化纤维素(MFC))的形态学特性,并将其相互比较。此外,由这些材料制备手抄纸,并测量性能,例如表观密度,接触角,弹性模量和应变,与所测试的MFC等级相比,所分析的细粉类型得到相似的结果。对纤维细粉特性的分析一方面有助于更好地了解这些材料如何影响最终的纸制品,另一方面有助于确定该材料的其他潜在用途。

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