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On the application of grits to thermomechanical pulp refining

机译:砂砾在热机械浆精制中的应用

摘要

The objective of this thesis was to develop a mechanical pulping process capable of producing good-quality pulp, while consuming less electrical energy. The study focused on applying of grits to TMP refining to enhance the breaking of the fiber cell wall promoting faster development of pulp fibers to the desired quality for papermaking. The study comprises tests at laboratory scale and development of an application for industrial, including trials at pilot scale. A preliminary trial with the grit application in TMP refining was conducted at laboratory scale. The results showed that the grits should be introduced between the first and second stages in TMP refining. The grit treatment on the TMP fibers caused disruption of the wall structure, opening of the outer layers and peeling-off of the cell wall. The efficient disruption with minimal shortening and weakening of fibers was found to be operated at a low-intensity and high-frequency of treatment. According to an experiment with first-stage TMP pulp, the disrupted pulp developed faster during subsequent refining, while the energy consumption was reduced by up to 30% without a significant loss of pulp quality. With the aim of developing an industrial application, the refiner segments were modified by applying grits on the refiner segment surfaces. The grits were made from self-fluxing tungsten-carbide powder and a Ni-base alloy powder, which were laser-clad onto the surface of breaker bars, the inner part of a segment. Trials with grit segments were carried out on a pilot refiner. The grit segments were applied in first-stage TMP refining, followed by treatment with base segments operated under normal mill conditions. The grit segments were found to have no negative effects on the refining system. A refiner equipped with grit segments, operated at a speed of 2400 rpm, produced pulp with a higher level of disruption of fiber cell walls than a refiner equipped with the reference segments. According to the results, the energy consumption can be reduced by at least 10% with minimal negative impacts on pulp and paper properties.
机译:本文的目的是开发一种机械制浆工艺,该工艺能够生产优质纸浆,同时消耗较少的电能。这项研究的重点是将粗砂应用于TMP精炼,以增强纤维细胞壁的破碎,促进纸浆纤维更快地发展到所需的造纸质量。该研究包括实验室规模的测试和工业应用的开发,包括中试规模的试验。在实验室规模进行了粗砂在TMP精炼中的初步试验。结果表明,在TMP精炼的第一阶段和第二阶段之间应引入砂砾。在TMP纤维上进行的砂处理导致壁结构的破坏,外层的开放和细胞壁的剥离。发现以最小的纤维缩短和弱化的有效破坏是在低强度和高频率的处理下进行的。根据第一阶段TMP纸浆的实验,破碎的纸浆在随后的精炼过程中发展得更快,同时能耗降低了多达30%,而纸浆质量没有明显下降。为了发展工业应用,通过在磨浆机磨片表面上施加粗砂来对磨浆机磨片进行改性。砂砾由自熔性碳化钨粉末和镍基合金粉末制成,将它们激光熔覆在破碎棒表面(段的内部)上。在中试磨浆机上进行了磨料段试验。将砂砾段用于第一阶段的TMP精炼,然后用在正常磨机条件下运行的基本段进行处理。发现砂砾段对精炼系统没有负面影响。配备砂砾段的磨浆机以2400 rpm的速度运行,与配备参考段的磨浆机相比,生产出的浆粕具有更高水平的纤维孔壁破裂。根据结果​​,能耗可以降低至少10%,同时对纸浆和纸张性能的负面影响最小。

著录项

  • 作者

    Somboon Phichit;

  • 作者单位
  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 en
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