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Brown stock washing upper level control utilization at hardwood fiberline

机译:硬木纤维生产线的棕浆洗涤上位控制利用率

摘要

Washing of brown stock pulp is done to recover cooking chemicals, remove impurities such as metal ions and bleaching chemical consumptive ingredients from the pulp suspension and to salvage organic matter that can be turned into energy by burning. Washing stage performance can be evaluated by the dilution factor, which determines the water amount used for pulp ton, and washing loss, which determines the amount of washable components in pulp discharged with pulp to bleaching that could not be washed away.This study focused on utilization of brown stock washing stage upper level control, which was based on the real time online measurement of total dry solids of the pulp suspension and washer filtrates in several points of the process. Online measurements were used to determine the chemical state of the process and adjustments to dilution factor made accordingly.Trial runs including feed consistency, washer drum torque, washing water temperature and dilution factor were made to examine the effect of different variables to washing result. A longer test period was also made to determine the upper level effect on the chlorine dioxide consumption. According to results, improvements to upper level control were made to enhance the functionality and efficiency of the washing stage.Utilization of the upper level control was successful as it became the primary way of operating the washing stage. Upper level control was found to optimize wash water usage, level out process fluctuations and thereby decrease the washing loss and chlorine dioxide consumption significantly. Possibility to define precise dilution factor for the whole washing stage decreases evaporation plant load and enables more stable washing result.
机译:棕色浆粕的洗涤是为了回收蒸煮的化学药品,从浆粕悬浮液中去除金属离子和漂白化学消耗成分等杂质,并挽救可通过燃烧转化为能量的有机物质。洗涤阶段的性能可以通过稀释倍数来评估,稀释倍数决定了纸浆吨用水量,而洗涤损失则决定了纸浆因漂白而排出的无法清洗的纸浆中可清洗成分的量。利用棕色浆液洗涤阶段的上级控制,这是基于实时在线测量纸浆悬浮液和洗涤滤液在过程中几个点的总干固含量。在线测量用于确定过程的化学状态并相应地调整稀释倍数,并进行了包括进料浓度,洗衣机滚筒扭矩,洗涤水温度和稀释倍数在内的试验运行,以检验不同变量对洗涤结果的影响。还确定了更长的测试时间来确定对二氧化氯消耗量的最高影响。根据结果​​,对上层控制进行了改进,以增强洗涤台的功能和效率。上层控制的成功应用是因为它已成为洗涤台的主要操作方式。发现较高水平的控制可优化洗涤水用量,消除工艺波动,从而显着减少洗涤损失和二氧化氯消耗。可以为整个洗涤阶段定义精确的稀释倍数,从而减少了蒸发装置的负荷,并使洗涤结果更加稳定。

著录项

  • 作者

    Mertanen Simo;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 en_US
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