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Process factors affecting colloid stability and deposit formation in manufacture of newsprint from TMP and recycled fibre

机译:影响胶体稳定性和沉积物形成在TMP和再循环纤维的新闻中的胶质稳定性和沉积物的因素

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Formation of pitch and sticky deposits through the destabilisation of colloidal material present in paper manufacture continues to be a challenge in improving machine efficiency in newsprint manufacture from a furnish comprising 60% thermo-mechanical pulp (TMP) and 40% recycled fibre (RCF), and in an environment where water usage efficiency is at best practice. Findings from laboratory studies that have investigated colloid structure, impact of multiple and multi-valent cations, pH, temperature, shear and dissolved organic matter on Pinus radiata extractive colloid stability have been applied to process conditions in Norske Skog's Albury mill to determine which properties are most important in maintaining colloid stability. Through analysis of process data, we demonstrate that all of these factors are relevant in the Norske Skog Albury mill process, thus making the management of deposits a significant challenge. However, initiatives such as minimising soluble calcium formation through management of pH and pulp storage levels, minimising temperature shocks by reducing freshwater make-up at machine start-up and avoiding pH shocks through mixing of neutral and acid pH process streams, are practical steps that contribute to reducing deposit formation and therefore paper breaks and paper machine downtime.
机译:通过纸张制造中存在的胶体材料的稳定化形成沥青和粘性沉积物在从包含60%热机械纸浆(TMP)和40%再循环纤维(RCF)的家具中,在提高新闻纸制造中的机器效率方面的挑战是挑战,在水使用效率充分练习的环境中。研究了研究胶体结构,多价阳离子,pH,温度,剪切和溶解有机物对松弛的胶质组的影响的实验研究已经应用于Norske Skog's Albory Mill中的工艺条件,以确定哪种特性最重要的是保持胶体稳定性。通过分析过程数据,我们证明所有这些因素都在Norske Skog Albury Mill过程中相关,从而使存款管理成为一个重大挑战。然而,诸如通过PH和纸浆储存水平的管理最小化可溶性钙的溶解性,最小化通过在机器启动时减少淡水化妆并通过混合中性和酸性pH工艺流来减少pH休克来最小化温度冲击,是实际步骤有助于减少沉积物形成,从而造纸和造纸机停机。

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