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High Kappa Process for Eucalyptus Fiberline - The First Industrial Case

机译:Eucalyptus纤维线的高kappa过程 - 第一个工业案例

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The increasing pressure for costs reduction within pulp mills drives the need to maximize efficiency in the use of wood, which represents the major cost in pulp production. In this context there is a demand to reevaluate kraft pulping processes, dominant for almost a century, in order to cope with the cost-effectiveness challenges mills are facing nowadays. Cooking is the process where most of the delignification of the wood occurs, with about 95% of lignin removed. Cooking to a high Kappa number has been reported as an effective alternative to overcome the overcooking risk. Trials carried out by Suzano (laboratory and industrial scale) over the past 8 years reported better results when working with higher end Kappa in the kraft process, with no increase in the reject content. The major breakthrough lays in the impregnation step, combined with a specific way of cooking; together they can provide conditions to shift the defibration point to a higher Kappa number (21 to 23) than the typical kraft process range (17 to 18). This work aims to implement the High Kappa (HK) technology at the Tres Lagoas Horizonte 2 mill (TLS H2), which was designed to fit the specifications of this technology: there is a very robust brownstock washing section with accordingly specified screenings and 85 to 90 minutes of retention time in the 2-stage oxygen delignification. During 2018 an industrial trial was conducted at TLS H2, producing more than 380 thousand tons of pulp. The main results were an increase of up to 2.3 % in lignin and HexA free yield, a decrease in effective alkali consumption, almost the same bleaching chemicals consumption, and a final pulp with better strength. The mill performed very well during the trial, and it is still able to deliver a 21 Kappa number pulp after cooking, with a better balanced mill in terms of solids generation and alkali production.
机译:在纸浆厂内降低成本的越来越大,需要最大限度地利用木材的效率,这代表了纸浆生产的主要成本。在这种情况下,需要重新评估牛皮纸制浆过程,近几个世纪的占据主导地位,以应对成本效益挑战厂正在遇到的挑战。烹饪是木材发生的大部分脱泻的过程,其中约95%的木质素被移除。烹饪到高kappa号码被报告为克服过度挖掘风险的有效替代方案。在过去的8年里,苏桑诺(实验室和工业规模)进行的试验报告了在牛皮纸过程中使用高端κB的更好的结果,拒绝内容没有增加。主要突破层置于浸渍步骤中,与特定烹饪方式合并;它们可以提供比典型的牛皮纸处理范围(17至18)将偏离点移至更高的kappa号(21至23)的条件。这项工作旨在在TRES Lagoas Horizo​​ nte 2铣刀(TLS H2)上实施高kappa(HK)技术,该技术旨在符合该技术的规格:有一个非常强大的棕色清洗部分,具有相应的筛选和85在2阶段氧气奖项中的保留时间90分钟。 2018年,在TLS H2进行工业试验,生产超过38万吨的纸浆。主要结果增加了木质素和六草自由产量的2.3%,有效碱消耗的减少,几乎是相同的漂白化学品消耗,以及具有更好强度的最终纸浆。该厂在试验期间表现得很好,烹饪后仍然能够在烹饪后提供21 kappa数字纸浆,在固体产生和碱生产方面具有更好的平衡磨机。

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