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首页> 外文期刊>Nordic Pulp & Paper Research Journal >Circular action treatment (CAT): a new strategy for mechanical treatment of old corrugated containers Ⅱ - comparison of CAT with low-consistency beating
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Circular action treatment (CAT): a new strategy for mechanical treatment of old corrugated containers Ⅱ - comparison of CAT with low-consistency beating

机译:循环作用处理(CAT):旧瓦楞纸箱机械处理的新策略Ⅱ-CAT与低浓度打浆的比较

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摘要

In Korea, old corrugated containers (OCC) are a common material for paperboard production. Unfortunately, the quality of Korean OCC (KOCC) is low due to irreversible effects such as hornification that could occur by repeated drying and wetting during paper recycling. Generally, beating is a fibrillation method for improving paper strength. However, beating also results in fiber shortening and excessive fines. Circular action treatment (CAT) is a new method designed for the mild mechanical treatment of KOCC containing undesirable materials and fines. The effect of CAT and low-consistency beating on KOCC were analyzed at various conditions. The results show that increased revolution speed and passing length of CAT resulted in higher water retention values and paper strength without a sudden change in the freeness, fiber length and fines content. While paper strength was higher upon beating compared to the case of CAT, the intensive beating action in the former resulted in fiber damage, generating excessive fines and decreasing fiber length. The fines generated by beating might be negative to retention and drainage in wet-end. Therefore, CAT is a promising new strategy for KOCC mechanical treatment, and an increase in the revolution speed and passing length of CAT could improve KOCC quality.
机译:在韩国,旧瓦楞纸箱(OCC)是生产纸板的常用材料。不幸的是,由于纸张回收过程中反复干燥和弄湿会产生不可逆的影响,例如变角,韩国OCC(KOCC)的质量很低。通常,打浆是用于改善纸强度的原纤化方法。但是,跳动也会导致纤维缩短和细粉过多。循环作用处理(CAT)是设计用于对KOCC进行轻度机械处理的一种新方法,该处理方法包含不良物质和细屑。在各种条件下分析了CAT和低浓度拍打对KOCC的影响。结果表明,CAT的增加的旋转速度和通过长度导致更高的保水性值和纸张强度,而游离度,纤维长度和细粉含量却没有突然变化。尽管与CAT相比,打浆后的纸张强度更高,但前者的强打浆作用会损坏纤维,产生过多的细粉并缩短纤维长度。殴打产生的细粉可能不利于湿部的保留和排水。因此,CAT是用于KOCC机械处理的有前景的新策略,并且CAT的旋转速度和通过长度的增加可以改善KOCC质量。

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