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A Novel Polyvinylamine Drainage and Strength Technology for Packaging Grades

机译:包装等级的新型聚乙烯胺排水和强度技术

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Current end-user strength requirements for packaging and board grades are progressively becoming more demanding to meet globally. Primarily this is due to the continuous deterioration of recycled furnish quality. Furthermore, the global industrial trend towards cost savings in productivity can only be accomplished by improving drainage and retention efficiency while at the same time light weighting. These trends confront the papermaker with a growing need for lower basis weights, higher filler levels, increased stiffness, burst and SCT. Newly developed polyvinylamine (PVAm) technology by Kemira is a solution to achieve simultaneously these challenges at lower application dosage rates. This allows the board manufacturer to overcome the limitations of the deteriorating recycled furnish quality and better cost efficiency. The novel PVAm technology, with an optimized molecular weight and charge density, has demonstrated to be a superior dry strength and drainage agent compared with the current market technology. The higher drainage and retention performances were measured by using a single-pass drainage test. Furthermore, the results of a filtrate recirculating method to simulate the short loop of a paper machine proved that the polyvinylamines have an eminent improvement in drainage. This technique assists us to explore the actual drainage performances of polyvinylamines through the explanation of the drainage mechanisms. The results have shown that an optimal low charge of PVAm brings the most effective performances in drainage and retention due to the contributions of the bridging and charge neutralization -mechanisms. The results of liner and fluting sheets produced on a pilot paper machine showed that PVAm based polymers have also real benefits for the SCT and burst strength. The applicability of low charged PVAm was concluded to be a superior drainage and dry strength agent with liner and fluting OCC furnish. This paper reviews Kemira's novel PVAm based technology by introducing a tailor-made polyvinylamine polymer to fit customers* needs in respect of process conditions.
机译:当前对于包装和纸板等级的最终用户强度要求正逐渐变得越来越苛刻,以满足全球需求。这主要是由于再生配料质量的持续恶化。此外,仅通过改善排水和保留效率,同时减轻重量,就可以实现全球工业趋势,即节省生产率的成本。这些趋势使造纸商面临对更低的基重,更高的填料含量,更高的刚度,破裂和SCT的日益增长的需求。 Kemira的最新开发的聚乙烯胺(PVAm)技术是一种解决方案,可以在较低的应用剂量率下同时应对这些挑战。这使纸板制造商可以克服再生配料质量下降和成本效益更高的局限性。与目前的市场技术相比,具有最佳分子量和电荷密度的新型PVAm技术已被证明是一种优异的干强度和排水剂。较高的排水和保留性能是通过单程排水测试测得的。此外,模拟造纸机短循环的滤液再循环方法的结果证明,聚乙烯胺在排水方面有显着改善。通过解释排水机理,该技术有助于我们探索聚乙烯胺的实际排水性能。结果表明,由于桥联和电荷中和机制的贡献,最佳的低PVAm电荷带来了最有效的排水和保留性能。在中试造纸机上生产的衬纸和瓦楞纸的结果表明,基于PVAm的聚合物还具有SCT和破裂强度的真正优势。结论是低电荷PVAm的适用性是具有衬里和凹槽OCC配料的优异的排水和干强度剂。本文介绍了Kemira基于PVAm的新颖技术,介绍了量身定制的聚乙烯胺聚合物,以满足客户在工艺条件方面的需求。

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