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New Advances in Microparticle Retention Technologies

机译:微粒保留技术的新进展

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Current microparticle systems are presently approaching the limit of their efficiencies. Buckman Laboratories new, unique Mosaic~(TM) system combines the strengths of our existing Bufloc technologies with a performance-enhancing engineered colloidal component, resulting in superior performance. This paper will present three newly engineered colloidal technologies. Two of these chemistries are cationic charged. Laboratory evaluations and mill trial data for fine paper, board and newsprint will be discussed. Emphasis will be on application strategy, equipment requirements, and benefits obtained using these newly engineered colloidal materials. These newly engineered colloidal materials have proven to improve drainage, retention, and formation in various papermaking furnishes, and all of them have been shown to work in a very wide papermaking pH range. These chemistries, in combination with polyacrylamide and coagulant technologies, have shown superior performance over existing conventional microparticle systems. Laboratory findings on the performance of these materials have been supported by paper machine data. This paper will present both laboratory and machine data to show the Mosaic System programs effectiveness compared to traditional silica and bentonite-based microparticle systems. The laboratory data that will be presented include Britt Jar, drainage, and formation studies, and the effect of these engineered colloidal materials on paper properties. The data will then be correlated to the data obtained from the machine trials.
机译:当前的微粒系统目前正在接近其效率的极限。巴克曼实验室(Buckman Laboratories)全新的,独特的Mosaic〜(TM)系统将我们现有Bufloc技术的优势与性能增强的工程胶体组件相结合,从而实现了卓越的性能。本文将介绍三种新设计的胶体技术。这些化学中的两个是带阳离子的。将讨论高级纸,纸板和新闻纸的实验室评估和工厂试验数据。重点将放在应用策略,设备要求以及使用这些新设计的胶体材料获得的收益上。这些新设计的胶体材料已被证明可以改善各种造纸设备中的排水,保留和形成,并且所有这些材料均已证明可在很宽的造纸pH范围内工作。这些化学方法与聚丙烯酰胺和凝结剂技术相结合,显示出优于现有常规微粒系统的性能。实验室对这些材料性能的研究结果得到了造纸机数据的支持。本文将同时提供实验室和机器数据,以显示与传统的基于二氧化硅和膨润土的微粒系统相比,马赛克系统程序的有效性。将提供的实验室数据包括Britt Jar,排水和形成研究,以及这些工程化的胶体材料对纸张性能的影响。然后将数据与从机器试验获得的数据相关。

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