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Co-ground mineral/microfibrillated cellulose composite materials: Recycled fibers,engineered minerals,and new product forms

机译:共面矿物/微纤维纤维素复合材料:再生纤维,工程矿物质和新产品形式

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摘要

When pulp and minerals are co-processed in suspension,the mineral acts as a grinding aid,allowing cost-effective production of mineral/microfibrillated cellulose(MFC)composite materials. This processing uses robust milling equipment and is practiced at industrial scale. The resulting products can be used in many applications,including as wet-and dry-strength aids in paper and board production. Previously,we have reported that use of these MFC composite materials in fiber-based applications allow generally improved wet and dry mechanical properties with concomitant opportunities for cost savings,property improvements,or grade developments. Mineral/MFC composites made with recycled pulp feedstocks were shown to offer at least equivalent strength aid performance to composites made using virgin fibers. Selection of mineral and fiber allows preparation of mineral/MFC composites with a range of properties. For example,the viscosity of such formulations was shown to be controlled by the shape factor of the mineral chosen,effective barrier formulations were prepared,and mineral/MFC composites with graphite as the mineral were prepared. High-solids mineral/MFC composites were prepared at 75% total solids(37% fibril solids). When resuspended and used for papermaking,these high-solids products gave equivalent performance to never-dried controls. Application: The work reported in this paper will be useful to paper and board producers and converters who are interested in using MFC for grade and application development and to achieve cost savings.
机译:当矿浆和矿物在悬浮液中共同加工时,矿物起到助磨剂的作用,从而可以经济高效地生产矿物/微纤维纤维素(MFC)复合材料。这种加工使用坚固的铣削设备,并在工业规模上进行。所得产品可用于许多应用,包括纸张和纸板生产中的湿强度和干强度辅助剂。在此之前,我们已经报道过,在基于纤维的应用中使用这些MFC复合材料可以普遍改善湿机械性能和干机械性能,同时有机会节约成本、改善性能或开发等级。研究表明,使用再生纸浆原料制成的矿物/MFC复合材料与使用原始纤维制成的复合材料至少具有同等的增强性能。矿物和纤维的选择允许制备具有一系列性能的矿物/MFC复合材料。例如,这些配方的粘度被证明由所选矿物的形状因子控制,制备了有效的阻隔配方,并制备了以石墨为矿物的矿物/MFC复合材料。高固体分矿物/MFC复合材料的制备总固体分为75%(纤维固体分为37%)。当再悬浮并用于造纸时,这些高固体分产品的性能与从未干燥过的对照品相当。应用:本文报告的工作将对有意使用MFC进行等级和应用开发并实现成本节约的纸和纸板生产商和转换器有用。

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  • 来源
    《TAPPI Journal》 |2021年第1期|共10页
  • 作者单位

    Technology Implementation for FiberLean Technologies Ltd. Cornwall UK;

    Technology Implementation for FiberLean Technologies Ltd. Cornwall UK;

    Technology Implementation for FiberLean Technologies Ltd. Cornwall UK;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 造纸工业;
  • 关键词

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