...
首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Permeability of pulp fiber mats with filler particles
【24h】

Permeability of pulp fiber mats with filler particles

机译:纸浆纤维毡与填料颗粒的渗透性

获取原文
获取原文并翻译 | 示例
           

摘要

We studied the permeability of fibrous media composed of filler particles in addition to fibers which are often encountered in industrial practice. Bleached Kraft pulp wood fibers and different kinds of fillers used in papermaking were the focus of this study. The fillers consisted of (i) scalenohedral precipitated calcium carbonate (PCC-Albacar), (ii) prismatic PCC (Albafil), and (iii) kaolin clay particles. The composite permeability increased with the addition of smaller quantities of PCC but higher loadings lowered the permeability significantly. The kaolin particles decreased the permeability of the pulp mats at all loading levels. The initial permeability increase observed with PCC was also accompanied by a simultaneous increase in the drainage rates of the pulps. The higher permeability is due to flocculation caused by heterocoagulation of PCC particles and the pulp fibers. At higher filler loadings, the PCC particles clog the pore spaces and reduce the permeability. Kaolin particles do not cause flocculation and hence decreased the permeability at all loadings. A model for the permeability of such composites was developed based on the Kozeny-Carman equation, considering the specific surface area as composed of two contributions. The first, due to fibers alone can result in lower specific surface areas caused by flocculation. The second contribution was an increase in surface area due to clogging of the fiber mats. The specific volume of the composite pulp mats was modeled as a simple weighted mixture of the specific volumes of the individual components.
机译:除了工业实践中经常遇到的纤维外,我们还研究了由填料颗粒组成的纤维介质的渗透性。漂白牛皮纸浆木纤维和造纸中使用的各种填料是本研究的重点。填料由(i)偏角面体沉淀碳酸钙(PCC-Albacar),(ii)棱柱形PCC(Albafil)和(iii)高岭土粘土颗粒组成。复合物的渗透率随PCC量的增加而增加,但较高的载荷会显着降低渗透率。高岭土颗粒在所有负荷水平下均降低了纸浆垫的渗透性。用PCC观察到的初始渗透率增加还伴随着纸浆排水速率的同时增加。较高的渗透性是由于PCC颗粒和纸浆纤维异质凝结引起的絮凝。在较高的填充量下,PCC颗粒会堵塞孔隙并降低渗透率。高岭土颗粒不会引起絮凝,因此在所有载荷下渗透率都会降低。考虑到比表面积由两个部分组成,基于Kozeny-Carman方程,开发了此类复合材料的渗透性模型。首先,由于单独的纤维会导致由于絮凝而导致的较低的比表面积。第二个贡献是由于纤维垫的堵塞而增加了表面积。复合纸浆垫的比容被建模为单个组件比容的简单加权混合物。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号