The effect of fibre morphology on packing phenomena and bed properties in coalescers

M. Hadnadjev-Kostic, Dunja Sokolovic, S. Sokolovic, T. Laminger, Arpad Kiralj
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Abstract

In this study, fibre morphology of waste materials and its effect on packing phenomena and bed properties were investigated. Nine waste materials were used in bed coalescers. By scanning electron microscopy, it was determined that surfaces of all fibres were smooth, while cross-section differed from circular, rectangular to irregular. The fibres with circular cross-sections had diameters in the range of 12?0.8 to 40?4 ?m, while the fibres of polypropylene bags and sponges appeared as strips with the widths of 452?11 and 1001?14 ?m, respectively. It was also noticed that polyurethane fibres were connected forming a sponge-like structure, while polyethylene terephthalate fibres were interconnected at some points. In this work, experimental dependence of bed porosity on bed permeability was established for all investigated materials, which allows forming a fibre bed with desired permeability. The exception was the bed formed of fibres of polypropylene bags, which had the largest dimensions and yielded a different porosity-permeability dependence.
纤维形态对聚结剂中堆积现象和床层性能的影响
研究了废料的纤维形态及其对填料现象和床层性能的影响。采用9种废料作为床层凝聚剂。通过扫描电子显微镜观察,所有纤维表面光滑,截面从圆形、矩形到不规则。具有圆形截面的纤维的直径范围为12?0.8到40?而聚丙烯袋和海绵的纤维呈条状,宽度为452?11号和1001号?分别是14 ?m。还注意到聚氨酯纤维连接形成海绵状结构,而聚对苯二甲酸乙二醇酯纤维在某些点上相互连接。在这项工作中,对所有研究材料建立了床层孔隙度与床层渗透率的实验依赖关系,这使得形成具有所需渗透率的纤维床成为可能。唯一的例外是由聚丙烯袋纤维形成的床层,它的尺寸最大,并且产生了不同的孔隙率-渗透率依赖关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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