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The anomalous effect of high intensity ultrasound on paper fibre-filler combinations

机译:高强度超声对纸纤维填料组合的异常影响

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Purpose - The purpose of this paper is to explore the previously unreported phenomenon in which changes occur to the particle size distributions ofcalcium carbonate fillers, used in papermaking, when exposed to high intensity ultrasound.Design/methodology/approach - Commercial paper pulps sonicated at a frequency of 20 kHz are found to produce aggregates of their mineral fillerconstituents. The effects of sonication on isolated long and short fibre, and ground and precipitated calcium carbonate filler systems are alsoinvestigated both with and without the presence of dispersants. The findings are supported by particle size analysis and scanning electron microscopyof the sonicated systems.Findings - It is clearly shown that exposure to high intensity ultrasound induces filler aggregation. However, the effect only occurs when paper fibresand fillers coexist and is not apparent for suspensions of filler only or fibre only slurries. Furthermore, the treatment overrides the effect of dispersantsused to keep filler in suspension during the manufacturing process. An accompanying fall in pH with increasing sonication times is also noted andis linked to these changes. It is proposed that radical species produced in the slurries during sonication may explain the observed phenomenon.Research limitations/implications - The role of pH is not clearly understood and needs further study.Practical implications - The findings may be of interest in paper manufacture where uniform dispersal of fillers throughout the pulp is of significantimportance.Originality/value - The phenomenon described in this paper has not previously been reported or explored. Further studies may add to knowledge offiller dispersions and their behaviour in papermaking.
机译:目的-本文的目的是探讨以前未曾报道的现象,在造纸中,当暴露于高强度超声下时,碳酸钙填料的粒径分布会发生变化。设计/方法/方法发现20kHz的频率产生其矿物填料成分的聚集体。在有或没有分散剂的情况下,也研究了超声处理对孤立的长纤维和短纤维以及研磨的和沉淀的碳酸钙填料体系的影响。这些发现得到了超声处理系统的粒度分析和扫描电子显微镜的支持。发现-清楚地表明,暴露于高强度超声会引起填料聚集。但是,该效果仅在纸纤维和填料共存时才会发生,而对于仅填料或仅纤维浆液的悬浮液则不明显。此外,该处理方法在制造过程中超越了用于保持填料悬浮的分散剂的作用。还注意到随着超声处理时间的增加,pH值随之下降,并且与这些变化有关。建议超声处理过程中在浆料中产生的自由基可能解释所观察到的现象。研究局限/含义-pH的作用尚不明确,需要进一步研究。填料在整个纸浆中的分散非常重要。来源/价值-本文中所描述的现象以前尚未得到报道或探讨。进一步的研究可能会增加知识分子的分布及其在造纸中的行为。

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