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Micro and nanofibrillated cellulose (MNFC) as additive in complex suspensions: influence on rheology and dewatering

机译:微和纳米原纤化纤维素(MNFC)作为复杂悬浮液中的添加剂:对流变性和脱水的影响

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摘要

The traditional forest products, such as paper, packaging and viscose products, have their well-established place, but further efforts urgently need to be made to meet growing ecological demands, increasing economic pressure and to develop new technologies for utilisation of high performance materials. Nanocellulose applied in paper making suspensions and as water retention control aids may introduce additional strength properties in traditional products, and when considered for coatings may deliver oil and gas barrier properties as well as targeted liquid interactions based on surface energy criteria and designed pore and gel network structures. The properties increase the potential for their use in a broad range of novel products. The processes, firstly by which nanocellulose is both created, as part of cellulose structures in nature, and subsequently produced determine their aqueous suspension rheology and dewatering behaviour, and thus, by using knowledge of their rheological behaviour when utilised in complex suspensions, will support the creation of new controls in water-based production processes.The use of rheology for the characterisation of nanocellulose suspensions and their applications in a range of industries as diverse as the oil and papermaking industries has been the subject of numerous studies in recent years. Although many studies have been conducted relating to papermaking furnishes and their water suspensions while including nanocellulose containing materials, these rheological investigations were conducted independently from conditions of dynamic dewatering. For the first time, this work sets out to observe and try to overcome experimental difficulties related to rheometry and dynamic dewatering of high consistency viscoelastic gel-like nanocellulose suspensions using a variety of experimental techniques and methods.Once reliable rheological measurements were designed and the methodology established, the work goes on to analyse the possible structures attained by nanocellulose containing suspensions in combination with macroscopic fibres, pigments and fibril dispersing polymers, which traditionally are used as pigment flocculant water retention aids. These analyses are used to support and challenge the basic hypotheses of the thesis in relation to the impact these structures will have on properties such as process applicability, phase separation, substrate coverage, coating and material uniformity.
机译:传统的林产品,如纸,包装和粘胶产品,已经确立了自己的地位,但迫切需要进一步努力以满足日益增长的生态需求,日益增加的经济压力以及开发利用高性能材料的新技术。应用于造纸悬浮液中的纳米纤维素以及作为保水性的辅助剂可能会在传统产品中引入其他强度性能,并且考虑用于涂料时,可以提供基于表面能标准和设计的孔与凝胶网络的油气阻隔性能以及目标液体相互作用结构。这些特性增加了其在各种新颖产品中使用的潜力。首先,自然界中的纤维素结构的一部分,即纳米纤维素的产生和随后产生的过程,决定了其水悬浮液的流变性和脱水性能,因此,通过在复杂悬浮液中使用时,通过了解其流变行为,将支持该工艺。流变学用于表征纳米纤维素悬浮液及其在石油和造纸工业等众多行业中的应用已成为近年来众多研究的主题。尽管已经进行了许多与造纸配料及其水悬浮液有关的研究,同时包括含纳米纤维素的材料,但这些流变学研究是独立于动态脱水条件进行的。这项工作首次是通过各种实验技术和方法观察并尝试克服与高稠度粘弹性凝胶状纳米纤维素悬浮液的流变学和动态脱水相关的实验困难,并设计了可靠的流变学测量方法和方法建立后,将继续分析含纳米纤维素的悬浮液与肉眼可见的纤维,颜料和原纤维分散聚合物(通常用作颜料絮凝剂保水助剂)的组合所可能获得的结构。这些分析被用来支持和挑战有关这些结构将对诸如工艺适用性,相分离,基材覆盖率,涂层和材料均匀性等特性产生影响的基本假设。

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    Dimic-Misic Katarina;

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  • 年度 2014
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