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Effect of wollastonite nanofibers and exposure to Aspergillus niger fungus on air flow rate in paper

机译:硅灰石纳米纤维的影响和暴露于曲霉真菌对纸张空气流速的影响

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摘要

The effect of nano-wollastonite and Aspergillus niger fungus on permeability of historical and common paper was studied here. Specimens were immersed in aqueous wollastonite nano-suspension (NW) at 10, 20, 30, and 40% concentration, and their permeability was finally compared with that obtained from control specimens. Permeability of each specimen was measured before and after the immersion in NW. To fix solid particles on NW-treated specimens, polyvinyl acetate (PVA) was mixed in all treatments. Results showed that wollastonite significantly limited the growth of A. niger. Permeability of historical specimens was significantly lower than that of the common paper, 29 in comparison to 190 cm(3).s(-1), respectively. This was due to the higher density in the historical paper, providing lower empty voids and spaces for fluid to pass through. Fungi culture resulted in significant decrease in both paper types. In fact, fungal hyphae penetrated into the specimens, eventually blocking the paths through which fluid could transfer. High significant R-square values were found between permeability values before and after the exposure to A. niger. It was concluded that permeability is closely correlated to the density of paper, and it has a significant effect on the potentiality of fungi hyphae to be penetrated into the texture of papers, affecting the weight loss values. Moreover, NW-suspension can be used to decrease permeability as well as susceptibility to fungal attack. (C) 2019 Elsevier Ltd. All rights reserved.
机译:研究了纳米硅灰石和曲霉对历史和常用纸渗透性的影响。将试样浸入10,20,30和40%浓度下的硅灰石纳米悬浮液(NW)中,最终将它们的渗透率与从对照样本获得的渗透性进行比较。在浸入NW之前和之后测量每个样品的渗透性。为了将固体颗粒固定在NW处理的标本上,在所有处理中混合聚乙酸乙烯酯(PVA)。结果表明,硅灰石显着限制了A.尼日尔的生长。历史标本的渗透率显着低于普通纸,29与190cm(3)。(-1)分别。这是由于历史纸中的密度较高,为流体提供了较低的空空隙和空间。真菌培养导致两种纸张类型的显着降低。事实上,真菌菌丝渗透到标本中,最终阻挡流体可以转移的路径。在接触到尼日尔之前和之后的渗透率值之间发现了高显着的R平方值。得出结论,渗透性与纸张的密度密切相关,对真菌菌丝的潜力渗透到纸张质地具有显着影响,影响了减肥价值。此外,NW-悬浮液可用于降低渗透性以及对真菌攻击的敏感性。 (c)2019年elestvier有限公司保留所有权利。

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