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Halloysite nanotubes with fluorinated cavity: an innovative consolidant for paper treatment

机译:具有氟化空腔的埃洛石纳米管:一种用于纸张处理的创新固结剂

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摘要

Hybrid material based on halloysite nanotubes (HNTs) and sodium perfluorooctanoate (NaPF8) was used as a consolidant for paper treatment. The consolidation efficiency was determined by thermogravimetry as well as by paper grammage determination. Morphological analysis of the treated paper was performed by means of scanning electron microscopy while the effect of modified HNTs on the thermal behaviour of the cellulose fibres was investigated by differential scanning calorimetry which determined the combustion enthalpy of the paper. Water contact angle measurements were performed to study the paper wettability. The physico-chemical properties investigated (mesoscopic structure, thermal stability and wettability) of the treated paper were correlated successfully with the consolidation loading and, consequently, to the affinity between the fluorinated modified HNTs and the fibrous cellulose structure. This study proposes a new green protocol for paper consolidation based on natural tubular nanoparticles with a flame retardant effect.
机译:基于埃洛石纳米管(HNT)和全氟辛酸钠(NaPF8)的杂化材料被用作纸张处理的固结剂。固结效率通过热重分析法以及纸张克重测定法确定。通过扫描电子显微镜对处理过的纸进行形态分析,同时通过差示扫描量热法研究改性的HNTs对纤维素纤维的热行为的影响,所述差示扫描量热法确定纸的燃烧焓。进行水接触角测量以研究纸的润湿性。处理过的纸的理化性质(介观结构,热稳定性和润湿性)与固结载荷成功相关,因此与氟化改性的HNT和纤维状纤维素结构之间的亲和力相关。这项研究提出了一种新的绿色协议,用于基于具有阻燃效果的天然管状纳米颗粒进行纸张合并。

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