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Pickering Emulsions Based on Wax and Halloysite Nanotubes: An Ecofriendly Protocol for the Treatment of Archeological Woods

机译:基于蜡和Halloysite Nanotubes的皮克林乳液:一种用于治疗考古林的Ecofriendly协议

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摘要

A novel green protocol for the consolidation and protection of waterlogged archeological woods with wax microparticles has been designed. First, we focused on the development of halloysite nanotubes (HNTs) based Pickering emulsions using wax as the inner phase of the oil-in-water droplets. The optimization of the preparation strategy was supported by both optical microscopy and scanning electron microscopy, which allowed us to show the morphological features of the prepared hybrid systems and their structural properties, i.e., the distribution of the clay at the interface. Also, the dependence of the overall dimensions of the prepared systems on the halloysite content was demonstrated. Microdifferential scanning calorimetry (mu-DSC) was conducted in order to assess whether the thermal properties of the wax are affected after its interaction with HNTs. Then, the Pickering emulsions were employed for the treatment of waterlogged wooden samples. Compared to the archeological woods treated with pure wax, the addition of nanotubes induced a remarkable improvement in the mechanical performance in terms of stiffness and flexural strength. The proposed protocol is environmentally friendly since water is the only solvent used throughout the entire procedure, even if wax is vehiculated into the pores at room temperature. As a consequence, the design of wax/halloysite Pickering emulsions represents a promising strategy for the preservation of wooden artworks, and it has a great potential to be scaled up, thus becoming also exploitable for the treatments of shipwrecks of large size.
机译:设计了一种新的绿色协议,用于用蜡微粒加固和保护浸水的考古树木。首先,我们专注于开发埃洛石纳米管(HNTs)基Pickering乳液,使用蜡作为水包油液滴的内相。制备策略的优化得到了光学显微镜和扫描电子显微镜的支持,这使我们能够显示所制备的杂交系统的形态特征及其结构特性,即粘土在界面上的分布。此外,还证明了制备的体系的总体尺寸对埃洛石含量的依赖性。微差示扫描量热法(mu DSC)用于评估蜡与HNTs相互作用后的热性能是否受到影响。然后,采用Pickering乳液处理浸水的木质样品。与纯蜡处理的考古木材相比,添加纳米管后,木材的刚度和弯曲强度都有显著提高。由于水是整个过程中使用的唯一溶剂,即使蜡在室温下进入孔中,提议的方案也是环保的。因此,蜡/埃洛石皮克林乳液的设计代表了保存木制艺术品的一个有前途的策略,并且它具有很大的扩展潜力,因此也可用于处理大型沉船。

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