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Calcium hydroxide nanoparticles coatings applied on cultural heritage materials: Their influence on physical characteristics of earthen plasters

机译:应用于文化遗产材料的氢氧化钙纳米粒子涂料:对土灰泥物理特性的影响

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摘要

Calcium hydroxide nanoparticles (nanolime) are a novel solution for consolidating clay-based plasters and adobes in cultural heritage constructions. The suspension is applied as a coating and fully compatible with calcareous earthen materials. Ca(OH)(2) nanoparticles (NPs) are transformed into protective CaCO3 coatings due to a carbonation reaction. This work aims to study the effectiveness of Ca(OH)(2) NPs coatings in protecting the surface of earthen plasters. To do this, the effect of nanolime on surface consolidation, water permeability and durability in front of rain action is evaluated. It was found that the treatment improved the superficial cohesion and reduced water permeability of plasters due to formation of calcareous coatings and partial obstruction of pores on the surface. In contrast, the effectiveness of the treatment is not demonstrated against rainwater and acid environments (HCl). Finally, acid rain simulation (H2SO4) led to deposition of protective films of gypsum that might delay the plaster deterioration in the long term.
机译:氢氧化钙纳米粒子(nanolime)是一种用于在文化遗产建筑中巩固粘土基灰泥和阿杜比的新型解决方案。该悬浮液用作涂料,并与钙质土质材料完全相容。由于碳酸化反应,Ca(OH)(2)纳米粒子(NPs)转变为保护性CaCO3涂层。这项工作旨在研究Ca(OH)(2)NPs涂料在保护泥灰泥表面的有效性。为此,评估了纳米石灰对表面固结,透水性和在下雨前的耐久性的影响。发现由于钙质涂层的形成和表面上的孔的部分阻塞,该处理改善了石膏的表面内聚力并降低了其透水性。相反,未针对雨水和酸性环境(HCl)证明该处理的有效性。最后,酸雨模拟(H2SO4)导致石膏保护膜的沉积,从长远来看可能会延缓石膏的劣化。

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