Development Of Multifunctional Coatings For Protecting Stones And Lime Mortars Of The Architectural Heritage

A. Speziale,J. F. González-Sánchez,B. Taşcı,A. Pastor,L. Sánchez, C. Fernández-Acevedo, T. Oroz-Mateo, C. Salazar,I. Navarro-Blasco,J. M. Fernández,J. I. Alvarez

INTERNATIONAL JOURNAL OF ARCHITECTURAL HERITAGE(2020)

引用 20|浏览12
暂无评分
摘要
Unique multifunctional coatings, comprising a 3D superhydrophobic agent and two nanostructured photocatalysts (solar-light sensitive 50/50 and 10/90 TiO2-ZnO nano-heterostructures), compatible with the inorganic substrates of the Built Heritage, have been designed. The synthesized nanoparticles showed an enhanced photocatalytic activity (tested by NO degradation) as compared with the raw TiO2 and ZnO materials. Dispersing agents were used to optimize the coatings, avoiding agglomeration of the photocatalytic nanoparticles and increasing the stability of the suspensions. Four distinct dispersions were optimized and applied as coatings onto stony materials used in the Built Heritage, such as sandstone, lime mortar, granite and limestone. Their effectiveness was assessed by assessing hydrophobicity of the surfaces (static water contact angle), photocatalytic activity and self-cleaning as well as water vapour permeability of the treated specimens. These transparent coatings demonstrated high compatibility with the construction materials of the Architectural Heritage and showed a synergistic effect rendering a minimized water absorption, self-cleaning ability evidenced by the reduced adsorption of soiling deposits and a reasonable degradation of any trace that might be adsorbed, as well as a protecting hydrophobic environment for the photocatalyst.
更多
查看译文
关键词
Built Heritage, coating, granite, lime mortar, limestone, photocatalyst, sandstone, self cleaning, waterproofing
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要