This paper reports significant results about the effects of repeated treatments to protect a mediaeval Italian mortar from capillarity-absorbed water, by using for the treatments, our no-commercial hydro-alcoholic suspensions of calcium hydroxide nanoparticles(nanolime). The mortars samples came from the historical site, where preliminary thermographic inspection were performed to detect the damp zones. Before treatments, the samples were analyzed from a mineralogical and chemical point of view, by means of several techniques, as optical microscopy (OM), thin section observations (PFM), porosimetric investigations, X-ray fluorescence (XRF), X-ray diffraction (XRD), infrared spectroscopy (FT-IR) and thermal analysis (TG-DTA). The size-gradin...
In the present work a nanolime, to be used in Cultural Heritage Conservation, is produced in order t...
Building materials like marble, calcareous stone and mortars rich in calcitic content have been exte...
This paper aims to study the strengths and drawbacks of nanolime, ethyl silicate and sodium silicate...
Mortars, which are very important elements for the integrity of historic monuments, consist mainly o...
For a long time the conservation of archaeological artefacts has been based on the principles of com...
Clay-based building materials have been very popular in construction and common in cultural heritage...
Calcium hydroxide nanoparticles (nanolime) are a novel solution for consolidating clay-based plaster...
Historic calcareous structures suffer from weathering processes that result in the loss of some of t...
The aim of this study is the formulation of a special mortar with improved adhesion, elasticity, wor...
The main objective of this study is to evaluate the opportunities offered by nanotechnologies to the...
This study investigates the consolidation effect of nanosized particles of calcium hydroxide dispers...
The use of nanoproducts in the Cultural Heritage (CH) field requires great sensitivity and responsib...
This study focused on the battlements of the Tower of Palazzo Alliata Pietratagliata in Palermo, whi...
Summarization: Clay-based building materials have been very popular in construction and common in cu...
The conservation of historic structures must be carried out through treatments that use materials wh...
In the present work a nanolime, to be used in Cultural Heritage Conservation, is produced in order t...
Building materials like marble, calcareous stone and mortars rich in calcitic content have been exte...
This paper aims to study the strengths and drawbacks of nanolime, ethyl silicate and sodium silicate...
Mortars, which are very important elements for the integrity of historic monuments, consist mainly o...
For a long time the conservation of archaeological artefacts has been based on the principles of com...
Clay-based building materials have been very popular in construction and common in cultural heritage...
Calcium hydroxide nanoparticles (nanolime) are a novel solution for consolidating clay-based plaster...
Historic calcareous structures suffer from weathering processes that result in the loss of some of t...
The aim of this study is the formulation of a special mortar with improved adhesion, elasticity, wor...
The main objective of this study is to evaluate the opportunities offered by nanotechnologies to the...
This study investigates the consolidation effect of nanosized particles of calcium hydroxide dispers...
The use of nanoproducts in the Cultural Heritage (CH) field requires great sensitivity and responsib...
This study focused on the battlements of the Tower of Palazzo Alliata Pietratagliata in Palermo, whi...
Summarization: Clay-based building materials have been very popular in construction and common in cu...
The conservation of historic structures must be carried out through treatments that use materials wh...
In the present work a nanolime, to be used in Cultural Heritage Conservation, is produced in order t...
Building materials like marble, calcareous stone and mortars rich in calcitic content have been exte...
This paper aims to study the strengths and drawbacks of nanolime, ethyl silicate and sodium silicate...