Nanolime products are one of the most promising consolidation methods for historic calcareous substrates. Whilst the popularity of nanolime has been growing, its consolidation mechanism still needs to be fully understood when applied to highly porous substrates. The aim of this paper is to compare the three available nanolime products in terms of consolidation efficacy on lime mortar specimens. It is shown that repeated applications of a low concentrated nanolime can increase the superficial cohesion and the mechanical strength of the mortar within 1cm from the surface, while also reducing porosity, number of micro-pores and capillary water absorption coefficient. Nanorestore Plus® yielded the highest short-term consolidation effect. Howeve...
In this study, a systematic comparison is presented between a commercial dispersion of Ca(OH)2 nanop...
[EN] This paper shows a study on the consolidation effectiveness of nano-silica and nano-lime-based ...
This study investigates the consolidation effect of nanosized particles of calcium hydroxide dispers...
Historic calcareous structures suffer from weathering processes that result in the loss of some of t...
Nanolime is one of the most promising consolidation materials used in the conservation of historic ...
Nanolimes, i.e. dispersions of lime (Ca(OH)2)nanoparticles in alcohol, have been extensively investi...
The conservation of historic structures must be carried out through treatments that use materials wh...
Nanolime is a promising consolidation treatment for the conservation of historic structures thanks t...
Nanolimes are the first nanomaterials used in heritage conservation for natural stone consolidation....
Ca(OH)2 particles with submicrometric dimensions (nanolimes) represent one of the most promising con...
An important operation for the conservation of historical renders is the cohesion restitution of the...
In this study, a systematic comparison is presented between ammonium phosphate and commercial nanoli...
Between used and already verified technologies for the reinforcement of plasters mainly include nano...
The limestone used at the Pasargadae World Heritage Site in Iran, an outstanding open-air architectu...
The potentialities of nanomaterials for applica- tion in the field of conservation have been widely ...
In this study, a systematic comparison is presented between a commercial dispersion of Ca(OH)2 nanop...
[EN] This paper shows a study on the consolidation effectiveness of nano-silica and nano-lime-based ...
This study investigates the consolidation effect of nanosized particles of calcium hydroxide dispers...
Historic calcareous structures suffer from weathering processes that result in the loss of some of t...
Nanolime is one of the most promising consolidation materials used in the conservation of historic ...
Nanolimes, i.e. dispersions of lime (Ca(OH)2)nanoparticles in alcohol, have been extensively investi...
The conservation of historic structures must be carried out through treatments that use materials wh...
Nanolime is a promising consolidation treatment for the conservation of historic structures thanks t...
Nanolimes are the first nanomaterials used in heritage conservation for natural stone consolidation....
Ca(OH)2 particles with submicrometric dimensions (nanolimes) represent one of the most promising con...
An important operation for the conservation of historical renders is the cohesion restitution of the...
In this study, a systematic comparison is presented between ammonium phosphate and commercial nanoli...
Between used and already verified technologies for the reinforcement of plasters mainly include nano...
The limestone used at the Pasargadae World Heritage Site in Iran, an outstanding open-air architectu...
The potentialities of nanomaterials for applica- tion in the field of conservation have been widely ...
In this study, a systematic comparison is presented between a commercial dispersion of Ca(OH)2 nanop...
[EN] This paper shows a study on the consolidation effectiveness of nano-silica and nano-lime-based ...
This study investigates the consolidation effect of nanosized particles of calcium hydroxide dispers...