Brunella Perito
Biographic Data
| ID | 127133 |
|---|---|
| NAME | Brunella Perito |
| GIVEN NAMES | Brunella |
| FAMILY NAME | Perito |
| SIGNATURE | PERITO B |
| AFFILIATIONS | University of Florence |
| ORCID | 0000-0003-0078-0783 |
| VERIFIED | Yes |
| TOTAL WORKS | 4 |
| TOTAL CITATIONS | 2 |
| AUTHOR COUNT | 4 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2009 |
| LATEST PUBLICATION YEAR | 2026 |
| H-INDEX | 1 |
Red stains and associated microbial community of the external white marble of Florence cathedral
Red stains are a common and persistent form of deterioration affecting historic marble monuments and are notoriously difficult to remove. The red colouration has been attributed to the presence of the inorganic pigment minium (Pb 3 O 4 ) in many works. Previous studies have reported the presence of lead-resistant microorganisms within these stains. However, the potential microbial contribution to minium formation on marble surfaces remains unclea…
In situ long-term monitoring of microbial patinas on the external marble of Florence Cathedral after treatments with essential oils
Controlling the biological patina on stones is challenging. • Essential oils (EOs), like thyme and oregano, showed biocidal properties. • EOs treatments were assessed for long-term impact on Florence Cathedral's marble. • (In situ) treatment evaluation through ATP content, colorimetry, and microscopy. • Thyme with oregano EOs solution at 2 % was the best long-lasting treatment. The control of biological patinas on cultural heritage stones is a ch…
A Bacillus subtilis cell fraction (BCF) inducing calcium carbonate precipitation: Biotechnological perspectives for monumental stone reinforcement
Bacterial community analysis on the Mediaeval stained glass window "Natività" in the Florence Cathedral
Bacterial community analysis on the Mediaeval stained glass window "Natività" in the Florence Cathedral
A Bacillus subtilis cell fraction (BCF) inducing calcium carbonate precipitation: Biotechnological perspectives for monumental stone reinforcement
In situ long-term monitoring of microbial patinas on the external marble of Florence Cathedral after treatments with essential oils
Controlling the biological patina on stones is challenging. • Essential oils (EOs), like thyme and oregano, showed biocidal properties. • EOs treatments were assessed for long-term impact on Florence Cathedral's marble. • (In situ) treatment evaluation through ATP content, colorimetry, and microscopy. • Thyme with oregano EOs solution at 2 % was the best long-lasting treatment. The control of biological patinas on cultural heritage stones is a ch…
Red stains and associated microbial community of the external white marble of Florence cathedral
Red stains are a common and persistent form of deterioration affecting historic marble monuments and are notoriously difficult to remove. The red colouration has been attributed to the presence of the inorganic pigment minium (Pb 3 O 4 ) in many works. Previous studies have reported the presence of lead-resistant microorganisms within these stains. However, the potential microbial contribution to minium formation on marble surfaces remains unclea…
Building materials and conservation (4 works) · Conservation Techniques and Studies (2 works) · Cultural Heritage Materials Analysis (2 works) · Geography (2 works) · Geology (2 works) · Materials Science (2 works) · Microbial Applications in Construction Materials (2 works) · Ancient history (1 works) · Archaeology (1 works) · Art (1 works)