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Roman brick production technologies in Padua (Northern Italy) along the Late Antiquity and Medieval Times

Durable bricks on high humid environs

Bibliographic Data

ID4723587
AuthorsElena Mercedes Pérez-Monserrat (0000-0001-5701-2879, University of Padua, corresponding author), Marie-Ange Causarano (0000-0001-5970-7594, University of Padua), Lara Maritan (0000-0002-3796-1265, University of Padua), Alexandra Chavarria (University of Padua), Gian Pietro Brogiolo (0000-0003-4005-8381, University of Padua), Giuseppe Cultrone (0000-0001-9503-3312, Universidad de Granada)
Year2022
Volume54
Pages12-20
Publication date2022-03-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueJournal of Cultural Heritage (JOURNAL)
Journal identifiersISSN: 1296-2074 • E-ISSN: 1778-3674
PublisherElsevier BV (PUBLISHER)
DOI10.1016/j.culher.2022.01.007
OpenAlexW4206701281
LanguageEN
Citations received8
References cited22

Production technologies of Roman to Medieval times bricks on the city of Padua were addressed by means of a multi-analytical approach, consisting in Spectrophotometry, X-Ray Fluorescence (XRF), Powder X-Ray Diffraction (PXRD), Polarized Optical Microscopy (POM) and Scanning Electron Microscopy (SEM-EDS). The Early-Christian (5-6th centuries) and Romanesque (12-13th centuries) areas of the Basilica of Saint Justine of Padua (5/6-16th centuries), and the remains of the Roman necropolis (1-3/4th centuries) still preserved under the basilica, were selected to collect the bricks in order to define possible differences between the materials used for the various building phases. The walls are mainly shaped by yellow (with pale and dark hue) and beige colored bricks with an overall good conservation state. The ceramic bodies of this type of bricks showed the development of high-temperature phases but a low sintering degree was achieved. Moreover, secondary phases such as zeolites and calcite were formed, within almost the pale-yellow bodies and intensively precipitated through the groundmass of the beige bricks, respectively. Mg-rich calcareous clays and chloritic-illitic clays were used, firing temperatures of or over 900°C were reached and more porous ceramic bodies were produced when higher was the carbonate content on the raw clays. A lesser carbonate content of the base clays and/or the decrease in the firing temperatures were the main technological modifications progressively accomplished, leading to color changes on the ceramic bodies from yellow to beige hue. The Roman production technologies might be largely inherited by the brick makers during the Late Antiquity and Medieval times in the city and the reuse of more ancient bricks during the Medieval Times was confirmed. Such reuse operations have allowed to observe that under high humid conditions the yellow hue bricks have been rather good preserved, while when exposed to insolation and fluctuations of the environmental conditions a significant granular disaggregation -with the concomitance darkening of the color pastes- is developed. The color of bricks may entail an identifier of a specific construction period of the city and durable bricks from local clays, especially suitable for high humidity areas and that may preserve the aesthetical values of the city of Padua, may be currently produced

Archaeology · Art · Brick · Calcareous · Calcite · Carbonate · Ceramic · Geography · Hue · Metallurgy · Mineralogy · Physics · Building materials and conservation · Conservation Techniques and Studies · Cultural Heritage Materials Analysis · Materials Science · Geology · Paleontology

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Unique citing works8
Citations per year2,67
Citation span2023 - 2026 (4)
Citation velocitycurrent
Highly citedNo
Citation typesNeutral: 7

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