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Medieval and renaissance glass technology in Valdelsa (Florence). Part 1: raw materials, sands and non-vitreous finds
Authors:U Casellato  F Fenzi  P Guerriero  S Sitran  P A Vigato  U Russo  M Galgani  M Mendera  A Manasse
Affiliation:a Istituto di Chimica e Tecnologie ICTIMA, Inorganiche e die Mat. Avanzati, CNR, Corso Stati Uniti, 4, 35127, Padova, Italy;b Dipartimento C.I.M.A., Università degli Studi di Padova, Italy;c Dipartimento di Archeologia, Università di Siena, Italy;d Dipartimento di Scienze della Terra, Università degli Studi di Siena, Italy
Abstract:A significant number of archaeological finds of the 13th–16th century from the Tuscan sites of Germagnana and Gambassi in Valdelsa—FI, was studied by different physico-chemical investigations (SEM–EDS, ICP, Mössbauer spectroscopy, XRD, XRF, TG-DTA) in order to contribute to clarify the production methodology and the pre-industrial glass manufacture technology. The studied samples are mainly non-vitreous finds as production waste, refractory materials, crucibles and raw materials; also vitreous finds as frits, skims, glasses (glass masses, glass working waste and finished products) have been taken into consideration. The obtained petrographic and physico-chemical data strongly suggest that both Gambassi and Germagnana glass manufactures were strictly connected with the sources of vitrifiable materials, situated in Tuscan sand quarries. In particular a comparison between sands from the neighbouring quarries and appropriate finds of the two archaeological sites evidences that the employed vitrifiable materials possibly belong to La Casina La Cava resort. The archaeological classification, based on macroscopic observation and stratigraphic position, was compared and verified with the scientific classification of the examined finds of Germagnana and Gambassi sites based on their composition, morphology and physico-chemical properties.
Keywords:Medieval and renaissance glasses  Archaeological sandy conglomerate  Sand quarries and treatment  Glass composition  Glass technology
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