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From Glass to Glaze in al-Andalus: Local Invention and Technological Transfer

Published online by Cambridge University Press:  24 August 2021

Elena Salinas
Affiliation:
Department de Física, Universitat Politècnica de Catalunya, Barcelona, Spain CEI⋅MAR / Departamento de Geografía, Historia y Humanidades, Universidad de Almería, Spain
Jorge De Juan
Affiliation:
Institut de Recherche sur les Archéomatériaux, Centre Ernest Babelon, UMR 5060, CNRS/Université d'Orléans, France UNIARQ, School of Arts and Humanities, University of Lisbon, Portugal
Juan M. Piñero
Affiliation:
Departamento de Prehistoria y Arqueología, Universidad de Granada, Spain
M. Teresa Casal
Affiliation:
Departamento de Historia del Arte, Arqueología y Música, Universidad de Córdoba, Spain
Nadine Schibille
Affiliation:
Institut de Recherche sur les Archéomatériaux, Centre Ernest Babelon, UMR 5060, CNRS/Université d'Orléans, France
Trinitat Pradell
Affiliation:
Department de Física, Universitat Politècnica de Catalunya, Barcelona, Spain

Abstract

It has long been assumed that lead glazing technology preceded glassmaking in the Western world and that the technological transfer was from glazes to glass. Here, we present new evidence for the reverse, the indigenous innovation of glassmaking and its transfer to glazes in early Islamic al-Andalus (Spain). Compositional analyses show that Islamic lead glazes from Córdoba are intimately related to a distinct type of high-lead glass, suggesting a connection between the two technologies. The archaeological remains from a pottery workshop indicate that the glazing process initially involved the production of a lead glass and is not linked to earlier Roman or other contemporary glazing technologies. The data also demonstrate that the potters not only used the same materials and techniques but borrowed stylistic and decorative models from glassmaking.

Il a été proposé que la technologie de la glaçure plombifère ait précédé la production du verre en Europe occidentale et que cette technologie aurait ensuite été transférée au verre. Cet article présente de nouvelles données qui indiquent le contraire, c'est-à-dire une invention locale du verre et son transfert aux techniques de glaçure en al-Andalus (Espagne) au début de l’époque islamique. Des analyses de composition montrent que les glaçures plombifères de l’époque islamique de Cordoue sont liées à un type distinct de verre à haute teneur en plomb, ce qui met en évidence la relation étroite entre les deux technologies. Les vestiges archéologiques d'un atelier de potiers indiquent que le processus de production de la glaçure impliquait initialement la production de verre au plomb et n’était pas lié à la technologie romaine ou autres technologies contemporaines de la glaçure. Les données démontrent également que les potiers n'ont pas seulement utilisé les mêmes matériaux et techniques mais ont emprunté des motifs stylistiques et décoratifs à la verrerie. Translation by Madeleine Hummler

Es wurde angenommen, dass die Technologie der Bleiglasur der Glasherstellung in Westeuropa vorausging und dass der Technologietransfer von Glasur zu Glas erfolgte. Die Ergebnisse der vorliegenden Untersuchungen zeigen jedoch, dass das Gegenteil der Fall war. Im frühislamischen al-Andalus in Spanien wurde zunächst Glas hergestellt und diese Technologie wurde dann auf Glasuren übertragen. Chemische Analysen zeigen, dass die Bleiglasuren der frühislamischen Zeit aus Córdoba eng mit einem bestimmten Typus von Bleiglas verwandt sind, was für einen Zusammenhang der beiden Technologien spricht. Das archäologische Fundmaterial aus einer Töpferwerkstatt deutet darauf hin, dass der Glasurprozess ursprünglich die Herstellung eines Bleiglases beinhaltete und nicht mit früheren römischen oder anderen zeitgenössischen Glasurtechnologien zusammenhängt. Die Daten zeigen auch, dass die Töpfer nicht nur die gleichen Techniken und Rohstoffe benutzten, sondern auch stilistische und dekorative Elemente der Glasherstellung entliehen. Translation by Madeleine Hummler

Type
Article
Copyright
Copyright © The Author(s), 2021. Published by Cambridge University Press on behalf of the European Association of Archaeologists

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References

Alba Calzado, M. & Gutiérrez Lloret, S. 2008. Las producciones de transición al Mundo Islámico: el problema de la cerámica paleoandalusí (siglos VIII y IX). In: Bernal, D. & Ribera, A., eds. Cerámicas hispanorromanas. Un estado de la cuestión. Cádiz: Universidad de Cádiz, pp. 585613.Google Scholar
Amorós, V. 2018. El Tolmo de Minateda en la alta edad media. Cerámica y contexto. Alicante: Universidad de Alicante, Servicio de PublicacionesGoogle Scholar
Brill, R.H. 1999. Chemical Analyses of Early Glasses. Volumes 1 & 2. Corning (NY): Corning Museum of Glass.Google Scholar
Brill, R.H. 2001. Some Thoughts on the Chemistry and Technology of Islamic Glass. In: Carboni, S. & Whitehouse, D., eds. Glass of the Sultans. New York: Metropolitan Museum of Art, pp. 2545.Google Scholar
Brill, R.H. 2009. Chemical Analyses. In: Allan, J.W. & Bass, G.F., eds. Serçe Limaní, Volume 2: The Glass of an Eleventh-Century Shipwreck. College Station (TX): Texas A & M University Press, pp. 459–96.Google Scholar
Caballero, L., Retuerce, M. & Mateos, P. eds. 2003. Cerámicas tardorromanas y altomedievales en la Península Ibérica. Ruptura y continuidad. Madrid: Consejo Superior de Investigaciones Científicas.Google Scholar
Cánovas, A. 2006. Informe de la AAP en la calle María Auxiliadora 17 y calle Jesús del Calvario (Córdoba). Córdoba.Google Scholar
Cánovas, A. & Salinas, E. 2010. Actividad arqueológica preventiva en la calle maría Auxiliadora 17 y calle Jesús del Calvario (Córdoba). Anuario Arqueológico de Andalucía, 2005: 503–15.Google Scholar
Carboni, S. & Whitehouse, D. eds. 2001. Glass of the Sultans. New York: Metropolitan Museum of Art.Google Scholar
Carvajal, J.C. 2013. Islamicization or Islamicizations? Expansion of Islam and Social Practice in the Vega of Granada (South-East Spain). World Archaeology, 45: 5771.CrossRefGoogle Scholar
Casal, M.T. 2018. The Rabad of Saqunda in Umayyad Córdoba (750–818 ad). In: Callegarin, L. & Panzram, S., eds. Entre civitas y madina: El Mundo de las ciudades en la Península Ibérica y en el Norte de África (siglos IV-IX). Madrid: Casa de Velázquez, pp. 119–32.Google Scholar
Casal, M.T., Castro, E., López, R. & Salinas, E. 2005. Aproximación al estudio de la cerámica emiral del arrabal de Šaqunda (Qurṭuba, Córdoba). Arqueología y Territorio Medieval, 12: 189236.CrossRefGoogle Scholar
Castillo, F. & Martínez, R. 1993. Producciones cerámicas en Bayyana. In: Cuello, A. Malpica, ed. Primer encuentro de arqueología y patrimonio. La cerámica altomedieval en el sur de al-Andalus. Granada: Universidad de Granada, pp. 67116.Google Scholar
De Benedetto, G.E., Acquafredda, P., Masieri, M., Quarta, G., Sabbatini, L., Zambonin, M., et al. 2004. Investigation of Roman Lead Glaze from Canosa: Results of Chemical Analysis, Archaeometry, 46: 615–24. https://doi.org/10.1111/j.1475-4754.2004.00177.xCrossRefGoogle Scholar
De Juan Ares, J. & Schibille, N. 2017. La Hispania antigua y medieval a través del vidrio: la aportación de la arqueometría. Boletín de la Sociedad Española de Cerámica y Vidrio, 56: 195204. https://doi.org/10.1016/j.bsecv.2017.04.001CrossRefGoogle Scholar
De Juan, J., Vigil-Escalera, A., Cáceres, Y. & Schibille, N. 2019. Changes in the Supply of Eastern Mediterranean Glasses to Visigothic Spain. Journal of Archaeological Science, 107: 2331. https://doi.org/10.1016/j.jas.2019.04.006CrossRefGoogle Scholar
Duckworth, C., Córdoba, R., Faber, E., Govantes, D.J. & Henderson, J. 2014. Electron Microprobe Analysis of 9th–12th Century Islamic Glass from Córdoba, Spain. Archaeometry, 57: 2750. https://doi.org/10.1111/arcm.12079CrossRefGoogle Scholar
Freestone, I.C. 2015. The Recycling and Reuse of Roman Glass: Analytical Approaches. Journal of Glass Studies, 57: 2940.Google Scholar
Fuertes, M.C. & Hidalgo, R. 2003. Cerámicas tardorromanas y altomedievales de Córdoba. In: Caballero, L., Retuerce, M. & Mateos, P., eds. Cerámicas tardorromanas y altomedievales en la Península Ibérica. Ruptura y continuidad. Madrid: Consejo Superior de Investigaciones Científicas, pp. 505–40.Google Scholar
Gutiérrez, S. 2016. La mirada del otro: al-Andalus. In: Molinari, A., Santangeli Valenzani, R. & Spera, L., eds. L'archeologia della produzione a Roma (secoli V-XV): atti del Convegno Internazionale di Studi, Roma, 27–29 marzo 2014. Roma: École française de Rome & Bari: Edipuglia, pp. 583–96.Google Scholar
Henderson, J., An, J. & Ma, H. 2018. The Archaeometry and Archaeology of Ancient Chinese Glass: A Review. Archaeometry, 60: 88104. https://doi.org/10.1111/arcm.12368CrossRefGoogle Scholar
Henderson, J., Chenery, S., Faber, E. & Kröger, J. 2016. The Use of Electron Probe Microanalysis and Laser Ablation-Inductively Coupled Plasma-Mass Spectrometry for the Investigation of 8th–14th Century Plant Ash Glasses from the Middle East. Microchemical Journal, 128: 134–52. https://doi.org/10.1016/j.microc.2016.03.013CrossRefGoogle Scholar
Ibn Ḥayyān, 2001. Crónica de los emires Alḥakam I y Abdarraḥmān II entre los años 796 y 847 [Almuqtabis II-1]. Trans. by M. Makkī, Alī & Corriente, F.. Zaragoza: La Aljaferia.Google Scholar
Krueger, I. 2014. Islamic Lead Glass and Mῑnā. Journal of Glass Studies, 56: 6184.Google Scholar
Malpica Cuello, A. ed. 2013. Mil años de Madinat Ilbira. Granada: Fundación El Legado Andalusí.Google Scholar
Mason, R.B. & Tite, M.S. 1997. The Beginnings of Tin-Opacification of Pottery Glazes. Archaeometry, 39: 4158. https://doi.org/10.1111/j.1475-4754.1997.tb00789.xCrossRefGoogle Scholar
Mirti, P., Davit, P., Gulmini, M. & Saguì, L. 2001. Glass Fragments from the Crypta Balbi in Rome: The Composition of Eighth-Century Fragments. Archaeometry, 43: 491502. https://doi.org/10.1111/1475-4754.00032CrossRefGoogle Scholar
Mirti, P., Lepora, A. & Saguì, L. 2000. Scientific Analysis of Seventh-Century Glass Fragments from the Crypta Balbi in Rome. Archaeometry, 42: 359–74. https://doi.org/10.1111/j.1475-4754.2000.tb00887.xCrossRefGoogle Scholar
Molera, J., Carvajal López, J.C., Molina, G. & Pradell, T. 2018. Glazes, Colourants, and Decorations in Early Islamic Glazed Ceramics from the Vega of Granada (9th to 12th Centuries ce). Journal of Archaeological Science: Reports, 21: 1141–51. https://doi.org/10.1016/j.jasrep.2017.05.017Google Scholar
Molera, J., Pradell, T., Salvadó, N. & Vendrell, M. 2009. Lead Frits in Islamic and Hispano Moresque Glazed Productions. In: Shortland, A., Freestone, I. & Rehren, T., eds. From Mine to Microscope: Advances in the Study of Ancient Technology. Oxford: Oxbow Books, pp. 110.Google Scholar
Ocaña, M. 1963. Notas sobre la Córdoba de Ibn Hazm. al-Mulk, 3: 5362.Google Scholar
Oliver, P. 1961. Islamic Relief Cut Glass: A Suggested Chronology. Journal of Glass Studies, 3: 929.Google Scholar
Paynter, S. 2001. The Development of Vitreous Materials in the Ancient Near East and Egypt (unpublished DPhil dissertation, University of Oxford).Google Scholar
Phelps, M., Freestone, I.C., Gorin-Rosen, Y. & Gratuze, B. 2016. Natron Glass Production and Supply in the Late Antique and Early Medieval Near East: The Effect of the Byzantine-Islamic Transition. Journal of Archaeological Science, 75: 5771. https://doi.org/10.1016/j.jas.2016.08.006CrossRefGoogle Scholar
Piñero, J.M., Navas, J.R. & Salinas, J.M. 2009. Memoria preliminar de actividad arqueológica preventiva C/ Gitanos, 8, Córdoba (unpublished work).Google Scholar
Pollak, R. 2017. The Early Islamic Green Lead Glass from the Excavations at Caesarea Maritima, Israel. In: Wolf, S. & de Pury-Gysel, A., eds. Annales Fribourg/Romont 7–11 septembre 2015 du 20e Congrès de l'Association Internationale pour l'Histoire du Verre. Romont: Association Internationale pour l'Histoire du Verre, pp. 288–92.Google Scholar
Rontomé, E. 2006. El vidrio andalusí. In: Rontomé, E. & Pastor, P. eds. Vidrio islámico en al-Andalus: exposición Real Fábrica de Cristales de La Granja, noviembre de 2006-abril de 2007. Cuenca: Fundación Centro Nacional del Vidrio, pp. 3750.Google Scholar
Salinas, E. 2013. Cerámica vidriada de época emiral en Córdoba. Arqueología y Territorio Medieval, 20: 6196.Google Scholar
Salinas, E. & Pradell, T. 2018. The Transition from Lead Transparent to Tin-Opacified Productions in the Western Islamic Lands: al-Andalus, c. 875–929 ce. Journal of Archaeological Science, 94: 111. https://doi.org/10.1016/j.jas.2018.03.010CrossRefGoogle Scholar
Salinas, E. & Pradell, T. 2020. The Introduction of the Glaze in al-Andalus: Technological Waves and Oriental Influences. Libyan Studies, 51: 187. https://doi.org/10.1017/lis.2020.8Google Scholar
Salinas, E., Pradell, T. & Molera, J. 2018. Glaze Production at an Early Islamic Workshop in al-Andalus. Archaeological and Anthropological Sciences, 11: 2201–13. https://doi.org/10.1007/s12520-018-0666-yCrossRefGoogle Scholar
Schibille, N., De Juan, J., Casal, M.C. & Guerrot, C. 2020. Ex Novo Development of Lead Glassmaking in Early Umayyad Spain. Proceedings of the National Academy of Sciences of the United States of America, 117: 16243–49. https://doi.org/10.1073/pnas.2003440117CrossRefGoogle ScholarPubMed
Shindo, Y. 2007. Lead Glass Found in the Räya and the Monastery of Wâdï al-Tur Sites. In: Kawatoki, M., et al. eds. Archaeological Survey of the Räya/al-Tür Area on the Sinai Peninsula, Egypt, 2005 and 2006: Islamic Archaeology and Culture, Vol. 1. Tokyo: Middle Eastern Culture Center in Japan, pp. 572617.Google Scholar
Tite, M.S. 2008. Ceramic Production, Provenance, and Use: A Review. Archaeometry, 50: 216–31. https://doi.org/10.1111/j.1475-4754.2008.00391.xCrossRefGoogle Scholar
Tite, M.S., Freestone, I., Mason, R., Molera, J., Vendrell-Saz, M. & Wood, N. 1998. Lead Glazes in Antiquity: Methods of Production and Reasons for Use. Archaeometry, 40: 241–60. https://doi.org/10.1111/j.1475-4754.1998.tb00836.xCrossRefGoogle Scholar
Waksman, S.Y., Bouquillon, A., Cantin, N. & Katona, I. 2008. Approche archéométrique des premières “Byzantine Glazed White Wares” et de productions glaçurées romaines et romaines tardives. Rei Cretariae Romanae Fautorum Acta, 40: 531–36.Google Scholar
Walton, M.S. & Tite, M.S. 2010. Production Technology of Roman Lead-Glazed Pottery and its Continuance into Late Antiquity. Archaeometry, 52: 733–59. https://doi.org/10.1111/j.1475-4754.2009.00506.xCrossRefGoogle Scholar
Watson, O. 2014. Revisiting Samarra: The Rise of the Islamic Glazed Pottery. Beiträge zur islamischen Kunst und Archäologie, 4: 125–44.Google Scholar
Wood, N. 2001. The Influence of Glass Technology on Chinese Ceramics. Conference Paper for The International Ceramics Fair and Seminar published by Haughton International [online] [accessed 4 February 2021]. Available at: <https://www.haughton.com/articles/2017/4/11/mcupv49cf16tki2bchxz7wfu7cpol6>>Google Scholar
Wood, N., Doherty, C. & Rosser-Owen, M. 2009. A Technological Study of Iraqi Imitations of Chinese Changsha Wares and Chinese Sancai Wares Found at Samarra. Gu Taoci Kexue Jishu (Proceedings of the International Symposium on Ancient Ceramics 8). Beijing: ISAC, pp. 154–80.Google Scholar
Wypyski, M.T. 2015. Chemical Analysis of Early Islamic Glass from Nishapur. Journal of Glass Studies, 57: 121–36.Google Scholar
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