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Tytuł artykułu

Radiocarbon measurements of iron girders from Aachen cathedral

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Radiocarbon dating of ancient iron and steel has been successfully demonstrated over the past decades. Yet, interpretation of the results could get complicated in view of possible contamination with exogeneous carbon from a) old wood used to produce coal, b) flux additives such as calcites, and c) cutting tools used in sampling. The latter contamination can be minimized to below common measurement uncertainties. Sample material from two iron girders of the Carolingian Palace Chapel as well as from two iron beams from the Gothic Annex of Aachen Cathedral became available for radiocarbon dating during renovation work. In addition, wood and charcoal from the basement and the roof of the palace chapel were radiocarbon dated, providing information regarding the age range of wooden material used during the construction as well as an age reference for the iron dates. Radiocarbon measurements from the extracted carbon of the Carolingian iron girders are in good agreement with the historical erection dates, i.e. between CE793–813. In contrast, radiocarbon measurements from the iron beams of the Gothic Annex are highly variable due to a) contamination of iron with exogeneous carbon from recent reconstructions, i.e. welding of modern iron with a fossil carbon signature, and b) because of heterogeneous iron forged together, probably typical for medieval iron made by blast furnace technique.
Czasopismo
Rocznik
Tom
Strony
79--90
Opis fizyczny
Bibliogr. 18 poiz., rys., tab., zdj.
Twórcy
  • Leibniz-Laboratory for Radiometric Dating and Isotope Research, Kiel University, Kiel, Germany
Bibliografia
  • [1] Bronk Ramsey C., Lee S., 2013. Recent and planned developments of the program OxCal. Radiocarbon 55(3–4): 720–730.
  • [2] Cook A. C., Wadsworth J., Southon J. R., 2001. AMS radiocarbon dating of ancient iron artifacts: A new carbon extraction method in use at LLNL. Radiocarbon 43(2A): 221–227.
  • [3] Cresswell R. G., 1992. Radiocarbon dating of iron Artifacts. Radiocarbon 34(3): 898–905.
  • [4] Heckner U., 2009. Die Entwürfe von Magister Enghelbertus für das gotische Fenstermaßwerk in der Chorhalle des Aachener Münsters. INSITU. Zeitschrift für Architekturgeschichte 2(2/2009): 193–204.
  • [5] Hüls C. M., Grootes P. M., Nadeau M.-J., 2011. Sampling iron for radiocarbon dating: Influence of modern steel tools on 14C dating of ancient iron artifacts. Radiocarbon 53(1): 151–160.
  • [6] Hüls C. M., Meadows J., Rau A., 2019. Interpreting 14C measurements on 3rd-4th century AD iron artifacts from Nydam, Denmark. Radiocarbon 61(5): 1517–1529.
  • [7] Leroy S., L’Héritier M., Delqué-Kolic E., Dumoulin J.-P., Moreau C., Dillmann P., 2015. Consolidation or initial design? Radiocarbon dating of ancient iron alloys sheds light on the reinforcements of French Gothic Cathedrals. Journal of Archaeological Science 53: 190–201.
  • [8] Nadeau M.-J., Grootes P. M., 2013. Calculation of the compounded uncertainty of 14C AMS measurements. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 294: 420–425.
  • [9] Nadeau M.-J., Schleicher M., Grootes P. M., Erlenkeuser H., Gottdang A., Mous D. J. W., Sarnthein M. L., Willkomm H., 1997. The Leibniz-Labor AMS facility at the Christian-Albrechts University, Kiel, Germany. Nuclear Instruments and Methods in Physics Research B123: 22–30.
  • [10] Nadeau M.-J., Grootes P. M., Schleicher M., Hasselberg P., Rieck A., Bitterling M., 1998. Sample throughput and data quality at the Leibniz-Labor AMS facility. Radiocarbon 40: 239–245.
  • [11] Nakamura T., Hirasawa M., Igaki K., 1995. AMS radiocarbon dating of ancient oriental iron artifacts at Nagoya University. Radiocarbon 37(2): 629–636.
  • [12] Reimer P. J., Austin W. E. N., Bard E., Bayliss A., Blackwell P. G., Bronk Ramsey C., Butzin M., Cheng H., Edwards R. L., Friedrich M., Grootes P. M., Guilderson T. P., Hajdas I., Heaton T. J., Hogg A. G., Hughen K. A., Kromer B., Manning S. W., Muscheler R., Palmer J. G., Pearson C., van der Plicht J., Reimer R.W., Richards D. A., Scott E. M., Southon J. R., Turney C. S. M., Wacker L., Adolphi F., Büntgen U., Capano M., Fahrni S. M., Fogtmann-Schulz A., Friedrich R., Köhler P., Kudsk S., Miyake F., Olsen J., Reinig F., Sakamoto M., Sookdeo A., Talamo S., 2020. The Intcal20 Northern Hemisphere Radiocarbon Age Calibration Curve (0–55 CAL kBP). Radiocarbon 62(4): 1–33.
  • [13] Raupach M., Bruns M., Warkus J., 2003. Untersuchungen an Vormittelalterlichen Ringankern des Doms zu Aachen (Investigations on pre-Medieval ring beams oft he Aachen Cathedral). Report of IBAC Aachen, Institut für Bauforschung, Rheinisch-Westfälisch Technische Hochschule, 2p.
  • [14] Scharf A., Kretschmer W., Morgenroth G., Uhl T., Kritzler K., Hunger K., Pernicka E., 2004. Radiocarbon dating of iron artifacts at the Erlangen AMS Facility. Radiocarbon 46(1): 175–180.
  • [15] Schmidt B., Heckner U., Maintz H., Neyes-Eiden M., Frank T., Schaub A., 2009. Die Hölzer aus dem karolingischen Oktogon der Aachener Pfalzkirche – Möglichkeiten einer dendrochronologischen Datierung. Jahrbuch Der Rheinischen Denkmalpflege 40/41: 220–235.
  • [16] Stuiver M., Polach H. A., 1977. Discussion: reporting of 14C data. Radiocarbon 19(3): 355–363.
  • [17] Van der Merwe N. J., 1969. The carbon 14-dating of iron. The University of Chicago Press.
  • [18] Yalcin, Ü., 2004. Metallurgische Untersuchung der eisernen Ringanker aus dem karolingischen Mauerwerk des Doms zu Aachen (Metallugical investigations of the iron ring beams of the karolingean brickwork of the Aachen Cathedral). Unpublished report Deutsches Bergbau-Museum Bochum, Forschungsbereich Archäometallurgie, 12p.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa nr POPUL/SP/0154/2024/02 w ramach programu "Społeczna odpowiedzialność nauki II" - moduł: Popularyzacja nauki i promocja sportu (2025).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-65023844-47e2-4c10-bea2-a0783ccefa6d
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