The Campanian Ignimbrite and Codola tephra layers: Two temporal/stratigraphic markers for the Early Upper Palaeolithic in southern Italy and eastern Europe
Tephra layers from archaeological sites in southern Italy and eastern Europe stratigraphically associated with cultural levels containing Early Upper Palaeolithic industry were analysed. The results confirm the occurrence of the Campanian Ignimbrite tephra (CI; ca. 40 cal ka BP) at Castelcivita Cave...
Published in: | Journal of Volcanology and Geothermal Research |
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Language: | English |
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Elsevier
2008
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Online Access: | http://hdl.handle.net/2122/4827 http://hdl.handle.net/2122/2883 https://doi.org/10.1016/j.jvolgeores.2007.10.007 |
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Earth-Prints (Istituto Nazionale di Geofisica e Vulcanologia) |
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Campanian Ignimbrite Early Upper Palaeolithic Codola Plinian eruption south-eastern Europe 04. Solid Earth::04.08. Volcanology::04.08.05. Volcanic rocks 04. Solid Earth::04.08. Volcanology::04.08.08. Volcanic risk 05. General::05.02. Data dissemination::05.02.03. Volcanic eruptions |
spellingShingle |
Campanian Ignimbrite Early Upper Palaeolithic Codola Plinian eruption south-eastern Europe 04. Solid Earth::04.08. Volcanology::04.08.05. Volcanic rocks 04. Solid Earth::04.08. Volcanology::04.08.08. Volcanic risk 05. General::05.02. Data dissemination::05.02.03. Volcanic eruptions Giaccio, B. Isaia, R. Fedele, F. G. Di Canzio, E. Hoffecker, J. Ronchitelli, A. Sinitsyn, A. A. Anikovich, M. Lisitsyn, S. Popov, V. V. The Campanian Ignimbrite and Codola tephra layers: Two temporal/stratigraphic markers for the Early Upper Palaeolithic in southern Italy and eastern Europe |
topic_facet |
Campanian Ignimbrite Early Upper Palaeolithic Codola Plinian eruption south-eastern Europe 04. Solid Earth::04.08. Volcanology::04.08.05. Volcanic rocks 04. Solid Earth::04.08. Volcanology::04.08.08. Volcanic risk 05. General::05.02. Data dissemination::05.02.03. Volcanic eruptions |
description |
Tephra layers from archaeological sites in southern Italy and eastern Europe stratigraphically associated with cultural levels containing Early Upper Palaeolithic industry were analysed. The results confirm the occurrence of the Campanian Ignimbrite tephra (CI; ca. 40 cal ka BP) at Castelcivita Cave (southern Italy), Temnata Cave (Bulgaria) and in the Kostenki–Borshchevo area of the Russian Plain. This tephra, originated from the largest eruption of the Phlegrean Field caldera, represents the widest volcanic deposit and one of the most important temporal/stratigraphic markers of western Eurasia. At Paglicci Cave and lesser sites in the Apulia region we recognise a chemically and texturally different tephra, which lithologically, chronologically and chemically matches the physical and chemical characteristics of the Plinian eruption of Codola; a poorly known Late Pleistocene explosive event from the Neapolitan volcanoes, likely Somma–Vesuvius. For this latter, we propose a preliminary age estimate of ca. 33 cal ka BP and a correlation to the widespread C-10 marine tephra of the central Mediterranean. The stratigraphic position of both CI and Codola tephra layers at Castelcivita and Paglicci help date the first and the last documented appearance of Early Upper Palaeolithic industries of southern Italy to ca. 41–40 and 33 cal ka BP, respectively, or between two interstadial oscillations of the Monticchio pollen record – to which the CI and Codola tephras are physically correlated – corresponding to the Greenland interstadials 10–9 and 5. In eastern Europe, the stratigraphic and chronometric data seem to indicate an earlier appearance of the Early Upper Palaeolithic industries, which would predate of two millennia at least the overlying CI tephra. The tephrostratigraphic correlation indicates that in both regions the innovations connected with the so-called Early Upper Palaeolithic – encompassing subsistence strategy and stone tool technology – appeared and evolved during one of the most unstable climatic phases of ... |
author2 |
Giaccio, B.; Istituto di Geologia ambientale e Geoingegneria, CNR, Via Bolognola 7, 00138 Rome, Italy Isaia, R.; Istituto Nazionale di Geofisica e Vulcanologia, Sezione OV, Napoli, Italia Fedele, F. G.; Laboratorio di Antropologia, Dipartimento delle Scienze biologiche, Università di Napoli “Federico II”, Naples, Italy Di Canzio, E.; Dipartimento di Scienze della Terra, Università di Roma “La Sapienza”, Rome, Italy Hoffecker, J.; Institute of Arctic and Alpine Research, University of Colorado, Boulder, USA Ronchitelli, A.; Dipartimento di Archeologia e Storia delle Arti, Università di Pisa, Pisa, Italy Sinitsyn, A. A.; Institute of the History of Material Culture, Russian Academy of Sciences, Petersburg, Russia Anikovich, M.; Institute of the History of Material Culture, Russian Academy of Sciences, Petersburg, Russia Lisitsyn, S.; Institute of the History of Material Culture, Russian Academy of Sciences, Petersburg, Russia Popov, V. V. Istituto di Geologia ambientale e Geoingegneria, CNR, Via Bolognola 7, 00138 Rome, Italy Istituto Nazionale di Geofisica e Vulcanologia, Sezione OV, Napoli, Italia Laboratorio di Antropologia, Dipartimento delle Scienze biologiche, Università di Napoli “Federico II”, Naples, Italy Dipartimento di Scienze della Terra, Università di Roma “La Sapienza”, Rome, Italy Institute of Arctic and Alpine Research, University of Colorado, Boulder, USA Dipartimento di Archeologia e Storia delle Arti, Università di Pisa, Pisa, Italy Institute of the History of Material Culture, Russian Academy of Sciences, Petersburg, Russia #PLACEHOLDER_PARENT_METADATA_VALUE# |
format |
Article in Journal/Newspaper |
author |
Giaccio, B. Isaia, R. Fedele, F. G. Di Canzio, E. Hoffecker, J. Ronchitelli, A. Sinitsyn, A. A. Anikovich, M. Lisitsyn, S. Popov, V. V. |
author_facet |
Giaccio, B. Isaia, R. Fedele, F. G. Di Canzio, E. Hoffecker, J. Ronchitelli, A. Sinitsyn, A. A. Anikovich, M. Lisitsyn, S. Popov, V. V. |
author_sort |
Giaccio, B. |
title |
The Campanian Ignimbrite and Codola tephra layers: Two temporal/stratigraphic markers for the Early Upper Palaeolithic in southern Italy and eastern Europe |
title_short |
The Campanian Ignimbrite and Codola tephra layers: Two temporal/stratigraphic markers for the Early Upper Palaeolithic in southern Italy and eastern Europe |
title_full |
The Campanian Ignimbrite and Codola tephra layers: Two temporal/stratigraphic markers for the Early Upper Palaeolithic in southern Italy and eastern Europe |
title_fullStr |
The Campanian Ignimbrite and Codola tephra layers: Two temporal/stratigraphic markers for the Early Upper Palaeolithic in southern Italy and eastern Europe |
title_full_unstemmed |
The Campanian Ignimbrite and Codola tephra layers: Two temporal/stratigraphic markers for the Early Upper Palaeolithic in southern Italy and eastern Europe |
title_sort |
campanian ignimbrite and codola tephra layers: two temporal/stratigraphic markers for the early upper palaeolithic in southern italy and eastern europe |
publisher |
Elsevier |
publishDate |
2008 |
url |
http://hdl.handle.net/2122/4827 http://hdl.handle.net/2122/2883 https://doi.org/10.1016/j.jvolgeores.2007.10.007 |
geographic |
Greenland |
geographic_facet |
Greenland |
genre |
Greenland |
genre_facet |
Greenland |
op_relation |
Journal of Volcanology and Geothermal Research /177(2008) Accorsi, C.A., Aiello, E., Bartolini, C., Castelletti, L., Rodolfi, G., Ronchitelli, A., 1979. Il giacimento Paleolitico di Serino (Avellino): stratigrafia, ambienti e paletnologia. Atti della Società Toscana di Scienze Naturali, Memorie A 86, 435–487. Alessio, M., Bella, F., Improta, S., Belluomini, G., Calderoni, G., Cortesi, C., Turi, B., 1974. University of Rome Carbon-14 dates XII. Radiocarbon 16, 358–367. Allen, J.R.M., Huntley, B., 2000. Weichselian palynological records from southern Europe: correlation and chronology. Quaternary International 73/74, 111–125. Allen, J.R.M., Brandt, U., Brauer, A., Hubbertens, A.W., Huntley, B., Keller, J., Kraml, M., Mackensen, A., Mingram, J., Negendank, J.F.W., Nowaczyk, N.R., Oberhänsli, H., Watts,W.A.,Wulf, S., Zolitschka, B., 1999. Rapid environmental changes in southern Europe during the last glacial period. Nature 400, 740–743. Andersen, K.K., Svensson, A., Rasmussen, S.O., Steffensen, J.P., Johnsen, S.J., Bigler, M., Ro thlisberger, R., Ruth, U., Siggaard-Andersen, M.-L., Dahl-Jensen, D., Vinther, B.M., Clausen, H.B., 2006. The Greenland Ice Core Chronology 2005, 15–42 ka. Part 1: constructing the time scale. Quaternary Science Reviews, 25, 3246–3257. Anikovich, M.V., 1992. Early Upper Paleolithic industries of Eastern Europe. Journal of World Prehistory 6 (2), 205–245. Anikovich, M.V., Sinitsyn, A.A., Hoffecker, J.F., Holliday, V.T., Popov, V.V., Lisitsyn, S.N., Forman, S.L., Levkovskaya, G.M., Pospelova, G.A., Kuz'mina, I.E., Burova, N.D., Goldberg, P., Macphail, R.I., Giaccio, B., Praslov, N.D., 2007. Early Upper Paleolithic in eastern Europe and implications for the dispersal of modern humans. Science 315, 223–226. Ayuso, R.A., De Vivo, B., Rolandi, G., Seal, R.R., Paone, A., 1998. Geochemical and isotopic (Nd–Pb–Sr–O) variations bearing on the genesis of volcanic rocks from Vesuvius, Italy. Journal of Volcanology and Geothermal Research 82, 53–78. Barberi, F., Innocenti, F., Lirer, L., Munno, R., Pescatore, T.S., Santacroce, R., 1978. The Campanian Ignimbrite: a major prehistoric eruption in the Neapolitan area (Italy). Bulletin of Volcanology 41, 10–22. Barberi, F., Cassano, E., La Torre, P., Sbrana, A., 1991. Structural evolution of Campi Flegrei Caldera in light of volcanological and geophysical data. Journal of Volcanology and Geothermal Research 48 (1/2), 33–49. Bond, G., Heinrich, H., Broecker, W., Labeyrie, L., McManus, J., Andrews, J., Huon, S., Jantschik, R., Clases, S., Simet, C., Tedesco, K., Klas, M., Bonani, G., Ivy, S., 1992. Evidence for massive discharges of icebergs into North Atlantic Ocean during the last glacial period. Nature 360, 245–249. Brocchini, D., Principe, C., Castradori, D., Laurenzi, M.A., Gorla, L., 2001. Quaternary evolution of the southern sector of the Campanian Plain and early Somma– Vesuvius activity: insights from the Trecase1 well. Mineralogy and Petrology 73, 67–91. Cacho, I.,Grimalt, J.O., Pelejero, C., Canales,M., Sierro, F.J., Abel Flores, J., Shackleton,M.,1999. Dansgaard–Oeschger and Heinrich event imprints in Alboran Sea paleotemperatures. Paleoceanography 14, 698–705. Calanchi, N., Dinelli, E., 2008. Tephrostratigraphy for the last 170 ka in sedimentary successions from the Adriatic Sea. Journal of Volcanology and Geothermal Research 177, 81–95. Calanchi, N., Cattaneo, A., Dinelli, E., Gasparotto, G., Lucchini, F., 1998. Tephra layers in Late Quaternary sediments of the Central Adriatic Sea. Marine Geology 149, 191–209. Civetta, L., Orsi, G., Pappalardo, L., Fisher, R.V., Heiken, G., Ort, M., 1997. Geochemical zoning, mingling, eruptive dynamics and depositional processes — the Campanian Ignimbrite, Campi Flegrei caldera, Italy. Journal of Volcanology and Geothermal Research 75, 183–219. Combourieu Nebout, N., Turon, J.L., Zahn, R., Capotondi, L., Londeix, L., Pahnke, K., 2002. Enhanced aridity and atmospheric high-pressure stability over the western Mediterranean during the North Atlantic cold events of the past 50 k.y. Geology 30, 863–866. D'Errico, F., Sanchez Goñi, M.F., 2003. Neandertal extinction and the millennial scale climatic variability of OIS 3. Quaternary Science Reviews 22, 769–788. Dansgaard, W., Johnsen, S.J., Clausen, H.B., Dahl-Jensen, D., Gundestrup, N.S., Hammer, C.U., Hvidberg, C.S., Steffensen, J.P., Jouzel, J., Bond, G., 1993. Evidence for general instability of past climate from 250-Kyr ice-core record. Nature 364, 218–220. Davies, S.W., Gollop, P., 2003. The human presence in Europe during the Last Glacial Period II. climate tolerance and climate preferences of mid- and late glacial Hominids. In: van Andel, T.H., Davies,W. (Eds.), Neanderthals and Modern Humans in the European Landscape During the Last Glaciation: Archaeological Results of the Stage 3 Project. McDonald Institute for Archaeological Research, University of Cambridge, Cambridge, pp. 131–146. De Vivo, B., Rolandi, G., Gans, P.B., Calvert, A., Bohrson,W.A., Spera, F.J., Belkin, H.E., 2001. Newconstraints on the pyroclastic eruptive history of the Campanian volcanic Plain (Italy). Mineralogy and Petrology 73, 47–65. Di Girolamo, P., 1970. Differenziazione gravitativa e curve isochimiche nell'Ignimbrite Campana. Rendiconti della SocietaÁ Italiana Di Mineralogia E Petrologia 26, 547–588. Di Girolamo, P., Ghiara, M.R., Lirer, L., Munno, R., Rolandi, G., Stanzione, D., 1984. Vulcanologia e petrologia dei Campi Flegrei. Bollettino della Societa Geologica Italiana 103, 349–413. Di Vito, M., Sulpizio, R., Zanchetta, R., D'Orazio, M., 2008. The late Pleistocene pyroclastic deposits of the Campanian Plain: new insights on the explosive activity of Neapolitan volcanoes. Journal of Volcanology and Goethermal Research 177, 19–48. Fairbanks, R.G., Mortlocka, R.A., Chiua, T.-C., Caoa, L., Kaplana, A., Guildersonc, T.P., Fairbanks, T.W., Bloom, A.L., Grootes, P.M., Nadeau, M.-J., 2005. Radiocarbon calibration curve spanning 0 to 50,000 years BP based on paired 230Th/234U/238U and 14C dates on pristine corals. Quaternary Science Reviews 24, 1781–1796. Fedele, F.G., Giaccio, B., 2007. Paleolithic cultural change in western Eurasia across the 40,000 BP timeline: continuities and environmental forcing. In: Reddy, P Chenna (Ed.), Exploring the Mind of Ancient Man. Festschrift to Robert G. Bednarik. Research India Press, New Delhi, pp. 292–316. Fedele, F.G., Giaccio, B., Isaia, R., Orsi, G., 2002. Ecosystem impact of the Campanian Ignimbrite eruption in Late Pleistocene Europe. Quaternary Research 57, 420–424. Fedele, F.G., Giaccio, B., Isaia, R., Orsi, G., 2003. The Campanian Ignimbrite eruption, Heinrich event 4 and the Palaeolithic change in Europe: a high-resolution investigation. In: Robock, A., Oppenheimer, C. (Eds.), “Volcanism and Earth's Atmosphere”, 139. AGU Geophysical Monograph, Washington, USA, pp. 301–325. Fedele, F.G., Giaccio, B., Isaia, R., Orsi, G., Carrol, M., Scaillet, B., in press. The Campanian Ignimbrite factor: towards a reappraisal of the Middle to Upper Palaeolithic “transition”. In J. Grattan and R. Torrence (eds.) “Living under the shadow: The archaeological, cultural and environmental impact of volcanic eruptions” (One World Archaeology n.s. 3). London, UK: UCL Press/Cavendish Publishing. Ferrier, C., 2000. Correlations stratigraphiques des sediments interpléniglaciaires. In: Ginter, B., et al. (Ed.), “Temnata Cave. Excavations in Karlukovo Karst area, Bulgaria” Cracow, vol. 2. Jagellonian University Press, pp. 31–36. Fisher, R.V., Orsi, G., Ort, M., Heiken, G., 1993. Mobility of a large-volume pyroclastic flow — emplacement of the Campanian ignimbrite, Italy. Journal of Volcanology and Geothermal Research 56, 205–220. Franco, P., 1900. Tufo della Campania. Bollettino Società Naturalisti XIV. Fumanal, M.P., 1997. La Cueva de Castelcivita. Estudio sedimentológico. In: Gambassini, P. (Ed.), “Il Paleolitico di Castelcivita, culture eambiente”. ElectaNapoli,Napoli,pp.19–32. Gambassini, P., 1997. Il Paleolitico di Castelcivita, culture e ambiente. Electa Napoli. Gernik, V.V., Guskova, E.G., 2002. Paleomagnetic evidences for sediment sequences of Kostenki 14 (Markina gora). In: Sintsyn, A.A., Sergin, V.Ya., Hoffecker, J.F. (Eds.), “Trends in the Evolution of the East European Palaeolithic — Kostenki in the Context of the Palaeolithic of Eurasia. Proceedings of Kostenki expedition IHMC RAS, ser., Research, 1, pp. 247–249. Giaccio, B., 2005. L'eruzione dell'Ignimbrite Campana (c. 40 ka BP), oscillazioni climatiche sub-orbitali e i cambiamenti bioculturali dell'OIS 3 europeo. Doctoral Thesis, Università di Napoli “Federico II” pp. 164, with a short version in English. Available on-line: www.fedoa.unina.it/583/. Giaccio, B., Coppola, D., 2000. Note preliminari sul contesto stratigrafico e paleoecologico del sito “Tana delle iene” (CeglieMessapica, Brindisi, SE Italia). Il Quaternario 13 (1/2), 5–20. Giaccio, B., Rolfo, M.F., Bozzato, S., Galadini, F., Messina, P., Silvestrini, M., Sposato, A., 2004. La risposta ambientale ed umana alle oscillazioni climatiche sub-orbitali dell'OIS3: evidenze geoarcheologiche dalla Piana di Colfiorito (Appennino centrale). Il Quaternario 17 (2/1), 239–256. Giaccio, B., Hajdas, I., Peresani, M., Fedele, F.G., Isaia, R., 2006. The Campanian Ignimbrite and its relevance for the timing of the Middle to Upper Palaeolithic shift. In: Conard, N.J. (Ed.), “When Neanderthals and Modern Humans Met”. Tübingen Publications in Prehistory. Kerns Verlag, Tübingen, pp. 343–375. Ginter, B., Kozłowski, J.K., 1992. The archaeological sequence. In: Kozłowski, J.K., Laville, H., Ginter, B. (Eds.), “Temnata Cave. Excavations in Karlukovo Karst area, Bulgaria”, vol.1. Jagellonian University Press, Cracow, pp. 289–294. Grootes, P.M., Stuiver, M., White, J.W.C., Johnsen, S., Jouzel, J., 1993. Comparison of oxygen isotope records from the GISP2 and GRIP Greenland ice cores. Nature 366, 552–554. Guillou, H., Singer, B.S., Laj, C., Kissel, C., Scaillet, S., Jicha, B.R., 2004. On the age of the Laschamp geomagnetic excursion. Earth and Planetary Science Letters 227, 331–343. Hoffecker, J.F., 2002. Desolate Landscapes: Ice-Age Settlement in Eastern Europe. Rutgers University Press, New Brunswick. Holliday, V.T., Hoffecker, J.F., Goldberg, P., Macphail, R.I., Forman, S.L., Anikovich, M., Sinitsyn, A., 2007. Geoarchaeology of the Kostenki–Borshchevo sites, Don River, Russia. Geoarchaeology: An International Journal 22 (2), 183–230. Johnsen, S.J., Dahl-Jensen, D., Gundestrup, N., Steffensen, J.P., Clausen, H.B., Miller, H., Masson-Delmotte, V., Sveinbjornsdottir, A.E., White, J., 2001. Oxygen isotope and palaeotemperature records from six Greenland ice-core stations: Camp Century, Dye-3, GRIP, GISP2, Renland and NorthGRIP. Journal of Quaternary Science 16, 299–307. Jöris, O.,Weninger, B., 1998. Extension of the 14-C calibration curve to ca. 40,000 cal BC by synchronizing Greenland 18O/16O ice core records and North Atlantic Foraminifera profiles: a comparison with U/Th coral data. Radiocarbon 40, 495–504. Jöris, O., Fernández, E.Á., Weninger, B., 2003. Radiocarbon evidence of the Middle to Upper Palaeolithic transition in southwestern Europe. Trabajos de Prehistoria 60 (2), 15–38. Klein, R.G., 1969. Man and Culture in the Late Pleistocene. A Case Study. Chandler, San Francisco. Kozłowski, J.K., 1998. The Middle and the Early Upper Paleolitic around the Black Sea. In: Akazawa, T., Aoki, K., Bar-Yosef, O. (Eds.), “Neandertals and Modern Humans in Western Asia”. Plenum Press, New York, pp. 461–482. Lanphere, M.A., 2003. Application of K–Ar dating to the chronology of young volcanic centers. Eos. Trans. AGU, 84(46), Fall Meet. Suppl., Abstract. Lazukov, G.I., 1982. Kharakteristika chetvertichnykh otlozhenii raiona. In: Praslov, N.D., Rogachev, A.N. (Eds.), “Paleolit Kostenkovsko–Borshchevskogo raiona na Donu” 1879–1979. Nauka, Leningrad, pp. 13–37. Le Bas, M.J., Le Maitre, R.W., Streckeisen, A., Zanettin, B., 1986. A chemical classification of volcanic rocks based on the total alkali-silica diagram. Journal of Petrology 27, 745–750. Levkovskaya, G.M., et al., 2005. Klimatostratigrafiya drevneishikh paleoliticheskikh sloev stoyanki Kostenki 12 (Volkovskaya). In: Anikovich, M.V. (Ed.), “Problemy rannei pory verkhnego paleolita Kostenkovsko–Borshchevskogo raiona i sopredel'nykh terrirorii”,. Russian Academy of Sciences, Saint-Petersburg, pp. 93–130. Lirer, L., Rolandi, G., Rubin, M., 1991. 14C age of the “Museum Breccia” Campi Flegrei and its relevance for the origin of the Campanian Ignimbrite. Journal of Volcanology and Geothermal Research 48, 223–227. Marianelli, P., Sbrana, A., Proto, M., 2006. Magma chamber of the Campi Flegrei supervolcano at the time of eruption of the Campanian Ignimbrite. Geology, 34 (11), 937–940. Mayewski, P.A., Meeker, L.D., Twickler, M.S., Whitlow, S., Yang, Q., Berry Lyons, W., Prentice, M., 1997. Major features and forcing of high-latitude northern hemisphere atmospheric circulation using a 110,000-years-long glaciochemical series. Journal of Geophysical Research 102 (C12), 26345–26366. Meese, D.A., Gow, A.J., Alley, R.B., Zielinski, G.A., Grootes, P.M., Ram, M., Taylor, K.C., Mayewsky, P.A., Bolzan, J.F., 1997. The Greenland Ice Sheet Core Project 2 depth-age scale: methods and results. Journal of Geophysical Research 102 (C12), 26411–26423. Melekestsev, I.V., Kirianov, V.Y., Praslov, N.D., 1984. Catastrophic eruption in the Phlegrean Fields region (Italy) — possible source for a volcanic ash in late Pleistocene sediments of the European part of the USSR. Vulcanologija i Seismologija 3, 35–44. Melluso, L., Morra, V., Perrotta, A., Scarpati, C., Adabbo, M., 1995. The eruption of Breccia Museo (Campi Flegrei, Italy): fractional crystallization processes in a shallow, zoned magma chamber and implications for the eruptive dynamics. Journal of Volcanology and Geothermal Research 68, 325–339. Moreno, A., Cacho, I., Canals, M., Prins, M.A., Sánchez-Goñi, M.F., Grimalt, J.O.,Weltje, G.J., 2002. Saharan dust transport and high-latitude glacial climatic variability: the Alboran Sea record. Quaternary Research 58, 318–328. Moreno, A., Cacho, I., Canals, M., Grimalt, J.O., Sanchez-Vidal, A., 2004. Millennial -scale variability in the productivity signal from the Alboran Sea record, Western Mediterranean Sea. Palaeogeography, Palaeoclimatology, Palaeoecology 211, 205–219. Munno, R., Petrosino, P., 2004. New constraints on the occurrence of Y-3 Upper Pleistocene tephra marker layer in the Tyrrhenian Sea. Il Quaternario 17 (1), 11–20. Munno, R., Petrosino, P., 2007. The late Quaternary tephrostratigraphical record of the San Gregorio Magno basin (southern Italy). Journal of Quaternary Science 22, 247–266. Narcisi, B., Vezzoli, L., 1999. Quaternary stratigraphy of distal tephra layers in the Mediterranean — an overview. Global Planetary Change, 21, 31–50. Orsi, G., De Vita, S., di Vito, M.A., 1996. The restless, resurgent Campi Flegrei nested caldera (Italy): constraints on its evolution and configuration. Journal of Volcanology and Geothermal Research, 74, 179–214. Ort, M., Rosi, M., Anderson, C.A., 1999. Correlation of deposits and vent locations of the proximal Campanian Ignimbrite deposits, Campi Flegrei, Italy, based on natural remanent magnetization and anisotropy of magnetic susceptibility characteristics. Journal of Volcanology and Geothermal Research 91, 167–178. Ort, M., Orsi, G., Pappalardo, L., Fisher, R.V., 2003. Anisotropy of magnetic susceptibility studies of depositional processes in the Campanian Ignimbrite, Italy. Bulletin of Volcanology 65, 55–72. Palma di Cesnola, A., 1990. Gli scavi a Grotta Paglicci durante il 1990. Atti del 12o Conv. Nazionale “Preistoria-Protostoria-Storia della Daunia”, pp. 23–34. San Severo 14–16 dicembre 1990. Palma di Cesnola, A., 1993. La campagna 1991 a Grotta Paglicci. Atti del 13o Conv. Nazionale “Preistoria–Protostoria–Storia della Daunia”, pp. 9–13. San Severo 22–24 novembre 1991. Palma di Cesnola, A., 2001. Le Paléolithique Supérieur en Italie. Jérôme Million, Grenoble. Palma di Cesnola, A., 2004. Paglicci — l'Aurignaziano e Gravettiano antico. Claudio Grenzi editore, Foggia, p. 212. Paone, A., 2006. The geochemical evolution of the Mt. Somma–Vesuvious volcano. Mineralogy and Petrology 87, 53–80. Pappalardo, L., Civetta, L., De Vita, S., Di Vito, M.A., Orsi, G., Carandente, A., Fisher, R.V., 2002. Timing of magma extraction during the Campanian Ignimbrite eruption (Campi Flegrei caldera). Journal of Volcanology and Geothermal Research 114, 479–497. Paterne, M., 1992. Additional remarks on tephra layer from Temnata Cave. In: Kozłowski, J.K., Laville, H., Ginter, B. (Eds.), “Temnata Cave. Excavations in Karlukovo Karst area, Bulgaria”, vol. 1. Jagellonian University Press, Cracow, pp. 99–100. Paterne, M., Guichard, F., 1993. Triggering of volcanic pluses in the Campanian area, south Italy, by periodic deep magma influx. Journal of Geophysical Research 98 (B2), 1861–1873. Paterne, M., Guichard, F., Labeyrie, J., 1988. Explosive activity of the south Italian volcanoes during the past 80,000 years as determined by marine tephrochronology. Journal of Volcanology and Geothermal Research 34, 153–172. Paterne, M., Kallel, N., Labeyrie, L., Vautravers, M., Duplessy, J.C., Rossignol-Strick, M., Cortijo, E., Arnold, M., Fontugne, M., 1999. Hydrological relationship between the North Atlantic Ocean and the Mediterranean Sea during the past 15–75 kyr. Paleoceanography 14, 626–638. Popov, V.V., 1994. Quaternary small in Temnata Cave system. In: Ginter, B., Kozlowski, K., Laville,H. (Eds.), “Temnata Cave. Excavations in Karlukovo Karst area, Bulgaria”, vol.12. Jagellonian University Press, Cracow, pp. 11–53. Popov, V.V., 2000. The small mammals (Mammalia: Insectivora, Chiroptera, Lagomorpha, Rodentia) from Cave 16 and the paleoenvironmental changs durino the Later Pleistocene. In: Ginter, B., et al. (Ed.), “Temnata Cave. Excavations in Karlukovo Karst area, Bulgaria”, vol. 2 (1). Jagellonian University Press, Cracow, pp. 159–240. Pospelova, G.A., 2005. Rekognostsirovochnye paleomagnitnye issledovaniya porod paleoliticheskoi stoyanki Kostenki 12. In: Anikovich, M.V. (Ed.), “Problemy rannei pory verkhnego paleolita Kostenkovsko–Borshchevskogo raiona i sopredel'nykh terrirorii”. Russian Academy of Sciences, Saint-Petersburg, pp. 161–176 http://hdl.handle.net/2122/4827 http://hdl.handle.net/2122/2883 doi:10.1016/j.jvolgeores.2007.10.007 |
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ftingv:oai:www.earth-prints.org:2122/4827 2023-05-15T16:30:30+02:00 The Campanian Ignimbrite and Codola tephra layers: Two temporal/stratigraphic markers for the Early Upper Palaeolithic in southern Italy and eastern Europe Giaccio, B. Isaia, R. Fedele, F. G. Di Canzio, E. Hoffecker, J. Ronchitelli, A. Sinitsyn, A. A. Anikovich, M. Lisitsyn, S. Popov, V. V. Giaccio, B.; Istituto di Geologia ambientale e Geoingegneria, CNR, Via Bolognola 7, 00138 Rome, Italy Isaia, R.; Istituto Nazionale di Geofisica e Vulcanologia, Sezione OV, Napoli, Italia Fedele, F. G.; Laboratorio di Antropologia, Dipartimento delle Scienze biologiche, Università di Napoli “Federico II”, Naples, Italy Di Canzio, E.; Dipartimento di Scienze della Terra, Università di Roma “La Sapienza”, Rome, Italy Hoffecker, J.; Institute of Arctic and Alpine Research, University of Colorado, Boulder, USA Ronchitelli, A.; Dipartimento di Archeologia e Storia delle Arti, Università di Pisa, Pisa, Italy Sinitsyn, A. A.; Institute of the History of Material Culture, Russian Academy of Sciences, Petersburg, Russia Anikovich, M.; Institute of the History of Material Culture, Russian Academy of Sciences, Petersburg, Russia Lisitsyn, S.; Institute of the History of Material Culture, Russian Academy of Sciences, Petersburg, Russia Popov, V. V. Istituto di Geologia ambientale e Geoingegneria, CNR, Via Bolognola 7, 00138 Rome, Italy Istituto Nazionale di Geofisica e Vulcanologia, Sezione OV, Napoli, Italia Laboratorio di Antropologia, Dipartimento delle Scienze biologiche, Università di Napoli “Federico II”, Naples, Italy Dipartimento di Scienze della Terra, Università di Roma “La Sapienza”, Rome, Italy Institute of Arctic and Alpine Research, University of Colorado, Boulder, USA Dipartimento di Archeologia e Storia delle Arti, Università di Pisa, Pisa, Italy Institute of the History of Material Culture, Russian Academy of Sciences, Petersburg, Russia #PLACEHOLDER_PARENT_METADATA_VALUE# 2008 http://hdl.handle.net/2122/4827 http://hdl.handle.net/2122/2883 https://doi.org/10.1016/j.jvolgeores.2007.10.007 en eng Elsevier Journal of Volcanology and Geothermal Research /177(2008) Accorsi, C.A., Aiello, E., Bartolini, C., Castelletti, L., Rodolfi, G., Ronchitelli, A., 1979. Il giacimento Paleolitico di Serino (Avellino): stratigrafia, ambienti e paletnologia. Atti della Società Toscana di Scienze Naturali, Memorie A 86, 435–487. Alessio, M., Bella, F., Improta, S., Belluomini, G., Calderoni, G., Cortesi, C., Turi, B., 1974. University of Rome Carbon-14 dates XII. Radiocarbon 16, 358–367. Allen, J.R.M., Huntley, B., 2000. Weichselian palynological records from southern Europe: correlation and chronology. Quaternary International 73/74, 111–125. Allen, J.R.M., Brandt, U., Brauer, A., Hubbertens, A.W., Huntley, B., Keller, J., Kraml, M., Mackensen, A., Mingram, J., Negendank, J.F.W., Nowaczyk, N.R., Oberhänsli, H., Watts,W.A.,Wulf, S., Zolitschka, B., 1999. Rapid environmental changes in southern Europe during the last glacial period. Nature 400, 740–743. Andersen, K.K., Svensson, A., Rasmussen, S.O., Steffensen, J.P., Johnsen, S.J., Bigler, M., Ro thlisberger, R., Ruth, U., Siggaard-Andersen, M.-L., Dahl-Jensen, D., Vinther, B.M., Clausen, H.B., 2006. The Greenland Ice Core Chronology 2005, 15–42 ka. Part 1: constructing the time scale. Quaternary Science Reviews, 25, 3246–3257. Anikovich, M.V., 1992. Early Upper Paleolithic industries of Eastern Europe. Journal of World Prehistory 6 (2), 205–245. Anikovich, M.V., Sinitsyn, A.A., Hoffecker, J.F., Holliday, V.T., Popov, V.V., Lisitsyn, S.N., Forman, S.L., Levkovskaya, G.M., Pospelova, G.A., Kuz'mina, I.E., Burova, N.D., Goldberg, P., Macphail, R.I., Giaccio, B., Praslov, N.D., 2007. Early Upper Paleolithic in eastern Europe and implications for the dispersal of modern humans. Science 315, 223–226. Ayuso, R.A., De Vivo, B., Rolandi, G., Seal, R.R., Paone, A., 1998. Geochemical and isotopic (Nd–Pb–Sr–O) variations bearing on the genesis of volcanic rocks from Vesuvius, Italy. Journal of Volcanology and Geothermal Research 82, 53–78. Barberi, F., Innocenti, F., Lirer, L., Munno, R., Pescatore, T.S., Santacroce, R., 1978. The Campanian Ignimbrite: a major prehistoric eruption in the Neapolitan area (Italy). Bulletin of Volcanology 41, 10–22. Barberi, F., Cassano, E., La Torre, P., Sbrana, A., 1991. Structural evolution of Campi Flegrei Caldera in light of volcanological and geophysical data. Journal of Volcanology and Geothermal Research 48 (1/2), 33–49. Bond, G., Heinrich, H., Broecker, W., Labeyrie, L., McManus, J., Andrews, J., Huon, S., Jantschik, R., Clases, S., Simet, C., Tedesco, K., Klas, M., Bonani, G., Ivy, S., 1992. Evidence for massive discharges of icebergs into North Atlantic Ocean during the last glacial period. Nature 360, 245–249. Brocchini, D., Principe, C., Castradori, D., Laurenzi, M.A., Gorla, L., 2001. Quaternary evolution of the southern sector of the Campanian Plain and early Somma– Vesuvius activity: insights from the Trecase1 well. Mineralogy and Petrology 73, 67–91. Cacho, I.,Grimalt, J.O., Pelejero, C., Canales,M., Sierro, F.J., Abel Flores, J., Shackleton,M.,1999. Dansgaard–Oeschger and Heinrich event imprints in Alboran Sea paleotemperatures. Paleoceanography 14, 698–705. Calanchi, N., Dinelli, E., 2008. Tephrostratigraphy for the last 170 ka in sedimentary successions from the Adriatic Sea. Journal of Volcanology and Geothermal Research 177, 81–95. Calanchi, N., Cattaneo, A., Dinelli, E., Gasparotto, G., Lucchini, F., 1998. Tephra layers in Late Quaternary sediments of the Central Adriatic Sea. Marine Geology 149, 191–209. Civetta, L., Orsi, G., Pappalardo, L., Fisher, R.V., Heiken, G., Ort, M., 1997. Geochemical zoning, mingling, eruptive dynamics and depositional processes — the Campanian Ignimbrite, Campi Flegrei caldera, Italy. Journal of Volcanology and Geothermal Research 75, 183–219. Combourieu Nebout, N., Turon, J.L., Zahn, R., Capotondi, L., Londeix, L., Pahnke, K., 2002. Enhanced aridity and atmospheric high-pressure stability over the western Mediterranean during the North Atlantic cold events of the past 50 k.y. Geology 30, 863–866. D'Errico, F., Sanchez Goñi, M.F., 2003. Neandertal extinction and the millennial scale climatic variability of OIS 3. Quaternary Science Reviews 22, 769–788. Dansgaard, W., Johnsen, S.J., Clausen, H.B., Dahl-Jensen, D., Gundestrup, N.S., Hammer, C.U., Hvidberg, C.S., Steffensen, J.P., Jouzel, J., Bond, G., 1993. Evidence for general instability of past climate from 250-Kyr ice-core record. Nature 364, 218–220. Davies, S.W., Gollop, P., 2003. The human presence in Europe during the Last Glacial Period II. climate tolerance and climate preferences of mid- and late glacial Hominids. In: van Andel, T.H., Davies,W. (Eds.), Neanderthals and Modern Humans in the European Landscape During the Last Glaciation: Archaeological Results of the Stage 3 Project. McDonald Institute for Archaeological Research, University of Cambridge, Cambridge, pp. 131–146. De Vivo, B., Rolandi, G., Gans, P.B., Calvert, A., Bohrson,W.A., Spera, F.J., Belkin, H.E., 2001. Newconstraints on the pyroclastic eruptive history of the Campanian volcanic Plain (Italy). Mineralogy and Petrology 73, 47–65. Di Girolamo, P., 1970. Differenziazione gravitativa e curve isochimiche nell'Ignimbrite Campana. Rendiconti della SocietaÁ Italiana Di Mineralogia E Petrologia 26, 547–588. Di Girolamo, P., Ghiara, M.R., Lirer, L., Munno, R., Rolandi, G., Stanzione, D., 1984. Vulcanologia e petrologia dei Campi Flegrei. Bollettino della Societa Geologica Italiana 103, 349–413. Di Vito, M., Sulpizio, R., Zanchetta, R., D'Orazio, M., 2008. The late Pleistocene pyroclastic deposits of the Campanian Plain: new insights on the explosive activity of Neapolitan volcanoes. Journal of Volcanology and Goethermal Research 177, 19–48. Fairbanks, R.G., Mortlocka, R.A., Chiua, T.-C., Caoa, L., Kaplana, A., Guildersonc, T.P., Fairbanks, T.W., Bloom, A.L., Grootes, P.M., Nadeau, M.-J., 2005. Radiocarbon calibration curve spanning 0 to 50,000 years BP based on paired 230Th/234U/238U and 14C dates on pristine corals. Quaternary Science Reviews 24, 1781–1796. Fedele, F.G., Giaccio, B., 2007. Paleolithic cultural change in western Eurasia across the 40,000 BP timeline: continuities and environmental forcing. In: Reddy, P Chenna (Ed.), Exploring the Mind of Ancient Man. Festschrift to Robert G. Bednarik. Research India Press, New Delhi, pp. 292–316. Fedele, F.G., Giaccio, B., Isaia, R., Orsi, G., 2002. Ecosystem impact of the Campanian Ignimbrite eruption in Late Pleistocene Europe. Quaternary Research 57, 420–424. Fedele, F.G., Giaccio, B., Isaia, R., Orsi, G., 2003. The Campanian Ignimbrite eruption, Heinrich event 4 and the Palaeolithic change in Europe: a high-resolution investigation. In: Robock, A., Oppenheimer, C. (Eds.), “Volcanism and Earth's Atmosphere”, 139. AGU Geophysical Monograph, Washington, USA, pp. 301–325. Fedele, F.G., Giaccio, B., Isaia, R., Orsi, G., Carrol, M., Scaillet, B., in press. The Campanian Ignimbrite factor: towards a reappraisal of the Middle to Upper Palaeolithic “transition”. In J. Grattan and R. Torrence (eds.) “Living under the shadow: The archaeological, cultural and environmental impact of volcanic eruptions” (One World Archaeology n.s. 3). London, UK: UCL Press/Cavendish Publishing. Ferrier, C., 2000. Correlations stratigraphiques des sediments interpléniglaciaires. In: Ginter, B., et al. (Ed.), “Temnata Cave. Excavations in Karlukovo Karst area, Bulgaria” Cracow, vol. 2. Jagellonian University Press, pp. 31–36. Fisher, R.V., Orsi, G., Ort, M., Heiken, G., 1993. Mobility of a large-volume pyroclastic flow — emplacement of the Campanian ignimbrite, Italy. Journal of Volcanology and Geothermal Research 56, 205–220. Franco, P., 1900. Tufo della Campania. Bollettino Società Naturalisti XIV. Fumanal, M.P., 1997. La Cueva de Castelcivita. Estudio sedimentológico. In: Gambassini, P. (Ed.), “Il Paleolitico di Castelcivita, culture eambiente”. ElectaNapoli,Napoli,pp.19–32. Gambassini, P., 1997. Il Paleolitico di Castelcivita, culture e ambiente. Electa Napoli. Gernik, V.V., Guskova, E.G., 2002. Paleomagnetic evidences for sediment sequences of Kostenki 14 (Markina gora). In: Sintsyn, A.A., Sergin, V.Ya., Hoffecker, J.F. (Eds.), “Trends in the Evolution of the East European Palaeolithic — Kostenki in the Context of the Palaeolithic of Eurasia. Proceedings of Kostenki expedition IHMC RAS, ser., Research, 1, pp. 247–249. Giaccio, B., 2005. L'eruzione dell'Ignimbrite Campana (c. 40 ka BP), oscillazioni climatiche sub-orbitali e i cambiamenti bioculturali dell'OIS 3 europeo. Doctoral Thesis, Università di Napoli “Federico II” pp. 164, with a short version in English. Available on-line: www.fedoa.unina.it/583/. Giaccio, B., Coppola, D., 2000. Note preliminari sul contesto stratigrafico e paleoecologico del sito “Tana delle iene” (CeglieMessapica, Brindisi, SE Italia). Il Quaternario 13 (1/2), 5–20. Giaccio, B., Rolfo, M.F., Bozzato, S., Galadini, F., Messina, P., Silvestrini, M., Sposato, A., 2004. La risposta ambientale ed umana alle oscillazioni climatiche sub-orbitali dell'OIS3: evidenze geoarcheologiche dalla Piana di Colfiorito (Appennino centrale). Il Quaternario 17 (2/1), 239–256. Giaccio, B., Hajdas, I., Peresani, M., Fedele, F.G., Isaia, R., 2006. The Campanian Ignimbrite and its relevance for the timing of the Middle to Upper Palaeolithic shift. In: Conard, N.J. (Ed.), “When Neanderthals and Modern Humans Met”. Tübingen Publications in Prehistory. Kerns Verlag, Tübingen, pp. 343–375. Ginter, B., Kozłowski, J.K., 1992. The archaeological sequence. In: Kozłowski, J.K., Laville, H., Ginter, B. (Eds.), “Temnata Cave. Excavations in Karlukovo Karst area, Bulgaria”, vol.1. Jagellonian University Press, Cracow, pp. 289–294. Grootes, P.M., Stuiver, M., White, J.W.C., Johnsen, S., Jouzel, J., 1993. Comparison of oxygen isotope records from the GISP2 and GRIP Greenland ice cores. Nature 366, 552–554. Guillou, H., Singer, B.S., Laj, C., Kissel, C., Scaillet, S., Jicha, B.R., 2004. On the age of the Laschamp geomagnetic excursion. Earth and Planetary Science Letters 227, 331–343. Hoffecker, J.F., 2002. Desolate Landscapes: Ice-Age Settlement in Eastern Europe. Rutgers University Press, New Brunswick. Holliday, V.T., Hoffecker, J.F., Goldberg, P., Macphail, R.I., Forman, S.L., Anikovich, M., Sinitsyn, A., 2007. Geoarchaeology of the Kostenki–Borshchevo sites, Don River, Russia. Geoarchaeology: An International Journal 22 (2), 183–230. Johnsen, S.J., Dahl-Jensen, D., Gundestrup, N., Steffensen, J.P., Clausen, H.B., Miller, H., Masson-Delmotte, V., Sveinbjornsdottir, A.E., White, J., 2001. Oxygen isotope and palaeotemperature records from six Greenland ice-core stations: Camp Century, Dye-3, GRIP, GISP2, Renland and NorthGRIP. Journal of Quaternary Science 16, 299–307. Jöris, O.,Weninger, B., 1998. Extension of the 14-C calibration curve to ca. 40,000 cal BC by synchronizing Greenland 18O/16O ice core records and North Atlantic Foraminifera profiles: a comparison with U/Th coral data. Radiocarbon 40, 495–504. Jöris, O., Fernández, E.Á., Weninger, B., 2003. Radiocarbon evidence of the Middle to Upper Palaeolithic transition in southwestern Europe. Trabajos de Prehistoria 60 (2), 15–38. Klein, R.G., 1969. Man and Culture in the Late Pleistocene. A Case Study. Chandler, San Francisco. Kozłowski, J.K., 1998. The Middle and the Early Upper Paleolitic around the Black Sea. In: Akazawa, T., Aoki, K., Bar-Yosef, O. (Eds.), “Neandertals and Modern Humans in Western Asia”. Plenum Press, New York, pp. 461–482. Lanphere, M.A., 2003. Application of K–Ar dating to the chronology of young volcanic centers. Eos. Trans. AGU, 84(46), Fall Meet. Suppl., Abstract. Lazukov, G.I., 1982. Kharakteristika chetvertichnykh otlozhenii raiona. In: Praslov, N.D., Rogachev, A.N. (Eds.), “Paleolit Kostenkovsko–Borshchevskogo raiona na Donu” 1879–1979. Nauka, Leningrad, pp. 13–37. Le Bas, M.J., Le Maitre, R.W., Streckeisen, A., Zanettin, B., 1986. A chemical classification of volcanic rocks based on the total alkali-silica diagram. Journal of Petrology 27, 745–750. Levkovskaya, G.M., et al., 2005. Klimatostratigrafiya drevneishikh paleoliticheskikh sloev stoyanki Kostenki 12 (Volkovskaya). In: Anikovich, M.V. (Ed.), “Problemy rannei pory verkhnego paleolita Kostenkovsko–Borshchevskogo raiona i sopredel'nykh terrirorii”,. Russian Academy of Sciences, Saint-Petersburg, pp. 93–130. Lirer, L., Rolandi, G., Rubin, M., 1991. 14C age of the “Museum Breccia” Campi Flegrei and its relevance for the origin of the Campanian Ignimbrite. Journal of Volcanology and Geothermal Research 48, 223–227. Marianelli, P., Sbrana, A., Proto, M., 2006. Magma chamber of the Campi Flegrei supervolcano at the time of eruption of the Campanian Ignimbrite. Geology, 34 (11), 937–940. Mayewski, P.A., Meeker, L.D., Twickler, M.S., Whitlow, S., Yang, Q., Berry Lyons, W., Prentice, M., 1997. Major features and forcing of high-latitude northern hemisphere atmospheric circulation using a 110,000-years-long glaciochemical series. Journal of Geophysical Research 102 (C12), 26345–26366. Meese, D.A., Gow, A.J., Alley, R.B., Zielinski, G.A., Grootes, P.M., Ram, M., Taylor, K.C., Mayewsky, P.A., Bolzan, J.F., 1997. The Greenland Ice Sheet Core Project 2 depth-age scale: methods and results. Journal of Geophysical Research 102 (C12), 26411–26423. Melekestsev, I.V., Kirianov, V.Y., Praslov, N.D., 1984. Catastrophic eruption in the Phlegrean Fields region (Italy) — possible source for a volcanic ash in late Pleistocene sediments of the European part of the USSR. Vulcanologija i Seismologija 3, 35–44. Melluso, L., Morra, V., Perrotta, A., Scarpati, C., Adabbo, M., 1995. The eruption of Breccia Museo (Campi Flegrei, Italy): fractional crystallization processes in a shallow, zoned magma chamber and implications for the eruptive dynamics. Journal of Volcanology and Geothermal Research 68, 325–339. Moreno, A., Cacho, I., Canals, M., Prins, M.A., Sánchez-Goñi, M.F., Grimalt, J.O.,Weltje, G.J., 2002. Saharan dust transport and high-latitude glacial climatic variability: the Alboran Sea record. Quaternary Research 58, 318–328. Moreno, A., Cacho, I., Canals, M., Grimalt, J.O., Sanchez-Vidal, A., 2004. Millennial -scale variability in the productivity signal from the Alboran Sea record, Western Mediterranean Sea. Palaeogeography, Palaeoclimatology, Palaeoecology 211, 205–219. Munno, R., Petrosino, P., 2004. New constraints on the occurrence of Y-3 Upper Pleistocene tephra marker layer in the Tyrrhenian Sea. Il Quaternario 17 (1), 11–20. Munno, R., Petrosino, P., 2007. The late Quaternary tephrostratigraphical record of the San Gregorio Magno basin (southern Italy). Journal of Quaternary Science 22, 247–266. Narcisi, B., Vezzoli, L., 1999. Quaternary stratigraphy of distal tephra layers in the Mediterranean — an overview. Global Planetary Change, 21, 31–50. Orsi, G., De Vita, S., di Vito, M.A., 1996. The restless, resurgent Campi Flegrei nested caldera (Italy): constraints on its evolution and configuration. Journal of Volcanology and Geothermal Research, 74, 179–214. Ort, M., Rosi, M., Anderson, C.A., 1999. Correlation of deposits and vent locations of the proximal Campanian Ignimbrite deposits, Campi Flegrei, Italy, based on natural remanent magnetization and anisotropy of magnetic susceptibility characteristics. Journal of Volcanology and Geothermal Research 91, 167–178. Ort, M., Orsi, G., Pappalardo, L., Fisher, R.V., 2003. Anisotropy of magnetic susceptibility studies of depositional processes in the Campanian Ignimbrite, Italy. Bulletin of Volcanology 65, 55–72. Palma di Cesnola, A., 1990. Gli scavi a Grotta Paglicci durante il 1990. Atti del 12o Conv. Nazionale “Preistoria-Protostoria-Storia della Daunia”, pp. 23–34. San Severo 14–16 dicembre 1990. Palma di Cesnola, A., 1993. La campagna 1991 a Grotta Paglicci. Atti del 13o Conv. Nazionale “Preistoria–Protostoria–Storia della Daunia”, pp. 9–13. San Severo 22–24 novembre 1991. Palma di Cesnola, A., 2001. Le Paléolithique Supérieur en Italie. Jérôme Million, Grenoble. Palma di Cesnola, A., 2004. Paglicci — l'Aurignaziano e Gravettiano antico. Claudio Grenzi editore, Foggia, p. 212. Paone, A., 2006. The geochemical evolution of the Mt. Somma–Vesuvious volcano. Mineralogy and Petrology 87, 53–80. Pappalardo, L., Civetta, L., De Vita, S., Di Vito, M.A., Orsi, G., Carandente, A., Fisher, R.V., 2002. Timing of magma extraction during the Campanian Ignimbrite eruption (Campi Flegrei caldera). Journal of Volcanology and Geothermal Research 114, 479–497. Paterne, M., 1992. Additional remarks on tephra layer from Temnata Cave. In: Kozłowski, J.K., Laville, H., Ginter, B. (Eds.), “Temnata Cave. Excavations in Karlukovo Karst area, Bulgaria”, vol. 1. Jagellonian University Press, Cracow, pp. 99–100. Paterne, M., Guichard, F., 1993. Triggering of volcanic pluses in the Campanian area, south Italy, by periodic deep magma influx. Journal of Geophysical Research 98 (B2), 1861–1873. Paterne, M., Guichard, F., Labeyrie, J., 1988. Explosive activity of the south Italian volcanoes during the past 80,000 years as determined by marine tephrochronology. Journal of Volcanology and Geothermal Research 34, 153–172. Paterne, M., Kallel, N., Labeyrie, L., Vautravers, M., Duplessy, J.C., Rossignol-Strick, M., Cortijo, E., Arnold, M., Fontugne, M., 1999. Hydrological relationship between the North Atlantic Ocean and the Mediterranean Sea during the past 15–75 kyr. Paleoceanography 14, 626–638. Popov, V.V., 1994. Quaternary small in Temnata Cave system. In: Ginter, B., Kozlowski, K., Laville,H. (Eds.), “Temnata Cave. Excavations in Karlukovo Karst area, Bulgaria”, vol.12. Jagellonian University Press, Cracow, pp. 11–53. Popov, V.V., 2000. The small mammals (Mammalia: Insectivora, Chiroptera, Lagomorpha, Rodentia) from Cave 16 and the paleoenvironmental changs durino the Later Pleistocene. In: Ginter, B., et al. (Ed.), “Temnata Cave. Excavations in Karlukovo Karst area, Bulgaria”, vol. 2 (1). Jagellonian University Press, Cracow, pp. 159–240. Pospelova, G.A., 2005. Rekognostsirovochnye paleomagnitnye issledovaniya porod paleoliticheskoi stoyanki Kostenki 12. In: Anikovich, M.V. (Ed.), “Problemy rannei pory verkhnego paleolita Kostenkovsko–Borshchevskogo raiona i sopredel'nykh terrirorii”. Russian Academy of Sciences, Saint-Petersburg, pp. 161–176 http://hdl.handle.net/2122/4827 http://hdl.handle.net/2122/2883 doi:10.1016/j.jvolgeores.2007.10.007 restricted Campanian Ignimbrite Early Upper Palaeolithic Codola Plinian eruption south-eastern Europe 04. Solid Earth::04.08. Volcanology::04.08.05. Volcanic rocks 04. Solid Earth::04.08. Volcanology::04.08.08. Volcanic risk 05. General::05.02. Data dissemination::05.02.03. Volcanic eruptions article 2008 ftingv https://doi.org/10.1016/j.jvolgeores.2007.10.007 2022-07-29T06:05:14Z Tephra layers from archaeological sites in southern Italy and eastern Europe stratigraphically associated with cultural levels containing Early Upper Palaeolithic industry were analysed. The results confirm the occurrence of the Campanian Ignimbrite tephra (CI; ca. 40 cal ka BP) at Castelcivita Cave (southern Italy), Temnata Cave (Bulgaria) and in the Kostenki–Borshchevo area of the Russian Plain. This tephra, originated from the largest eruption of the Phlegrean Field caldera, represents the widest volcanic deposit and one of the most important temporal/stratigraphic markers of western Eurasia. At Paglicci Cave and lesser sites in the Apulia region we recognise a chemically and texturally different tephra, which lithologically, chronologically and chemically matches the physical and chemical characteristics of the Plinian eruption of Codola; a poorly known Late Pleistocene explosive event from the Neapolitan volcanoes, likely Somma–Vesuvius. For this latter, we propose a preliminary age estimate of ca. 33 cal ka BP and a correlation to the widespread C-10 marine tephra of the central Mediterranean. The stratigraphic position of both CI and Codola tephra layers at Castelcivita and Paglicci help date the first and the last documented appearance of Early Upper Palaeolithic industries of southern Italy to ca. 41–40 and 33 cal ka BP, respectively, or between two interstadial oscillations of the Monticchio pollen record – to which the CI and Codola tephras are physically correlated – corresponding to the Greenland interstadials 10–9 and 5. In eastern Europe, the stratigraphic and chronometric data seem to indicate an earlier appearance of the Early Upper Palaeolithic industries, which would predate of two millennia at least the overlying CI tephra. The tephrostratigraphic correlation indicates that in both regions the innovations connected with the so-called Early Upper Palaeolithic – encompassing subsistence strategy and stone tool technology – appeared and evolved during one of the most unstable climatic phases of ... Article in Journal/Newspaper Greenland Earth-Prints (Istituto Nazionale di Geofisica e Vulcanologia) Greenland Journal of Volcanology and Geothermal Research 177 1 208 226 |