Jökull


Jökull - 01.01.2012, Side 53

Jökull - 01.01.2012, Side 53
The use of tephrochronology in geomorphology Dugmore, A. J. 1989b. Tephrochronological studies of Holocene glacier fluctuations in southern Iceland. In: Glacier Fluctua- tions and Glacial Change, J. Oerlemans (ed.), Kluwer Aca- demic Publishers, Dordrecht, 37–55. Dugmore, A. J. and P. C. Buckland 1991. Tephrochronology and late Holocene soil erosion in South Iceland. In: Environmen- tal Change in Iceland. J. Maizels and C. Caseldine (eds.), Kluwer Academic Publishers, Dordrecht, 147–159. Dugmore, A. J. and C. C. Erskine 1994. Local and regional pat- terns of soil erosion in southern Iceland. Münchener Ge- ographische Abhandlungen 12, 63–79. Dugmore, A. J., A. J. Newton and G. Larsen 1995. Seven tephra isochrons in Scotland. The Holocene 5, 257–266. Dugmore, A. J., A. J. Newton, G. Larsen and G. T. Cook 2000. Tephrochronology, environmental change and the Norse set- tlement of Iceland. Environmental Archaeology 5, 21–34. Dugmore, A. J., G. Gísladóttir, I. A. Simpson and A. J. Newton 2009. Conceptual models of 1,200 years of soil erosion re- constructed using tephrochronology. J. North Atlantic 2, 1– 18. Einarsson, E. H., S. Thórarinsson and G. Larsen 1980. The Sól- heimar tephra and the Katla eruption of c. 1357. Acta Natu- ralia Islandica 28, 1–24. Gear, A. J. and B. Huntley 1991. Rapid changes in the range limits of Scots Pine 4,000 years ago. Science 251, 544–547. Grönvold, K., N. Óskarsson, S. J. Johnsen, H. B. Clausen, C. U. Hammer, G. Bond and E. Bard 1995. Ash layers from Ice- land in the Greenland GRIP ice core correlated with oceanic and land based sediments. Earth Planet. Science Lett. 135, 149–155. Guðmundsson, H. J. 1998. Holocene glacier fluctuation and tephrochronology of the Öræfi district, Iceland. PhD Thesis, University of Edinburgh. Haflidason, H., G. Larsen and G. Ólafsson 1992. The recent sed- imentation history of Thingvallavatn, Iceland. Oikos 64, 80– 95. Haraldsson, H. 1981. The Markarfljót sandur area, southern Ice- land: Sedimentological, petrological and stratigraphical stud- ies. Striae 15, 1–60. Hardardóttir, J., Á. Geirsdóttir and T. Thórdarson 2009. Tephra layers in a sediment core from Lake Hestvatn, Southern Iceland: Implications for evaluating sedimentation processes and environmental impacts on a lacustrine system caused by tephra fall deposits in the surrounding watershed. In: Volcani- clastic Sedimentation in Lacustrine Settings. White J. D. L. and N. R. Riggs (eds.), Blackwell Publishing Ltd., Oxford, UK. doi:10.1002/9781444304251.ch11 Kirkbride, M. P. and A. J. Dugmore 2001a. The timing and sig- nificance of mid–Holocene glacier advances in northern and central Iceland. J. Quaternary Science 16, 145–153. Kirkbride, M. P. and A. J. Dugmore 2001b. Can lichenometry be used to date the ’little Ice age’ glacial maximum in Iceland? Climate Change 48, 151–167. Kirkbride, M. P. and A. J. Dugmore 2005. Late Holocene so- lifluction history reconstructed using tephrochronology. In: Cryospheric Systems: Glaciers and Permafrost. C. Harris and J.B. Murton (eds.), Geol. Soc. London Special Publ. 242, 145–155. Kirkbride, M. P. and A. J. Dugmore 2006. Responses of moun- tain ice caps in central Iceland to Holocene climate change, revealed by tephrochronology. Quaternary Science Rev. 25, 1692–1707. Kirkbride, M. P. and A. J. Dugmore 2008. Tephrochronological dating of glacier advances AD 410–1947 in Southern Ice- land. Quaternary Res. 70(3), 398–411. Larsen, G. 1984. Recent volcanic history of the Veiðivötn fissure swarm, southern Iceland – An approach to volcanic risk as- sessment. J. Volcanol. Geotherm. Res. 22, 33–58. Larsen, G. and J. Eiríksson 2008. Holocene tephra archives and tephrochronology in Iceland – a brief overview. Jökull 58, 229–250. Larsen, G. and S. Thórarinsson 1977. H4 and other acidic Hekla tephra layers. Jökull 27, 28–46. Larsen, G., A. J. Dugmore and A. J. Newton 1999. Geochemistry of historical age silicic tephras in Iceland. The Holocene 9(4), 463–471. Larsen, G., M. T. Guðmundsson and H. Björnsson 1998. Eight centuries of periodic volcanism at the center of the Ice- land hotspot revealed by glacier tephrostratigraphy. Geology 26(10), 943–946. Larsen, G. 2000. Holocene eruptions within the Katla volcanic system, south Iceland: Characteristics and environmental im- pact. Jökull 49, 1–28. Larsen, G., A. J. Newton, A. J. Dugmore and E. G. Vilmundard- óttir 2001. Geochemistry, dispersal, volumes and chronology of Holocene silicic tephra layers from the Katla volcanic sys- tem. J. Quaternary Science 16, 119–132. Lowe, D. J. 2011. Tephrochronology and its application: A re- view. Quaternary Geochronology 6, 107–153. Mairs, K., M. J. Church, A. J. Dugmore and G. Sveinbjarnardót- tir 2006. Degrees of success: evaluating the environmental impacts of long term settlement in south Iceland. In: The Dy- namics of Northern Societies. J. Arneborg and B. Grønnow (eds.), PNM, Publications from the National Museum, Stud- ies in Archaeology and History, 10. Copenhagen, 363–371. Newton, A. J. 1999. Ocean-transported pumice in the North At- lantic. PhD. Thesis, University of Edinburgh, UK, 394 pp. Newton, A. J. 2001. The pumice. In: Hunter gather landscape archaeology: The Southern Hebrides Project 1988–1998 S. Mithen (ed.), 403–405. McDonald Institute Monographs, Cambridge. Newton A. J. and A. J. Dugmore 2003. Analysis of pumice from Baleshare. In: Bronze Age farms and Iron Age farm mounds of the Outer Hebrides. J. Barber (ed.), 135–138, The Soci- ety of Antiquaries of Scotland with Historic Scotland and the Council for British Archaeology, Edinburgh. JÖKULL No. 62, 2012 51
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