首页 | 本学科首页   官方微博 | 高级检索  
     检索      


AMS dating Swedish varved clays of the last glacial/interglacial transition and the potential/difficulties of calibrating Late Weichselian 'absolute' chronologies
Authors:BARBARA WOHLFARTH  SVANTE BJÖRCK  GÖRAN POSSNERT  GEOFFREY LEMDAHL  LARS BRUNNBERG  JONAS ISING  SIV OLSSON  NILS-OLF SVENSSON
Institution:Department of Quaternary Geology, Lund University, Tornav, 13, S-223 63 Lund, Sweden;The Svedberg Laboratory, Uppsala University, Box 533, S-751 21 Uppsala, Sweden;Department of Quaternary Research, Stockholm University, Odeng, 63, S-113 22 Stockholm, Sweden
Abstract:The increasing focus on the chronology of environmental and climatic changes of the last glacial-interglacial transition has led to several independent attempts to try to calibrate the 14C time-scale beyond the Holocene. The Late Weichselian Gotiglacial varved clays of the Swedish Time Scale could potentially be used for this purpose. The reliability of the Swedish Time Scale is discussed as well as different ways of using the Swedish varved clays for calibrating the 14C chronology. The strategy and initial results from an ongoing calibration project are presented. They show clearly that, if the right strategy is adopted, varved clay may be dated by accelerator mass spectrometry (AMS) 14C measurement of terrestrial macrofossils. A Late Weichselian 'event stratigraphy', including the Vedde Ash fall-out, is established for south Scandinavia using three dating categories: clay varve measurements, terrestrial macrofossil measurement, and lake sediment (including aquatic mosses) measurements. It suggests that a 14C chronology based on terrestrial organic remains is not consistent with the traditional Late Weichselian chronostratigraphy based on lake-sediment samples, and that 'clay varve years' exceed 'terrestrial 14C years' by c. 900 years at the end of, and by 1100–1200 years at the beginning of the Younger Dryas Chronozone. Further back in time, the time-scales appear to converge. These results are compared with other recently published calibration studies.
Keywords:
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号