4.2 Article

Quaternary river incision in NE Ardennes (Belgium)-Insights from 10Be/26Al dating of river terraces

期刊

QUATERNARY GEOCHRONOLOGY
卷 6, 期 2, 页码 273-284

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.quageo.2010.11.001

关键词

Cosmogenic nuclides; River incision; River terrace dating; Geomorphology; Rhenish shield; Ardennes massif

资金

  1. INSU/CNRS
  2. French Ministry of Research and Higher Education
  3. IRD
  4. CEA

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Although it constitutes a main tool to unravel the regional recent tectonics, the chronology of the Pleistocene river incision is still poorly constrained within the uplifted Ardennes massif (Western Europe). Here, we use in situ produced cosmogenic Be-10 and Al-26 concentrations from depth profiles in terrace sediments of several Ardennian rivers (Meuse. Ourthe and Ambleve) in order to date the so-called Younger Main Terrace (YMT), a key-level in the drainage network evolution. We present the first absolute dating of the YMT in the lower Meuse valley, where we obtained an age of 725 +/- 120 ka for a terrace deposit buried beneath 3 m of Weichselian loess at Romont. This age is consistent with some previously published estimates based on paleomagnetic data and MIS correlations. However, the ages we obtain for the same terrace level in Ardennian tributaries of the Meuse are significantly younger: 390 +/- 35 ka in the lower Ourthe, and only 220 +/- 31 ka still farther upstream, in the lower Ambleve. We thus demonstrate that the post-YMT incision occurred diachronically in NE Ardennes. The similar to 0.5 Ma timespan needed by the erosion wave to propagate from the lower Meuse towards the Ardennian headwaters contradicts the long-held statement of a climatically driven incision that would have been synchronous throughout the catchments. Finally, we interpret the strong Be-10 enrichment displayed by the lower half of the Belle-Roche (lower Ambleve) profile as betraying the long-lasting, slow accumulation of the similar to 8 m thick terrace deposit in that place. (C) 2010 Elsevier B.V. All rights reserved.

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