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Dating of sediments from Lake Zurich (Switzerland) with210Pb and137Cs
Authors:H N Erten  H R von Gunten  E Rössler  M Sturm
Institution:1. Eidg. Institut für Reaktorforschung, CH-5303, Würenlingen, Switzerland
3. Eidg. Institut für Reaktorforschung and Anorg.-chemisches Institut, Universit?t Bern, CH-3000, Bern 9, Switzerland
4. Swiss Federal Institute for Water Resources and Water Pollution COntrol (EAWAG/ETH), CH-8600, Dübendorf, Switzerland
Abstract:210Pb- and137Cs-measurements, and varve counting have been used to date sediment cores from Lake Zurich (Switzerland). Two cores from different water depths were dated with210Pb/210Po and revealed sediment accumulation rates of (0.055±0.015) g·cm?2·y?1 and (0.09±0.03) g·cm?2·y?1, respectively. A comparable rate of (0.07±0.01) g·cm?2·y?1 has been obtained from137Cs measurements. These rates were confirmed by annual layer (varve)-counts which lead to rates of 0.07 g·cm?2·y?1. Constant210Pb activities were observed in the top 6 cm of the sediment cores. This constancy is generally explained in the literature by mixing processes caused by bioturbation and by distortion during coring operations of the uppermost water-rich fluffy sediments. However the distinct137Cs-maxima and the regular and undisturbed varve lamination of the top sediment observed in the cores of Lake Zurich contradict this assumption. In addition, measurements of7Be at the water/sediment interaces proved complete sediment core recovery and mechanically undisturbed sediments. Remobilization processes are assumed to cause the observed constant210Pb activities. Remobilization may also be the reason for an incomplete210Pb inventory in the sediments which contain only about 50% of the fallout from atmosphere. The results of the210Pb dating should therefore be considered with some care. If existent, varve counting represents the easiest and most reliable means for dating lake sediments.
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