Author:
De Deckker Patrick,Hancock Gary J.,Olley Jon M.,Stanley Shawn,Hope Geoffrey
Abstract
Abstract210Pb and137Cs dating of bulk sediments obtained from the alpine Blue Lake, located in the Snowy Mountains of southeastern Australia, was applied here to date recent lacustrine sediments. In addition, the presence ofPinuspollen (a taxon introduced in Australia about 150 years ago) down to a sediment depth of 56 cm in the core is used to obtain a chronology for the upper part of the core. Accelerated Mass Spectrometry radiocarbon dates obtained from organic muds from the same core do not agree with the chronology constructed using the three other dating techniques. In addition, optically stimulated luminescence (OSL) dating of single quartz grains, from sediment-core samples collected from the same lake, was applied to date recent lacustrine sediments. The optical age of 185 ± 20 years for a sample at 60–62 cm depth, and 470 ± 50 years at 116–118 cm depth are well over 1000 years younger than the ages inferred from radiocarbon dates. We therefore infer that the ‘old’ radiocarbon ages result from carbon stored for considerable time within the catchment prior to its transport and deposition on the lake floor. As plant decomposition occurs at much slower rates in high altitude environments, these results bring into question the veracity of previously published radiocarbon dates from Blue Lake and alpine lake sediments in general. The deposition ages inferred from the210Pb-137Cs and OSL dating, and the first appearance ofPinuspollen, indicate that for the 100-year period after European settlement (from the mid 1800s to early 1900s) the sediment-accumulation rate increased by a factor of about 2, from 0.19 ± 0.01 cm yr−1to 0.35 ± 0.02 cm yr−1. In the 1900s the accumulation rate increased further to 0.60 cm yr−1. The accumulation rate was particularly rapid in the 20-year period from 1940–1960, reaching a rate 18 times higher than the pre-European rate in the mid-1950s. The increase in sedimentation rate is attributed to changes in land use resulting from European activities in the lake catchment, primarily through sheep and cattle grazing in the Blue Lake catchment.
Funder
Australian Institute of Nuclear Science and Engineering
Australian National University
Publisher
Springer Science and Business Media LLC
Subject
Earth-Surface Processes,Aquatic Science
Reference65 articles.
1. Aitken MJ (1985) Thermoluminescence dating. Academic Press, London
2. Aitken MJ (1998) An introduction to optical dating. In: The dating of Quaternary sediments by the use of photon-stimulated luminescence, Oxford University Press, Oxford
3. Appleby PG, Oldfield F (1984) The assessment of 210Pb data from sites with varying sediment accumulation rates. Hydrobiologia 103:29–35
4. Appleby PG, Oldfield F (1992) Application of lead-210 to sedimentation studies. In: Ivanovich M, Harmon RS (eds) Uranium-series disequilibrium: applications to Earth. Marine and Environmental Sciences, Clarendon Press, Oxford, pp 731–778
5. Bailey SD, Wintle AG, Duller GAT, Bristow CS (2001) Sand deposition during the last millenium at Aberffraw, Anglesey, North Wales as determined by OSL dating of quartz. Quat Sci Rev 20:701–704
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