Establishing a chronological framework for a late Quaternary seasonal swamp in the Australian ‘Top End’

Quaternary Geochronology - Tập 47 - Trang 81-92 - 2018
J.-H. May1,2, S.K. Marx3, W. Reynolds3, L. Clark-Balzan1, G.E. Jacobsen4, F. Preusser1
1Institute of Earth and Environmental Sciences, University of Freiburg, Germany
2School of Geography, University of Melbourne, Australia
3GeoQuEST, School of Earth and Environmental Sciences, University of Wollongong, Australia
4Australian Nuclear Science and Technology Organisation, Australia

Tài liệu tham khảo

Adamiec, 1998, Dose rate conversion factors: update, Ancient TL, 16, 37 Ahmad, 1993, Explanatory notes and mineral deposit data sheets - pine Creek SD 52-8 Aitken, 1985 Anshari, 2001, A late Pleistocene and Holocene pollen and charcoal record from peat swamp forest, lake sentarum wildlife reserve, west kalimantan, Indonesia, Palaeogeography, Palaeoclimatol., Palaeoecol., 171, 213, 10.1016/S0031-0182(01)00246-2 Bateman, 2015, Instant luminescence chronologies? High resolution luminescence profiles using a portable luminescence reader, Quat. Geochronol., 30, 141, 10.1016/j.quageo.2014.12.007 Berger, 2001, Luminescence dating and glacial stratigraphy in Westland, New Zealand, New Zealand J. Geol. Geophys., 44, 25, 10.1080/00288306.2001.9514919 Blaauw, 2010, Methods and code for ‘classical’age-modelling of radiocarbon sequences, Quat. Geochronol., 5, 512, 10.1016/j.quageo.2010.01.002 Bøtter-Jensen, 2003, Developments in radiation, stimulation and observation facilities in luminescence measurements, Radiat. Meas., 37, 535, 10.1016/S1350-4487(03)00020-9 Brill, 2016, Towards increasing the spatial resolution of luminescence chronologies–Portable luminescence reader measurements and standardized growth curves applied to a beach-ridge plain (Phra Thong, Thailand), Quat. Geochronol., 36, 134, 10.1016/j.quageo.2016.09.003 Brncic, 2009, Fire and climate change impacts on lowland forest composition in northern Congo during the last 2580 years from palaeoecological analyses of a seasonally flooded swamp, Holocene, 19, 79, 10.1177/0959683608098954 Bronk Ramsey, 2008, Deposition models for chronological records, Quat. Sci. Rev., 27, 42, 10.1016/j.quascirev.2007.01.019 Bronk Ramsey, 2009, Bayesian analysis of radiocarbon dates, Radiocarbon, 51, 337, 10.1017/S0033822200033865 Bronk Ramsey, 2009, Dealing with outliers and offsets in radiocarbon dating, Radiocarbon, 51, 1023, 10.1017/S0033822200034093 Bureau of Meterology, 2017, http://www.bom.gov.au/climate/data/stations/, Accessed: 01/06/2017. Chabaux, 2003, U-Th-Ra fractionation during weathering and river transport, Rev. Mineral. Geochem., 52, 533, 10.2113/0520533 Chang, 2011 Clymo, 1987, Upwash and downwash or pollen and spores in the unsaturated surface layer of spahgum-dominated peat, New Phytol., 105, 175, 10.1111/j.1469-8137.1987.tb00120.x Cronin, 2009 de Carvalho, 2016, 1 Duller, 2003, Distinguishing quartz and feldspar in single grain luminescence measurements, Radiat. Meas., 37, 161, 10.1016/S1350-4487(02)00170-1 Duller, 2008, Single-grain optical dating of Quaternary sediments : why aliquot size matters in luminescence dating, Boreas, 37, 589, 10.1111/j.1502-3885.2008.00051.x Field, 2018, Untangling geochronological complexity in organic spring deposits using multiple dating methods, Quat. Geochronol., 43, 50, 10.1016/j.quageo.2017.10.002 Field, 2017, A late Quaternary record of monsoon variability in the northwest Kimberley, Australia, Quat. Int., 1e17 Fink, 2004, The ANTARES facility at ANSTO, Nucl. Instrum. Methods B, 109, 10.1016/j.nimb.2004.04.025 Galbraith, 1999, Optical dating of single and multiple grains of quartz from jinmium rock shelter, northern Australia: Part I, experimental design and statistical models, Archaeometry, 41, 339, 10.1111/j.1475-4754.1999.tb00987.x Hogg, 2013, SHCAL13 southern hemisphere calibration, 0–50,000 years cal BP, Radiocarbon, 55, 1889, 10.2458/azu_js_rc.55.16783 Hollis, 2011 Hua, 2001, Progress in radiocarbon target preparation at the ANTARES AMS centre, Radiocarbon, 43, 275, 10.1017/S003382220003811X Jeong, 2007, The effect of weathering on optically stimulated luminescence dating, Quat. Geochronol., 2, 117, 10.1016/j.quageo.2006.05.023 Kirkpatrick, 1987, A transect study of the Eucalyptus forests and woodlands of a dissected sandstone and laterite plateau near Darwin, Northern Territory, Austral Ecol., 12, 339, 10.1111/j.1442-9993.1987.tb00955.x Leavitt, 2007, Radiocarbon and δ13C depth profiles of soil organic carbon in the U.S. Great Plains: a possible spatial record of paleoenvironment and paleovegetation, Quat. Int., 162–163, 21, 10.1016/j.quaint.2006.10.033 Lowe, 2014 Madsen, 2009, A chronology of hurricane landfalls at Little Sippewissett Marsh, Massachusetts, USA, using optical dating, Geomorphology, 109, 36, 10.1016/j.geomorph.2008.08.023 May, 2015, Refining late Quaternary plunge pool chronologies in Australia's monsoonal 'Top End', Quat. Geochronol., 30B, 328, 10.1016/j.quageo.2015.01.008 Mayya, 2006, Towards quantifying beta microdosimetric effects in single-grain quartz dose distribution, Radiat. Meas., 41, 1032, 10.1016/j.radmeas.2006.08.004 McDonald, 1991, 41 Moss, 2013, Palynology and its application to geomorpholog, 315 Murray, 2000, Luminescence dating of quartz using an improved single-aliquot regenerative-dose protocol, Radiat. Meas., 33, 57, 10.1016/S1350-4487(99)00253-X Newnham, 2007, Test of AMS 14C dating of pollen concentrates using tephrochronology, J. Quat. Sci., 22, 37, 10.1002/jqs.1016 Nott, 1996, Time and process rates over the past 100 m.y.: a case for dramatically increased landscape denudation rates during the late Quaternary in northern Australia, Geology, 24, 883, 10.1130/0091-7613(1996)024<0883:TAPROT>2.3.CO;2 Olley, 1999, The origin of dose distributions in fluvial sediments, and the prospect of dating single grains from fluvial deposits using optically stimulated luminescence, Radiat. Meas., 30, 207, 10.1016/S1350-4487(99)00040-2 Olley, 1997, Disequilibria in the uranium decay series in sedimentary deposits at Allen's cave, nullarbor plain, Australia: implications for dose rate determinations, Radiat. Meas., 27, 433, 10.1016/S1350-4487(96)00114-X Pessenda, 2001, Radiocarbon dating of total soil organic matter and humin fraction and its comparison with (super 14) C ages of fossil charcoal, Radiocarbon, 43, 595, 10.1017/S0033822200041242 Pietsch, 1989, Explanatory notes - Reynolds river 5071 Porcelli, 2003, The behavior of U-and Th-series nuclides in groundwater, Rev. Mineral. Geochem., 52, 317, 10.2113/0520317 Portenga, 2015, Confirming geomorphological interpretations based on portable OSL reader data, Earth Surf. Process. Landforms, 41, 427, 10.1002/esp.3834 Prescott, 2008, Luminescence dating of spring mound deposits in the southwestern Great Artesian Basin, northern South Australia, Aust. J. Earth Sci., 55, 167, 10.1080/08120090701689340 Prescott, 1994, Cosmic ray contributions to dose rates for luminescence and ESR dating: large depths and long-term time variations, Radiat. Meas., 23, 497, 10.1016/1350-4487(94)90086-8 Preusser, 2007, Luminescence dating of the Niederweningen mammoth site, Switzerland. Quat. Int., 164, 106, 10.1016/j.quaint.2006.12.002 Preusser, 2001, Comparison of dose rate determination using high-resolution gamma spectrometry and inductively coupled plasma-mass spectrometry, Ancient TL, 19, 19 Ramage, 1971 Reeves, 2013, Climate variability over the last 35,000 years recorded in marine and terrestrial archives in the Australian region: an OZ-INTIMATE compilation, Quat. Sci. Rev., 74, 21, 10.1016/j.quascirev.2013.01.001 Reimann, 2012, OSL dating of mixed coastal sediment (Sylt, German Bight, North Sea), Quat. Geochronol., 11, 52, 10.1016/j.quageo.2012.04.006 Richter, 2015, Lexsyg Smart - a Luminescence detection system for dosimetry, material research and dating application, Geochronometria, 42, 202, 10.1515/geochr-2015-0022 Sanderson, 2010, Using simple portable OSL measurements and laboratory characterisation to help understand complex and heterogeneous sediment sequences for luminescence dating, Quat. Geochronol., 5, 299, 10.1016/j.quageo.2009.02.001 Saxton, 2006, Soil water characteristic estimates by texture and organic matter for hydrologic solutions, Soil Sci. Soc. Am. J., 70, 1569, 10.2136/sssaj2005.0117 Shulmeister, 1992, A Holocene pollen record from lowland tropical Australia, Holocene, 2, 107, 10.1177/095968369200200202 Stone, 2015, Rapid age assessment in the Namib Sand Sea using a portable luminescence reader, Quat. Geochronol., 30, 134, 10.1016/j.quageo.2015.02.002 Stromsoe, 2016, Estimates of late Holocene soil production and erosion in the Snowy Mountains, Australia, CATENA, 145, 68, 10.1016/j.catena.2016.05.013 Sturman, 1996 Suppiah, 1992, The Australian summer monsoon: a review, Prog. Phys. Geogr., 16, 283, 10.1177/030913339201600302 Taylor, 1985, Rainfall in the wet-dry tropics: extreme events at Darwin and similarities between years during the period 1870–1983 inclusive, Aust. J. Ecol., 10, 281, 10.1111/j.1442-9993.1985.tb00890.x Telford, 2004, All age-depth models are wrong: but how badly?, Quat. Sci. Rev., 23, 1, 10.1016/j.quascirev.2003.11.003 Thomsen, 2005, Sources of variability in OSL dose measurements using single grains of quartz, Radiat. Meas., 39, 47, 10.1016/j.radmeas.2004.01.039 Trachsel, 2017, All age–depth models are wrong, but are getting better, Holocene, 27, 860, 10.1177/0959683616675939 Wintle, 2006, A review of quartz optically stimulated luminescence characteristics and their relevance in single-aliquot regeneration dating protocols, Radiat. Meas., 41, 369, 10.1016/j.radmeas.2005.11.001 Yaalon, 1978, Dynamics of cracking and swelling clay soils: displacement of skeletal grains, optimum depth of slickensides, and rate of intra-pedonic turbation, Earth Surf. Process., 3, 31, 10.1002/esp.3290030104 Zander, 2007, Optically stimulated luminescence dating of sublittoral and intertidal sediments from Dubai, UAE: radioactive disequilibria in the uranium decay series, Quat. Geochronol., 2, 123, 10.1016/j.quageo.2006.04.003 Zhisheng, 2015, Global monsoon dynamics and climate change, Annu. Rev. Earth Planet Sci., 43, 29, 10.1146/annurev-earth-060313-054623