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The relation between optical bleaching and sedimentological features of fluvial deposits in the Toruń Basin (Poland)

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Distributions of equivalent doses (DE) obtained by the Single Aliquot Regenerative-dose (SAR) OSL method applied for large aliquots of coarse quartz grains extracted from fluvial sediments are presented and analysed with respect to a fluvial palaeoenvironment. The Nowe Dąbie and Łochowo fluvial succession from the western part of Toruń Basin (eastern part of Noteć–Warta streamway, Toruń-Eberswalde ice-marginal valley) was analysed. The fluvial depositional conditions controlling the extent of daylight bleaching are reconstructed by sedimentological studies. The relation between the amount of bleaching and sedimentological properties of fluvial deposits indicate that ripple cross-laminated sands that accumulated on the floodplain and horizontally-bedded sands deposited in shallow channels are more appropriate for OSL dating than sands derived from the deep channel. Along with luminescence results obtained for the river deposits, data measured from an ancient pottery sample, ensuring complete reset of the OSL signal, are presented, compared to and discussed. On this base the poorly bleached sediment samples are identified and an adjustment factor is introduced for correcting their OSL dating results in order to avoid age inversion. The application of the adjustment factor is found to minimize overestimation of OSL ages of sediments.
Rocznik
Strony
31–--44
Opis fizyczny
Bibliogr. 58 poz., rys., tab., wykr.
Twórcy
autor
  • Faculty of Earth Sciences, Nicolaus Copernicus University, Lwowska 1, 87-100 Toruń, Poland
  • Institute of Physics, Nicolaus Copernicus University, Grudziądzka 5/7, 87-100 Toruń, Poland
  • Institute of Physics, Nicolaus Copernicus University, Grudziądzka 5/7, 87-100 Toruń, Poland
  • Institute of Geology, Adam Mickiewicz University, Maków Polnych 16, 61-606 Poznań, Poland
Bibliografia
  • 1. Adrielsson L., Alexanderson H. (2005) Interactions between the Greenland Ice Sheet and the Liverpool Land coastal ice cap during the last two glaciation cycles. Journal of Quaternary Science, 20: 269-283.
  • 2. Alexanderson H. (2007) Residual OSL signals from modern Greenlandic river sediments. Geochronometria, 26: 1-9.
  • 3. Allen J.R. (1965) A review of the origin and characteristics of recent alluvial sediments. Sedimentology, 5: 89-191.
  • 4. Allen J.R.L., Leeder M.R. (1980) Crteria for instability of upper stage plane beds. Sedimentology, 27: 209-217.
  • 5. Ashley G.M. (1990) Classification of large-scale subaqueous bedforms: a new look at an old problem. Journal of Sedimentary Research, 60: 160-172.
  • 6. Ashworth P.J., Sambrook Smith G.H., Best J.L., Bridge J.S., Lane S.N., Lunt I.A., Reesink A.J.H., Simpson C.J., Thomas R.E. (2011) Evolution and sedimentology of a channel fill in the sandy braided South Saskatchewan River and its comparison to the deposits of an adjacent compound bar. Sedimentology, 58: 1860-1883.
  • 7. Berger G.W. (1990) Effectiveness of natural zeroing of the thermoluminescence in natural sediments. Journal of Geophysical Research, 95: 12375-12397.
  • 8. Berger G.W., Luternauer J.J. (1987) Preliminary Weld work for thermoluminescence dating studies at the Fraser River delta, British Columbia. Geological Survey of Canada Paper, 87/IA: 901-904.
  • 9. Best J., Bridge J. (1992) The morphology and dynamics of low amplitude bedwaves upon upperstage plane beds and the reservation planar laminae. Sedimentology, 39: 737-752.
  • 10. Bøtter-Jensen L., Duller G.A.T. (1992) A new system for measuring optically stimulated luminescence from quartz samples. Nuclear Tracks and Radiation Measurements., 20: 549-553.
  • 11. Cant D.J. (1978) Bedforms and bar types in the South Saskatchewan River. Journal of Sedimentary Petrology, 48: 1321-1330.
  • 12. Cant D.J., Walker R.G. (1978) Fluvial processes and facies sei quences in the sandy braided South Saskatchewan River, Canada. Sedimentology, 25: 625-648.
  • 13. Chruścińska A., Jesionowski B., Oczkowski H.L., Przegiętka K.R. (2008) Us i ng the TL single-aliquot regenerative-dose protocol for the veri fication of the chronology of the Teutonic order castle in Malbork. Geochronometria, 30: 61-67.
  • 14. Duller G.A.T. (1994) Luminescence dating sediments using single aliquots: new procedures. Quaternary Science Reviews, 13: 149-156.
  • 15. Fiebig M., Preusser F. (2007) Investigating the amount of zeroing in modern sediments of River Danube, Austria. Quaternary Geochronology, 2: 143-149.
  • 16. Folk R.L., Ward W.C. (1957) Brazos River bar: a study in the significance of grain size parameters. Journal of Sedimentary Research, 27: 3-26.
  • 17. Fuller I.C., Wintle A.G., Duller G.A.T. (1994) Test of the partial bleach methodology as applied to the infra-red stimulated luminescence of an alluvial sediment from the Danube. Radiation Measurements, 23: 539-544.
  • 18. Galon R. (1961) Morphology of the Noteć-Warta (or Toruń- Eberswalde) ice marginal streamway. Prace Geograficzne. Polska Akademia Nauk, 29.
  • 19. Gemmell A.M.D. (1988) Zero i ng of the TL signal in sediment undergoing fluvioglacial transport. An example from Austerdalen, western Norway. Quaternary Science Reviews, 7: 339-345.
  • 20. Gemmell A.M.D. (1994) Thermoluminescence in suspended sediment of glacier meltwater streams. Journal of Glaciology, 40: 158-166.
  • 21. Gemmell A.M.D. (1997) Fluctuations in the thermoluminescence signal of suspended sediment in an alpine glacial meltwat er stream. Quaternary Science Reviews (Quaternary Geochronology) 16: 281-290.
  • 22. Jain M., Murray A.S., B0tter-Jensen L. (2004) Optically stimulated luminescence dating: how significant is in complete light exposure in fluvial environments? Quaternaire, 15: 143-157.
  • 23. Julien P.Y., Raslan Y. (1998) Upper-regime plane bed. Journal of Hydrologic Engineering, 124: 1086-1096.
  • 24. Krbetschek M.R., Gonser G., Schwamborn G. (2002) Luminescence dating results of sediment sequences of the Lena delta. Polarforschung, 70: 83-88.
  • 25. Li S.H. (1994) Optical dating: insufficiently bleached sediments. Radiation Measurements, 23: 563-567.
  • 26. Miall A.D. (1978) Lithofacies types and vertical profile models in braided rivers: a summary. Canadian Society of Petroleum Geologists Memoir, 5: 597-604.
  • 27. Murray A.S., Olley J.M. (2002) Precision and accuracy in the optically stimulated luminescence dating of sedimentary quartz: a status review. Geochronometria, 21: 1-16.
  • 28. Murray A.S., Wintle A.G. (2000) Luminescence dating of quartz using an improved single aliquot regenerative-dose protocol. Radiation Measurements, 32: 57-73.
  • 29. Murray A.S., Olley J.M., Caitcheon G.G. (1995) Measurement of equivalent doses in quartz from con temporary wafer-lain sediments using optically stimulated luminescence. Quaternary Science Reviews (Quaternary Geochronology), 14: 365-371.
  • 30. Murray A.S., Roberts R.G., Wintle A.G. (1997) Equivalent dose measurement using a single aliquot of quartz. Radiafion Measurements, 27: 171-184.
  • 31. Mycielska-Dowgiałło E., Ludwikowska-Kędzia M. (2011) Alternative interpretations of grain-size data from Quaternary deposits. Geologos, 17: 189-203.
  • 32. Oczkowski H.L., Przegiętka K. (1998) Partial matrix doses for thermoluminescence dating. Physica Scripta, 58: 534-537.
  • 33. Oczkowski H.L., Przegiętka K., Lankauf K.R., Szmańda J.B. (2000) Gamma spectrometry in thermoluminescence dating. Geochronometria, 18: 63-68.
  • 34. Olley J., Caitcheon G., Murray A.S. (1998) The distribution of apparent dose as determined by optically stimulated luminescence in small aliquots of fluvial quartz: implications for dating young sediments. Quaternary Geochronology, 17: 1033-1040.
  • 35. Passega R. (1964) Grain size representation by C/M patterns as a geological tool. Journal of Sedimentary Petrology, 34: 830-847.
  • 36. Passega R., Byramjee R. (1969) Grain-size image of clastic deposits. Sedimentology, 13: 233-252.
  • 37. Pisarska-Jamroży M. (2006) Transitional deposits between endmoraine and sandur plain in the Pomeranian glaciomarginal zone of NW Poland: a missing component ofice-contact sedimentary models. Boreas, 35: 126-141.
  • 38. Pisarska-Jamroży M. (2008) Zonation of glaciomarginal environment inferred from Pleistocene deposits of Mysliborz Lakeland, NW Poland. Geografiska Annaler, 90A: 237-249.
  • 39. Prent M.T.H., Hickin E.J. (2001) Annual regime of bedforms, roughness and flow resistance, Lillooet River, British Columbia, BC. Geomorphology, 41 : 369-390.
  • 40. Preusser F., Blei A., Graf H.R., Schlüchter C. (2007) Luminescence dating of Würmian (Weichselian) proglacial sediments from Switzerland: methodological aspects and stratigraphical conclusions. Boreas, 36: 130-142.
  • 41. Preusser F., Degering D., Fuchs M., Hilgers A., Kadereit A., Klasen N., Krbetschek M., Richter D., Spencer J.Q.G. (2008) Luminescence dating: basics, methods and applications. Quaternary Science Journal, 57: 95-149.
  • 42. Rhodes E.J., Bailey R.M. (1997) The effect of thermal transfer on the zeroing of the luminescence of quartz from recent glaciofluvial sediments. Quaternary Science Reviews, 16: 291-298.
  • 43. Rittenour T.M. (2008) Luminescence dating of fluvial deposits: applications to geomorphic, palaeoseismic and archaeological research. Boreas, 37: 613-635.
  • 44. Sambrook Smith G.H., Ashworth P.J., Best J.L., Woodward J., Simpson C.J. (2006) The sedimentology and alluvial architecture of the sandy braided South Saskatchewan River, Canada. Sedimentology, 53: 413-434.
  • 45. Schwamborn G., Racholda V., Grigoriev M.N. (2002) Late Quaternary sedimentation history of the Lena Delta. Quaternary International, 89: 119-134.
  • 46. Singarayer J.S., Bailey R.M., Ward S., Stokes S. (2005) Assessing the completeness of optical resetting of quartz OSL in the natural environment. Radiation Measurements, 40: 13-25.
  • 47. Stokes S., Bray H.E., Blum M.D. (2001) Optical resetting in large drainage basins: tests of zeroing assumptions using singlealiquot procedures. Quaternary Science Reviews, 20: 879-885.
  • 48. Thomas P.J., Juyal N., Kale V.S., Singhvi A.K. (2007) Luminescence chronology of late Holocene extreme hydrological events in the upper Penner River basin, South India. Journal of Quaternary Science, 22: 747-753.
  • 49. Vandenberghe D., Derese C., Houbrechts G. (2007) Residual doses in recent alluvial sediments from the Ardenne (S. Belgium). Geochronometria, 28: 1-8.
  • 50. Wallinga J. (2002) Optically stimulated luminescence dating of fluvial deposits: a review. Boreas, 31: 303-322.
  • 51. Weckwerth P. (2009) Środowisko depozycji fluwialnej w stadiale głównym zlodowacenia Wisły - stanowisko Nowe Dąbie, południowo-zachodnia część Kotliny Toruńskiej. In: Plejstoceńskie środowiska sedymentacyjne Pojezierza Pomorskiego (eds. M. Pisarska-Jamroży and Z. Babiński): 90-99. Wydawnictwo UKW, Bydgoszcz.
  • 52. Weckwerth P. (2010) Evolution of the Toruń Basin in the Late Weichselian. Landform Analysis, 14: 57-84.
  • 53. Weckwerth P. (2011) Palaeoslopes of Weichselian sand-bed braided rivers in the Toruń Basin (Po i and): results of palaeohydraulic analysis. Geologos, 17: 227-238.
  • 54. Weckwerth P., Przegiętka K., Chruścińska A., Woronko B., Oczkowski H.L. (2011) Age and sedimentological features of fluvial series in the Toruń Basin and the Drwęca Valley (Poland). Geochronometria, 38: 397-412.
  • 55. Wysota W. (2002) Stratigraphy and sedimentary environments of the Weichselian glaciation in the southern part of the Lower Vistula Region (in Polish with English summary). Wydawnictwo UMK, Toruń.
  • 56. Wysota W., Lankauf K.R., Molewski P., Szmańda J. (1996) Sedimentology of the interstadial fluvial series (Rzęczkowo) of the Vistulian glaciation exposed in the SW margin of the Chełmno Moraine Plateau (in Polish with English summary). Acta Universitatis Nicolai Copernici, Geografia, 28: 39-63.
  • 57. Zieliński T. (1992) Proglacial valley facies of the Silesian Upland genetic faciors and their sedimentological effects. Geologica Sudetica, 26: 83-118.
  • 58. Zieliński T. (1993) Outwash plains of NE Poland - sediments and depositional processes (in Polish with English summary). Prace Naukowe Uniwersytetu Śląskiego, 1398.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-52a7e065-3e8e-47b7-8eae-231f8d7fc55d
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