Open Access

Identifying the degree of luminescence signal bleaching in fluvial sediments from the Inner Mongolian reaches of the Yellow River


Cite

Aitken MJ, 1998. An Introduction to Optical Dating. Oxford University Press: Oxford.AitkenMJ1998An Introduction to Optical DatingOxford University PressOxfordSearch in Google Scholar

Alexanderson H, 2007. Residual OSL signals from modern Greenlandic river sediments. Geochronometria 26: 1–9, 10.2478/v10003-007-0001-6.AlexandersonH2007Residual OSL signals from modern Greenlandic river sedimentsGeochronometria261910.2478/v10003-007-0001-6Open DOISearch in Google Scholar

Alexanderson H and Murray AS, 2012. Luminescence signals from modern sediments in a glaciated bay, NW Svalbard. Quaternary Geochronology 10: 250–256, 10.1016/j.quageo.2012.01.001.AlexandersonHMurrayAS2012Luminescence signals from modern sediments in a glaciated bay, NW SvalbardQuaternary Geochronology1025025610.1016/j.quageo.2012.01.001Open DOISearch in Google Scholar

Blong RJ and Gillespie R, 1978. Fluvially transported charcoal gives erroneous 14C ages for recent deposits. Nature 271: 739–741, 10.1038/271739a0.BlongRJGillespieR1978Fluvially transported charcoal gives erroneous 14C ages for recent depositsNature27173974110.1038/271739a0Open DOISearch in Google Scholar

Chen F, Fan Y, Madsen DB, Chun X, Zhao H and Yang L 2008. Preliminary study on the formation mechanism of the “Jilantai–Hetao” megalake and the lake evolutionary history in Hetao region. Quaternary Sciences 28: 866–873 (in Chinese with English abstract).ChenFFanYMadsenDBChunXZhaoHYangL2008Preliminary study on the formation mechanism of the “Jilantai–Hetao” megalake and the lake evolutionary history in Hetao regionQuaternary Sciences28866873(in Chinese with English abstract)Search in Google Scholar

Colls AE, Stokes S, Blum MD and Straffin E, 2001. Age limits on the Late Quaternary evolution of the upper Loire River. Quaternary Science Reviews 20(5):743–750, 10.1016/S0277-3791(00)00048-2.CollsAEStokesSBlumMDStraffinE2001Age limits on the Late Quaternary evolution of the upper Loire RiverQuaternary Science Reviews20574375010.1016/S0277-3791(00)00048-2Open DOISearch in Google Scholar

Cunningham AC and Wallinga J, 2012. Realizing the potential of fluvial archives using robust OSL chronologies. Quaternary Geochronology 12: 98–106, 10.1016/j.quageo.2012.05.007.CunninghamACWallingaJ2012Realizing the potential of fluvial archives using robust OSL chronologiesQuaternary Geochronology129810610.1016/j.quageo.2012.05.007Open DOISearch in Google Scholar

Cunningham AC, Evans M and Knight J, 2015. Quantifying bleaching for zero–age fluvial sediment: a Bayesian approach. Radiation Measurements 81: 55–61, 10.1016/j.radmeas.2015.04.007.CunninghamACEvansMKnightJ2015Quantifying bleaching for zero–age fluvial sediment: a Bayesian approachRadiation Measurements81556110.1016/j.radmeas.2015.04.007Open DOISearch in Google Scholar

DeLong SB and Arnold LJ, 2007. Dating alluvial deposits with optically stimulated luminescence, AMS 14C and cosmogenic techniques, western Transverse Ranges, California, USA. Quaternary Geochronology 2: 129–136, 10.1016/j.quageo.2006.03.012.DeLongSBArnoldLJ2007Dating alluvial deposits with optically stimulated luminescence, AMS 14C and cosmogenic techniques, western Transverse Ranges, California, USAQuaternary Geochronology212913610.1016/j.quageo.2006.03.012Open DOISearch in Google Scholar

Ditlefsen C, 1992. Bleaching of K–feldspars in turbid water suspensions: a comparison of photo–and thermoluminescence signals. Quaternary Science Reviews 11: 33–38, 10.1016/0277-3791(92)90039-B.DitlefsenC1992Bleaching of K–feldspars in turbid water suspensions: a comparison of photo–and thermoluminescence signalsQuaternary Science Reviews11333810.1016/0277-3791(92)90039-BOpen DOISearch in Google Scholar

Duller GAT, 2008. Single–grain optical dating of Quaternary sediments: why aliquot size matters in luminescence dating. Boreas 37(4): 589–612, 10.1111/j.1502-3885.2008.00051.x.DullerGAT2008Single–grain optical dating of Quaternary sediments: why aliquot size matters in luminescence datingBoreas37458961210.1111/j.1502-3885.2008.00051.xOpen DOISearch in Google Scholar

Dunne T, Mertes LAK, Meade RH, Richey JE and Forsberg BR, 1998. Exchanges of sediment between the floodplain and channel of the Amazon River in Brazil. Geological Society of America Bulletin 110(4): 450–467, 10.1130/0016-7606(1998)110<0450:EOSBTF>2.3.CO;2.DunneTMertesLAKMeadeRHRicheyJEForsbergBR1998Exchanges of sediment between the floodplain and channel of the Amazon River in BrazilGeological Society of America Bulletin110445046710.1130/0016-7606(1998)110<0450:EOSBTF>2.3.CO;2Open DOISearch in Google Scholar

Feng G and Zhang Q, 2008. Integrated management of ten major streams and floods safely passing through Inner Mongolia section of the Yellow River. Soil Water Conserv China 4: 8–10 (in Chinese).FengGZhangQ2008Integrated management of ten major streams and floods safely passing through Inner Mongolia section of the Yellow RiverSoil Water Conserv China4810(in Chinese)Search in Google Scholar

Fuchs M, Straub J and Zoller L, 2005. Residual luminescence signals of recent river flood sediments: a comparison between quartz and feldspar of fine–and coarse–grain sediments. Ancient TL 23(1): 25–30.FuchsMStraubJZollerL2005Residual luminescence signals of recent river flood sediments: a comparison between quartz and feldspar of fine–and coarse–grain sedimentsAncient TL2312530Search in Google Scholar

Gliganic LA, Cohen TJ, Meyer M and Molenaar A, 2017. Variations in luminescence properties of quartz and feldspar from modern fluvial sediments in three rivers. Quaternary Geochronology 41: 70–82, 10.1016/j.quageo.2017.06.005.GliganicLACohenTJMeyerMMolenaarA2017Variations in luminescence properties of quartz and feldspar from modern fluvial sediments in three riversQuaternary Geochronology41708210.1016/j.quageo.2017.06.005Open DOISearch in Google Scholar

Hou S, 1996. Fluvial process of the Inner Mongolian Reach of the Yellow River 1987–1993. Yellow River 9: 43–45 (in Chinese with English abstract).HouS1996Fluvial process of the Inner Mongolian Reach of the Yellow River 1987–1993Yellow River94345(in Chinese with English abstract)Search in Google Scholar

Hu G, Zhang J, Qiu W and Zhou L, 2010. Residual OSL signals in modern fluvial sediments from the Yellow River (HuangHe) and the implications for dating young sediments. Quaternary Geochronology 5: 187–193, 10.1016/j.quageo.2009.05.003.HuGZhangJQiuWZhouL2010Residual OSL signals in modern fluvial sediments from the Yellow River (HuangHe) and the implications for dating young sedimentsQuaternary Geochronology518719310.1016/j.quageo.2009.05.003Open DOISearch in Google Scholar

Jain M, Murray AS and Botter-Jensen L, 2004. Optically stimulated luminescence dating: How significant is incomplete light exposure in fluvial environments? Quaternaire 15(1): 143–157, 10.3406/quate.2004.1762.JainMMurrayASBotter-JensenL2004Optically stimulated luminescence dating: How significant is incomplete light exposure in fluvial environments?Quaternaire15114315710.3406/quate.2004.1762Open DOISearch in Google Scholar

Lai Z, 2006. Testing the use of an OSL standardised growth curve (SGC) for De determination on quartz from the Chinese Loess Plateau. Radiation Measurements 41(1): 9–16, 10.1016/j.radmeas.2005.06.031.LaiZ2006Testing the use of an OSL standardised growth curve (SGC) for De determination on quartz from the Chinese Loess PlateauRadiation Measurements41191610.1016/j.radmeas.2005.06.031Open DOISearch in Google Scholar

Lai Z and Wintle AG, 2006. Locating the boundary between the Pleistocene and the Holocene in Chinese loess using luminescence. The Holocene 16(6): 893–899, 10.1191/0959683606hol980rr.LaiZWintleAG2006Locating the boundary between the Pleistocene and the Holocene in Chinese loess using luminescenceThe Holocene16689389910.1191/0959683606hol980rrOpen DOISearch in Google Scholar

Lai Z, Wintle AG and Thomas DSG, 2007a. Rates of dust deposition between 50 ka and 20 ka revealed by OSL dating at Yuanbao on the Chinese Loess Plateau. Palaeogeography, Palaeoclimatology, Palaeoecology 248: 431–439, 10.1016/j.palaeo.2006.12.013.LaiZWintleAGThomasDSG2007aRates of dust deposition between 50 ka and 20 ka revealed by OSL dating at Yuanbao on the Chinese Loess PlateauPalaeogeography, Palaeoclimatology, Palaeoecology24843143910.1016/j.palaeo.2006.12.013Open DOISearch in Google Scholar

Lai Z, Brückner H, Zöller L and Fülling A, 2007b. Existence of a common growth curve for silt–sized quartz OSL of loess from different continents. Radiation Measurements 42(9): 1432–1440, 10.1016/j.radmeas.2007.08.006.LaiZBrücknerHZöllerLFüllingA2007bExistence of a common growth curve for silt–sized quartz OSL of loess from different continentsRadiation Measurements4291432144010.1016/j.radmeas.2007.08.006Open DOISearch in Google Scholar

Lai Z and Brückner H, 2008. Effects of feldspar contamination on equivalent dose and the shape of growth curve for OSL of silt–sized quartz extracted from Chinese loess. Geochronometria 30: 49–53, 10.2478/v10003-008-0010-0.LaiZBrücknerH2008Effects of feldspar contamination on equivalent dose and the shape of growth curve for OSL of silt–sized quartz extracted from Chinese loessGeochronometria30495310.2478/v10003-008-0010-0Open DOISearch in Google Scholar

Lai Z and Ou X, 2013. Basic procedures of optically stimulated luminescence (OSL) dating. Progress in Geography 32(5): 683–693 (in Chinese with English abstract), 10.11820/dlkxjz.2013.05.001.LaiZOuX2013Basic procedures of optically stimulated luminescence (OSL) datingProgress in Geography325683693(in Chinese with English abstract)10.11820/dlkxjz.2013.05.001Open DOISearch in Google Scholar

Li B, Ge Q and Zheng J, 2003. Evolution of the Yellow River in the Houtao Plain of Inner Mongolia in the past 2000 years. Acta Geographica Sinica 2: 239–246 (in Chinese).LiBGeQZhengJ2003Evolution of the Yellow River in the Houtao Plain of Inner Mongolia in the past 2000 yearsActa Geographica Sinica2239246(in Chinese)Search in Google Scholar

Li S, 2001. Identification of well–bleached grains in the optical dating of quartz. Quaternary Science Review 20(12): 1365–1370, 10.1016/S0277-3791(00)00156-6.LiS2001Identification of well–bleached grains in the optical dating of quartzQuaternary Science Review20121365137010.1016/S0277-3791(00)00156-6Open DOISearch in Google Scholar

Liu L, Li Q and Li H, 2012. Origin analysis and Management measures of “Hanging River” in the Inner Mongolia section of the Yellow River. Inner Mongolia Water Resources 2: 106–107 (in Chinese).LiuLLiQLiH2012Origin analysis and Management measures of “Hanging River” in the Inner Mongolia section of the Yellow RiverInner Mongolia Water Resources2106107(in Chinese)Search in Google Scholar

Liu X, Lai Z, Madsen D, Yu L, Liu K and Zhang J, 2011. Lake level variations of Qinghai Lake in northeastern Qinghai–Tibetan Plateau since 3. 7 ka based on OSL dating. Quaternary International 236: 57–64, 10.1016/j.quaint.2010.08.009.LiuXLaiZMadsenDYuLLiuKZhangJ2011Lake level variations of Qinghai Lake in northeastern Qinghai–Tibetan Plateau since 3. 7 ka based on OSL datingQuaternary International236576410.1016/j.quaint.2010.08.009Open DOISearch in Google Scholar

Markey BG, Bøtter–Jensen L and Duller GAT, 1997. A new flexible system for measuring thermally and optically stimulated luminescence. Radiation Measurements 27(2):83–89, 10.1016/S1350-4487(96)00126-6.MarkeyBGBøtter–JensenLDullerGAT1997A new flexible system for measuring thermally and optically stimulated luminescenceRadiation Measurements272838910.1016/S1350-4487(96)00126-6Open DOISearch in Google Scholar

Miller MC, McCave IN and Komar PD, 1977. Threshold of sediment motion under uinidirectional currents. Sedimentology 24(4): 507–527, 10.1111/j.1365-3091.1977.tb00136.x.MillerMCMcCaveINKomarPD1977Threshold of sediment motion under uinidirectional currentsSedimentology24450752710.1111/j.1365-3091.1977.tb00136.xOpen DOISearch in Google Scholar

Milliman JD and Meade RH, 1983. World–wide delivery of river sediment to the oceans. Journal of Geology 91(1): 1–21, 10.1086/628741.MillimanJDMeadeRH1983World–wide delivery of river sediment to the oceansJournal of Geology91112110.1086/628741Open DOISearch in Google Scholar

Murray AS, 1996. Developments in optically stimulated luminescence and phototransferred thermoluminescence dating of young sediments: application to a 2000-year sequence of flood deposits. Geochimica et Cosmochimica Acta 60: 565–576, 10.1016/0016-7037(95)00418-1.MurrayAS1996Developments in optically stimulated luminescence and phototransferred thermoluminescence dating of young sediments: application to a 2000-year sequence of flood depositsGeochimica et Cosmochimica Acta6056557610.1016/0016-7037(95)00418-1Open DOISearch in Google Scholar

Murray AS and Wintle AG, 2000. Luminescence dating of quartz using an improved single–aliquot regenerative–dose protocol. Radiation Measurements 32(1): 57–73, 10.1016/S1350-4487(99)00253-X.MurrayASWintleAG2000Luminescence dating of quartz using an improved single–aliquot regenerative–dose protocolRadiation Measurements321577310.1016/S1350-4487(99)00253-XOpen DOISearch in Google Scholar

Murray AS and Olley JM, 2002. Precision and accuracy in the optically stimulated luminescence dating of sedimentary quartz: A status review. Geochronometria 21: 1–16.MurrayASOlleyJM2002Precision and accuracy in the optically stimulated luminescence dating of sedimentary quartz: A status reviewGeochronometria21116Search in Google Scholar

Olley JM, Caitcheon GG and Murray AS, 1998. The distribution of apparent dose as determined by optically stimulated luminescence in small aliquots of fluvial quartz: implications for dating young sediments. Quaternary Science Reviews 17: 1033–1040, 10.1016/S0277-3791(97)00090-5.OlleyJMCaitcheonGGMurrayAS1998The distribution of apparent dose as determined by optically stimulated luminescence in small aliquots of fluvial quartz: implications for dating young sedimentsQuaternary Science Reviews171033104010.1016/S0277-3791(97)00090-5Open DOISearch in Google Scholar

Olley JM, Caitcheon GG and Roberts RG, 1999. The origin of dose distributions in fluvial sediments, and the prospect of dating single grains from fluvial deposits using optically stimulated luminescence. Radiation Measurements 30(2):207–217, 10.1016/S1350-4487(99)00040-2.OlleyJMCaitcheonGGRobertsRG1999The origin of dose distributions in fluvial sediments, and the prospect of dating single grains from fluvial deposits using optically stimulated luminescenceRadiation Measurements30220721710.1016/S1350-4487(99)00040-2Open DOISearch in Google Scholar

Olley JM, Pietsch T and Roberts RG, 2004. Optical dating of Holocene sediments from a variety of geomorphic settings using single grains of quartz. Geomorphology 60:337–358, 10.1016/j.geomorph.2003.09.020.OlleyJMPietschTRobertsRG2004Optical dating of Holocene sediments from a variety of geomorphic settings using single grains of quartzGeomorphology6033735810.1016/j.geomorph.2003.09.020Open DOISearch in Google Scholar

Pan B, Pang H, Zhang D, Guan Q, Wang L, Li F, Guan W, Cai A and Sun X, 2015. Sediment grain-size characteristics and its source implication in the Ningxia-Inner Mongolia sections on the upper reaches of the Yellow River. Geomorphology 246: 255–262, 10.1016/j.geomorph.2015.06.028.PanBPangHZhangDGuanQWangLLiFGuanWCaiASunX2015Sediment grain-size characteristics and its source implication in the Ningxia-Inner Mongolia sections on the upper reaches of the Yellow RiverGeomorphology24625526210.1016/j.geomorph.2015.06.028Open DOISearch in Google Scholar

Porat N, Amit R, Enzel Y, Zilberman E, Avni Y, Ginat H and Gluck D, 2010. Abandonment ages of alluvial landforms in the hyperarid Negev determined by luminescence dating. Journal of Arid Environments 74(7): 861–869. 10.1016/j.jaridenv.2009.10.018.PoratNAmitREnzelYZilbermanEAvniYGinatHGluckD2010Abandonment ages of alluvial landforms in the hyperarid Negev determined by luminescence datingJournal of Arid Environments74786186910.1016/j.jaridenv.2009.10.018Open DOISearch in Google Scholar

Prescott JR and Hutton JT, 1994. Cosmic ray contributions to dose rates for luminescence and ESR dating: large depths and long–term time variations. Radiation Measurements 23(2–3): 497–500, 10.1016/1350-4487(94)90086-8.PrescottJRHuttonJT1994Cosmic ray contributions to dose rates for luminescence and ESR dating: large depths and long–term time variationsRadiation Measurements232–349750010.1016/1350-4487(94)90086-8Open DOISearch in Google Scholar

Ran L and Wang S, 2010. Study on channel evolution and hydraulic geometry in the Inner Mongolia reach of the Yellow River. Journal of Sediment Research (4): 61–67 (in Chinese), 10.16239/j.cnki.0468-155x.2010.04.010.RanLWangS2010Study on channel evolution and hydraulic geometry in the Inner Mongolia reach of the Yellow RiverJournal of Sediment Research4616710.16239/j.cnki.0468-155x.2010.04.010Open DOISearch in Google Scholar

Reimer PJ, Bard E, Bayliss A, Beck JW, Blackwell PG, Ramsey BC, Grootes PM, Guilderson TP, Haflidason H, Hajdas I, Hatte C, Heaton TJ, Hoffmann DL, Hogg AG, Hughen KA, Kaiser KF, Kromer B, Manning SW, Niu M, Reimer RW, Richards DA, Scott EM, Southon JR, Staff RA, Turney CSM and van der Plicht J, 2013. IntCal13 and Marine13 radiocarbon age calibration curves 0–50,000 years cal BP. Radiocarbon 55: 1869–1887.ReimerPJBardEBaylissABeckJWBlackwellPGRamseyBCGrootesPMGuildersonTPHaflidasonHHajdasIHatteCHeatonTJHoffmannDLHoggAGHughenKAKaiserKFKromerBManningSWNiuMReimerRWRichardsDAScottEMSouthonJRStaffRATurneyCSMvan der PlichtJ2013IntCal13 and Marine13 radiocarbon age calibration curves 0–50,000 years cal BPRadiocarbon551869188710.2458/azu_js_rc.55.16947Search in Google Scholar

Rhodes EJ and Bailey RM, 1997. The effect of thermal transfer on the zeroing of the luminescence of quartz from recent glaciofluvial sediments. Quaternary Science Reviews 16(3–5): 291–298, 10.1016/S0277-3791(96)00100-X.RhodesEJBaileyRM1997The effect of thermal transfer on the zeroing of the luminescence of quartz from recent glaciofluvial sedimentsQuaternary Science Reviews163–529129810.1016/S0277-3791(96)00100-XOpen DOISearch in Google Scholar

Rhodes EJ, 2011. Optically Stimulated Luminescence Dating of Sediments over the Past 200,000 Years. Annual Review of Earth and Planetary Sciences 39: 461–488, 10.1146/annurev-earth-040610-133425.RhodesEJ2011Optically Stimulated Luminescence Dating of Sediments over the Past 200,000 YearsAnnual Review of Earth and Planetary Sciences3946148810.1146/annurev-earth-040610-133425Open DOISearch in Google Scholar

Richards BWM, Owen LA and Rhodes EJ, 2000. Timing of late quaternary glaciations in the Himalayas of northern Pakistan. Journal of Quaternary Science 15(3): 283–297, 10.1002/(SICI)1099-1417(200003)15:33.3.CO;2-O.RichardsBWMOwenLARhodesEJ2000Timing of late quaternary glaciations in the Himalayas of northern PakistanJournal of Quaternary Science15328329710.1002/(SICI)1099-1417(200003)15:33.3.CO;2-OOpen DOISearch in Google Scholar

Rittenour TM, 2008. Luminescence dating of fluvial deposits: applications to geomorphic, palaeoseismic and archaeological research. Boreas 37(4): 613–635, 10.1111/j.1502-3885.2008.00056.x.RittenourTM2008Luminescence dating of fluvial deposits: applications to geomorphic, palaeoseismic and archaeological researchBoreas37461363510.1111/j.1502-3885.2008.00056.xOpen DOISearch in Google Scholar

Roberts HM, 2007. Assessing the effectiveness of the double–SAR protocol in isolating a luminescence signal dominated by quartz. Radiation Measurements 42(10):1627–1636, 10.1016/j.radmeas.2007.09.010.RobertsHM2007Assessing the effectiveness of the double–SAR protocol in isolating a luminescence signal dominated by quartzRadiation Measurements42101627163610.1016/j.radmeas.2007.09.010Open DOISearch in Google Scholar

Roberts HM and Duller GAT, 2004. Standardised growth curves for optical dating of sediment using multiple–grain aliquots. Radiation Measurements38(2):241–252, 10.1016/j.radmeas.2003.10.001.RobertsHMDullerGAT2004Standardised growth curves for optical dating of sediment using multiple–grain aliquotsRadiation Measurements38224125210.1016/j.radmeas.2003.10.001Open DOISearch in Google Scholar

Rodnight H, Duller GAT, Wintle AG and Tooth S, 2006. Assessing the reproducibility and accuracy of optical dating of fluvial deposits. Quaternary Geochronology 1(2):109–120, 10.1016/j.quageo.2006.05.017.RodnightHDullerGATWintleAGToothS2006Assessing the reproducibility and accuracy of optical dating of fluvial depositsQuaternary Geochronology1210912010.1016/j.quageo.2006.05.017Open DOISearch in Google Scholar

Schielein P and Lomax J, 2013. The effect of fluvial environments on sediment bleaching and Holocene luminescence ages-A case study from the German Alpine Foreland. Geochronometria 40(4): 283–293, 10.2478/s13386-013-0120-y.SchieleinPLomaxJ2013The effect of fluvial environments on sediment bleaching and Holocene luminescence ages-A case study from the German Alpine ForelandGeochronometria40428329310.2478/s13386-013-0120-yOpen DOISearch in Google Scholar

Shi C, 2010. Changes in sediment accumulation in Ning–Meng reach of Yellow River in past over 500 years. Journal of Sediment Research 5: 19–25 (in Chinese).ShiC2010Changes in sediment accumulation in Ning–Meng reach of Yellow River in past over 500 yearsJournal of Sediment Research51925(in Chinese)Search in Google Scholar

Shields A, 1936. Anwendung der Ähnlichkeitsmechanik auf die Geschiebebewegung: Berlin, Preussische Versuchanstalt für Wasserbau und Schiffbau, Mitteilungen 26, 25.ShieldsA1936Anwendung der Ähnlichkeitsmechanik auf die Geschiebebewegung: BerlinPreussische Versuchanstalt für Wasserbau und SchiffbauMitteilungen2625Search in Google Scholar

Singarayer JS, Bailey RM, Ward S and Stokes S, 2005. Assessing the completeness of optical resetting of quartz OSL in the natural environment. Radiation Measurements 40(1):13–25, 10.1016/j.radmeas.2005.02.005.SingarayerJSBaileyRMWardSStokesS2005Assessing the completeness of optical resetting of quartz OSL in the natural environmentRadiation Measurements401132510.1016/j.radmeas.2005.02.005Open DOISearch in Google Scholar

Stokes S, Bray HE and Blum MD, 2001. Optical resetting in large drainage basins: tests of zeroing assumptions using single–aliquot procedures. Quaternary Science Reviews 20: 879–885, 10.1016/S0277-3791(00)00045-7.StokesSBrayHEBlumMD2001Optical resetting in large drainage basins: tests of zeroing assumptions using single–aliquot proceduresQuaternary Science Reviews2087988510.1016/S0277-3791(00)00045-7Open DOISearch in Google Scholar

Stuiver M and Reimer PJ, 2013. Radiocarbon Calibration Program Calib Rev7.0.0StuiverMReimerPJ2013Radiocarbon Calibration Program Calib Rev7.0.0Search in Google Scholar

Ta W, Yang G, Qu J, Wang T and Dai FN, 2003. The effect of the coarse aeolian sand on siltation of the Inner Mongolian reach of the Yellow River. Environmental Geology 43: 493–502, 10.1007/s00254-002-0666-0.TaWYangGQuJWangTDaiFN2003The effect of the coarse aeolian sand on siltation of the Inner Mongolian reach of the Yellow RiverEnvironmental Geology4349350210.1007/s00254-002-0666-0Open DOISearch in Google Scholar

Ta W, Xiao H and Dong Z, 2008. Long–term morph dynamic changes of a desert reach of the Yellow River following upstream large reservoirs’ operation. Geomorphology 97:249–259, 10.1016/j.geomorph.2007.08.008.TaWXiaoHDongZ2008Long–term morph dynamic changes of a desert reach of the Yellow River following upstream large reservoirs’ operationGeomorphology9724925910.1016/j.geomorph.2007.08.008Open DOISearch in Google Scholar

Ta W, Wang H and Jia X, 2011. Downstream fining in contrasting reaches of the sandbedded Yellow River. Hydrological Processes25(4): 3693–3700, 10.1002/hyp.8065.TaWWangHJiaX2011Downstream fining in contrasting reaches of the sandbedded Yellow RiverHydrological Processes2543693370010.1002/hyp.8065Open DOISearch in Google Scholar

Vandenberghe D, Derese C and Houbrechts G, 2007. Residual doses in recent alluvial sediments from the Ardenne (S–Belgium). Geochronometria 28: 1–8, 10.2478/v10003-007-0024-z.VandenbergheDDereseCHoubrechtsG2007Residual doses in recent alluvial sediments from the Ardenne (S–Belgium)Geochronometria281810.2478/v10003-007-0024-zOpen DOISearch in Google Scholar

Wallinga J, 2002. Optically stimulated luminescence dating in fluvial deposits: A review. Boreas 31: 303–322, 10.1111/j.1502-3885.2002.tb01076.x.WallingaJ2002Optically stimulated luminescence dating in fluvial deposits: A reviewBoreas3130332210.1111/j.1502-3885.2002.tb01076.xOpen DOISearch in Google Scholar

Wang S, Yan Y and Li Y, 2012. Spatial and temporal variations of suspended sediment deposition in the alluvial reach of the upper Yellow River from 1952 to 2007. Catena 92: 30–37, 10.1016/j.catena.2011.11.012.WangSYanYLiY2012Spatial and temporal variations of suspended sediment deposition in the alluvial reach of the upper Yellow River from 1952 to 2007Catena92303710.1016/j.catena.2011.11.012Open DOISearch in Google Scholar

Wintle AG, 1997. Luminescence dating: laboratory procedures and protocols. Radiation Measurements 27:769–817, 10.1016/S1350-4487(97)00220-5.WintleAG1997Luminescence dating: laboratory procedures and protocolsRadiation Measurements2776981710.1016/S1350-4487(97)00220-5Open DOISearch in Google Scholar

Wu J, Wang R and Yao J, 2006. Remote sensing monitoring and study on the change of the Yellow River course in Yinchuan plain sector. Remote Sensing for Land & Resources 4: 36–40 (in Chinese), 1001-070X(2006)04-0036-04.WuJWangRYaoJ2006Remote sensing monitoring and study on the change of the Yellow River course in Yinchuan plain sectorRemote Sensing for Land & Resources43640(in Chinese)1001-070X(2006)04-0036-04Open DOISearch in Google Scholar

Yang G, 2002. Identifying Sediment Sources and their Controls in the Inner Mongolian Reach of the Yellow River. Haiyang Publishing House: Beijing (in Chinese).YangG2002Identifying Sediment Sources and their Controls in the Inner Mongolian Reach of the Yellow RiverHaiyang Publishing HouseBeijing(in Chinese)Search in Google Scholar

Yao Z, Ta W, Jia X and Xiao J, 2011. Bank erosion and accretion along the Ningxia–Inner Mongolia reaches of the Yellow River from 1958 to 2008. Geomorphology 127: 99–106, 10.1016/j.geomorph.2010.12.010.YaoZTaWJiaXXiaoJ2011Bank erosion and accretion along the Ningxia–Inner Mongolia reaches of the Yellow River from 1958 to 2008Geomorphology1279910610.1016/j.geomorph.2010.12.010Open DOISearch in Google Scholar

Yu L and Lai Z, 2012. OSL chronology and palaeoclimatic implications of aeolian sediments in the Qaidam Basin of the northeastern Qinghai–Tibetan Plateau. Palaeogeography, Palaeoclimatology, Palaeoecology 337: 120–129, 10.1016/j.palaeo.2012.04.004.YuLLaiZ2012OSL chronology and palaeoclimatic implications of aeolian sediments in the Qaidam Basin of the northeastern Qinghai–Tibetan PlateauPalaeogeography, Palaeoclimatology, Palaeoecology33712012910.1016/j.palaeo.2012.04.004Open DOISearch in Google Scholar

Zhang J, Tsukamoto S, Grube A and Frechen M, 2014. OSL and 14C chronologies of a Holocene sedimentary record (Garding-2 core) from the German North Sea coast. Boreas 43(4): 856–868, 10.1111/bor.12071.ZhangJTsukamotoSGrubeAFrechenM2014OSL and 14C chronologies of a Holocene sedimentary record (Garding-2 core) from the German North Sea coastBoreas43485686810.1111/bor.12071Open DOISearch in Google Scholar

eISSN:
1897-1695
Language:
English
Publication timeframe:
Volume Open
Journal Subjects:
Geosciences, other