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Application of 239,240 Pu, 137Cs and heavy metals for dating of river sediments


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Baeza A, Guillen J, Salamanca MA, Rodriguez A and Ager FJ, 2009. Radiological and multi-element analysis of sediments from the Proserpina reservoir (Spain) dating from Roman times. Journal of Environmental Radioactivity 100: 866–874, DOI 10.1016/j.jenvrad.2009.06.020. Baeza A Guillen J Salamanca MA Rodriguez A Ager FJ 2009 Radiological and multi-element analysis of sediments from the Proserpina reservoir (Spain) dating from Roman times Journal of Environmental Radioactivity 100 866 874 10.1016/j.jenvrad.2009.06.020Open DOISearch in Google Scholar

Brudecki K, Suwaj J and Mietelski JW, 2009. Plutonium and 137Cs in forest litter: an approximate map of plutonium from Chernobyl deposition in North-eastern and Eastern Poland. Nukleonika 54: 199–209. Brudecki K Suwaj J Mietelski JW 2009 Plutonium and 137Cs in forest litter: an approximate map of plutonium from Chernobyl deposition in North-eastern and Eastern Poland Nukleonika 54 199 209Search in Google Scholar

Ciszewski D, 1997. Source of pollution as a factor controlling dispersal of heavy metals in river bottom sediments. Environmental Geology 29: 50–57. Ciszewski D 1997 Source of pollution as a factor controlling dispersal of heavy metals in river bottom sediments Environmental Geology 29 50 5710.1007/s002540050103Search in Google Scholar

Ciszewski D, 1998. Channel processes as a factor controlling accumulation of heavy metals in river bottom sediments: consequences for pollution monitoring (Upper Silesia, Poland). Environmental Geology 36: 45–54, DOI 10.1007/s002540050319. Ciszewski D 1998 Channel processes as a factor controlling accumulation of heavy metals in river bottom sediments: consequences for pollution monitoring (Upper Silesia, Poland) Environmental Geology 36 45 54 10.1007/s002540050319Open DOISearch in Google Scholar

Ciszewski D, 2001. Flood-related changes in heavy metal concentrations within sediments of the Biała Przemsza River. Geomorphology 40: 205–218, DOI 10.1016/S0169-555X(01)00044-7. Ciszewski D 2001 Flood-related changes in heavy metal concentrations within sediments of the Biała Przemsza River Geomorphology 40 205 218 10.1016/S0169-555X(01)00044-7Open DOISearch in Google Scholar

Ciszewski D, 2003. Heavy metals in vertical profiles of the middle Odra River overbank sediments: Evidence for pollution changes. Water, Air and Soil Pollution 143: 81–98, DOI 10.1023/A:1022825103974. Ciszewski D 2003 Heavy metals in vertical profiles of the middle Odra River overbank sediments: Evidence for pollution changes Water, Air and Soil Pollution 143 81 98 10.1023/A:1022825103974Open DOISearch in Google Scholar

Ciszewski D, Czajka A and Blazej S, 2008. Rapid migration of heavy metals and (137)Cs in alluvial sediments, Upper Odra River valley, Poland. Environmental Geology 55: 1577–1586, DOI 10.1007/s00254-007-1108-9. Ciszewski D Czajka A Blazej S 2008 Rapid migration of heavy metals and (137)Cs in alluvial sediments, Upper Odra River valley, Poland Environmental Geology 55 1577 1586 10.1007/s00254-007-1108-9Open DOISearch in Google Scholar

Ciszewski D and Malik I, 2004. The use of heavy metal concentrations and dendrochronology in the reconstruction of sediment accumulation, Mala Panew River Valley, southern Poland. Geomorphology 58: 161–174, DOI 10.1016/S0169-555X(03)00230-7. Ciszewski D Malik I 2004 The use of heavy metal concentrations and dendrochronology in the reconstruction of sediment accumulation, Mala Panew River Valley, southern Poland Geomorphology 58 161 174 10.1016/S0169-555X(03)00230-7Open DOISearch in Google Scholar

Ciszewski D, 2019. The past and prognosis of mining cessation impact on river sediment pollution. Journal of Soils and Sediments 19: 393–402, DOI 10.1007/s11368-018-2015-2. Ciszewski D 2019 The past and prognosis of mining cessation impact on river sediment pollution Journal of Soils and Sediments 19 393 402 10.1007/s11368-018-2015-2Open DOISearch in Google Scholar

Cuddihy RG, Finch GL, Newton GJ, Hahn FF, Mewhinney JA, Rothenberg SJ and Powers DA, 1989. Characteristics of radioactive particles released from the Chernobyl nuclear reactor. Environmental Science & Technology 23(1): 89–95, DOI 10.1021/es00178a011. Cuddihy RG Finch GL Newton GJ Hahn FF Mewhinney JA Rothenberg SJ Powers DA 1989 Characteristics of radioactive particles released from the Chernobyl nuclear reactor Environmental Science & Technology 231 89 95 10.1021/es00178a011Open DOISearch in Google Scholar

Devell L, Tovedal H, Bergström U, Appelgren A, Chyssler J and Andersson L, 1986. Initial observations of fallout from the reactor accident at Chernobyl. Nature 321(6067): 192–193, DOI 10.1038/321192a0. Devell L Tovedal H Bergström U Appelgren A Chyssler J Andersson L 1986 Initial observations of fallout from the reactor accident at Chernobyl Nature 3216067 192 193 10.1038/321192a0Open DOISearch in Google Scholar

Diaz-Asencio M, Sanchez-Cabeza JA, Bolanos-Alvarez Y, Ruiz-Fernandez AC, Gomez-Batista M, Morabito R and Alonso-Hernandez C, 2014. One century of sedimentation and Hg pollution at the mouth of the Sagua la Grande River (Cuba). Ciencias Marinas 40: 321–337, DOI 10.7773/cm.v40i4.2472. Diaz-Asencio M Sanchez-Cabeza JA Bolanos-Alvarez Y Ruiz-Fernandez AC Gomez-Batista M Morabito R Alonso-Hernandez C 2014 One century of sedimentation and Hg pollution at the mouth of the Sagua la Grande River (Cuba) Ciencias Marinas 40 321 337 10.7773/cm.v40i4.2472Open DOISearch in Google Scholar

Everettt SE, Tims SG, Hancock GJ, Bartley R and Fifield LK, 2008. Comparison of Pu and 137Cs as tracers of soil and sediment transport in a terrestrial environment. Journal of Environmental Radioactivity 99: 383–393, DOI 10.1016/j.jenvrad.2007.10.019. Everettt SE Tims SG Hancock GJ Bartley R Fifield LK 2008 Comparison of Pu and 137Cs as tracers of soil and sediment transport in a terrestrial environment Journal of Environmental Radioactivity 99 383 393 10.1016/j.jenvrad.2007.10.019Open DOISearch in Google Scholar

Foulds SA, Macklin MG and Brewer PA, 2013. Agro-industrial alluvium in the Swale catchment, northern England, as an event marker for the Antropocene. Holocene 23: 587–602, DOI 10.1177/0959683612465445. Foulds SA Macklin MG Brewer PA 2013 Agro-industrial alluvium in the Swale catchment, northern England, as an event marker for the Antropocene Holocene 23 587 602 10.1177/0959683612465445Open DOISearch in Google Scholar

Frignani M and Bellucci LG, 2004. Heavy metals in marine coastal sediments: Assessing sources, fluxes, history and trends. Annali di Chimica 94: 479–486, DOI 10.1002/adic.200490061. Frignani M Bellucci LG 2004 Heavy metals in marine coastal sediments: Assessing sources, fluxes, history and trends Annali di Chimica 94 479 486 10.1002/adic.200490061Open DOISearch in Google Scholar

Hancock GJ, Leslie C, Everett SE, Tims SG, Brunskill GJ and Haese R, 2011. Plutonium as a chronomarker in Australian and New Zealand sediments: a comparison with 137Cs. Journal of Environmental Radioactivity 102: 919–929, DOI 10.1016/j.jenvrad.2009.09.008. Hancock GJ Leslie C Everett SE Tims SG Brunskill GJ Haese R 2011 Plutonium as a chronomarker in Australian and New Zealand sediments: a comparison with 137Cs Journal of Environmental Radioactivity 102 919 929 10.1016/j.jenvrad.2009.09.008Open DOISearch in Google Scholar

Hudson-Edwards KA, Macklin MG, Curtis CD and Vaughan DJ, 1998. Chemical remobilization of contaminant metals within floodplain sediments in an incising river system: implications for dating and chemostratigraphy. Earth Surface Processes and Landforms 23: 671–684, DOI 10.1002/(SICI)1096-9837(199808)23:8<671::AID-ESP871>3.0.CO;2-R. Hudson-Edwards KA Macklin MG Curtis CD Vaughan DJ 1998 Chemical remobilization of contaminant metals within floodplain sediments in an incising river system: implications for dating and chemostratigraphy Earth Surface Processes and Landforms 23 671 684 10.1002/(SICI)1096-9837(199808)23:8<671::AID-ESP871>3.0.CO;2-ROpen DOISearch in Google Scholar

Kalbitz K and Wenrich R, 1998. Mobilization of heavy metals and arsenic in polluted wetland soils and its dependence on dissolved organic matter. Science of the Total Environment 209: 27–39, DOI 10.1016/S0048-9697(97)00302-1. Kalbitz K Wenrich R 1998 Mobilization of heavy metals and arsenic in polluted wetland soils and its dependence on dissolved organic matter Science of the Total Environment 209 27 39 10.1016/S0048-9697(97)00302-1Open DOISearch in Google Scholar

Komosa A, 1999. River sediment contamination with plutonium isotopes and heavy metals in Lublin agglomeration (Poland). Polish Journal of Environmental Studies 8: 155–160. Komosa A 1999 River sediment contamination with plutonium isotopes and heavy metals in Lublin agglomeration (Poland) Polish Journal of Environmental Studies 8 155 160Search in Google Scholar

LaRosa JJ, Cooper EL, Ghods-Esphahani A, Jansta V, Makarewicz M, Shawky S and Vajda N, 1992. Radiochemical methods used by the IAEA’s laboratories at Seibersdorf for the determination of 90Sr, 144Ce and Pu radionuclides in environmental samples collected for the international Chernobyl project. Journal of Environmental Radioactivity 17(2–3): 183–209, DOI 10.1016/0265-931X(92)90025-O. LaRosa JJ Cooper EL Ghods-Esphahani A Jansta V Makarewicz M Shawky S Vajda N 1992 Radiochemical methods used by the IAEA’s laboratories at Seibersdorf for the determination of 90Sr, 144Ce and Pu radionuclides in environmental samples collected for the international Chernobyl project Journal of Environmental Radioactivity 172–3 183 209 10.1016/0265-931X(92)90025-OOpen DOISearch in Google Scholar

Lintern A, Leahy PJ, Heijnis H, Zawadzki A, Gadd P, Jacobsen G, Deletic A and Mccarthy DT, 2016. Identifying heavy metal levels in historical flood water deposits using sediment cores. Water Research 105: 34–46, DOI 10.1016/j.watres.2016.08.041. Lintern A Leahy PJ Heijnis H Zawadzki A Gadd P Jacobsen G Deletic A Mccarthy DT 2016 Identifying heavy metal levels in historical flood water deposits using sediment cores Water Research 105 34 46 10.1016/j.watres.2016.08.041Open DOISearch in Google Scholar

Łokas E, Wachniew P, Ciszewski D, Owczarek P and Chau ND, 2010a. Simultaneous Use of Trace metals, 210Pb and 137Cs in floodplain sediments of a lowland river as indicators of anthropogenic impacts. Water, Air and Soil Pollution 207: 57–71, DOI 10.1007/s11270-009-0119-4. Łokas E Wachniew P Ciszewski D Owczarek P Chau ND 2010a Simultaneous Use of Trace metals, 210Pb and 137Cs in floodplain sediments of a lowland river as indicators of anthropogenic impacts Water, Air and Soil Pollution 207 57 71 10.1007/s11270-009-0119-4Open DOISearch in Google Scholar

Łokas E, Mietelski JW, Kleszcz K and Tomankiewicz E, 2010b. A sequential procedure for determining 238Pu, 239+240Pu, 241Am, 90Sr, U and Th activities in soils and peats from Spitsbergen. Nukleonika 55: 195–199. Łokas E Mietelski JW Kleszcz K Tomankiewicz E 2010b A sequential procedure for determining 238Pu, 239+240Pu, 241Am, 90Sr, U and Th activities in soils and peats from Spitsbergen Nukleonika 55 195 199Search in Google Scholar

Łokas E, Mietelski JW, Ketterer ME, Kleszcz K, Wachniew P, Michalska S and Miecznik M, 2013. Sources and vertical distribution of 137Cs, 238Pu, 239+240Pu and 241Am in peat profiles from southwest Spitsbergen. Applied Geochemistry 28: 100–108, DOI 10.1016/j.apgeochem.2012.10.027. Łokas E Mietelski JW Ketterer ME Kleszcz K Wachniew P Michalska S Miecznik M 2013 Sources and vertical distribution of 137Cs, 238Pu, 239+240Pu and 241Am in peat profiles from southwest Spitsbergen Applied Geochemistry 28 100 108 10.1016/j.apgeochem.2012.10.027Open DOISearch in Google Scholar

Matisoff G, Ketterer M, Rosén K, Mietelski JW, Vitko LF, Persson H and Lokas E, 2011. Downward migration of Chernobyl-derived radionuclides in soils in Poland and Sweden. Applied Geochemistry 26 (1): 105–115, DOI 10.1016/j.apgeochem.2010.11.007. Matisoff G Ketterer M Rosén K Mietelski JW Vitko LF Persson H Lokas E 2011 Downward migration of Chernobyl-derived radionuclides in soils in Poland and Sweden Applied Geochemistry 26 1 105 115 10.1016/j.apgeochem.2010.11.007Open DOISearch in Google Scholar

Mietelski JW and Wąs B, 1995. Plutonium from Chernobyl in Poland. Applied Radiation and Isotopes. 46: 1203–1211, DOI 10.1016/0969-8043(95)00162-7. Mietelski JW Wąs B 1995 Plutonium from Chernobyl in Poland Applied Radiation and Isotopes 46 1203 1211 10.1016/0969-8043(95)00162-7Open DOISearch in Google Scholar

Mietelski JW, Kubica B, Gaca P, Tomankiewicz E, Błażej S, Tuteja-Krysa M, Stobiński M, 2008a. 238Pu, 239+ 240Pu, 241Am, 90Sr and 137Cs in mountain soil samples from the Tatra National Park (Poland). Journal of Radioanalytical and Nuclear Chemistry 275: 523–533, DOI 10.1007/s10967-007-7026-1. Mietelski JW Kubica B Gaca P Tomankiewicz E Błażej S Tuteja-Krysa M Stobiński M 2008a 238Pu, 239+ 240Pu, 241Am, 90Sr and 137Cs in mountain soil samples from the Tatra National Park (Poland) Journal of Radioanalytical and Nuclear Chemistry 275 523 533 10.1007/s10967-007-7026-1Open DOISearch in Google Scholar

Mietelski JW, Mirocha S and Bogacz J, 2008b. Plutonium and gamma emitters in the northeastern part of Bory Tucholskie (Poland). Nukleonika 53: 17–25. Mietelski JW Mirocha S Bogacz J 2008b Plutonium and gamma emitters in the northeastern part of Bory Tucholskie (Poland) Nukleonika 53 17 25Search in Google Scholar

Mróz T, Ł okas E, K ocurek J a nd Gąsiorek M, 2 017. Atmospheric fallout radionuclides in peatland from Southern Poland. Journal of Environmental Radioactivity 175–176: 25–33, DOI 10.1016/j.jenvrad.2017.04.012. Mróz T Łokas E Kocurek J Gąsiorek M 2017 Atmospheric fallout radionuclides in peatland from Southern Poland Journal of Environmental Radioactivity 175–176 25 33 10.1016/j.jenvrad.2017.04.01228431374Open DOISearch in Google Scholar

Pirrie D, Camm GS, Sear LG and Hughes SH, 1997. Mineralogical and geochemical signature of mine waste contamination, Tresilian River, Fal Estuary, Cornwall, UK. Environmental Geology 29: 58–65, DOI 10.1007/s002540050104. Pirrie D Camm GS Sear LG Hughes SH 1997 Mineralogical and geochemical signature of mine waste contamination, Tresilian River, Fal Estuary, Cornwall, UK Environmental Geology 29 58 65 10.1007/s002540050104Open DOISearch in Google Scholar

Poręba G and Bluszcz A, 2007. Determination of the initial 137Cs fallout on the areas contaminated by Chernobyl fallout. Geochronometria 26: 35–38, DOI 10.2478/v10003-007-0009-y. Poręba G Bluszcz A 2007 Determination of the initial 137Cs fallout on the areas contaminated by Chernobyl fallout Geochronometria 26 35 38 10.2478/v10003-007-0009-yOpen DOISearch in Google Scholar

Provansal M, Villet J, Eyrolle F, Raccasi G, Gurriaran R, Antonelli C, 2010. High-resolution evaluation of recent bank accretion rate of the managed Rhone: a case study by multi-proxy approach. Geomorphology 117: 287–297, DOI 10.1016/j.geomorph.2009.01.017. Provansal M Villet J Eyrolle F Raccasi G Gurriaran R Antonelli C 2010 High-resolution evaluation of recent bank accretion rate of the managed Rhone: a case study by multi-proxy approach Geomorphology 117 287 297 10.1016/j.geomorph.2009.01.017Open DOISearch in Google Scholar

Rao RR and Cooper EL, 1995. Separation of low levels of actinides by selective oxidation/reduction and co-precipitation with neodymium fluoride. Journal of Radioanalytical and Nuclear Chemistry 197: 133–148, DOI 10.1007/BF02040226. Rao RR Cooper EL 1995 Separation of low levels of actinides by selective oxidation/reduction and co-precipitation with neodymium fluoride Journal of Radioanalytical and Nuclear Chemistry 197 133 148 10.1007/BF02040226Open DOISearch in Google Scholar

Rinklebe J and Du Laing G, 2011. Factors controlling the dynamics of trace metals in frequently flooded soils p. 245–270. In Selim HM [ed.], Dynamics and Bioavailability of heavy metals in the root zone, CRC Press. Rinklebe J Du Laing G 2011 Factors controlling the dynamics of trace metals in frequently flooded soils 245 270 Selim HM Dynamics and Bioavailability of heavy metals in the root zone CRC PressSearch in Google Scholar

Sanders LM, Enrich-Prast A, Taffs KH, Stokes TD and Sanders Ch, 2017. 240+239Pu depositional signatures as a viable geochronological tool in the Amazon Basin. Geochronometria 44: 142–149, DOI 10.1515/geochr-2015-0068. Sanders LM Enrich-Prast A Taffs KH Stokes TD Sanders Ch 2017 240+239Pu depositional signatures as a viable geochronological tool in the Amazon Basin Geochronometria 44 142 149 10.1515/geochr-2015-0068Open DOISearch in Google Scholar

Sill CW, 1987. Precipitation of actinides as fluorides or hydroxides for high resolution alpha spectrometry. Nuclear Chemistry and Waste Management 7: 201–215. Sill CW 1987 Precipitation of actinides as fluorides or hydroxides for high resolution alpha spectrometry Nuclear Chemistry and Waste Management 7 201 21510.1016/0191-815X(87)90066-0Search in Google Scholar

Stach A, 1996. Możliwosci i ograniczenia zastosowania cezu-137 do badan erozji gleb na obszarze Polski. Instytut Uprawy, Nawożenia i Gleboznawstwa w Puławach. Seria K 2.11: 203–226. Stach A 1996 Możliwosci i ograniczenia zastosowania cezu-137 do badan erozji gleb na obszarze Polski Instytut Uprawy, Nawożenia i Gleboznawstwa w Puławach. Seria K 211 203 226Search in Google Scholar

Tims SG, Everett SE, Fifield LK, Hancock GJ and Bartley R, 2010. Plutonium as a tracer of soil and sediment movement in the Herbert River, Australia. Nuclear Instruments and Methods in Physics Research B 268: 1150–1154, DOI 10.1016/j.nimb.2009.10.121. Tims SG Everett SE Fifield LK Hancock GJ Bartley R 2010 Plutonium as a tracer of soil and sediment movement in the Herbert River, Australia Nuclear Instruments and Methods in Physics Research B 268 1150 1154 10.1016/j.nimb.2009.10.121Open DOISearch in Google Scholar

UNSCEAR, 2000. Sources and effects of ionizing radiation vol 1. United Nations Scientific Committee on the Effects of Atomic Radiation, New York, 245 pp. UNSCEAR 2000 Sources and effects of ionizing radiation vol 1 United Nations Scientific Committee on the Effects of Atomic Radiation New York 245Search in Google Scholar

USEPA, 1994. Method 3051: Microwave assisted acid digestion of sediments, sludges, soils, and oils Revision 0. USEPA. USEPA 1994 Method 3051: Microwave assisted acid digestion of sediments, sludges, soils, and oils Revision 0 USEPASearch in Google Scholar

Yao SC and Xue X, 2016. Sediment records of the metal pollution at Chihu Lake near a copper mine at the middle Yangtze River in China. Journal of Limnology 75: 121–134, DOI 10.4081/jlimnol.2015.1241. Yao SC Xue X 2016 Sediment records of the metal pollution at Chihu Lake near a copper mine at the middle Yangtze River in China Journal of Limnology 75 121 134 10.4081/jlimnol.2015.1241Open DOISearch in Google Scholar

Žák K, Rohovec J and Navrátil T, 2009. Fluxes of heavy metals from a highly polluted watershed during flood events: a case study of the Litavka River, Czech Republic. Water, Air and Soil Pollution 203: 343–358, DOI 10.1007/s11270-009-0017-9. Žák K Rohovec J Navrátil T 2009 Fluxes of heavy metals from a highly polluted watershed during flood events: a case study of the Litavka River, Czech Republic Water, Air and Soil Pollution 203 343 358 10.1007/s11270-009-0017-9Open DOISearch in Google Scholar

Zeng F, Wu K, He Q, Diao X and Li L, 2017. Model establishment for ponding in coal mining subsidence areas and its prediction: case study of Northern Jining, China. Geotechnical and Geological Engineering 35: 83–89, DOI 10.1007/s10706-016-0086-7. Zeng F Wu K He Q Diao X Li L 2017 Model establishment for ponding in coal mining subsidence areas and its prediction: case study of Northern Jining, China Geotechnical and Geological Engineering 35 83 89 10.1007/s10706-016-0086-7Open DOISearch in Google Scholar

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