INFORMAZIONI SU QUESTO ARTICOLO

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Ali AA, Ghaleb B, Garneau M, Asnong H and Loisel J, 2008. Recent peat accumulation rates in minerothophic fens of the Bay James region, Eastern Canada, inferred by 210Pb and 137Cs radiometric techniques. Applied Radiation and Isotopes 66(10): 1350–1358, 10.1016/j.apradiso.2008.02.091.AliAAGhalebBGarneauMAsnongHLoiselJ2008Recent peat accumulation rates in minerothophic fens of the Bay James region, Eastern Canada, inferred by 210Pb and 137Cs radiometric techniquesApplied Radiation and Isotopes66101350135810.1016/j.apradiso.2008.02.091Open DOISearch in Google Scholar

Bojakowska I and Lech D, 2008. Zróznicowanie zawartości pierwiastków śladowych w torfach występujących na obszarze Polski (The diversity of trace elements content in peat occuring in Poland). Zeszyty Naukowe Politechniki Śląskiej, Górnictwo: 285: 31–41 (in Polish).BojakowskaILechD2008Zróznicowanie zawartości pierwiastków śladowych w torfach występujących na obszarze Polski (The diversity of trace elements content in peat occuring in Poland)Zeszyty Naukowe Politechniki Śląskiej, Górnictwo2853141(in Polish)Search in Google Scholar

Boyle JF, 2001. Inorganic geochemical methods in palaeolimnology. In: Last WM, Smol JP, eds., Tracking Environmental Change Using Lake Sediments 2: Physical and Geochemical Methods: 83–141.BoyleJF2001Inorganic geochemical methods in palaeolimnologyLastWMSmolJPTracking Environmental Change Using Lake Sediments2Physical and Geochemical Methods8314110.1007/0-306-47670-3_5Search in Google Scholar

Bronk Ramsey C and Lee S, 2013. Recent and Planned Developments of the Program OxCal. Radiocarbon 55(2–3): 720–730, 10.2458/azu_js_rc.55.16215.Bronk RamseyCLeeS2013Recent and Planned Developments of the Program OxCalRadiocarbon552–372073010.2458/azu_js_rc.55.16215Open DOISearch in Google Scholar

Chróst L, 2013. Ołowiowy ślad Wiślan odczytany z torfowisk obszaru kruszconośnego śląsko-małopolskiego (Lead trace of Vistulans tribe read from peat bogs of Silesian-Malopolska, metalliferous zone). In: Boroń P, ed.: Argenti fossores at alii. Znaczenie gospodarcze wschodniej części Górnego Śląska i zachodnich krańców Małopolski w późnej fazie wczesnego średniowiecza [X-XII wiek] (The economic importance of the eastern part of Upper Silesia and western ends of Malopolska in the late phase of the early Middle Ages [X-XII century]), Chronicon, Wroclaw: 175–186, ISBN 978-83-935760-6-7 (in Polish).ChróstL2013Ołowiowy ślad Wiślan odczytany z torfowisk obszaru kruszconośnego śląsko-małopolskiego (Lead trace of Vistulans tribe read from peat bogs of Silesian-Malopolska, metalliferous zone)BorońPArgenti fossores at alii. Znaczenie gospodarcze wschodniej części Górnego Śląska i zachodnich krańców Małopolski w późnej fazie wczesnego średniowiecza [X-XII wiek] (The economic importance of the eastern part of Upper Silesia and western ends of Malopolska in the late phase of the early Middle Ages [X-XII century])ChroniconWroclaw175186ISBN 978-83-935760-6-7 (in Polish)Search in Google Scholar

De Vleeschouwer F, Gérard L, Goormaghtigh C, Mattielli N, Le Roux G and Fagel N, 2007. Atmospheric lead and heavy metal pollution records from a Belgian peat bog spanning the last two millennia: Human impact on a regional to global scale. The Science of the Total Environment 377: 282–295.De VleeschouwerFGérardLGoormaghtighCMattielliNLe RouxGFagelN2007Atmospheric lead and heavy metal pollution records from a Belgian peat bog spanning the last two millennia: Human impact on a regional to global scaleThe Science of the Total Environment37728229510.1016/j.scitotenv.2007.02.017Search in Google Scholar

Godzik B and Woch MW, 2015. History of mining in the Olkusz region. In: Godzik B, ed., Natural and historical values of the Olkusz Ore-Bearing region. W. Szafer Institute of Botany, Polish Academy of Sciences, Kraków: 29–36.GodzikBWochMW2015History of mining in the Olkusz regionGodzikBNatural and historical values of the Olkusz Ore-Bearing regionW. Szafer Institute of Botany, Polish Academy of SciencesKraków2936Search in Google Scholar

Ilnicki P, 2002. Torfowiska i torf (Peatlands and peat). Wydawnictwo Akademii Rolniczej im. Augusta Cieszkowskiego, Poznań, ISBN 83-7160-243-X (in Polish).IlnickiP2002Torfowiska i torf (Peatlands and peat)Wydawnictwo Akademii Rolniczej imAugusta CieszkowskiegoPoznańISBN 83-7160-243-X (in Polish)Search in Google Scholar

Kac NJ, Kac SW and Skobiejewa E, 1977. Atlas rastitielnych ostatkow w torfach (Atlas of plant residues in peat). Nedra, Moskwa (in Russian).KacNJKacSWSkobiejewaE1977Atlas rastitielnych ostatkow w torfach (Atlas of plant residues in peat)NedraMoskwa (in Russian)Search in Google Scholar

Karczewska A and Kabała C, 2008. Metodyka analiz laboratoryjnych gleb i roślin (Methods of laboratory analysis of soils and plants).Instytut Gleboznawstwa i Ochrony Środowiska Rolniczego, Akademia Rolnicza, Wrocław (in Polish).KarczewskaAKabałaC2008Metodyka analiz laboratoryjnych gleb i roślin (Methods of laboratory analysis of soils and plants)Instytut Gleboznawstwa i Ochrony Środowiska RolniczegoAkademia RolniczaWrocław(in Polish)Search in Google Scholar

Kondracki J, 2013. Geografia regionalna Polski (Regional geography of Poland). Wydawnictwo Naukowe PWN, Warszawa, ISBN 978-83-01-16022-7 (in Polish).KondrackiJ2013Geografia regionalna Polski (Regional geography of Poland)Wydawnictwo Naukowe PWNWarszawaISBN 978-83-01-16022-7 (in Polish)Search in Google Scholar

Kruczała A, ed., 2000. Atlas klimatu województwa śląskiego (Climate Atlas of the Silesia Province). Instytut Meteorologii i Gospodarki Wodnej, Katowice: 34, 57, 74, 83-85862-64-1 (in Polish).KruczałaA2000Atlas klimatu województwa śląskiego (Climate Atlas of the Silesia Province)Instytut Meteorologii i Gospodarki WodnejKatowice34577483-85862-64-1 (in Polish)Search in Google Scholar

Latałowa M, 1976. Pollen diagram of the Late-glacial and Holocene peat deposits from Wolbrom (S Poland). Acta Palaeobotanica 17 (1): 55–80 (in Polish).LatałowaM1976Pollen diagram of the Late-glacial and Holocene peat deposits from Wolbrom (S Poland)Acta Palaeobotanica1715580(in Polish)Search in Google Scholar

Latałowa M and Nalepka D, 1987. A study of the Late-glacial and Holocene vegetational history of the Wolbrom area (Silesian-Cracovian Upland). Acta Palaeobotanica 27 (1): 75–115.LatałowaMNalepkaD1987A study of the Late-glacial and Holocene vegetational history of the Wolbrom area (Silesian-Cracovian Upland)Acta Palaeobotanica27175115Search in Google Scholar

Lis J and Pasieczna A, 1995. Geochemical atlas of Upper Silesia 1:200000. Państwowy Instytut Geologiczny, Warszawa.LisJPasiecznaA1995Geochemical atlas of Upper Silesia 1:200000Państwowy Instytut GeologicznyWarszawaSearch in Google Scholar

Maciak F and Liwski S, 1996. Ćwiczenia z torfoznawstwa (Exercises in peat science). Wydawnictwo SGGW, Warszawa. ISBN: 83-00-02968-0 (in Polish).MaciakFLiwskiS1996Ćwiczenia z torfoznawstwa (Exercises in peat science)Wydawnictwo SGGW, WarszawaISBN: 83-00-02968-0 (in Polish)Search in Google Scholar

MacKenzie AB, Farmer JG and Sugden CL, 1997. Isotopic evidence of the relative retention and mobility of lead and radiocaesium in Scottish ombrotrophic peats. Science of the Total Environment 203: 115–127, 10.1016/S0048-9697(97)00139-3.MacKenzieABFarmerJGSugdenCL1997Isotopic evidence of the relative retention and mobility of lead and radiocaesium in Scottish ombrotrophic peatsScience of the Total Environment20311512710.1016/S0048-9697(97)00139-3Open DOISearch in Google Scholar

Magiera T, Mendakiewicz M, Szuszkiewicz M, Jabłońska M and Chróst L, 2016. Technogenic magnetic particles in soils as evidence of historical mining and smelting activity: A case of the Brynica River Valley, Poland. Science of the Total Environment 566–567: 536–551, 10.1016/j.scitotenv.2016.05.126.MagieraTMendakiewiczMSzuszkiewiczMJabłońskaMChróstL2016Technogenic magnetic particles in soils as evidence of historical mining and smelting activity: A case of the Brynica River Valley, PolandScience of the Total Environment566–56753655110.1016/j.scitotenv.2016.05.12627236619Open DOISearch in Google Scholar

Maksimow A, 1965. Torf i jego użytkowanie w rolnictwie (Peat and its use in agriculture). PWRiL, Warszawa (in Polish).MaksimowA1965Torf i jego użytkowanie w rolnictwie (Peat and its use in agriculture)PWRiLWarszawa (in Polish)Search in Google Scholar

Martínez Cortizas A, 2016. Early atmospheric metal pollution provides evidence for Chalcolithic/Bronze Age mining and metallurgy in Southwestern Europe. Science of the Total Environment 545–546: 398–406, 10.1016/j.scitotenv.2015.12.078.Martínez CortizasA2016Early atmospheric metal pollution provides evidence for Chalcolithic/Bronze Age mining and metallurgy in Southwestern EuropeScience of the Total Environment545–54639840610.1016/j.scitotenv.2015.12.07826748004Open DOISearch in Google Scholar

Myślińska E, 2001. Grunty organiczne i laboratoryjne metody ich badania (Organic soils and the laboratory test methods). Wydawnictwo Naukowe PWN, Warszawa. ISBN: 8301134178 (in Polish).MyślińskaE2001Grunty organiczne i laboratoryjne metody ich badania (Organic soils and the laboratory test methods)Wydawnictwo Naukowe PWNWarszawaISBN: 8301134178 (in Polish)Search in Google Scholar

Nieć M, 1997. Złoża rud cynku i ołowiu (Deposits of zinc and lead ores). In: Kicki J, ed., Surowce mineralne Polski. Surowce metaliczne: cynk, ołów (Mineral resources of Poland. Metallic resources: zinc, lead). Wydawnictwo Centrum PPGSMiE PAN, Kraków: 9–46. ISBN 83-86286-83-1 (in Polish).NiećM1997Złoża rud cynku i ołowiu (Deposits of zinc and lead ores)KickiJSurowce mineralne Polski. Surowce metaliczne: cynk, ołów (Mineral resources of Poland. Metallic resources: zinc, lead)Wydawnictwo Centrum PPGSMiE PANKraków946ISBN 83-86286-83-1 (in Polish)Search in Google Scholar

Nriagu JO, 1996. A history of global metal pollution. Science 272(5259): 223, 10.1126/science.272.5259.223.NriaguJO1996A history of global metal pollutionScience272525922310.1126/science.272.5259.223Open DOISearch in Google Scholar

Obidowicz A, 1976. Genesis and development of the peat-bog at Wolbrom (S Poland). Acta Palaeobotanica 17(1): 45–54 (in Polish).ObidowiczA1976Genesis and development of the peat-bog at Wolbrom (S Poland)Acta Palaeobotanica1714554(in Polish)Search in Google Scholar

Pawlyta J, Pazdur A, Rakowski A, Miller BF and Harkness DD, 1998. Commissioning of QuantulusTM liquid scintillation beta spectrometer for measuring 14C and 3H at natural abundance levels. Radiocarbon 40(1): 201–209.PawlytaJPazdurARakowskiAMillerBFHarknessDD1998Commissioning of QuantulusTM liquid scintillation beta spectrometer for measuring 14C and 3H at natural abundance levelsRadiocarbon40120120910.1017/S0033822200018051Search in Google Scholar

Pawłowski D, Kowalewski G, Milecka K, Płóciennik M, Woszczyk M, Zieliński T, Okupny D, Włodarski W and Forysiak J, 2015. A reconstruction of the palaeohydrological conditions of a flood-plain: A multi-proxy study from the Grabia River valley mire, central Poland. Boreas 44(3): 543–562, 10.1111/bor.12115.PawłowskiDKowalewskiGMileckaKPłóciennikMWoszczykMZielińskiTOkupnyDWłodarskiWForysiakJ2015A reconstruction of the palaeohydrological conditions of a flood-plain: A multi-proxy study from the Grabia River valley mire, central PolandBoreas44354356210.1111/bor.12115Open DOISearch in Google Scholar

Pawłowski D, Borówka RK, Kowalewski GA, Luoto TP, Milecka K, Nevalainen L, Okupny D, Tomkowiak J and Zieliński T, 2016. Late Weichselian and Holocene record of the paleoenvironmental changes in a small river valley in Central Poland. Quaternary Science Reviews 135: 24–40, 10.1016/j.quascirev.2016.01.005.PawłowskiDBorówkaRKKowalewskiGALuotoTPMileckaKNevalainenLOkupnyDTomkowiakJZielińskiT2016Late Weichselian and Holocene record of the paleoenvironmental changes in a small river valley in Central PolandQuaternary Science Reviews135244010.1016/j.quascirev.2016.01.005Open DOISearch in Google Scholar

Reimer PJ, Bard E, Bayliss A, Beck JW, Blackwell PG, Bronk Ramsey C, Buck CE, Cheng H, Edwards RL, Friedrich M, Grootes PM, Guilderson TP, Haflidason H, Hajdas I, Hatté 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, SM Turney C and van der Plicht J, 2013. IntCal13 and Marine13 radiocarbon age calibration curves 0-50,000 years cal BP, Radiocarbon 55(4): 1869–1887.ReimerPJBardEBaylissABeckJWBlackwellPGBronk RamseyCBuckCEChengHEdwardsRLFriedrichMGrootesPMGuildersonTPHaflidasonHHajdasIHattéCHeatonTJHoffmannDLHoggAGHughenKAKaiserKFKromerBManningSWNiuMReimerRWRichardsDAScottEMSouthonJRStaffRASM TurneyCvan der PlichtJ2013IntCal13 and Marine13 radiocarbon age calibration curves 0-50,000 years cal BPRadiocarbon5541869188710.2458/azu_js_rc.55.16947Search in Google Scholar

Shotyk W, 1996. Natural and anthropogenic enrichments of As, Cu, Pb, Sb and Zn in ombrotrophic versus minerotrophic peat bog profiles, Jura Mountains, Switzerland. Water, Air and Soil Pollution 90: 375–405, 10.1007/BF00282657.ShotykW1996Natural and anthropogenic enrichments of As, Cu, Pb, Sb and Zn in ombrotrophic versus minerotrophic peat bog profiles, Jura Mountains, SwitzerlandWater, Air and Soil Pollution9037540510.1007/BF00282657Open DOISearch in Google Scholar

Sikorski J and Bluszcz A, 2003. Testing applicability of 210Pb method to date sediments of human–made lake Kozłowa Góra. Geochronometria 22: 63–66.SikorskiJBluszczA2003Testing applicability of 210Pb method to date sediments of human–made lake Kozłowa GóraGeochrono-metria226366Search in Google Scholar

Sikorski J and Bluszcz A, 2008. Application of α and γ spectrometry in the 210Pb method to model sedimentation in artificial retention reservoir. Geochronometria 31: 65–75, 10.2478/v10003-008-0019-4.SikorskiJBluszczA2008Application of α and γ spectrometry in the 210Pb method to model sedimentation in artificial retention reservoirGeochronometria31657510.2478/v10003-008-0019-4Open DOISearch in Google Scholar

Skripkin V and Kovaliukh N, 1998. Recent developments in the procedures used at the SSCER Laboratory for the routine preparation of lithium carbide. Radiocarbon 40(1): 211–214.SkripkinVKovaliukhN1998Recent developments in the procedures used at the SSCER Laboratory for the routine preparation of lithium carbideRadiocarbon40121121410.1017/S0033822200018063Search in Google Scholar

Śmieja-Król B, Janeczek J, Bauerek A and Thorseth IH, 2015. The role of authigenic sulfides in immobilization of potentially toxic metals in the Bagno Bory wetland, southern Poland. Environmental Science and Pollution Research 22(20): 15495–15505, 10.1007/s11356-015-4728-8.Śmieja-KrólBJaneczekJBauerekAThorsethIH2015The role of authigenic sulfides in immobilization of potentially toxic metals in the Bagno Bory wetland, southern PolandEnvironmental Science and Pollution Research2220154951550510.1007/s11356-015-4728-8462012626006073Open DOISearch in Google Scholar

Theodórsson P, 2005. A simple, extremely stable single-tube liquid scintillation system for radiocarbon dating. Radiocarbon 47: 89–97, 10.2458/azu_js_rc.47.2803.TheodórssonP2005A simple, extremely stable single-tube liquid scintillation system for radiocarbon datingRadiocarbon47899710.2458/azu_js_rc.47.2803Open DOISearch in Google Scholar

Tobolski K, 2000. Przewodnik do oznaczania torfó,w i osadó,w jeziornych (Guidebook for determination of peat and lake sediments). Wydawnictwo Naukowe PWN, Warszawa. ISBN 83-01-13215-9 (in Polish).TobolskiK2000Przewodnik do oznaczania torfó,w i osadó,w jeziornych (Guidebook for determination of peat and lake sediments)Wydawnictwo Naukowe PWNWarszawaISBN 83-01-13215-9 (in Polish)Search in Google Scholar

Tołpa S, Jasnowski M and Pałczyński A, 1967. System der genetischen Klassifizierung der Torfe Mitteln-Europas. (System of the genetic classification of the peat in Central Europe). Zesz. Probl. Post. Nauk Rol. 76: 9–99 (in German).TołpaSJasnowskiMPałczyńskiA1967System der genetischen Klassifizierung der Torfe Mitteln-Europas. (System of the genetic classification of the peat in Central Europe)Zesz. Probl. Post. Nauk Rol76999(in German)Search in Google Scholar

Trela J, 1928. Torfowisko w Wolbromiu (wyniki analizy pyłkowej) (Peatland in Wolbrom /the results of pollen analysis/). Acta Soc. Bot. Pol. 5(3): 337–351.TrelaJ1928Torfowisko w Wolbromiu (wyniki analizy pyłkowej) (Peatland in Wolbrom /the results of pollen analysis/)Acta Soc. Bot. Pol5333735110.5586/asbp.1927.018Search in Google Scholar

Tudyka K, Bluszcz A, Kozłowska B, Pawlyta J and Michczyński A, 2015. Low level 14C measurements in freshly prepared benzene samples with simultaneous 214Bi/214Po pairs counting for routine 222Rn contamination correction. Radiation Measurements 74: 6–11, 10.1016/j.radmeas.2015.01.010.TudykaKBluszczAKozłowskaBPawlytaJMichczyńskiA2015Low level 14C measurements in freshly prepared benzene samples with simultaneous 214Bi/214Po pairs counting for routine 222Rn contamination correctionRadiation Measurements7461110.1016/j.radmeas.2015.01.010Open DOISearch in Google Scholar

Tudyka K and Pazdur A, 2012. 14C Dating with the ICELS Liquid Scintillation Counting System Using Fixed-Energy Balance Counting Window Method. Radiocarbon 54: 267–273, 10.2458/azu_js_rc.v54i2.15832.TudykaKPazdurA201214C Dating with the ICELS Liquid Scintillation Counting System Using Fixed-Energy Balance Counting Window MethodRadiocarbon5426727310.2458/azu_js_rc.v54i2.15832Open DOISearch in Google Scholar

Vile MA, Kelman Wieder R and Novák M, 1999. Mobility of Pb in Sphagnum-derived peat. Biogeochemistry 45: 35–52, 10.1007/BF00992872.VileMAKelman WiederRNovákM1999Mobility of Pb in Sphagnum-derived peatBiogeochemistry45355210.1007/BF00992872Open DOISearch in Google Scholar

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