Multi-proxy inferred hydroclimatic conditions at Bęczkowice fen (central Poland); the influence of fluvial processes and human activity in the stone age

Autor

DOI:

https://doi.org/10.26485/AGL/2021/111/10

Słowa kluczowe:

peatland, palaeoecology, climate changes, Late Weichselian, Early Holocene, central Poland

Abstrakt

Fens have been forming in the river valleys of central Poland since the Bølling and went through a transformation from fully aquatic to semiterrestrial habitats during the Younger Dryas/Holocene transition. This drove plant and invertebrate communities and left a distinct pattern in chemical sediment composition, which is why river valley peatlands are sensitive palaeo-archives of climatic, hydrological and edaphic changes. Here we reconstruct the Late Weichselian history of the Bęczkowice fen in the upper Luciąża River valley using geochemical, pollen, Cladocera and Chironomidae proxies. Pollen-based age estimation indicates that the analysed peat sequence dates from the Bølling to Early Holocene. The layers 190-170 cm and 125-105 cm of the studied core were reworked by fluvial processes. Chironomidae and Cladocera communities indicate mostly limnetic conditions during the Allerød and early Younger Dryas. Peatland pools were supplied mostly by Luciąża River floods, but also by groundwater. Since the onset of the Holocene, the water level has dropped, eliminating aquatic midges and water fleas, and supporting taxa typical of astatic waters and wet soil.

Bibliografia

Antczak-Orlewska O., Okupny D., Pawłowski D., Kotrys B., Krąpiec M., Luoto T.P., Peyron O., Płociennik M., Stachowicz-Rybka R., Wacnik A., Szmańda J., Szychowska-Krąpiec E., Kittel P. in press. The environmental history of the oxbow in the Luciąza River valley – Study on the specific microclimate during Allerød and Younger Dryas in central Poland. Quaternary International.

Balwierz Z., Goździk J. 1997. Palaeoenvironmental changes established trough pollen analysis of Late Vistulian calcareous deposits in closed depressions in Bełchatów. Acta Universitatis Lodziensis, Folia Geographica Physica 1: 7-21.

Bennett K.D., 1996. Determination of the number of zones in a biostratigraphical sequence. New Phytologist 132: 155-170.

Berglund B.E., Ralska-Jasiewiczowa M. 1986. Pollen analysis. In: B.E. Berglund (ed.) Handbook of Holocene Palaeoecology and Palaeohydrology, J. Wiley and Sons Ltd. Chichester–New York, 455-483.

Birks H.J.B. 1986. Numerical zonation, comparison and correlation of Quaternary pollenstratigraphical data. In: B.E. Berglund (ed.) Handbook of Holocene Palaeoecology and Palaeohydrology. Wiley and Sons Ltd. Chich-ester–New York: 743-774.

Birks H.J.B., Gordon A.D. 1985. Numerical methods in Quaternary pollen analysis. Academic Press, London.

Bjerring R., Becares E., Declerck S., Gross E.M., Hansson L.-A., Kairesalo T., Nykänen M., Halkiewicz A., Kornijów R., Conde-Porcuna J.M., Seferlis M., Noges T., Moss B., Amsink S.L., Vad Odgaard, B., Jeppesen E. 2009. Sub-fossil Cladocera in relation to contemporary environmental variables in 54 Pan-European lakes. Freshwater Biology 54: 2401-2417.

Borówka R.K. 1987/1988. Denudation process intensity on Vistulian till plains in relation to prehistoric settlement and human activity, Leszno Region, Middle Great Poland. Quaestiones Geographicae 13/14: 5-18.

Borówka R.K. 1992. Przebieg i rozmiary denudacji w obrębie śródwysoczyznowych basenów sedymentacyjnych podczas późnego vistulianu i holocenu. Wyd. Nauk. UAM, seria Geografia, 54.

Borówka R.K., Tomkowiak J., Okupny D., Forysiak J., Bieniek B. 2014. Chemical composition of biogenic sediments from the fossil river valley Balin-Chropy (Wilczków peatland, Warsaw-Berlin Glacial Valley). Folia Quaternaria 82: 31-50.

Borówka R.K., Tomkowiak J., Okupny D., Forysiak J. 2015. Chemical composition of biogenic sediments from the river valley Luciąża (Bęczkowice peatland in the Piotrków Plain). Folia Quaternaria 83: 5-23.

Brooks S.J. 2006. Fossil midges (Diptera: Chironomidae) as palaeoclimatic indicators for the Eurasian region. Quaternary Science Reviews 25: 1894-1910.

Brooks S.J., Birks H.J.B. 2001. Chironomid-inferred air temperatures from Lateglacial and Holo-cene sites in north-west Europe: progress and problems. Quaternary Science Reviews 20: 1723-1741.

Brooks S.J., Lowe J.J., Mayle F.E. 1997. The Late Devensian Lateglacial palaeoenvironmental record from Whitrig Bog, S.E. Scotland. 2. Chi-ronomidae (Insecta: Diptera) Boreas 26: 297-308.

Brooks S.J., Langdon P.G., Heiri O. 2007. The identi-fication and use of Palaearctic Chironmidae larvae in palaeoecology. QRA Technical Guide No. 10. Quaternary Research Associa-tion. London.

Chevalier M., Davis A.S.B., Heiri O., Seppä H. 2020. Pollen-based climate reconstruction techniques for late Quaternary studies. Earth-Science Reviews 210: 1-33.

Chmielewska M. 1978. Późny paleolit pradoliny warszawsko-berlińskiej. Ossolineum, Wrocław.

Clark K.R., Gorley R.N. 2001. PRIMERv5: User Manual/Tutorial. 91 pp. PRIMER-E Limited, Plymouth.

Cyrek K. 1996. Osadnictwo schyłkowopaleolityczne w zakolu załęczańskim doliny Warty. Biblio-teka Muzeum Archeologicznego i Etnograficznego w Łodzi, 30.

Domińczak P., Okupny D. 2010. Spatial variability of selected physicochemical properties of biogenic sediments in the Kopanicha peatland near Skierniewice. Prace Geograficzne IGiGP UJ 123: 99-110.

Dzieduszyńska D., Kittel P., Petera-Zganiacz J., Bro-oks S.J., Korzeń K., Krąpiec M., Pawłowski D., Płaza D.K., Płóciennik M., Stachowicz-Rybka R., Twardy J. 2014. Environmental influence on forest development and decline in the War-ta River valley (Central Poland) during the Late Weichselian. Quaternary International 324: 99-114.

Enters D., Dorfler W., Zolitschka B. 2008. Historical soil erosion and land-use change during the last two millennia recorded in lake sediments of Frickenhausen See, northern Bavaria, central Germany. The Holocene 18,2: 243-254.

Enters D., Kirillova E., Lotter A.F., Lücke A., Parpiles J., Jahns S., Kuhn G., Zalitschka B. 2010. Climate change and human impact at Sacrower See (NE Germany) during the past 13,000 years: a geochemical record. Journal of Paleolimno-logy 43: 719-737.

Forysiak J. 2012. Zapis zmian środowiska przyrodniczego późnego vistulianu i holocenu w osadach torfowisk regionu łódzkiego. Acta Geographica Lodziensia 99.

Forysiak J., Borówka R.K., Kloss M., Obremska M., Okupny D., Żurek S. 2013. Geological and geomorphological features of the Rąbień peat-land and preliminary results of investigations of biogenic sediments. Acta Geographica Lodziensia 101: 65-76.

Frey D. 1986. Cladocera Analysis. In: B.E. Berglund (ed.) Handbook of Holocene Palaeoecology and Palaeohydrology. Wiley and Sons Ltd. Chichester–New York: 667-692.

Gałka M., Lewandowska A., Niedzielski P., Sim T.G., Sindles G.T., Szczurek S. 2020. Late Glacial and early Holocene development of an ox-bow lake in Central Europe Poland based on plant macrofossil and geochemical data. The Holocene 30,1: 178-189.

Gauthier E., Jassey V.E.J., Mitchell E.A.D., Lamentowicz M., Payne R., Delarue F., Laggoun-Defarge F., Gilbert D., Richard H. 2019. From Climatic to Anthropogenic Drivers: A Multi-Proxy Reconstruction of Vegetation and Peatland Development in the French Jura Moun-tains. Quaternary 2(38): 1-13.

Goździk J., Konecka-Betley K. 1992. Late-Vistulian carbonateous formations in outflow-closed depressions of the Bełchatów brown coal strip mine. Part II. Chemical and mineral composition. Roczniki Gleboznawcze 43,3/4: 113-124.

Grimm E.C. 1992. TILIA/TILIA graph. Version 2.6.1. Springfield, Illinois, Illinois State Museum.

Hammer Ø., Harper D.A.T., Ryan P.D. 2001. PAST: Paleontological Statistics software package for education and data analysis. Palaeonto-logia Electronica 4: 1-9.

Henrikson L., Olofson J.B., Oscarson H.G. 1982. The impact of acidification on Chironomidae (Diptera) as indicated by Subfossil stratification. Hydrobiologia 86: 223-229.

Hildebrandt-Radke I., Janczak-Kostecka B., Spychalski W. 2011. Zapis procesów prehistorycznej antropopresji w otoczeniu stanowiska archeologicznego w Bruszewie (centralna Wielkopolska) na podstawie badań osadów rynny glacjalnej Samicy. Landform Analysis 16: 87-91.

Juggins S. 2007. C2 Version 1.5 User guide. Software for ecological and palaeoecological data analysis and visualisation. Newcastle University.

Kittel P., Muzolf B., Płóciennik M., Elias S., Brooks S.J., Lutyńska M., Pawłowski D., Stachowicz-Rybka R., Wacnik A., Okupny D., Głąb Z., Mueller-Bieniek A. 2014. A multi-proxy reconstruction from Lutomiersk-Koziówki, Central Poland, in the context of early modern hemp and flax processing. Journal of Archaeological Science 50: 318-337.

Kittel P., Płóciennik M., Borówka R.K., Okupny D., Pawłowski D., Peyron O., Stachowicz-Rybka R., Obremska M., Cywa K. 2016. Early Holocene hydrology and environments of the Ner River (Poland). Quaternary Research 85,2: 187-203.

Kittel P., Sikora J., Antczak O., Brooks S.J., Elias S., Krąpiec M., Luoto T.P., Borówka R.K., Okupny D., Pawłowski D., Płóciennik M., Rzodkiewicz M., Stachowicz-Rybka R., Wacnik A. 2018. The palaeoecological development of the Late Medieval moat – Multi-proxy research at Rozprza, Central Poland. Quaternary International 482: 131-156.

Kittel P., Mazurkevich A., Wieckowska-Lüth M., Pawłowski D., Dolbunova E., Płóciennik M., Gauthier E., Krąpiec M., Maigrot Y., Danger M., Mroczkowska A., Okupny D., Szmańda J., Thiebaut E., Słowiński M. 2021. On the border between land and water: the environmental conditions of the Neolithic occupation from 4.3 until 1.6 ka BC at Serteya, Western Rus-sia. Geoarchaeology – An International Journal 36: 173-202.

Kondracki J. 2000. Geografia regionalna Polski. Wyd. PWN, Warszawa.

Kotrys B., Płóciennik M., Sydor P., Brooks S.J. 2020. Expanding the Swiss-Norwegian chironomid training set with Polish data. Boreas 49: 89-107.

Kowalewski G. 2007. Analiza makroszczątkowa w badaniach paleolimnologicznych. Studia Limnologica et Telmatologica 1: 67-82.

Kozłowski S.K. 1989. Mesolithic in Poland a New Approach. Wyd. UW, Warszawa.

Kukawka S. 2015. Początki kultury pucharów lejkowatych na Niżu Polskim. Folia Praehistorica Posnaniensia 20: 277-300.

Kurkowski S., Popielski W. 1991. Objaśnienia do Szczegółowej mapy geologicznej Polski w skali 1:50 000, arkusz Gorzkowice. PIG, Warszawa.

Lamentowicz M., van der Knaap W.O., van Leeuwen J.F.N., Hangartner S.,. Mitchell E.A.D, Goslar T., Tinner W., Kamenik C. 2010. A multi-proxy high-resolution approach to reconstructing past environmental change from an Alpine peat archive. Pages news 18: 13-15.

Lotter A.F., Juggins S. 1991. POLPROF, TRAN and ZONE. Programmes for plotting, editing and zoning of pollen and diatom data. INQUA Commission for the study of the Holocene. Working Group on Data Handing Methods. Newsletter 6.

Lotter A.F., Birks H.J.B., Hofmann W., Marchetto A. 1997. Modern diatom, cladocera, chironomid, and chrysophyte cyst assemblages as quanti-tative indicators for the reconstruction of past environmental conditions in the Alps. I. Cli-mate. Journal of Paleolimnology 18: 395-420.

Luoto T.P. 2009. A Finnish chironomid- and chaoboridae-based inference model for reconstructing past lake levels. Quaternary Science Reviews 28: 1481-1489.

Luoto T.P., Nevalainen L., Kauppila T., Tammelin M., Sarmaja-Korjonen K. 2012. Diatom-inferred total phosphorus from dystrophic Lake Arapisto, Finland, in relation to Holocene paleoclimate. Quaternary Research 78: 248-255.

Luoto T.P., Kotrys B., Płóciennik M. 2019. East European chironomid-based calibration model for past summer temperature reconstructions. Climate Research 77: 63-76.

Łuców D., Lamentowicz M., Obremska M., Arkhipova M., Kittel P., Łokas E., Mazurkevich A., Mróz T., Tjallingii R., Słowiński M. 2020. Disturbance and resilience of a Sphagnum peatland in western Russia (West-ern Dvina Lakeland) during the last 300 years: a multiproxy, high-resolution study. The Holocene 30(11): 1552-1566.

Mac Arthur R.H. 1957. On the relative abundance of bird species. The Proceedings of the National Academy of Sciences USA 43: 293-295.

Moller Pillot H.K.M. 2009. Chironomidae larvae. Biology and ecology of the Chironomini. KNNV Publishing, Zeist.

Mroczkowska A., Kittel P., Marcisz K., Dolbunova E., Gauthier E., Lamentowicz M., Mazurkevich A., Obremska M., Płóciennik M., Kramkowski M., Łuców D., Kublitskiy Y., Słowiński M. 2021. Small peatland with a big story: 600-year paleoecological and historical data from a kettle-hole peatland in Western Russia. The Holocene 31(11-12): 1761-1776.

Müller D., Tjallingii R., Płóciennik M., Luoto T.P., Kotrys B., Plessen B., Ramisch A., Schwab M.J., Błaszkiewicz M., Słowiński M., Brauer A. 2021. New insights into lake responses to rapid climate change: the Younger Dryas in Lake Gościąż, central Poland. Boreas 50(2): 535-555.

Niesiołowska-Śreniowska E., Płaza D. K., Marosik P., Balwierz Z. 2011. Obozowiska ze starszej i środkowej epoki kamienia na stanowisku 1 w Aleksandrowie Łódzkim w kontekście analizy środowiska naturalnego. Muzeum Archeologiczne i Etnograficzne w Łodzi, Łódź.

Okupny D., Fortuniak A., Tomkowiak J. 2013. Denudation features of the Late Vistulian (Weichselian Late Glacial) preserved in the geochemical analysis of the biogenic deposits of the Łódź region. Acta Geographica Lodziensia 101: 89-99.

Okupny D., Żurek S., Forysiak J. 2014. Spatial pattern of mire distribution of the Lodz region. Studia Limnologica et Telmatologica 8,2: 81-91.

Okupny D., Malkiewicz M., Pawłowski D., Ludwikowska-Kędzia M., Borówka R.K., Forysiak J., Miczyński A., Jucha W., Cybul P., Żurek S. 2019. Late Glacial palaeoenvironmental changes in the southern part of the Holy Cross Mountains based on the “Białe Ługi” peatland record. Studia Quaternaria 36,2: 119-135.

Okupny D., Borówka R.K., Cedro B., Sławińska J., Tomkowiak J., Michczyński A., Kozłowska D., Kowalski K., Siedlik K. 2020. Geochemistry of a sedimentary section at the Wąwelnica archaeological site, Szczecin Hills (Western Pomerania). Acta Geographica Lodziensia 110: 169-186.

Okupny D., Pawłowski D. 2021. Elemental composition of biogenic sediments reveals palaeocli-matic changes during the Late Weichselian in a Central European river valley: A statistical approach. Catena 200, 105188.

Pawłowski D. 2011. Evolution of an Eemian lake based on Cladocera analysis (Konin area, Central Poland). Acta Geologica Polonica 61: 441-450.

Pawłowski D. 2012. Younger Dryas Cladocera assemblages from two valley mires in central Po-land and their potential significance for cli-mate reconstructions. Geologos 18: 237-249.

Pawłowski D. 2017. The usefulness of subfossil Cladocera remains in Younger Dryas climatic reconstructions in central Poland. Acta Geologica Polonica 67: 567-584.

Pawłowski D., Gruszka B., Gallas H., Petera-Zganiacz J. 2013. Changes in the biota and sediments of glacial Lake Koźmin, Poland, during the late Saalian (Illinoian). Journal of Paleolimnology 49: 679-696.

Pawłowski D., Okupny D., Włodarski W., Zieliński T. 2014. Spatial variability of selected physico-chemical parameters within peat deposits in small valley mire: a geostatistical approach. Geologos 20: 269-288.

Pawłowski D., Kowalewski G., Milecka K., Płóciennik M., Woszczyk M., Zieliński T., Okupny D., Włodarski W., Forysiak J. 2015a. A recon-struction of the palaeohydrological conditions of a floodplain: a multi-proxy study from the Grabia River valley mire, central Poland. Boreas 44: 543-562.

Pawłowski D., Płóciennik M., Brooks S.J., Luoto T.P., Milecka K., Nevalainen L., Peyron O., Self A., Zieliński T. 2015b. A multiproxy study of Younger Dryas and Early Holocene climatic conditions from the Grabia River palaeooxbow lake (central Poland). Palaeogeography, Palaeoclimatology, Palaeoecology 438: 34-50.

Pawłowski D., Borówka R.K., Kowalewski G., Luoto T.P., Milecka K., Nevalainen L., Okupny D., Płóciennik M., Woszczyk M., Tomkowiak J., Zieliński T. 2016. The response of flood-plain ecosystems to the Late Glacial and Early Holocene hydrological changes: A case from a small Central European river valley. Catena 147: 411-428.

Płaza K.D., Forysiak J., Borówka R.K., Okupny D., Marosik P., Obremska M., Michczyńska D.J. 2013/2015. Settlement activity of mesolithic groups on the area of dunes at Aleksandrów and its record in the sediment of the nearby mire at Rąbień. Prace i Materiały Muzeum Archeologicznego i Etnograficznego w Łodzi, Seria Archeologiczna 46: 229-250.

Płaza D.K., Kittel P., Petera-Zganiacz J., Dzieduszyńska D.A., Twardy J. 2014. Late Palaeolithic settlement in palaeogeographical context of the river valleys in the Koło Basin (Central Poland). Quaternary International 370: 40-54.

Płóciennik M. 2005. Zastosowanie subfosylnych szczątków ochotkowatych (Dietera: Chironomidae) w badaniach nad paleoklimatem. Kosmos 4,269: 401-406.

Płóciennik P., Self A., Birks H.J.B., Brooks S.J. 2011. Chironomidae (Insecta: Diptera) succession in Żabieniec bog and its palaeolake (central Po-land) through the Late Weichselian and Holocene. Palaeogeography, Palaeoclimatology, Palaeoecology 307: 150-167.

Płóciennik M., Kruk A., Forysiak J., Pawłowski D., Mianowicz K., Elias S., Borówka R.K., Kloss M., Obremska M., Coope R., Krąpiec M., Kittel P., Żurek S. 2015. Fen ecosystem responses to water-level fluctuations during the early and middle Holocene in central Europe: a case study from Wilczków, Poland. Boreas 44,4: 721-740.

Płóciennik M., Kittel P., Borówka R.K., Cywa K., Okupny D., Obremska M., Pawłowski D., Stachowicz-Rybka R., Szperna R., Witkowski A. 2016. Warunki paleoekologiczne subkopalnego koryta Kolonia Bechcice na tle hydrologii środkowego odcinka doliny Neru. Acta Geographica Lodziensia 105: 107-124.

Płóciennik M., Pawłowski D., Vilizzi L., Antczak-Orlewska O. 2020. From oxbow to mire: Chironomidae and Cladocera as habitat palaeoindicators. Hydrobiologia 847: 3257-3275.

Quinlan R., Smol J.P. 2001. Setting minimum head capsule abundance and taxa deletion criteria in chironomid-based inference models. Journal of Paleolimnology 26: 327-342.

Reimann C., Arnoldussen A., Boyd R., Finne T.E., Koller F., Nordgulen Ǿ., Englmaier P. 2007. Element content in leaves of four plant species (birch, mountain ash, fern and spruce) along anthropogenic and geogenic concentration gradients. Science of Total Environment 377: 416-433.

Rolland N., Larocque I. 2007. The Efficiency of kerosene flotation for extraction of chironomid head capsules from lake sediments samples. Journal of Paleolimnology 37: 565-572.

Rotnicki K. 1988. Main phases of erosion and accu-mulation in the Prosna valley in the last glacial-interglacial cycle. Geographia Polonica 53: 53-66.

Rydelek P. 2011. Origin and composition of mineral particles of selected peat deposits in Lubartówka Upland. Water-Environment-Rural Areas 11,2: 135-149.

Rydin H., Jeglum J.K. 2006. The biology of peatlands. Oxford Univ. Press.

Rydin H., Gunnarsson U., Sundberg S. 2006. The role of Sphagnum in peatland development and persistence. In: D.H. Vitt, R.K. Wieder (eds) Boreal peatland ecosystems. Ecological Studies 188. Springer, Berlin, Heidelberg: 47-67.

Saether O.A., Speis M. 2013. Fauna Europaea: Chironomidae. In: P. Beuk, T. Pape (eds) Fauna Europaea: Diptera Nematocera. Fauna Europaea, version 2.6. www.faunaeur.org

Schild R. 1975. Późny paleolit. In: W. Chmielewski, W. Hensel (eds) Prahistoria ziem polskich, t. 1, Paleolit i mezolit. Ossolineum: 195-338.

Słowiński M., Marcisz K., Płóciennik M., Obremska M., Pawłowski D., Okupny D., Słowińska S., Borówka R.K., Kittel P., Forysiak J., Michczyńska D.J., Lamentowicz M. 2016. Drought as a stress driver of ecological changes in peat-land – A palaeoecological study of peatland development between 3500 BCE and 200 BCE in central Poland. Palaeogeography Palaeoclimatology Palaeoecology 461: 272-291.

Sobkowiak-Tabaka I. 2011. Społeczności późnego paleolitu w dorzeczu Odry. Instytut Archeologii i Etnologii PAN, Poznań.

Sobkowiak-Tabaka I. 2017. Rozwój społeczności Federmesser na Nizinie Środkowoeuropejskiej. Instytut Archeologii i Etnologii Polskiej Akademii Nauk, Warszawa.

Spitzer K., Danks H.V. 2006. Insect biodiversity in boreal peat bogs. Annual Reviews of Entomology 51:137-161.

Starkel L. 2002. Younger Dryas-Preboreal transition documented in the fluvial environment of Polish rivers. Global and Planetary Change 35: 157-167.

Sulgostowska Z. 1997. The phenomenon of chocolate flint distribution on the North European Plain during the Final Palaeolithic. In: R. Schild, Z. Sulgostowska (eds) Man and flint. Instytut Archeologii i Etnologii PAN, Warszawa: 313-318.

Szeroczyńska K., Sarmaja-Korjonen K. 2007. Atlas of Subfossil Cladocera from Central and Northen Europe. Friends of the Lower Vistula Society.

ter Braak C.J.F., Šmilauer P. 2002. CANOCO Refer-enceManual and CanoDraw for Windows User’s Guide: Software for Canonical Community Ordination (Version 4.5). Microcomputer Power, Ithaca.

Turkowska K., Dzieduszyńska D. 2011. Local evidence of landform evolution vs. global changes – a case of Younger Dryas in the upper Ner valley system, Central Poland. Geographia Polonica 84: 147-162.

Vallenduuk H.J., Moller Pillot H.K.M. 2007. Chironomidae Larvae of the Netherlands and Adjacent Lowlands. General ecology and Tanypodinae. KNNV Publishing, The Netherlands.

de Vleeschouwer F., Le Roux G., Shotyk W. 2010. Peat as an archive of atmospheric pollution and environmental change: A case study of lead in Europe. Pages news 18: 20-22.

van der Valk A.G. 2006. The Biology of Freshwater Wetlands. Oxford University Press.

Wachecka-Kotkowska L. 2004. Ewolucja doliny Luciąży uwarunkowania klimatyczne i lokalne. Acta Geographica Lodziensia 86.

Walanus A. 2000. The statistical significance of the conclusions of the quantitative analyses of research on the example of Upper Quaternary (in Polish with English summary). Geologia, Kwartalnik AGH 26,4: 1-59.

Walker I.R., Fernando C.H., Paterson C.G. 1985. Association of Chironomidae (Diptera) of shallow, acid, humic lakes and bog pools in Atlantic Canada, and a comparison with an earlier paleoecological investigation. Hydrobiologia 120: 11-22.

Walker I.R., Mathewes R.W. 1989. Chironomidae (Diptera) remains in surficial lake sediments from Canadian Cordillera: analysis of the fauna across an altitudinal gradient. Journal of Paleolimnology 2: 61-80.

Weng H.X., Hang X.M. Chen X.H. Wu N.Y. 2003. The stability of the relative content ratios of Cu, Pb, Zn in soils and sediment. Environmen-tal Geology 45,1: 79-85.

Wieckowska-Lüth M., Gauthier E., Thiebaut E., Słowiński M., Krąpiec M., Dolbunova E., Mazurkevich A., Maigrot Y., Danger M., Kittel P. 2021. The palaeoenvironment and settlement history of a lakeshore setting: An interdisciplinary study from the multi-layered archaeolog-ical site of Serteya II, Western Russia. Journal of Archaeological Science: Reports 40(B): 103219.

Wiederholm T. 1983. Chironomidae of the Holarctic region. Keys and diagnoses. Part 1. Larvae. Entomologica Scandinavica Supplement 19.

Wiśniewski A. 2020. (rec.) I. Sobkowiak-Tabaka, Rozwój społeczności Federmesser na Nizinie Środkowoeuropejskiej, Warszawa 2017, Instytut Archeologii i Etnologii Polskiej Akademii Nauk. Archaeologia Polona 58: 337-341.

Pobrania

Opublikowane

2021-12-23

Numer

Dział

Artykuły