Acceso abierto

Interdisciplinary studies of spring mire deposits from Radzików (South Podlasie Lowland, East Poland) and their significance for palaeoenvironmental reconstructions


Cite

[1] Albrycht A, 2000. Szczegółowa mapa geologiczna Polski 1:50 000, Arkusz Łosice (Detailed Geological Map of Poland, 1:50000, Łosice sheet). Państwowy Instytut Geologiczny, Warszawa. Search in Google Scholar

[2] Albrycht A, 2004. Strefa marginalna lądolodu zlodowacenia warty w okolicy Kornicy (Wysoczyzna Siedlecka) (Ice sheet marginal zone of the warta Glaciation in Kornica environs (Siedlce High Plain). In: Harasimiuk M and Terpiłowski S, eds., Zlodowacenie warty w Polsce (Warta glaciation in Poland), Maria Curie-Skłodowska University Press, Lublin: 135–152. Search in Google Scholar

[3] Albrycht A and Pruś S, 1998. Szczegółowa mapa geologiczna Polski 1:50000, Arkusz Siedlce Północ (Detailed Geological Map of Poland, 1:50000, Siedlce North sheet). Państwowy Instytut Geologiczny, Warszawa. Search in Google Scholar

[4] Alexandrowicz SW, 1987. Analiza malakologiczna w badaniach czwartorzędowych. (Malacological analysis in Quaternary research). Kwartalnik AGH, Geologia 12: 3–240 (in Polish). Search in Google Scholar

[5] Alexandrowicz SW and Alexandrowicz WP, 1995a. Quaternary molluscan assemblages of the Polish Carpathians. Studia Geomorphologica Carpatho-Balcanica 29: 41–54. Search in Google Scholar

[6] Alexandrowicz SW and Alexandrowicz WP, 1995b. Molluscan fauna of the Upper Vistulian and Early Holocene sediments of South Poland. Biuletyn Peryglacjalny 34: 5–19. Search in Google Scholar

[7] Alexandrowicz WP, 1997. Malakofauna osadów czwartorzędowych i zmiany środowiska naturalnego Podhala w młodszym vistulianie i holocenie (Malacofauna of Quaternanry sediments and changes of natural environment of Podhale in younger Vistulian and Holocene). Folia Quaternaria 68: 7–132 (in Polish). Search in Google Scholar

[8] Alexandrowicz WP, 1999. Evolution of the malacological assemblages in North Poland during the Late Glacial and Early Holocene. Folia Quaternaria 70: 39–69. Search in Google Scholar

[9] Alexandrowicz WP, 2004. Molluscan assemblages of Late Glacial and Holocene calcareous tufa in Southern Poland. Folia Quaternaria 75: 3–309. Search in Google Scholar

[10] Alexandrowicz WP, 2007. Malakofauna późnoglacjalnych i holoceńskich węglanowych osadów jeziornych Północnej Polski (Malacofauna of the Late Glacial and Holocene calcareous lake deposits in Northern Poland). Geologia, Kwartalnik AGH 33(4): 395–420 (in Polish). Search in Google Scholar

[11] Bałaga K, Szeroczyńska K, Taras H and Magierski J, 2002. Natural and anthropogenic conditioning of the development of Lake Perespilno (Lublin Polesie) in the Holocene. Limnological Review 2: 5–27. Search in Google Scholar

[12] Berglund BE and Ralska-Jasiewiczowa M, 1986. Pollen analysis and pollen diagrams. In: Berglund BE and Ralska-Jasiewiczowa M, eds., Handbook of Holocene Palaeoecology and Palaeohydrology. J. Wiley & Sons Ltd., Chichester-Toronto: 455–484. Search in Google Scholar

[13] Brande A, 1996. Type Region Ds, Berlin. In: Berglund BE, Birks HJB, Ralska-Jasiewiczowa M and Wright HE, eds, Palaeoecological Events During the Last 15000 Years: regional Synthesis of Palaeo-ecological Studies of Lakes and Mires in Europe. Wiley, Chichester: 518–523. Search in Google Scholar

[14] Brande A, 2007. The first pollen diagram from the Hoher Fläming, Brandenburg (Germany). Vegetation History and Archaeobotany 16: 171–181. http://dx.doi.org/10.1007/s00334-006-0077-310.1007/s00334-006-0077-3Search in Google Scholar

[15] Bronk Ramsey C, 2008. Deposition models for chronological records. Quaternary Science Reviews 27(1–2): 42–60, DOI 10.1016/j.quascirev.2007.01.019. http://dx.doi.org/10.1016/j.quascirev.2007.01.01910.1016/j.quascirev.2007.01.019Search in Google Scholar

[16] Brzezina R, 2000. Szczegółowa Mapa Geologiczna Polski 1:50 000, ark. Krzesk (Detailed Geological Map of Poland, 1:50 000, Krzesk sheet). Państwowy Instytut Geologiczny, Warszawa. Search in Google Scholar

[17] De Vleeschouwer F, Piotrowska N, Sikorski J, Pawlyta J, Cheburkin A, Le Roux G, Lamentowicz M, Fagel N and Mauquoy D, 2009. Multiproxy evidence of Little Ice Age palaeoenvironmental changes in a peat bog from northern Poland. Holocene 19(4): 625–637, DOI 10.1177/0959683609104027. http://dx.doi.org/10.1177/095968360910402710.1177/0959683609104027Search in Google Scholar

[18] Dobrowolski R, 1994. Tektoniczne uwarunkowania rozwoju źródliskowego torfowiska kopułowego Krzywice koło Chełma. (Tectonical conditions of Krzywice cupola spring mire near Chełm). Przegląd Geologiczny 7: 532–535 (in Polish). Search in Google Scholar

[19] Dobrowolski R, 1998. Strukturalne uwarunkowania rozwoju współcze-snej rzeźby krasowej na międzyrzeczu środkowego Wieprza i Bugu (Structural conditions of recent karst relief development in the middle Wieprz and Bug interfluve). Lublin, Wydawnictwo UMCS: 88 pp (in Polish). Search in Google Scholar

[20] Dobrowolski R, 2000. Torfowiska węglanowe w okolicach Chełma — geologiczne i geomorfologiczne warunki rozwoju. (Carbonate mires in the environs of Chełm. geological and geomorphological conditions of development). In: łętowski J, ed., Walory przyrodnicze Chełmskiego Parku Krajobrazowego i jego najbliższych okolic. Wydawnictwa UMCS, Lublin: 17–25 (in Polish). Search in Google Scholar

[21] Dobrowolski R, Alexandrowicz SW, Bałaga K, Durakiewicz T and Pazdur A, 1999. Badania martwic wapiennych w obrębie źródliskowych torfowisk kopułowych we wschodniej Polsce (Studies of calcareous tufa within spring cupola peatbogs in Eastern Poland). In: Pazdur A, Bluszcz A, Stankowski W and Starkel L, eds., Geochronology of Upper Quaternary of Poland in the light of radiocarbon and luminescence dating. WIND Wojewoda, Wrocław: 179–198 (in Polish). Search in Google Scholar

[22] Dobrowolski R, Durakiewicz T, Pazdur A and Pazdur MF, 1996. Chronostratygrafia i fazy rozwoju źródliskowego torfowiska kopułowego Krzywice kolo Chełma (Wyżyna Lubelska) (Chronostratigraphy and development stages of the spring peat knoll at Krzywice near Chełm, Lublin Upland, Southeastern Poland). Zeszyty Naukowe Politechniki Śląskiej, Seria Matematyka-Fizyka, Zeszyt 80, Geochronometria 17: 19–30 (in Polish). Search in Google Scholar

[23] Dobrowolski R, Durakiewicz T and Pazdur A, 2002. Calcareous tufas in the soligenous mires of eastern Poland as an indicator of the Holocene climatic changes. Acta Geologica Polonica 52(1): 63–73. Search in Google Scholar

[24] Dobrowolski R, Hajdas I, Melke J and Alexandrowicz WP, 2005. Chronostratigraphy of calcareous mire sediments at Zawadówka (eastern Poland) and their use in palaeogeographical reconstruction. Geochronometria 24: 69–79. Search in Google Scholar

[25] Dombrovskaya AV, Koronieva MM and Tyuremnov SN, 1959. Atlas rastitelnych ostatkov vstrechajemykh v torfie (Atlas of plant macroremains occurring in peat). Goud. Energ. Izd. Moskva-Leningrad: 1–89 (in Russian). Search in Google Scholar

[26] Gedda B, 2001. Environmental and climatic aspects of the Early and Mid Holocene calcareous tufa and land mollusc fauna in southern Sweden. Lundqua Thesis 45: 1–50. Search in Google Scholar

[27] Grootjans AP, Adema EB, Bleuten W, Joosten H, Madaras M and Janáková M, 2006. Hydrological landscape settings of base-rich fen mires and fen meadows: an overview. Applied Vegetation Science 9(2): 175–184, DOI 10.1111/j.1654-109X.2006.tb00666.x. http://dx.doi.org/10.1111/j.1654-109X.2006.tb00666.x10.1111/j.1654-109X.2006.tb00666.xSearch in Google Scholar

[28] Grosse-Brauckmann G, 1972. Über pflanzliche Macrofossilien mitteleuropäischer Torfe. I. Gewebereste krautiger Pflanzen und ihre Merkmale (On plant macrofossils of Central European peats. I. Tissue remains of herbaceous plants and their characteristics). Telma 2: 19–55. Search in Google Scholar

[29] Grosse-Brauckmann G, 1974. Über pflanzliche Macrofossilien mitteleuropäischer. Torfe II. Weitere Reste (Frűchte und Samen, Moose u.a.) und ihre Bestimmungsmöglichkeiten (On plant macrofossils of Central European peats. II. Some more remains (fruits and seeds, mosses etc.) and the possibilities of their identification. Telma 4: 51–117. Search in Google Scholar

[30] Grosse-Brauckmann G and Streitz B, 1992. Pflanzliche Macrofossilien mitteleuropäischer Torfe III. Fruchte, Samen und einige Gewebe (Fotos von fossilen Pflanzenesten) (Plant macrofossils of central European petas. III. Fruits, seeds and several tissues (Photographs of fossil plant remains)). Telma 22: 53–102. Search in Google Scholar

[31] Hájek M, Hekera P and Hajkova P, 2002. Spring fen vegetation and water chemistry in the western Carpathian Flysch zone. Folia Geobotanica 37: 205–224. http://dx.doi.org/10.1007/BF0280423210.1007/BF02804232Search in Google Scholar

[32] Hájek M, Horsá M, Hajkova P and Dite D, 2006. Habitat diversity of central European fens in relation to environmental gradients and an effort to standardise fen terminology in ecological studies. Perspectives in Plant Ecology, Evolution and Systematics 8: 97–114. http://dx.doi.org/10.1016/j.ppees.2006.08.00210.1016/j.ppees.2006.08.002Search in Google Scholar

[33] Hájkova P and Hájek M, 2003. Species richness and aboveground biomass of poor and calcareous spring fens in the flysch West Carpathians, and their relationship to water and soil chemistry. Preslia 75: 271–287. Search in Google Scholar

[34] Heegaard E, Birks HJB and Telford RJ, 2005. Relationships between calibrated ages and depth in stratigraphical sequences: an estimation procedure by mixed-effect regression. Holocene 15(4): 612–618, DOI 10.1191/0959683605hl836rr. http://dx.doi.org/10.1191/0959683605hl836rr10.1191/0959683605hl836rrSearch in Google Scholar

[35] Kalicki T, 2006. Zapis zmian klimatu oraz działalności człowieka i ich rola w holoceńskiej ewolucji dolin środkowoeuropejskich (Reflection of climatic changes and human activity and their role in the Holocene evolution of Central European valleys). Prace Geograficzne 204: 1–347 (in Polish). Search in Google Scholar

[36] Kalicki T, 2007. Wpływ zmian klimatu i działalności człowieka na aktywizację procesów fluwialnych i eolicznych w dorzeczu Niemna (Białoruś) (Influence of climate and man changes on fluvial and aeolian processes at Niemen Basin (Belarus). In: Sołtysik R, ed., Systemy dolinne i ich funkcjonowanie, Prace Instytutu Geografii Akademii Świętokrzyskiej w Kielcach 16: 187–203 (in Polish). Search in Google Scholar

[37] Kłosowski S and Kłosowski G, 2006. Rośliny wodne i bagienne (Aquatic and mire plants). MULTICO, Warszawa: 333 pp (in Polish). Search in Google Scholar

[38] Kovanda J, 1971. Quaternary limestones of Czechoslovakia. Antropozoikum A7: 7–236 (in Czech). Search in Google Scholar

[39] Krolopp E and Sümegi P, 1993. Vertigo modesta (Say), Vertigo geyeri Lindholm 1925 and Vertigo genesii (Gredler 1856) species in Pleistocene formations of Hungary. Malacological Newsletter 12: 9–14. Search in Google Scholar

[40] Latałowa M, 2004. Late Glacial. In: Ralska-Jasiewiczowa M, Latałowa M, Wasylikowa K, Tobolski K, Madeyska E, Wright HE Jr and Turner C, eds., Late Glacial and Holocene history of vegetation in Poland based on isopollen maps. W. Szafer Institute of Botany, Polish Academy of Sciences, Kraków: 385–391. Search in Google Scholar

[41] Limondin-Lozouet N, 1992. Biogeographie Holocene de Vertiginidae (Mollusca — Gastropoda) Europeens: relations la derniere deglaciation. Compte Reudus de Academie Science Paris 315(2): 1281–1287. Search in Google Scholar

[42] Limondin-Lozouet N and Rousseau DD, 1991. Holocene climate as reflected by a mallacological sequence at Verriers, France. Boreas 20(3): 207–229, DOI 10.1111/j.1502-3885.1991.tb00152.x. http://dx.doi.org/10.1111/j.1502-3885.1991.tb00152.x10.1111/j.1502-3885.1991.tb00152.xSearch in Google Scholar

[43] Litt T, Schmincke H-U and Kromer B, 2003. Environmental response to climatic and volcanic events in central Europe during the Weichselian Lateglacial. Quaternary Science Reviews 22(1): 7–32, DOI 10.1016/S0277-3791(02)00180-4. http://dx.doi.org/10.1016/S0277-3791(02)00180-410.1016/S0277-3791(02)00180-4Search in Google Scholar

[44] Lityński T, Jurkowska H and Gorlach E, 1976. Analiza chemicznorolnicza. (Chemical-agriculture analysis)., PWN, Warszawa: 330 pp (in Polish). Search in Google Scholar

[45] Ložek V, 1964. Quartärmollusken der Tschechoslovakei (The Quaternary molluscs of Czechoslovakia). Rozpravy Ustředniho Ustavu Geologického 31: 3–374. Praha (in German). Search in Google Scholar

[46] Macklin MG, Benito G, Gregory KJ, Johnstone E, Lewin J, Michczyńska DJ, Soja R, Starkel L and Thorndycraft VR, 2006. Past hydrological events reflected in the Holocene fluvial record of Europe. Catena 66(1–2): 145–154, DOI 10.1016/j.catena.2005.07.015. http://dx.doi.org/10.1016/j.catena.2005.07.01510.1016/j.catena.2005.07.015Search in Google Scholar

[47] Magny M and Ruffaldi P, 1995. Younger Dryas and early Holocene lake-level fluctuations in the Jura mountains, France. Boreas 24(2): 155–172, DOI 10.1111/j.1502-3885.1995.tb00636.x. http://dx.doi.org/10.1111/j.1502-3885.1995.tb00636.x10.1111/j.1502-3885.1995.tb00636.xSearch in Google Scholar

[48] Magny M, Bégeot C, Guiot J and Peyron O, 2003. Contrasting pattern of hydrological changes in Europe in response to Holocene climate cooling phases. Quaternary Science Reviews 22(15–17): 1589–1596, DOI 10.1016/S0277-3791(03)00131-8. http://dx.doi.org/10.1016/S0277-3791(03)00131-810.1016/S0277-3791(03)00131-8Search in Google Scholar

[49] Małek M, 2002. Szczegółowa mapa geologiczna Polski 1:50 000, Arkusz Siedlce Południe (Detailed Geological Map of Poland, 1:50000, Siedlce South sheet). Państwowy Instytut Geologiczny, Warszawa. Search in Google Scholar

[50] Meyrick RA, 2001. The development of terrestial mollusc faunas in the ‘Rheinland region’ (western Germany and Luxembourg) during the Lateglacial and Holocene. Quaternary Science Revievs 20(16–17): 1667–1675, DOI 10.1016/S0277-3791(01)00031-2. http://dx.doi.org/10.1016/S0277-3791(01)00031-210.1016/S0277-3791(01)00031-2Search in Google Scholar

[51] Meyrick RA, 2002. Holocene molluscan faunal history and environmental change at Kloster Mühle, Rheinland-Pfalz, western Germany. Journal of Quaternary Science 18(2): 121–132, DOI 10.1002/jqs.728. http://dx.doi.org/10.1002/jqs.72810.1002/jqs.728Search in Google Scholar

[52] Mirek Z, Piękoś-Mirkowa H, Zając A and Zając M, 2002. Flowering plants and pteridophytes of Poland. A checklist. Krytyczna lista roślin kwiatowych i paprotników Polski. Polish Academy of Sciences. W. Szafer Institute of Botany, Kraków: 442 pp. Search in Google Scholar

[53] Mojski JE, 1972. Nizina Podlaska (Podlaska Lowland). In: Galon R, ed., Geomorfologia Polski, tom 2 — Niż Polski. PWN, Warszawa: 318–363 (in Polish). Search in Google Scholar

[54] Nalepka D and Walanus A, 2003. Data processing in pollen analysis. Acta Palaeobotanica 431: 125–134. Search in Google Scholar

[55] Ochyra R, Żarnowiec J and Bednarek-Ochyra H, 2003. Census catalogue of Polish mosses. Institute of Botany, Polish Academy of Sciences, Kraków: 372 pp Search in Google Scholar

[56] Osadowski Z, 2010. Wpływ uwarunkowań hydrologicznych i hydrochemicznych na zróżnicowanie szaty roślinnej źródlisk w krajobrazie młodoglacjalnym Pomorza (The influence of hydrological and hydrochemical conditions on vegetation cover diversity in spring areas of the postglacial landscape in the Pomerania region). Bogucki Wydawnictwo Naukowe, Poznań-Słupsk: 218 pp. (in Polish). Search in Google Scholar

[57] Osadowski Z, Mazurek M and Dobrowolski R, 2009. Structure and development conditions of spring mires in the Parsęta basin (Western Pomerania). In: Łachacz A, ed., Wetlands — their functions and protection. Department of Land Reclamation and Environmental Management, University of Warmia and Mazury in Olsztyn: 107–124. Search in Google Scholar

[58] Pazdur A, Dobrowolski R, Durakiewicz T, Piotrowska N, Mohanti M and Das S, 2002. δ13C and δ18O time record and palaeoclimatic implications of the Holocene calcareous tufa from South-Eastern Poland and Eastern India (Orissa). Geochronometria 21: 97–108. Search in Google Scholar

[59] Pazdur A, Fontugne MR, Goslar T and Pazdur MF, 1995. Lateglacial and Holocene water-level changes of the Gościąż Lake, Central Poland, derived from carbon isotope studies of laminated sediments. Quaternary Science Revievs 14(2): 125–135, DOI 10.1016/0277-3791(94)00124-T. http://dx.doi.org/10.1016/0277-3791(94)00124-T10.1016/0277-3791(94)00124-TSearch in Google Scholar

[60] Pazdur A, Pazdur MF, Goslar T, Wicik B and Arnold M, 1994. Radiocarbon chronology of Late Glacial and Holocene sedimentation and water-level changes in the area of the Gościiąż Lake basin. Radiocarbon 36(2): 187–202. 10.1017/S0033822200040492Search in Google Scholar

[61] Piechocki A, 1979. Mięczaki (Mollusca). Ślimaki (Gastropoda) (Molluscs Mollusca. Snails Gastropoda). Fauna słodkowodna Polski 7: 7–187. Warszawa. Search in Google Scholar

[62] Piechocki A and Dyduch-Falniowska A, 1993. Mięczaki (Mollusca). Małże (Bivalvia) (Molluscs (Mollusca). Bivalves (Bivalvia)). Polskie Towarzystwo Hydrobiologiczne. Wyd. Nauk. PWN, Warszawa. Fauna słodkowodna Polski 7a: 7–204.. Search in Google Scholar

[63] Piotrowska N, Hajdas I and Bonani G, 2007. Construction of the calendar timescale for Lake Wigry (NE Poland) sediments on the basis of radiocarbon dating. Radiocarbon 49(2): 1133–1143. 10.1017/S0033822200042971Search in Google Scholar

[64] Piotrowska N and Hałas S, 2009. Zmiany składu izotopowego węgla i tlenu w jeziorze Wigry jako źródło informacji paleoklimatycznych (Changes in isotope composition of carbon and oxygen in the Lake Wigry as a source of palaeoclimatic information). In: Rutkowski and Krzysztofiak, eds., Jezioro Wigry. Historia jeziora w świetle badań geologicznych i paleoekologicznych. Suwałki: 157–167 (in Polish). Search in Google Scholar

[65] Pokryszko B, 1990. The Vertiginidae of Poland (Gastropoda: Pulmonata: Pupillidae) — a systematic minograph. Annales Zoologici 43(8): 133–257. Search in Google Scholar

[66] Preece RC and Day SP, 1994. Comparison of Postglacial mollusccan and vegetational successions from a radiocarbon-dated tufa sequence in Oxfordshire. Journal of Biogeography 21(4): 463–468. http://dx.doi.org/10.2307/284565110.2307/2845651Search in Google Scholar

[67] Ralska-Jasiewiczowa M and Starkel L, 1988. Record of the hydrological changes during the Holocene in the lake, mire, and fluvial deposits of Poland. Folia Quaternaria 57: 91–127. Search in Google Scholar

[68] Ralska-Jasiewiczowa M, Goslar T, Madeyska T and Starkel L, eds., 1998. Lake Gościąż, Central Poland. A monographic study. Part 1. Szafer Institute of Botany Polish Academy of Scences, Kraków: 340pp. Search in Google Scholar

[69] Sapek A and Sapek B, 1997. Metody analizy chemicznej gleb organicznych (Methods of chemical analysis of organic soils). In: Okruszko H, ed., Materiały instruktażowe 115. Instytut Melioracji i Użytków Zielonych, Falenty: 1–80 (in Polish). Search in Google Scholar

[70] Schwander J, Eicher U and Ammann B, 2000. Oxugen isotopes of lake marl at Gerzenzee and Leysin (Switzerland), covering the Younger Dryas and two minor oscillations, and their correlation to the GRIP ice core. Palaeogeography, Palaeoclimatology, Palaeoecology 159(3–4): 203–214, DOI 10.1016/S0031-0182(00)00085-7. http://dx.doi.org/10.1016/S0031-0182(00)00085-710.1016/S0031-0182(00)00085-7Search in Google Scholar

[71] Starkel L, 2005. Role of climatic and anthropogenic factors accelareting soil erosion and fluvial activity in Central Europe. Studia Quarternaria, 22: 27–33. Search in Google Scholar

[72] Starkel L, 2006. Problems of Holocene climatostratigraphy on the territory of Poland. Studia Quaternaria 23: 17–21. Search in Google Scholar

[73] Starkel L, Pazdur A, Pazdur MF, Wicik B and Więckowski B, 1996. Lake-level and groundwater-level chan ges in the Lake Gościąż area, Poland: palaeoclimatic implications. Holocene 6(2): 213–224, DOI 10.1177/095968369600600207. http://dx.doi.org/10.1177/09596836960060020710.1177/095968369600600207Search in Google Scholar

[74] Starkel L, Soja R, and Michczyńska DJ, 2006. Past hydrological events reflected in Holocene history of Polish rivers. Catena 66(1–2): 24–33, DOI 10.1016/j.catena.2005.07.008. http://dx.doi.org/10.1016/j.catena.2005.07.00810.1016/j.catena.2005.07.008Search in Google Scholar

[75] Tobolski K, 2000. Przewodnik do oznaczania torfów i osadów jeziornych (Handbook to the determination of peat and lake deposits). PWN, Vademecum Geobotanicum, Warszawa: 508 pp (in Polish). Search in Google Scholar

[76] Troels-Smith T, 1955. Karakteriserung af lose jordarter (Characterization of unconsolidated sediments). Danmarks Geologiske Undersøgelse 4(3/10): 1–73 (in Danish). 10.34194/raekke4.v3.6989Search in Google Scholar

[77] Urban D, Pidek IA and Dobrowolski R, in press. Osady biogeniczno-węglanowe ze źródliskowego torfowiska kopułowego w Kuźnicy jako źródło informacji paleoekologicznej (Biogenic-carbonaceous sediments from the cupolamire in Kuźnica as a source of palaeoecological information). Monographic study of Kuźnica (in Polish). Search in Google Scholar

[78] Wacnik A, Ralska-Jasiewiczowa M. and Nalepka D., 2004. Larix decidua Mill. — European larch. In: Ralska-Jasiewiczowa M, Latałowa M, Wasylikowa K, Tobolski K, Madeyska E, Wright HE Jr and Turner C, eds., Late Glacial and Holocene history of vegetation in Poland based on isopollen maps. W. Szafer Institute of Botany, Polish Academy of Sciences, Kraków: 135–145 Search in Google Scholar

[79] Walanus A and Nalepka D, 1999. POLPAL. Program for counting pollen grains, diagrams plotting and numerical analysis. Acta Palaeobotanica, Suppl. 2: 659–661. Search in Google Scholar

[80] Wojciechowski A, 2000. Zmiany paleohydrologiczne w środkowej Wielkopolsce w ciągu ostatnich 12 000 lat w świetle badań osadów jeziornych rynny kórnickozaniemyskiej (Palaeohydrological changes in the Central Wielkopolska Lowland during the last 12000 years on the basis of deposits of the Kórnik-Zaniemyśl lakes). Wydawnictwo Naukowe Uniwersytetu Adama Mickiewicza, Poznań: 236 pp (in Polish). Search in Google Scholar

[81] Wolters S, 2002. Vegetationsgeschichtliche Untersuchungen zur spätglazialen und holozänen Landschaftsentwicklung in der Döberitzer Heide (Brandenburg) (Vegetation history of the Late Glacial and Holocene landscape on the Döberitzer Heide in Brandenburg). Dissertationes Botanicae 366 Cramer, Stuttgart: 157 pp (in German) Search in Google Scholar

[82] Wołłejko L, Aggenbach C, van Diggelen R and Grootjans AP, 1994. Vegetation and hydrology in a spring mire complex in western Pomerania, Poland. Proceedings of the Royal Netherlands Academy of Arts and Sciences 97: 219–245. Search in Google Scholar

[83] Wójciak H, 2003. Porosty, mszaki, paprotniki (Lichens, mosses, ferns). MULTICO, Warszawa: 368 pp (in Polish). Search in Google Scholar

[84] Żurek S, 1990. Związek procesu zatorfienia z elementami środowiska przyrodniczego wschodniej Polski (Relationship between peat formation process and natural environment elements in East Poland). Roczniki Nauk Rolniczych Seria D Monografie 220: 174 pp. (in Polish). Search in Google Scholar

eISSN:
1897-1695
Idioma:
Inglés
Calendario de la edición:
Volume Open
Temas de la revista:
Geosciences, other