Open Access

Spatial variability of selected physicochemical parameters within peat deposits in small valley mire: a geostatistical approach


Cite

Atkinson, P.M. & Lloyd, C.D. (Eds), 2009. GeoENV VII - Geostatistics for Environmental Applications. Springer, 419 pp.10.1007/978-90-481-2322-3Search in Google Scholar

Bauer, I. E., Gignac, L. D. & Vitt, D. H., 2003. Development of a peatland complex in boreal western Canada: Lateral site expansion and local variability in vegetation succession and long-term peat accumulation. Canadian Journal of Botany 81, 833-847.10.1139/b03-076Search in Google Scholar

Beilman, D. W., Vitt, D. H. Bhatti, J. S. & Forest, S., 2008. Peat carbon stocks in the southern Mackenzie River Basin: Uncertainties revealed in a high-resolution case study. Global Change Biology 14, 1221-1232.10.1111/j.1365-2486.2008.01565.xSearch in Google Scholar

Blodau, Ch. & Moore, T.R., 2003. Micro-scale CO2 and CH4 dynamics in a peat soil during a water fluctuation and sulfate pulse. Soil Biology & Biochemistry 35, 535-547.10.1016/S0038-0717(03)00008-7Search in Google Scholar

Borren, W. & Bleuten, W., 2004. 3D dynamic modelling of Holocene and 21st century carbon accumulation by a large West Siberian peat bog comlex. [In:] J.Paivanen (Ed.), Wise use of peatland. 12th International Peat Congress, Tampere, Finland, 109-114.Search in Google Scholar

Borren, W. & Bleuten, W., 2006. Simulating Holocene carbon accumulation in a western Siberian watershed mire using a three-dimensional dynamic modeling approach. Water Resources Research 42, W12413.10.1029/2006WR004885Search in Google Scholar

Borren, W. & Bleuten, W., 2014. Carbon flux changes after draining part of the bakchar bog: a 3-d dynamic modeling approach. [In:] A.A. Titlyanowa & M.I. Dergacheva (Eds): West Siberian peatlands and carbon cycle: past and present. Proceedings of Fourth International Field Symposium, Novosibirsk, Russia, 138.Search in Google Scholar

Bos, I.J., Busschers, F.S. & Hoek, W.Z., 2012. Organic-facies determination: a key for understanding facies distribution in the basal peat layer of the Holocene Rhine-Meuse delta, The Netherlands. Sedimentology 59, 679-703.10.1111/j.1365-3091.2011.01271.xSearch in Google Scholar

Cardellini, C., Chiodini, G. & Frondini, F., 2003. Application of stochastic simulation to CO2 flux from soil: Mapping and quantification of gas release. Journal of Geophysical Research 108, 2425.10.1029/2002JB002165Search in Google Scholar

Chapman, S. J., Bell, J. Donnelly, D.& Lilly, A., 2009. Carbon stocks in Scottish peatlands. Soil Use and Management 25, 105-112.10.1111/j.1475-2743.2009.00219.xSearch in Google Scholar

Charifo, G., Almeida, J.A. & Ferreira, A., 2013. Managing borehole samples of unequal lengths to construct a high-resolution mining model of mineral grades zoned by geological units. Journal of Geochemical Exploration 132, 209-223.10.1016/j.gexplo.2013.07.006Search in Google Scholar

Clymo, R.S., 1978. A model of peat bog growth. [In:] Heal, O.W., Perkins, D.F. (Eds): Production Ecology of British Moors and Montane Grasslands. Springer, Berlin, 183-223.10.1007/978-3-642-66760-2_9Search in Google Scholar

Clymo, R. S., Turunen, J. & Tolonen, K. 1998. Carbon accumulation in peatland. Oikos 81, 368-388.Search in Google Scholar

Dell’Arciprete, D., Bersezio, R., Felletti, F., Giudici, M., Comunian, A. & Renard, P., 2012. Comparison of three geostatistical methods for hydrofacies simulation: a test on alluvial sediments. Hydrogeology Journal 20, 299-311.10.1007/s10040-011-0808-0Search in Google Scholar

Cohen, K.M., 2005. 3D Geostatistical interpolation and geological interpretation of palaeo-groundwater rise in the Holocene coastal prism in the Netherlands. In: Giosan, L. & Bhattacharya, J.P. (Eds), River deltas - Concepts, models, and examples. SEPM Special Publication, 83, 341-364.10.2110/pec.05.83.0341Search in Google Scholar

Dembek, W. & Oświt, J., 1992. Rozpoznawanie warunków hydrologicznego zasilania siedlisk mokradłowych. [Identification of the hydrological feed conditions of the mire habitats]. Biblioteka Wiadomości Instytutu Melioracji i Użytków Zielonych 79, 15-38 (in Polish) Search in Google Scholar

Deutsch, C.V. & Journel, A.G., 1992. GSLIB: Geostatistical Software Library and User’s Manual. Oxford University Press, New York, 448 pp.Search in Google Scholar

Domińczak, P. & Okupny, D., 2010. Przestrzenne zróżnicowanie wybranych właściwości fizykoche micznych osadów biogenicznych torfowiska Kopanicha koło Skierniewic. [Spatial variability of selected physicochemical properties of biogenic sediments in the Kopanicha peatland near Skierniewice]. [In:] R.Twardosz & W. Ziaja (Ed.): Prace Geograficzne, Jagiellonian University, Kraków, 99-110 (in Polish)Search in Google Scholar

Dobrowolska, B., 2006. Analiza struktury i przeciętnego poziomu cechy. [In]: W. Starzyńska (Ed.): Podstawy statystyki [ Statistical principles] Warszawa, Wydawnictwo Difin, 86-124 (in Polish) Search in Google Scholar

Dobrzański, B. & Zawadzki, S., 1995. Gleboznawstwo [Pedology]. Powszechne Wydawnictwo Rolnicze i Leśne, Warszawa. (in Polish) 561 pp.Search in Google Scholar

Drzymulska, D., 2003. Znaczenie analizy subfosylnych makroszczątków roślinnych i stopnia rozkładu torfu dla rekonstrukcji paleośrodowiska. [The importance of subfossil plant remnants and peat decomposition degree analyses for paleoenvironment reconstruction]. Kosmos. Problemy Nauk Biologicznych 52, 299-306 (in Polish) Search in Google Scholar

Forysiak J., Obremska M., Pawłowski D. & Kittel P., 2010. Late Vistulian and Holocene changes in the Ner river valley in light of geological and palaeoecological data from the Ner-Zawada Peatland. Geologija, 52, 25-33.10.2478/v10056-010-0002-4Search in Google Scholar

Forysiak, J., Kloss, M. & Żurek, S., 2012. Wstępna charakterystyka geologiczna i paleobotaniczna torfowiska Wilczków. [Preliminary geological and palaeobotanical characterization of Wilczków mire] Studia Limnologica et Telmatologica 6, 95-101 (in Polish)Search in Google Scholar

Frankiewicz, J.K., 1980. Surowce mineralne świata. Torf [Mineral resources of the world. Peat] Wydawnictwa Geologiczne, Warszawa, 9-46 (in Polish) Search in Google Scholar

Gao, Y., Wang, Y., Zhang, G., Xia, J., Mao, L., Tang, Z. & Zhou, P., 2012. An approach for assessing soil health: a practical guide for optimal ecological management. Environmental Earth Sciences 65, 153-159.10.1007/s12665-011-1101-1Search in Google Scholar

Goovaerts, P., 1999. Geostatistics in soil science: state-ofthe- art and perspectives. Geoderma 89, 1-45.10.1016/S0016-7061(98)00078-0Search in Google Scholar

Goovaerts, P., 2000. Estimation or simulation of soil properties? An optimization problem with conflicting criteria.10.1016/S0016-7061(00)00037-9Search in Google Scholar

Geoderma 97, 165-186.Search in Google Scholar

Goovaerts, P., 2001. Geostatistical modelling of uncertainty in soil science. Geoderma 103, 3-26.10.1016/S0016-7061(01)00067-2Search in Google Scholar

He, Y., Hu, K.L., Chen, D.L., Suter, H.C., Li, Y., Li, B.G., Yuan, X.Y. & Huang, Y.F., 2010. Three dimensional spatial distribution modeling of soil texture under agricultural systems using a sequence indicator simulation algorithm. Computers and Electronics in Agriculture 715, S24-S31.10.1016/j.compag.2009.06.012Search in Google Scholar

Hengl, T., 2006. Finding the right pixel size. Computers and Geosciences 32, 1283-1298.10.1016/j.cageo.2005.11.008Search in Google Scholar

Hengl, T., 2009. A Practical Guide to Geostatistical Mapping. 2nd ed. University of Amsterdam, Amsterdam, 291 pp.Search in Google Scholar

Ilnicki, P., 2002. Torfowiska i torf [Peatlands and peat]. Wydawnictwo Akademii Rolniczej, Poznań. (in Polish) 606 pp.Search in Google Scholar

Ingram, H.A.P., 1982. Size and shape in raised mire ecosystems: a geophysical model. Nature 297, 300-303.10.1038/297300a0Search in Google Scholar

Isaaks, E.H. & Srivastava, R.M., 1989. An Introduction to Applied Geostatistics. Oxford University Press, New York, 592 pp.Search in Google Scholar

Jones, L.S. & Harper, J.T., 1998. Channel avulsions and related processes, and large-scale sedimentation patterns since 1875, Rio Grande, San Juis Valley, Colorado. Geological Society of America Bulletin 110, 411-421.Search in Google Scholar

Kaufhold, S., 2007. Carbonates. [In:] K. Knodel, G. Lange & H.J. Voigt (Eds): Environmental geology - handbook of field methods and case studies. Springer, Berlin, Heidelberg, 862-867.Search in Google Scholar

Keaney, A., McKinley, J., Graham, C., Robinson, M. & Ruffell, A., 2013. Spatial statistics to estimate peat thickness using airborne radiometric data. Spatial Statistics 5, 3-24.10.1016/j.spasta.2013.05.003Search in Google Scholar

Klatkowa, H., 1987. Szczegółowa Mapa geologiczna Polski 1:50 000, ark. Łask [Detailed Geological Map of Poland 1:50,000, Łask sheet]. Polski Instytut Geologiczny, Warszawa, 1-54.Search in Google Scholar

Korhola, A., Alm, J. Tolonen, K., Turunen, J. & Jungner, H., 1996. Three-dimensional reconstruction of carbon accumulation and CH4 emission during nine millennia in a raised mire. Journal Quaternary Sciences 11, 161-165.10.1002/(SICI)1099-1417(199603/04)11:2<161::AID-JQS248>3.0.CO;2-JSearch in Google Scholar

Korhola, A., M. Ruppel, H. Seppä, M. Väliranta, T. Virtanen, & Weckström, J., 2010. The importance of northern peatland expansion to the late Holocene rise of atmospheric methane. Quaternary Sciences Review 29, 611-617.10.1016/j.quascirev.2009.12.010Search in Google Scholar

Kozakiewicz, A., 1962. Charakterystyka substancji organicznej gleb torfowych i torfów torfowisk dolinowych. [Characteristics of organic matter of peat soils and peat of valley mires] Roczniki Gleboznawcze, 11, 73-100 (in Polish) Search in Google Scholar

Krivoruchko, K., 2011. Spatial Statistical Data Analysis for GIS Users. Esri Press, Redlands, 894 pp.Search in Google Scholar

Kwiatkowski, A., 1971. Nieorganiczne składniki torfu. [Inorganic components of peat] Biuletyn Informacyjny Torf 4, 31-43 (in Polish) Search in Google Scholar

Lin, Y.P., Chang, T.K. & Teng, T.P., 2001. Characterisation of soil lead by comparing sequential Gaussian simulation, simulated annealing simulation and kriging methods. Environmental Geology 41, 189-199.10.1007/s002540100382Search in Google Scholar

Maciak, F. & Liwski, S., 1996. Ćwiczenia z torfoznawstwa. [Peat deposits exercises] Szkoła Główna Gospodarstwa Wiejskiego, Warszawa, 1-128 (in Polish) Search in Google Scholar

Maksimow, A., 1965. Torf i jego użytkowanie w rolnictwie [Peat and its use in agriculture]. Państwowe Wydawnictwo Rolnicze i Leśne, Warszawa, 396 pp. (in Polish) Search in Google Scholar

Maksymiuk, Z., 1970. Hydrografia dorzecza Grabi [Hydrography of Grabia River valley] Acta Geographica Lodziensa 25, 1-102 (in Polish) Mäkilä, M., & Moisanen, M., 2007. Holocene lateral expansion and carbon accumulation of Luovuoma, a northern fen in finnish Lapland. Boreas 36, 198-210.10.1111/j.1502-3885.2007.tb01192.xSearch in Google Scholar

Miller, H.J. 2004. Tobler’s first law and spatial analysis. Annals of the Association of American Geographers 94, 284-289.Search in Google Scholar

Myślińska, E., 1999. Parametry fizyczne torfów i ocena metod ich oznaczania. [Physical properties of peats and evaluation of methods of their determination]. Przegląd Geologiczny 47, 676-682. (in Polish) Search in Google Scholar

Myślińska, E., 2001. Grunty organiczne i laboratoryjne metody ich badania [ Organic soils and laboratory methods of research]. PWN, Warszawa, 1-208 (in Polish) Okruszko, H., 1964. Czynniki hydrologiczne jako podstawa podziału torfowisk. [Hydrological factors as the basis for the distribution of peatlands] Wiadomości Instytutu Melioracji i Użytków Zielonych 4, 147-164 (in Polish) Search in Google Scholar

Okruszko, H., 1976. Zasady rozpoznawania i podziału gleb hydrogenicznych z punktu widzenia potrzeb melioracji [Principles of recognition and distribution of hydrogenic soils from the melioration point of view]. Biblioteka Wiadomości Instytutu Melioracji i Użytków Zielonych 52, 7-53 (in Polish) Search in Google Scholar

Okruszko, H., 1979. Mokradła i ich klasyfikacja w Polsce [Wetlands and their classification in Poland]. Biuletyn Informacyjny Torf 2, 61, 49-58 (in Polish) Okruszko, H., 1991. Zasady nawożenia gleb torfowych [Rules fertilization of peat soils]. Biblioteka Wiadomości Instytutu Melioracji i Użytków Zielonych 77, 87-103 (in Polish)Search in Google Scholar

Okruszko, H., 1994. System of hydrogenic soil classification used in Poland. Biblioteka Wiadomości Instytutu Melioracji i Użytków Zielonych 84, 5-27 (in Polish) Search in Google Scholar

Okupny, D., Fortuniak, A. & Tomkowiak J., 2013. Pionowa zmienność składu chemicznego osadów biogenicznych torfowiska Podwódka (Kotlina Szczercowska). [Vertical variability of biogenic sediment geochemistry in the Podwódka peatland (the Szczerców Basin). [In:] R.K., Borówka, A. Cedro & I.Search in Google Scholar

Kavetskyy (Eds): Współczesne problemy badań geograficznych [Contemporary problems of geographical studies].Search in Google Scholar

Szczecin, 83-92 (in Polish) Search in Google Scholar

Olea, R.A., Troy, A.C. & Coleman, J.L., 2010. A methodology for the assessment of unconventional (continuous) resources with an application to the Greater Natural Buttes Gas Field, Utah. Natural Resources Research 19, 237-251.10.1007/s11053-010-9127-8Search in Google Scholar

Oświt, J., Pacowski, R., Żurek, S., 1976. Characteristics of more important peat species in Poland. [In:] Peatlands and their utilization in Poland. Proceedings of 5th International Peat Congress, Poznań-Warszawa, Poland, 316-320.Search in Google Scholar

Oświt, J., Żurek, S. & Liwski, S., 1980. Stosunki glebowe doliny Śliny na tle warunków wodnych. [Soil conditions in the Ślina River valley against the background of water conditions]. Zeszyty Problemowe Postępów Nauk Rolniczych 234, 159-195 (in Polish) Search in Google Scholar

Paivanen, J., 1973. Hydraulic conductivity and water retention in peat soils. Acta Forestalia Fennica 129, 1-70.10.14214/aff.7563Search in Google Scholar

Parsekian, A.D., Comas, X., Slater, L. & Glaser P.H., 2011. Geophysical evidence for the lateral distribution of free phase gas at the peat basin scale in a large northern peatland. Journal of Geophysical Research 116, G03008.10.1029/2010JG001543Search in Google Scholar

Pawłowski, D., Kloss, M., Obremska, M., Szymanowski, M. & Żurek, S., 2012. Evolution of small valley mire in central Poland as a result of hydroclimatic oscillations. Geochronometria 39, 133-148.10.2478/s13386-012-0004-6Search in Google Scholar

Pawłowski, D., Milecka, K., Kittel, P., Woszczyk, M. & Spychalski, W., 2014. Palaeoecological record of natural changes and human impact in a small river valley in Central Poland. Quaternary International (in press): http://dx.doi.org/10.1016/j.quaint.2014.06.03310.1016/j.quaint.2014.06.033Search in Google Scholar

Pelisiak, A., 2004. Osadnictwo kultury pucharów lejkowatych w dorzeczu Grabi (Polska środkowa). Uwarunkowania środowiskowe [In:] D. Abłamowicz & Z. Śnieszko (Eds): Zmiany środowiska geograficznego w dobie gospodarki rolno-hodowlanej. Studia z obszaru Polski [Geographical Environment Changes in the Period of Farming and Breeding Economy. Studies from Poland’s Area]. Katowice, 171-183 (in Polish with English summary) Search in Google Scholar

Pelisiak, A. & Kamiński, J., 2004. Geneza i wiek osadów w dolinie Grabi na stanowisku Ldzań w świetle osadnictwa pradziejowego środowiskowe [Origin and chronology of the sediments in the site at the Ldzań in the Grabia valley in a light of prehistoric settlement]. [In:] D. Abłamowicz & Z. Śnieszko (Eds): Zmiany środowiska geograficznego w dobie gospodarki rolno-hodowlanej. Studia z obszaru Polski [Geographical Environment Changes in the Period of Farming and Breeding Economy. Studies from Poland’s Area]. Katowice, 184-196 (in Polish with English summary)Search in Google Scholar

Pniewski, M., Gottschalk, L., Krasovskaia, I. & Chormański, J., 2012. A GIS-based model for testing effects of restoration measures in wetlands: A case study in the Kampinos National Park, Poland. Ecological Engineering 44, 25-35.10.1016/j.ecoleng.2012.03.013Search in Google Scholar

Pyrcz, M.J. & Deutsch, C.V., 2014. Geostatistical Reservoir Modelling. Second Edition. Oxford University Press, New York, 448 pp.Search in Google Scholar

Remy, N., Boucher, A. & Wu, J., 2009. Applied Geostatistics with SGEMS. A User’s Guide. Cambridge University Press, New York, 286 pp.10.1017/CBO9781139150019Search in Google Scholar

Robertson, G.P., Crum, J.R. & Ellis, B.G., 1993. The spatial variability of soil resources following long-term disturbance. Oecologia 96, 451-456.10.1007/BF00320501Search in Google Scholar

Ruggeri, P., Gloaugen, E., Lefebre, R., Irving, J. & Holliger, K., 2014. Integration of hydrological and geophysical data beyond the local scale: Application of Bayesian sequential simulation to field data from the Saint-Lambert-de-Lauzon site, Quebec, Canada. Journal of Hydrology 514, 271-280.10.1016/j.jhydrol.2014.04.031Search in Google Scholar

Rühle, E., 1973. Metodyka badań osadów czwartorzędowych [The research methodology of Quaternary sediments]. Wydawnictwa Geologiczne, Warszawa. (in Polish) Search in Google Scholar

Rydelek, P., 2011. Geneza i skład części mineralnych wybranych złóż torfów niskich Wysoczyzny Lubartowskiej [Origin and composition of mineral particles of selected peat deposits in Lubartowska Upland]. Woda-Środowisko- Obszary Wiejskie, Falenty, 11, 135-149. (in Polish) Search in Google Scholar

Saito, H., Yoshino, K., Ishida, T., Nagano, T., Sirichuaychoo, W., Jongskul, A. & Haraguchi, N., 2005. Geostatistical estimation of tropical peat-soil volume at Bacho, Thailand: impact of spatial support size and censored information. Geoderma 125, 235-247.10.1016/j.geoderma.2004.08.005Search in Google Scholar

Sheng, Y., Smith, L.C. MacDonald, G. M., Kremenetski, K.V., Frey, K.E., Velichko, A.A., Lee, M., Beilman, D.W. & Dubinin, P., 2004. A high resolution GISbased inventory of the west Siberian peat carbon pool. Global Biogeochemical Cycles 18, GB3004. Smith, D.G. & Pearce, C.M., 2002. Ice jam-caused fluvial gullies and scour holes on northern river flood plains. Geomorphology 42, 85-95.10.1029/2003GB002190Search in Google Scholar

Szajdak, L., 2002. Właściwości chemiczne torfu. [Chemical properties of peat]. [In.] P. Ilnicki (Ed.): Torfowiska i torf [Peatlands and peat]. Wydawnictwo Akademii Rolniczej, Poznań, 432-449 (in Polish).Search in Google Scholar

Szymanowski, M., 1993. Podstawowe właściwości fizyczno- wodne i retencyjne oraz ich zależności od gęstości objętościowej różnych utworów słabo zamulonych (niskopopielnych). [Basic physico-chemical properties and water retention, and their dependence on bulk density of different unsiletd sediments] Wiadomości Instytutu Melioracji i Użytków Zielonych 17, 153-174. (in Polish) Search in Google Scholar

Tobolski, K., 2000. Przewodnik do oznaczania torfów i osadów jeziornych [Guide for the determination of peat and lake sediments]. Vademecum Geobotanicum, Wydawnictwo Naukowe PWN. (in Polish) 508 pp.Search in Google Scholar

Tobolski, K., 2003. Torfowiska na przykładzie Ziemi Świeckiej [Ziemia Świecka peatlands]. Towarzystwo przyjaciół Dolnej Wisły, Świecie. (in Polish) 255 pp.Search in Google Scholar

Tobolski, K., 2005a. Niektóre metody badań laboratoryjnych. [Laboratory testing methods]. [In:] G. Miotk- Szpiganowicz, K. Tobolski & J. Zachowicz (Eds): Osady zbiorników akumulacji biogenicznej. Przewodnik do prac laboratoryjnych i terenowych. [Depostis of the biogenic accumulation reservoirs. Guide-book for laboratory and field activity]. Polish Geological Institute, Gdańsk, 68-71.Search in Google Scholar

Tobolski, K., 2005b. Środowiska akumulacji biogenicznej w jeziorach i torfowiskach. [Biogenic accumualation environemnts in lakes and peatlands]. [In:] G. Miotk- Szpiganowicz, K. Tobolski & J. Zachowicz (Eds): Osady zbiorników akumulacji biogenicznej. Przewodnik do prac laboratoryjnych i terenowych. [Depostis of the biogenic accumulation reservoirs. Guide-book for laboratory and field activity]. Polish Geological Institute, Gdańsk, 34-42.Search in Google Scholar

Truba, M. & Oleszczuk, R., 2014. An analysis of some basic chemical and physical properties of drained fen peat and moorsh soil layers. Annals of Warsaw University of Life Sciences - SGGW. Land Reclamation 46, 69-78.10.2478/sggw-2014-0006Search in Google Scholar

Turkowska, K., 1988. Rozwój dolin rzecznych na Wyżynie Łódzkiej w późnym czwartorzędzie [Development of the Łódź Upland valleys in the Late Quaternary]. Acta Geographica Lodziensia 57, 157 pp (in Polish).Search in Google Scholar

Turkowska, K., 2006. Geomorfologia region łódzkiego [Geomorphology of the Łódź region]. Wydawnictwo Uniwersytetu Łódzkiego, 238 pp (in Polish).Search in Google Scholar

Van Bellen, S., P.-L. Dallaire, M. Garneau, & Bergeron, Y., 2011. Quantifying spatial and temporal Holocene carbon accumulation in ombrotrophic peatlands of the Eastmain region, Quebec, Canada. Global Biogeochemical Cycles 25, GB2016.10.1029/2010GB003877Search in Google Scholar

Van Gelder, A., Van den Berg, J.H., Cheng, G. & Xue, C., 1994. Overbank and channelfill deposits of the modern Yellow River delta. Sedimentary Geology 90, 293-305.10.1016/0037-0738(94)90044-2Search in Google Scholar

Watts, D.L., Cohen, M.J., Heffernan, J.B. & Osborne, T.Z., 2010. Hydrologic modification and the Loss of self-organized patterning in the ridge-slough mosaic of the Everglades. Ecosystems 13, 813-827.10.1007/s10021-010-9356-zSearch in Google Scholar

Webster, R. & M. Oliver, 2007. Geostatistics for Environmental Scientists. John Wiley, Chichester, UK, 330 pp.10.1002/9780470517277Search in Google Scholar

Weerts, H.J.T. & Bierkens, M.F.P., 1993. Geostatistical analysis of overbank deposits of anastomosing and meandering fluvial systems; Rhine-Meuse delta, Netherlands. Sedimentary Geology 85, 221-232.10.1016/0037-0738(93)90085-JSearch in Google Scholar

Woszczyk, M. & Szczepaniak, M., 2008. Reevaluation of the Scheibler method and its usefulness in the analysis of carbonate content in lake sediments. [In:] E. Bajkiewicz-Grabowska & D. Borowiak (Eds): Antropogenic and natural transformations of lakes, 2, 223-226.Search in Google Scholar

Wójcicki, K.J., 2007. Zawartość materii organicznej w osadach zbiornikowych jako wskaźnik dynamiki procesów geomorfologicznych - przykłady z dorzecza górnej Odry.[The content of organic matter in basin deposits as an indicato of the dynamic of geomorphic processes - the causes from the upper Odra basin]. [In:] E. Smolska, D. Giriat (Eds): Rekonstrukcja dynamiki i procesów geomorfologicznych - formy rzeźby i osady [Reconstruction of morphological process dynamics - landforms and deposits]. Uniwersytet Warszawski, 445-455. (in Polish) Search in Google Scholar

Wójcicki, K.J., 2013. Osady biogeniczne w środowisku depozycyjnym starorzeczy (warunki akumulacji i wymowa paleośrodowiskowa na przykładach z dorzecza górnej Odry) [ Biogenic sediments in abandoned River channel: their deposition environment and significance in peleoenvironmental studies based on the examples from the Upper Odra catchment, Southern Poland]. Uniwersytet Śląski, Katowice. (in Polish) 240 pp.Search in Google Scholar

Yu, Z., Campbell, I.D., Vitt, D.H. & Apps, M.J., 2001. Modelling long-term peatland dynamics. I. Concepts, review, and proposed design. Ecological Modelling 145, 197-210.10.1016/S0304-3800(01)00391-XSearch in Google Scholar

Zapata-Rios, X., Rivero, X.R., Naja, G.M. & Goovaerts, P., 2012. Spatial and temporal phosphorus distribution changes in a large wetland ecosystem, Water Resources Research 48, W09512.10.1029/2011WR011421Search in Google Scholar

Żurek, S., 1993. Zmiany paleohydrologiczne w mokradłach. [Paleohydrological changes in the wetlands]. Przegląd Geograficzny 64, 75-95 (in Polish).Search in Google Scholar

Żurek, S., 2006. Katalog rezerwatów przyrody na torfowiskach Polski [Catalog of peatland nature reserves in Poland]. Wydawnictwo Akademii Świętokrzyskiej, Kielce. (in Polish) 288 pp. Search in Google Scholar

eISSN:
2080-6574
Language:
English
Publication timeframe:
3 times per year
Journal Subjects:
Geosciences, Geophysics, Geology and Mineralogy, other