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Thematic Articles

Magnitude of fluvial transport and rate of denudation in a non‐glacierised catchment in a polar zone, central spitsbergen

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Pages 447-464 | Received 20 Jul 2014, Accepted 15 Sep 2014, Published online: 15 Nov 2016

References

  • Atkinson, S.L., 2001. Weathering and major‐ion chemistry in the Herbert, Eagle and Mendenhall glacial meltwaters. 14th Keck Symposium Volume, NASA Goddard Space Flight Center. http://keckgeology.org/14thsymposiumvolume, 27 Feb., 2014.
  • Bartoszewski, S., 1998. Reżim odpływu rzek Ziemi Wedel Jarlsberga, Spitsbergen [River regime of Wedel Jarlsberg Land, Spitsbergen]. Wydawnictwo UMCS, Lublin. [In Polish]
  • Bartoszewski, S., 2002. Odpływ ze zlewni Lodowca Scotta (Spitsbergen) w sezonie letnim 2001 roku [Runoff from Scott Glacier catchment (Spitsbergen) in summer season 2001]. Polish Polar Studies, Wydanictwo Naukowe UAM, Poznań. [In Polish]
  • Bartoszewski, S. and Magierski, J., 1989. Denudacja chemiczna w zlewniach rzecznych w okolicy Calypsobyen (Zachodni Spitsbergen) [Chemical denudation in the river basins of Calypsobyen region (Western Spitsbergen)]. Spitsbergen Geographical Expeditions of the Maria Curie‐Skłodowska University, Lublin. 69–77. [In Polish]
  • Bartoszewski, S. and Michalczyk, Z., 2013. Waters. In: Zwoliński, Zb., Kostrzewski, A. and Pulina, M. (eds), Ancient and modern geoecosystems of Spitsbergen. Bogucki Wydawnictwo Naukowe, Poznań. 163–169.
  • Bednorz, E. and Kolendowicz, L., 2010. Summer 2009 thermal and bioclimatic conditions in Ebba Valley, Central Spitsbergen. Polish Polar Research, 31 (4), 327–348.
  • Beylich, A.A., 2011. Mass transfers, sediment budgets and relief development in cold environments: results of long‐term geomorphologic drainage basin studies in Iceland, Swedish Lapland and Finnish Lapland. Zeitschrift für Geomorphologie, 55, 145–174.
  • Beylich, A.A. and Laute, K., 2012a. Spatial variations of surface water chemistry and chemical denudation in the Erdalen drainage basin, Nordfjord, western Norway. Geomorphology, 167–168, 77–90.
  • Beylich, A.A. and Laute, K., 2012b. Seasonal and annual variations of surface water chemistry, solute fluxes and chemical denudation in a steep and glacier‐fed mountain catchment in western Norway (Erdalen, Nordfjord). Catena, 96, 12–27.
  • Beylich, A.A., Decaulne, A., Dixon, J.C., Lamoureux, S.F., Orwin, J.F., Otto, J.‐C., Overeem, I., Sœmundsson, Þ., Warburton, J. and Zwolinski, Zb., 2012. The global Sediment Budgets in Cold Environments (SEDIBUD) Programme: coordinated studies of sedimentary fluxes and budgets in changing cold environments. Zeitschrift für Geomorphologie, 56 (SI 1), 3–8. doi: 10.1127/0372‐8854/2012/S‐00069
  • Beylich, A.A., Lamoureux, S.F. and Decaulne, A., 2011. Developing frameworks for studies on sedimentary fluxes and budgets in changing cold environments. Quaestiones Geographicae, 30, 5–18.
  • Beylich, A.A., Lamoureux, S.F., Decaulne, A., Dixon, J.C., Orwin, J.F., Otto, J. and Zwolinski, Zb., 2010. Sedimentary fluxes and budgets in changing cold environments: The global IAG/AIG sediment budgets in cold environments (SEDIBUD) programme. Geografiska Annaler: Series A, Physical Geography, 92 (2), 151–153. doi: 10.1111/J.1468‐0459.2010.00386.X
  • Brański, J., 1968. Zmącenie wody i transport rumowiska unoszonego w rzekach polskich [Turbidity of water and suspended sediment transport in the Polish rivers]. Prace PIHM, 95, 49–67. [In Polish]
  • Casassa, G., Lopez, P., Pouyaud, B. and Escobar, F. 2009. Detection of changes in glacial runoff in alpine basins: examples from North America, the Alps, central Asia and the Andes. Hydrological Processes, 22, 31–41.
  • Chmiel, S., Bartoszewski, S. and Siwek, K., 2011. Chemical denudation rates in the Wydrzyca catchment (Bellsund, Svalbard). Annales Universitatis Mariae Curie‐Skłodowska, 66 (1), 115–128.
  • Dallmann, W.K., Pipejohn, K. and Blomeierm, D., 2004. Geological map of Billefjorden, Central Spitsbergen, Svalbard with geological excursuion guide 1:50-000. Norsk Polarinstitutt Tematkart 36.
  • Dragon, K. and Marciniak, M., 2010. Chemical composition of groundwater and surface water in the Arctic environment (Petuniabukta region, central Spitsbergen). Journal of Hydrology, 386, 160–172.
  • Elbanowska, H., Zerbe, J. and Siepak, J., 1999. Fizyczno‐chemiczne badania wód [Physico‐chemical research of water]. Wyd. Uniwersytetu im. Adama Mickiewicza, Poznań. [In Polish]
  • Froehlich, W., 1975. The dynamics of fluvial transport in the Kamienica Nawojowska. Prace Geograficzne IG PAN, Warszawa, 114.
  • Froehlich, W., 1982. Mechanism of fluvial transport and waste supply into the stream channel in a mountainous flysch catchment. Prace Geograficzne IG PAN, Warszawa, 143.
  • Głowacki, P., 2007. Rola procesów fizyczno‐chemicznych w kształtowaniu struktury wewnętrznej i obiegu masy lodowców Spitsbergenu [Role of physical and chemical processes in the internal structure formation and mass circulation of Spitsbergen glaciers]. Publications of the Institute of Geophysics, Polish Academy of Science, Warszawa, Monographic Volume M30 (400). [In Polish]
  • Hagen, J.O., Etzelmüller, B. and Nuttal, A.M., 2000. Runoff and drainage pattern derived from digital elevation models, Finsterwalderbreen, Svalbard. Annals of Glaciology, 31, 147–152.
  • Hodgkins, R., 1997. Glacier hydrology in Svalbard, Norwegian High Arctic. Quaternao, Science Reviews, 16, 957–973.
  • Hodgkins, R. and Tranter, M., 1998. Solute in High Arctic glacier snow cover and its impact on runoff chemistry. Annals of Glaciology, 26, 156–160.
  • Hodgkins, R., Cooper, R., Wadham, J. and Tranter, M., 2003. Suspended sediment fluxes in a high‐Arctic glacierised catchmnet: implications for fluvial sediment storage. Sedimentary Geology, 161, 105–117.
  • Hodson, A.J. and Ferguson, R.I., 1999. Fluvial suspended sediment transport from cold and warm based glaciers in Svalbard. Earth Surface Processes Landforms, 24, 957–974.
  • Hodson, A., Tranter, M. and Vatne, G., 2000. Contemporary rates of chemical denudation and atmospheric CO2 sequestration in glacier basins: an Arctic perspective. Earth Surface Processes and Landforms, 25, 1447–1471.
  • Karczewski, A. (ed.), 1990. Geomorphology – Petuniabukta, Billefjorden, Spitsbergen, 1:40000. Adam Mickiewicz University, Poznań.
  • Killingtveit, Å., Pettersson, L.E. and Sand, K., 2003. Water balance investigations in Svalbard. Polar Research, 22 (2), 161–174.
  • Kłysz, P., Lindner, L., Marks, L. and Wysokiński, L., 1989. Late Pleistocene and Holocene relief remodelling in the Ebbadalen‐Nordenskiöldbreen region in Olav V Land, Central Spitsbergen. Polish Polar Research, 10 (3), 277–301.
  • Kociuba, W. and Janicki, G., 2014. Continuous measurements of bedload transport rates in a small glacial river catchment in the summer season (Spitsbergen). Geomorphology, 212, 58–71.
  • Kociuba, W., Janicki, G. and Siwek, K., 2010. Dynamics of changes the bed load outflow from a small glacial catchment (West Spitsbergen). In: de Wrachien, D., Brebbia C.A. (eds), Monitoring, Simulation, Prevention and Remediation of Dense Debris Flow III. WIT Press, Southampton, Boston. 261–270.
  • Kociuba, W., Janicki, G. and Siwek, K., 2014. Variability of sediment transport in the Scott River catchment (Svalbard) during the hydrologically active season of 2009. Quaestiones Geographicae, 33 (1), 39–49.
  • Kostrzewski, A. and Zwoliński, Zb., 1985. Chemical denudation rate in the upper Parsęta catchment, Western Pomerania: research methods and preliminary results. Quaestiones Geographicae, Spec. Iss. 1, 121–138.
  • Kostrzewski, A. and Zwoliński, Zb., 1988. Present‐day covers in the mouth section of the Ebba valley, Petuniabukta in Spitsbergen: proposed classification, preliminary research results. Spraw. PTPN, 105, 54–56.
  • Kostrzewski, A. and Zwoliński, Zb., 1990. Chemical and mechanical denudation in the upper Parsęta catchment for the hydrological year 1986. Dokumentacja Geograficzna, 1, 13–30.
  • Kostrzewski, A. and Zwoliński, Zb., 1992. The contribution of chemical and mechanical denudation to the contemporary geomorphic system of the upper Parsęta river (Western Pomerania). Prace Geograficzne IGPZ PAN, 155, 11–45.
  • Kostrzewski, A. and Zwoliński, Zb., 1995. Hydraulic geometry of a supraglacial stream. Quaestiones Geographicae, Spec. Iss. 4, 165–176.
  • Kostrzewski, A. and Zwoliński, Zb., 2013. Geoecosystems of Spitsbergen – basis for assignment, landscape metamorphosis. In: Zwoliński, Zb., Kostrzewski, A. and Pulina M. (eds), Ancient and Modern Geoecosystems of Spitsbergen. Bogucki Wydawnictwo Naukowe, Poznań. 415–425.
  • Kostrzewski, A., Kaniecki, A., Kapuściński, J., Klimczak, R., Stach, A. and Zwoliński, Zb., 1989. The dynamics and rate of denudation of glaciated and non‐glaciated catchments, central Spitsbergen. Polish Polar Research, 10 (3), 317–367.
  • Kostrzewski, A., Rachlewicz, G. and Zwoliński, Z., 2007. Present‐day geomorphological activity in the Arctic. Landform Analysis, 5, 41–46.
  • Krawczyk, W.E., 1994. Denudacja chemiczna w wybranych zlewniach SW Spitsbergenu [Chemical denudation in selected catchments SW Spitsbergen]. MS, Uniwersytet Śląski, Wydział Nauk o Ziemi, Sosnowiec. [In Polish]
  • Krawczyk, W.E. and Bartoszewski, S.A., 2008. Crustal solute fluxes and transient carbon dioxide drawdown in the Scottbreen Basin, Svalbard in 2002. Journal of Hydrology, 362, 206–219.
  • Krawczyk, W.E. and Pettersson, L.‐E., 2007. Chemical denudation rates and carbon dioxide drawdown in an ice‐free polar karst catchment: Londonelva, Svalbard. Permafrost and Periglacial Processes, 18 (4), 337–350.
  • Krawczyk, W.E., Lefauconnier, B. and Pettersson, L.E., 2003. Chemical denudation rates in the Bayelva catchment, Svalbard, in the fall of 2000. Physics and Chemistry of the Earth, 28, 1257–1271.
  • Leszkiewicz, J., 1987. Charakterystyczne cechy zlewni polarnych oraz próba modelowania statystycznego topnienia sniegu i odplywu ablacyjnego w zachodniej czesci Spitsbergenu [The characteristic features of the polar catchment and attempt to statistical modeling snow melting and ablation runoff in the western part of Spitsbergen]. Prace Naukowe US, 920. [In Polish]
  • Lewis, T., Lafrenière, M.J. and Lamoureux, S.F., 2012. Hydrochemical and sedimentary responses of paired High Arctic watersheds to unusualclimate and permafrost disturbance, Cape Bounty, Melville Island, Canada. Hydrological Processes, 26, 2003–2018.
  • Macioszczyk, A. and Dobrzyński, D., 2007. Hydrogeochemia [Hydrogeochemistry]. Wydawnictwo Naukowe PWN, Warszawa. [In Polish]
  • Marciniak, M. and Dragon, K., 2009. Badanie dynamiki oraz chemizmu wód podziemnych w warunkach polarnych dla wybranej zlewni na Spitsbergenie [Study of the dynamics and chemistry of grundwater in polar conditions for the selected catchment in Spitsbergen]. Raport techniczny z grantu MNiSW PB 3505/PO1/2007/32, Uniwersytet im. Adama Mickiewicza, Poznań. [In Polish]
  • Marciniak, M. and Dragon, K., 2010. The influence of groundwater discharge on the runoff of an Arctic stream (Ebba River, central Spitsbergen). Biuletyn Państwowego Instytutu Geologicznego, 441, 93–100.
  • Markowicz, M. and Pulina, M., 1979. Ilościowa półmikroanaliza chemiczna wód w obszarach krasu węglanoweg [Quantitative chemical analysis of water in carbonate karst areas]. Prace Naukowe UŚ, 289. [In Polish]
  • Mazurek, M., Paluszkiewicz, R., Rachlewicz, G. and Zwoliński, Zb., 2012. Variability of water chemistry in tundra lakes, Petuniabukta Coast, Central Spitsbergen, Svalbard. The Scientific World Journal, 2012, 1–13. doi: 10.1100/2012/596516.
  • Menzies, J. (ed.), 2002. Modern and Past Glacial Environments. Butterworth‐Heinemann, Oxford.
  • Moore, R.D., Fleming, S.W., Menounos, B., Wheate, R., Fountain, A., Stahl, K., Holm, K. and Jakob, M., 2009. Glacier change in western North America: influences on hydrology, geomorphic hazard and water quality. Hydrological Processes, 2, 42–61.
  • Niedźwiedź, T., 2007. Cyrkulacja atmosferyczna [Atmospheric circulation]. In: Marsz, A.A. and Styszyńska A. (eds), Klimat rejonu polskiej stacji polarnej w Hornsundzie [Climate of Polish Polar Station in Hornsund region]. Wydawnictwo Akademii Morskiej w Gdyni. 45–63. [In Polish]
  • Nolin, A.W., Phillippe, J., Jefferson, A. and Lewis, S.L., 2010. Present‐day and future contributions of glacier runoff to summertime floks in a Pacific Northwest watershed: Implications for water resources. Water Resources Research, 46, W12509. doi: 10.1029/2009WR008968.
  • Norsk Polarinstitutt, 1988. Dicksonfjorden. Spitsbergen. 1:100000, Blad C7.
  • Pietrucień, C. and Skowron, R., 1989. Dynamika transportu materiału unoszonego w rzece Waldemara na Spitsbergenie w sezonie letnim 1985 [Transport dynamics of suspended load in the Waldemar River, Spitsbergen in the summer season of 1985]. In: Olszewski, A. (ed.), Dorobek i perspektywy polskich badań polarnych [Achievements and perpectives of Polish polar research]. UMK, Toruń. 191–195. [In Polish]
  • Pietrucień, C. and Szczepanik, W., 1982. Studies on the concentration of suspended material in the rivers of Kaffioyra (NW Spitsbergen) in summer 1977. Acta Universitatis Nicolai Copernici, Geografia, 16 (51), 185–202.
  • Pulina, M. and Burzyk J., 2002. Dwutlenek węgla produkowany latem 2001 r. w tundrze zlewni Fugleberget (Hornsund–Spitsbergen) i jego rola w denudacji chemicznej [Carbon dioxide fluxes in the summer season 2001 in tundra soils of Fugleberget catchment (Hornsund–Spitsbergen) and its function in chemical denudation]. In: Kostrzewski, A. and Rachlewicz, G. (eds.), Polish Polar Studies, The operation and monitoring of geoecosystems of polar areas, Poznań, 239–253. [In Polish]
  • Pulina, M., Krawczyk, W.E. and Pereyma, J., 1984. Water balance and chemical denudation in unglaciated Fugleberget basin. Polish Polar Research, 5 (3–4), 183–205.
  • Rachlewicz, G., 2003a. Environmental conditions of the water cycle in the Hörbye Glacier System (Central Spitsbergen). In: Kostrzewski, A. and Szpikowski, J. (eds), The Functioning of Geoecosystems of River Catchments, vol. 3. Bogucki Wydawnictwo Naukowe, Poznań. 351–365.
  • Rachlewicz, G., 2003b. Meteorological conditions in Petunia Bay (Central Spitsbergen) during summer seasons 2000 and 2001). Problemy Klimatologii Polarnej, 13, 127–138.
  • Rachlewicz, G., 2007. Flood in High Arctic valley systems and their geomorphologic effects (Examples from Billefjorden, Central Spitsbergen). Landform Analysis, 5, 66–70.
  • Rachlewicz, G., 2009a. Contemporary sediment fluxes and relief changes in high Arctic glacierized valley systems (Billefjorden, Central Spitsbergen). Adam Mickiewicz University, Geografia 87, Poznań.
  • Rachlewicz, G., 2009b. River floods in glacier‐covered catchments of the High Arctic: Billefjorden – Wijdefjorden, Svalbard. Norsk Geografisk Tidsskrift – Norwegian Journal of Geography, 63, 115–122.
  • Rachlewicz, G. and Styszyńska, A., 2007. Comparison of the course of air temperature in Petuniabukta and Svalbard‐Lufthavn (Isfjord, West Spitsbergen) in the years 2001–2003. Problemy Klimatologii Polarnej, 17, 121–134.
  • Rachlewicz, G. and Szczuciński, W., 2008. Changes in permafrost active layer thermal structure in relation to meteorological conditions, Petuniabukta, Svalbard. Polish Polar Research, 28 (3), 261–278.
  • Rachlewicz, G. and Zwoliński, Zb., 2012. Wykorzystanie urządzenia RBT w pomiarach materiału wleczonego. Efektywność urządzenia RBT na tle innych bezpośrednich metod pomiaru [Use the device RBT in measurements of bed material. The effectiveness of the device RBT to other direct methods of measurement]. MS, 22 p. [In Polish]
  • Rachlewicz, G. and Zwoliński, Zb., 2013. Components of geographical environment. In: Zwoliński, Zb., Kostrzewski, A. and Pulina M., (eds), Ancient and Modern Geoecosystems of Spitsbergen. Bogucki Wydawnictwo Naukowe, Poznań. 210–236.
  • Rachlewicz, G., Kostrzewski, A., Marciniak, M., Szpikowski, J. and Zwoliński, Zb., 2012. The function of contemporary physical geography processes in polar regions (Dickson Land, Svalbard). In: Churski, P. (ed.), Contemporary Issues in Polish Geography. Bogucki Wydawnictwo Naukowe, Poznań. 95–110.
  • Rachlewicz, G., Zwoliński, Zb., Kostrzewski, A. and Birkenmajer, K., 2013. Geographical environment in the vicinity of the Adam Mickiewicz University in Poznań Polar Station – Petuniabukta. In: Zwoliński, Zb., Kostrzewski, A. and Pulina, M. (eds.), Ancient and Modern Geoecosystems of Spitsbergen. Bogucki Wydawnictwo Naukowe, Poznań. 205–243.
  • Sharp, M., Tranter, M., Brown, G. and Skidmore, M., 1995. Rates of chemical denudation and CO2 drawdown in a glacier‐covered alpine catchment. Geology, 23, 61–64.
  • Sobota, I. 2000. Ablation and discharge of the Waldemar Glacier, north‐western Spitsbergen, in summer 1998. Polish Polar Research, 21 (1), 3–18.
  • Sobota, I., Ćmielewski, M. and Nowak, M., 2010. Charakterystyka i przyczyny zmienności natężenia przepływu rzeki lodowcowej w sezonie letnim na przykładzie Rzeki Waldemara, Svalbard [Characteristic and reasons of discharge variatins of glacial river during summer time based on the Waldemar river, Svalbard]. Problemy Klimatologii Polarnej, 20, 143–159. [In Polish]
  • Sollid, J.L., Etzelmüller, B., Vatne, G. and Odegard, R., 1994. Glacial dynamics, material transfer and sedimentation of Erikbreen and Hannabreen, Liefdefjorden, northern Spitsbergen. Zeitschrift für Geomorphologie, 97, 123–144.
  • Stach, A., 1992. Measurement of water discharge by the conductometric method in unstabilised profiles of small lowland streams. Prace Naukowe Uniwersytetu Śląskiego w Katowicach, 1254, 84–105.
  • Stankowski, W., Kasprzak, L., Kostrzewski, A. and Rygielski, W., 1989. An outline of morphogenesis of the region between Hørbydalen and Ebbadalen, Petuniabukta, Billefjorden, central Spitsbergen. Polish Polar Research, 10 (3), 267–276.
  • Stenborg, T., 1970. Delay of run‐off from a glacier basin. Geografiska Annaler: Series A, Physical Geography, 52, 1–30.
  • Stumm, W. and Morgan, J., 1996. Aquatic Chemistry. 3rd ed. John Wiley & Sons, New York.
  • Svendsen, J.I., Mangereud, J. and Miller, G.H., 1989. Denudation rates in the Arctic estimated from lake sediments on Spitsbergen, Svalbard. Palaeogeography, Palaeoclimatology, Palaeoecology, 76, 153–168.
  • Szczuciński, W., Zajączkowski, M. and Scholten, J., 2009. Sediment accumulation rates in subpolar fjords – impact of post‐Little Ice Age glaciers retreat, Billefjorden, Svalbard. Estuarine, Coastal and Shelf Science, 85, 345–356.
  • Szpikowska, G., 2007. Odpływ materiału rozpuszczonego ze zlewni zródliskowej w latach o zróżnicowanych warunkach opadowych (Chwalimski Potok, górna Parsęta) [Outflow dissolved matter from a headwater catchment in years with different rainfall conditions (the Chwalimski Potok, upper Parsęta)]. In: Kostrzewski, A. and Szpikowski, J. (eds), Funkcjonowanie geoekosystemów zlewni rzecznych 4. Procesy ekstremalne w środowisku geograficznym [The functioning of geoecosystems of river catchment 4. Extreme processes in the geographical environment]. Bogucki Wydawnictwo Naukowe, Poznań. 209–220. [In Polish]
  • Szpikowski, J., Szpikowska, G., Zwoliński, Zb., Rachlewicz, G., Kostrzewski, A., Marciniak, M. and Dragon, K., 2014. Character and rate of denudation in a High Arctic glacierized catchment (Ebbaelva, Central Spitsbergen). Geomorphology, 218, 52–62. doi: 10.1016/j.geomorph.2014.01.012
  • Wadham, J.L., Hodson, A.J., Tranter, M. and Dowdeswell, J.A., 1997. The rate of chemical weathering beneath a quiescent, surge‐type, polythermal‐based glacier, southern Spitsbergen, Svalbard. Annals of Glaciology, 24, 27–31.
  • Wolfe, M. and English, M.C. 1995. Hydrometeorological relationships in a glacierized catchment in the Canadian high Arctic. Hydrological Processes, 9 (8), 911–921.
  • Yde, J., Riger‐kusk, M., Christiansen, H., Knudsen, N.T. and Humlum, O., 2008. Hydrochemical characteristics of bulk meltwater from an entire ablation season, Longyearbreen, Svalbard. Journal of Glaciology, 54 (185), 259–272.
  • Zwoliński, Zb., 1989. Geomorphic adjustment of the Parsęta channel to the present‐day river regime. Dokumentacja Geograficzna, 3/4.
  • Zwoliński, Zb., 2007a. Mobilność materii mineralnej na obszarach paraglacjalnych, Wyspa Króla Jerzego, Antarktyka Zachodnia [The mobility of mineral master in paraglacial areas, King George Island, Western Antarctica]. Wydawnictwo Naukowe UAM, Poznań, Ser. Geografia 74.
  • Zwoliński, Zb., 2007b. Hydrological polar monitoring – methodical proposition. Monitoring Środowiska Przyrodniczego, 8, 29–39.
  • Zwoliński, Zb., 2013. Climate. In: Zwoliński, Zb., Kostrzewski, A. and Pulina M. (eds.), Ancient and modern geoecosystems of Spitsbergen. Bogucki Wydawnictwo Naukowe, Poznań. 28–29.
  • Zwoliński, Zb., Kostrzewski, A. and Pulina, M. (eds.), 2013. Ancient and modern geoecosystems of Spitsbergen. Bogucki Wydawnictwo Naukowe, Poznań.
  • Zwoliński, Zb., Szpikowski, J. and Wiśniewska, K., 2012. Provenance of surface waters on the western coast of Admiralty Bay, King George Island, Antarctica. Zeitschrift für Geomorphologie, 56 (SI 1): 123–141. doi: 10.1127/0372‐8854/2012/S‐00076

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