844
Views
1
CrossRef citations to date
0
Altmetric
Research/review articles

The impact of seabirds on the content of various forms of phosphorus in organic soils of the Bellsund coast, western Spitsbergen

&
Article: 19986 | Published online: 17 Oct 2014

References

  • Anderson W.B., Polis G.A. Nutrient fluxes from water to land: seabirds affect plant nutrient status on Gulf of California islands. Oecologia. 1999; 118: 324–332.
  • Ann Y., Reddy K.R., Delfino J.J. Influence of chemical amendments on phosphorus immobilization in soils from a constructed wetland. Ecological Engineering. 2000; 14: 157–169.
  • Bedrock C.N., Cheshire M.V., Chudek J.A., Goodman B.A., Shand C.A. Use of 31P-NMR to study the forms of phosphorus in peat soils. Science of the Total Environment. 1994; 152: 1–8.
  • Blümel W.D., Eberle J., Weber L. Verwitterung, Genese und Bodenverbreitung im Liefdefjord/Bockfjordgebiet (NW-Spitzbergen)—Untersuchungsmethoden und erste Ergebnisse. (Weathering, genesis and soil distribution in Liefdefjord/Bockfjord region [NW Spitsbergen]—research methods and first results.). Basler Beiträge zur Physiogeographie. 1993; 15: 65–70.
  • Breuning-Madsen H., Ehlers C.B., Borggaard O.K. The impact of perennial cormorant colonies on soil phosphorus status. Geoderma. 2008; 148: 51–54.
  • Chang S.C., Jackson M.L. Fractionation of soil phosphorus. Soil Science. 1957; 84: 133–144.
  • Comerford N.B. Lynch J.P., Deikman J. Soil phosphorus bioavailability. Phosphorus in plant biology. 1998; Rockville, MD: American Society of Plant Physiologists. 136–147.
  • Condron L.M., Newman S. Revisiting the fundamentals of phosphorus fractionation of sediments and soils. Journal Soils Sediments. 2011; 11: 830–840.
  • Craft C.B., Richardson C.J. Peat accretion and phosphorus accumulation along a eutrophication gradient in the northern Everglades. Biogeochemistry. 1993; 22: 133–156.
  • Cross A.F., Schlesinger W.H. A literature review and evaluation of the Hedley fractionation: applications to the biogeochemical cycle of soil phosphorus in natural ecosystems. Geoderma. 1995; 64: 197–214.
  • Cross A.F., Schlesinger W.H. Biological and geochemical controls on phosphorus fractions in semiarid soils. Biogeochemistry. 2001; 52: 155–172.
  • Dobrovolsky V.V. Geohimija počv Špicbergena. (Geochemistry of Spitsbergen soils.). Počvovedenie. 1990; 2: 5–20.
  • Dowding P., Chapin F.S. III, Wielgolaski F.E., Kilfeather P. Bliss L.C. Nutrients in tundra ecosystems. Tundra ecosystems: a comparative analysis. 1981; Cambridge: Cambridge University Press. 647–683.
  • Elser J.J., Bracken M.E.S., Cleland E.E., Gruner D.S., Harpole W.S., Hillebrand H., Ngai J.T., Seabloom E.W., Shurin J.B., Smith J.E. Global analysis of nitrogen and phosphorus limitation of primary producers in freshwater, marine and terrestrial ecosystems. Ecology Letters. 2007; 10: 1135–1142.
  • Eurola S. The middle Arctic mire vegetation in Spitsbergen. Acta Agralia Fennica. 1971; 123: 87–107.
  • Forman S.L., Miller G.H. Time-dependent soil morphologies and pedogenic processes on raised beaches, Bröggerhalvöya, Spitsbergen, Svalbard Archipelago. Arctic and Alpine Research. 1984; 16: 381–394.
  • Fugler S.R. Siegfried W.R. Chemical composition of guano of burrowing petrel chicks (Procellariidae) at Marion Island. Antarctic nutrient cycles and food webs. 1985; Berlin: Springer. 169–172.
  • Godzik B. Heavy metals and macroelements in the tundra of southern Spitsbergen: the effect of little auk Alle alle (L.) colonies. Polar Research. 1991; 9: 121–131.
  • Göttlich K., Hornburg P. Ein Zeuge wärmzeitlicher Moore im Adventdalen auf Spitzbergen (Svalbard-Archipel). (The peatbog in Adventdalen on Spitsbergen [Svalbard Archipeligo] as a witness of warm period. Telma. 1982; 12: 253–260.
  • Hawke D.J., Newman J. Inventories and elemental accumulation in peat soils of forested seabird breeding islands, southern New Zealand. Australian Journal of Soil Research. 2004; 42: 45–48.
  • Headley A.D. Heavy metal concentrations in peat profiles from the High Arctic. Science of the Total Environment. 1996; 177: 105–111.
  • Hogg E.H., Morton J.K. The effect of nesting gulls on the vegetation and soil of islands in the Great Lakes. Canadian Journal of Botany. 1983; 61: 3240–3254.
  • Ivanoff D.B., Reddy K.R., Robinson S. Chemical fractionation of organic phosphorus in selected histosols. Soil Science. 1998; 163: 36–45.
  • Jóźwik Z., Magierski J. Repelewska-Pękalowa J., Pękala K. V. Trace elements in plants and soils of coastal plains of south Bellsund (western Spitsbergen). Polar Session. Arctic natural environment problems. 1992; Lublin: Maria Curie-Skłodowska University Press. 161–169.
  • Klimowicz Z., Melke J., Uziak S. The influence of relief and lithology on soil formation in west Spitsbergen. Permafrost, Sixth International Conference Proceedings. Vol. 1. 1993; Beijing, China: South China University of Technology Press. 350–355.
  • Klimowicz Z., Melke J., Uziak S. Peat soils in the Bellsund region, Spitsbergen. Polish Polar Research. 1997; 18: 25–39.
  • Klimowicz Z., Melke J., Uziak S., Chodorowski J. Soils of north-west part of Wedel Jarlsberg Land against a background of the Spitsbergen natural environment. 2008; Lublin: Maria Curie-Skłodowska University Press.
  • Klimowicz Z., Uziak S. Soil-forming processes and soil properties in Calypsostranda, Spitsbergen. Polish Polar Research. 1988; 9: 61–71.
  • Koch M.S., Reddy K.R. Distribution of soil and plant nutrients along a trophic gradient in the Florida Everglades. Soil Science Society of America Journal. 1992; 56: 1492–1499.
  • Kuo S. Sparks D.L. Phosphorus. Methods of soil analysis. Part 3. Chemical methods. SSSA Book Series No. 5. 1996; Madison: Soil Science Society of America, American Society of Agronomy. 869–918.
  • Låg J. Special peat formation in Svalbard. Acta Agriculturae Scandinavica. 1980; 30: 205–210.
  • Ligęza S., Smal H. Accumulation of nutrients in soils affected by perennial colonies of piscivorous birds with reference to biogeochemical cycles of elements. Chemosphere. 2003; 52: 595–602.
  • Litaor M.I., Reichmann O., Auerswald K., Haim A., Shenker M. The geochemistry of phosphorus in peat soils of a semiarid altered wetland. Soil Science Society of America Journal. 2004; 68: 2078–2085.
  • Lityński T., Jurkowska H., Gorlach E. Analiza chemiczno-rolnicza. (Agricultural-chemistry analysis.). 1976; Warszawa: PWN.
  • Mann O.H., Sletten R.S., Ugolini F.C. Soil development at Kongsfjorden, Spitsbergen. Polar Research. 1986; 4: 1–16.
  • Melke J. Repelewska-Pękalowa J. Preliminary studies of fissure and slope peats in the Calypsostranda and Lyellstranda Region, west Spitsbergen. Polish Polar Studies. 26th International Polar Symposium. 1999; Lublin: Maria Curie-Skłodowska University Press. 171–175.
  • Melke J., Chodorowski J. Formation of Arctic soils in Chamberlindalen, Bellsund, Spitsbergen. Polish Polar Research. 2006; 27: 119–132.
  • Mulder C.P.H., Jones H., Kameda K., Palmborg C., Schmidt S., Ellis J.C., Orrock J.L., Wait D.A., Wardle D.A., Yang L., Young H., Croll D.A., Vidal E. Mulder C.P.H. Impacts of seabirds on plant and soil properties. Seabird islands: ecology, invasion, and restoration. 2011; New York: Oxford University Press. 135–176.
  • Mun H.T. Effects of colony nesting of Adrea cinerea and Egretta alba modesta on soil properties and herb layer composition in Pinus densiflora forest. Plant and Soil. 1997; 197: 55–59.
  • Myrcha A., Tatur A. Ecological role of the current and abandoned penguin rookeries in the land environment of the maritime Antarctic. Polish Polar Research. 1991; 12: 3–24.
  • Parent L.E., Khiari L. Parent L.E., Ilnicki P. Nitrogen and phosphorus balance indicators in organic soils. Organic soils and peat materials for sustainable agriculture. 2003; Boca Raton, FL: CRC Press. 105–136.
  • Reddy K.R., Wang Y., DeBusk W.F., Fisher M.M., Newman S. Forms of soil phosphorus in selected hydrologic units of the Florida Everglades. Soil Science Society of America Journal. 1998; 62: 1134–1147.
  • Richardson C.J., Marshall P.E. Processes controlling movement, storage, and export of phosphorus in a fen peatland. Ecological Monographs. 1986; 56: 279–302.
  • Robinson J.S., Johnston T.C., Reddy K.R. Combined chemical and 31P-NMR spectroscopic analysis of phosphorus in wetland organic soils. Soil Science. 1998; 163: 705–713.
  • Sapek A., Sapek B. 1997; Falenty, Poland: Institute for Land Reclamation and Grassland Farming. . Metody analizy chemicznej gleb organicznych. Materialy Instruktażowe 115. (Methods for chemical analysis of organic soils. Instructional Materials 115.).
  • Schlichting A., Leinweber P., Meissner R., Altermann M. Sequentially extracted phosphorus fractions in peat-derived soils. Journal of Plant Nutrition and Soil Science. 2002; 165: 290–298.
  • Smil V. Phosphorus in the environment: natural flows and human interferences. Annual Review Energy Environment. 2000; 25: 53–88.
  • Speir T.W., Cowling J.C. Orthogenetic soils of the Cape Bird Adelie penguin rookeries, Antarctica. Polar Biology. 1984; 2: 207–212.
  • Tatur A. Ornithogenic soils of the maritime Antarctic. Polish Polar Research. 1989; 10: 481–532.
  • Tatur A. Beyer L., Bölter M. Ornithogenic ecosystems in the maritime Antarctic—formation, development and disintegration. Geoecology of terrestrial Antarctic ice-free coastal landscapes, ecological studies 154. 2002; Berlin: Springer. 161–184.
  • Thomas G.W. Sparks D.L. Soil pH and Soil Acidity. Methods of soil analysis. Part 3. Chemical methods. SSSA Book Series No. 5. 1996; Madison: Soil Science Society of America, American Society of Agronomy. 869–918.
  • Uziak S. Polish pedological studies on Spitsbergen. A review. Geographia Polonica. 1992; 60: 67–78.
  • Wang G., Bao K., Yu X., Zhao H., Lin Q., Lu X. Forms and accumulation of soil P in a subalpine peatland of Mt. Changbai in northeast China. Catena. 2012; 92: 22–29.
  • Weintraub M.N. Bünemann E.K. Biological P cycling in Arctic and alpine soils. Phosphorus in action. Biological processes in soil phosphorus cycling. 2011; Berlin: Springer. 295–316.
  • Zelikson E.M. Neustadt M.I. Palinologičeskoe issledovanie golocenovogo torfjanika na Špicbergene. Palinologija golocena. (Holocene palynology. 1971; Moscow: Academy of Science of the SSSR. 199–212. (Palynological investigation of a Holocene peat deposit from Spitsbergen.).
  • Zagórski P. NW part of Wedel Jarlsberg Land (Spitsbergen, Svalbard, Norway), Orthophotomap, scale 1:25000. 2005; Lublin: Department of Geomorphology, Maria Curie-Skłodowska University/Tromsø: Norwegian Polar Institute.
  • Ziółek M. Phosphorus forms in organic soils with a varying degree of transformation (on the example of the Lublin Polesie region). Polish Journal of Soil Science. 2007; 40: 179–194.