Have a personal or library account? Click to login
Reconstruction of past anthropogenic impact intensity in Lake Engure using sedimentary record analysis Cover

References

  1. Alksnītis, R. (1995). Pārskats par ezeru sapropeļu atradņu meklēšanas darbiem Talsu, Tukuma, Kuldīgas, Saldus un Dobeles rajonos [Review of the efforts of searching sapropel deposits in the districts of Talsi, Tukums, Kuldīga, Saldus and Dobele]. Valsts Geologijas dienesta fonds, inv. nr. 11507.
  2. Anderson, N. J., Rippey, B., Gibson, C. E. (1993). A comparison of sedimentary and diatom-inferred phosphorus profiles: Implications for defining pre-disturbance nutrient conditions. Hydrobiologia, 253, 357-366.10.1007/BF00050761
  3. Anonīms (2012). Latvijas Dabas Fonds. EEDP dabas aizsardzības plāns http://www.ldf.lv/pub/?doc_id=28009
  4. Behre, K. E. (1981). The interpretation of anthropogenic Indicators in Pollen Diagrams. Pollen et Spores, 23(2), 255-245.
  5. Bengtsson, L., Enell, M. (1986). Chemical analysis. In: Handbook of Holocene Palaeoecology and Palaeohydrology (pp. 423-448). Berglund, B. E. (Ed.). John Wiley & Sons Ltd.
  6. Berglund, B. E., Ralska-Jasiewiczowa, M. (1986). Pollen analysis and pollen diagrams. In: Handbook of Holocene Palaeoecology and Palaeohydrology (pp. 455-484). Berglund, B. E. (Ed.). John Wiley & Sons Ltd.
  7. Brostrom, A. (2002). Estimating source area of pollen and pollen productivity in the cultural landscapes souther Sweden — developing a palynological tool for quantifying past plant cover. Doctoral Thesis, Lund University, Lund, pp. 6-23.
  8. Cohen, A. S. (2003). Paleolimnology: The History and Evolution of Lake Systems. Oxford University Press: New York, pp. 3-19.10.1093/oso/9780195133530.001.0001
  9. O'Connell, M. (1987). Early cereal-type pollen records from Connemara, Western Ireland and their possible significance. Pollen et Spores, 19, 207-224.
  10. Csuros, M., Csuros, C. (2002). Environmental Sampling and Analysis for Metals. Boca Raton: CRC Press.
  11. Davis, M. B. (1973). Redeposition of pollen grains in lake sediments. Limnol. Oceonogr., 18(1), 44-56.10.4319/lo.1973.18.1.0044
  12. Dean, W. E. Jr. (1974). Determination of carbonate and organic matter in calcareous sediments and sedimentary rocks by loss on ignition: Comparison with other methods. J. Sed. Petrol., 44, 242-248.
  13. Dearing, J. A., Jones, R. T., Shen, J., Yang, X., Boyle, F., Foster, C., Crook, S., Elvin, M. J. D. (2008). Using multiple archives to understand past and present climate-human-environment interactions: The lake Erhai catchment, Yunnan Province China. J. Paleolimnol., 40(1), 3-31.10.1007/s10933-007-9182-2
  14. Eberhards, G., Saltupe, B. (2000). Geological history, relief and deposits of the Lake Engures (Engure) area along the Baltic Sea. Proc. Latv. Acad. Sci., Section B., 54(5/6), 141-147.
  15. Heiri, O., Lotter, A. F., Lemcke, G. (2001). Loss on ignition as a method for estimating organic and carbonate content in sediments: Reproducibility and comparability of results. J. Paleolimnol., 25, 101-110.10.1023/A:1008119611481
  16. Jankovska, V., Komarek, J. (2000). Indicative value of Pediastrum and other Coccal green algae in palaeoecology. Folia Geobot, 35, 59-82.10.1007/BF02803087
  17. Juškevičs, V., Mūrnieks, A., Misāns, J. (1999). 42. lapa - Jūrmala. Latvijas geologiskā karte [Sheet 42 - Jūrmala. Geological Map of Latvia], Rīga: Valsts Geologijas dienests. 52 lpp.
  18. Lepane, V., Morriset, M., Viitak, A., Laane, M., Alliksar, T. (2010). Partitioning of metals between operational fractions in the sediment record from Lake Peipsi. Chem. Ecol., 26, 35-48.10.1080/02757540.2010.501031
  19. Marchetto, A., Musazzi, S. (2001). Comparison between sedimentary and living diatoms in Lago Maggiore (N. Italy): Implications of using transfer functions. J. Limnol., 60(1), 19-26.
  20. Moore, P. D., Webb, J. A. (1978). An Illustrated Guide to Pollen Analysis. London: Holdder and Stoughtom. 133 pp. (at pp. 16-17).
  21. Rasanen, J., Kentitamies, K., Sandman, O. (2007). Paleolimnological assessment of the impact of logging on small boreal lake. Limnologica, 37, 193-207.10.1016/j.limno.2006.12.003
  22. Raukas, A. (2000). Evolution of the Yoldia Sea in the eastern Baltic. Quatern. Internat., 27, 99-102.10.1016/1040-6182(94)00066-E
  23. Renberg, I., Bindler, R., Brannvall, M. L. (2001). Using the historical atmospheric lead-deposition record as a chronological marker in sediment deposits in Europe. Holocene, 11(5), 511-516.10.1191/095968301680223468
  24. Rumpe, L. (2003). Paleoenvironmental chages near Gipka and Lake Engure in the western coast of the Gulf of Riga during the Littorina Sea stage. In: Abstract volume (pp. 15-16). Stockholm: Department of Quaternary Geology and Physical Geography, Stockholm University.
  25. Saunders, K. M., Hodgson, D. A., Harrison, J., McMinn, A. (2008). Palaeoecological tools for improving the management of coastal ecosystems: A case study from Lake King (Gippland Lakes) Australia. J. Paleolimnol., 40(1), 33-47.10.1007/s10933-007-9132-z
  26. Schönhofer, F., Wallner, G. (2001). Very rapid determination of 226Ra, 228Ra and 210Pb by selective adsorption and liquid scintillation counting, Radioactiv. Radiochem., 12, 33-38.
  27. Transehe, N. (1937). Par Engures ezeru [On Lake Engure]. Daba un Zinātne, Nr. 2, 33-40.
  28. Vīksne, J. (1997). The Bird Lake Engure. Rīga: Jāņa sēta. 111pp.
  29. Waters, M. N., Piehler, M. F., Rodriguez, A. B., Smoak, J. M., Bianchi, T. S. (2009). Shallow lake trophic status linked to late Holocene climate and human impacts. J. Paleolimnol., 42, 58-62.10.1007/s10933-008-9247-x
  30. Гринберге Э.Ф. (1957). Позднеледниковая и послеледниковая история побережья Латвийской ССР [Late Ice-Age and Post-Ice-Age History of the coast of the Latvian SSR]. Рига, 121 с. (in Russian).
DOI: https://doi.org/10.2478/v10046-011-0030-4 | Journal eISSN: 2255-890X | Journal ISSN: 1407-009X
Language: English
Page range: 146 - 153
Published on: Jun 28, 2012
Published by: Latvian Academy of Sciences
In partnership with: Paradigm Publishing Services
Publication frequency: 6 issues per year

© 2012 Māris Kļaviņš, Agnese Pujāte, Ilga Kokorīte, Laimdota Kalniņa, Valērijs Rodinovs, Linda Ansone, Jonas Mažeika, Maruta Jankēvica, Egils Bogans, Anda Švāgere, published by Latvian Academy of Sciences
This work is licensed under the Creative Commons License.