Have a personal or library account? Click to login
Development of tools for ecological quality assessment in the Polish marine areas according to the Water Framework Directive. Part IV — preliminary assessment Cover

Development of tools for ecological quality assessment in the Polish marine areas according to the Water Framework Directive. Part IV — preliminary assessment

Open Access
|Jun 2012

References

  1. [1] Aigars, J., Müller-Karulis B., Martin G., Jermakovs V., 2008, Ecological quality boundary-setting procedures: the Gulf of Riga case study. Environmental Monitoring and Assessment, 138(1–3): 313–326 http://dx.doi.org/10.1007/s10661-007-9800-510.1007/s10661-007-9800-5
  2. [2] Andersen J.H., Axe Ph., Backer H., Carstensen J., Claussen U., Fleming-Lehtinen V., Järvinen M., Kaartokallio H., Knuutila S., Korpinen S., Kubiliute A., Laamanen M., Łysiak-Pastuszak E., Martin G., Murray C., Møhlenberg F., Nausch G., Norkko A., Villnäs A., 2010, Getting measure of eutrophication in the Baltic Sea: towards improved assessment principles and methods. Biogeochemistry, DOI 10.1007/s10533-010-9508-4: published online 21 July 2010 10.1007/s10533-010-9508-4
  3. [3] Anon., 2000, Directive 200/60/EC of the European Parliament and the Council Establishing a Framework for Community Action in the Field of Water Policy. Legislative Acts and other instruments, ENV221 CODEC 513, European Union
  4. [4] Blomqvist, M., Cederwall H., Leonardsson K., Rosenberg R., 2006, Bedömningsgrunder för kust och hav. Bentiska evertebrater 2006. Rapport till Naturvårdsverket, 2006-03-14: pp. 70 (in Swedish with English summary)
  5. [5] Błeńska M., Osowiecki A., Kraśniewski W., Piątkowska Z., Łysiak-Pastuszak E., 2010, Macrozoobenthos quality assessment in the Polish part of the southern Baltic Sea using biotic index ‘B’. ICES Annual Science Conference 2010, 20–24 September 2010, Nantes, France, Abstracts — Theme Session H, ICES CM 2010/H:34, http://www.ices.dk/iceswork/asc/2010/ThemeSessions
  6. [6] Borja A., Bricker S.B., Dauer D.M., Demetriades N.T., Ferreira J.G., Forbes A.T., Hutchings P., Xiaoping Jia, Kenchington R., Marques J.C., Changbo Zhu, 2009, Ecological integrity assessment, ecosystem-based approach, and integrative methodologies: Are these concepts equivalent? Correspondence Mar. Pollut. Bull., 58: 457–458 http://dx.doi.org/10.1016/j.marpolbul.2008.12.00310.1016/j.marpolbul.2008.12.003
  7. [7] Borja, A., Franco J., Pérez V., 2000, A marine biotic index to establish the ecological quality of soft-bottom benthos within European estuarine and coastal environments. Mar. Pollut. Bull., 12: 1100–1114 http://dx.doi.org/10.1016/S0025-326X(00)00061-810.1016/S0025-326X(00)00061-8
  8. [8] Borja A., Rodriguez J.G., 2010, Problems associated with the ‘one-out, all-out’ principle, when using multiple ecosystem components in assessing the ecological status of marine water. Editorial Mar. Pollut. Bull., DOI:10.1016/jmarpollutbul.2010.06.026.
  9. [9] Ciszewski P., Demel K., Ringer Z., Szatybełko M., 1962, Zasoby widlika w Zatoce Puckiej oszacowane metodą nurkowania) (Resources of Furcellaria fastigiata in the Puck Lagoon assessed by scuba diving method). Prace MIR, Nr 11/A, Gdynia: 9–36 (in Polish)
  10. [10] Cyberska B., Lauer Z., Trzosińska A. (Eds), 1987–1999,, Environmental conditions in the Polish zone of the southern Baltic Sea in 1986 (.....- 1998). IMGW — Materiały Oddziału Morskiego, Gdynia 1987–1999 (in Polish with Engl. summ.)
  11. [11] Devlin M., Best M., Coates D., Bresnan E., O’Boyle S., Park R., Silke J., Cusak C., Skeats J., 2007, Establishing boundary classes for the classification of UK marine waters using phytoplankton communities. Mar. Pollut. Bull., 55(1–6): 91–103 http://dx.doi.org/10.1016/j.marpolbul.2006.09.01810.1016/j.marpolbul.2006.09.01817064735
  12. [12] Eriksson B.K., 2002, Long-term changes in macroalgae vegetation on the Swedish coast. An evaluation of eutrophication effects with special emphasis on increased organic sedimentation. Acta Univ. Uppsalensis, Uppsala: pp. 34
  13. [13] Fletcher R.L., 1996, The occurrence of ‘green tides’ — a review. [in:] Marine benthic vegetation. Recent changes and effects of eutrophication, Eds Schramm W. and P.H. Nienhuis. Ecological Studies, 123, Springer-Verlag Berlin, 7–43 http://dx.doi.org/10.1007/978-3-642-61398-2_210.1007/978-3-642-61398-2_2
  14. [14] GIOŚ, 2009, Opracowanie metodyki badania i klasyfikacji elementów biologicznych w procedurze oceny stanu ekologicznego jednolitych części wód morskich wód przejściowych i przybrzeżnych wraz z udziałem w europejskim ćwiczeniu interkalibracyjnym (Developemnt of measurement and classification methods of biological quality elements used in the procedure of ecological status assessment of marine transitional and coastal water bodies including participation the European intercalibration exercise), NFOZ, IM and IMGW 2009, mimeogr., pp. 100 (in Polish)
  15. [15] Głowińska A., 1963, Phosphate in the southern Baltic Sea between 1947–1960. Prace MIR, T.12/A: 7–21 (in Polish)
  16. [16] HELCOM, 2006, Development of tools for assessment of eutrophication in the Baltic Sea. Balt. Sea Environ. Proc., No. 104: pp. 62
  17. [17] HELCOM, 2009, Eutrophication in the Baltic Sea — An integrated thematic assessment of the effects of nutrient enrichment and eutrophication in the Baltic Sea region. Balt. Sea Environ. Proc., No.115B: pp. 148
  18. [18] Henriksen P., 2009, Reference conditions for phytoplankton at Danish Water Framework Directive intercalibration sites. Hydrobiologia, 629: 255–262 http://dx.doi.org/10.1007/s10750-009-9767-z10.1007/s10750-009-9767-z
  19. [19] Jenks G.F., Caspall F.C., 1970, Error on choroplethic maps: definition, measurement, reduction. Annals of the Association of American Geographers 6(2): 217–244 10.1111/j.1467-8306.1971.tb00779.x
  20. [20] Kauppila P., 2007, Phytoplankton as an indicator of eutrophication in Finnish coastal waters. Applications within the water Framework Directive. Monograph of the Boreal Environment Research, 31: pp. 58
  21. [21] Kraśniewski W., Lewandowski Ł., Łysiak-Pastuszak E., 2009, Phytoplankton indicators in the Polish transitional and coastal waters. BSSC 2009 [Baltic Sea Science Congress] August 17–21, 2009, Tallin, Estonia, Abstract Book: 220
  22. [22] Kruk-Dowgiałło L., 1991, Long-term changes in the structure of underwater meadows of the Puck Lagoon. Acta Ichthyologica et Piscatoria, Vol.XXI (Supplement) Szczecin: 77–84 10.3750/AIP1991.21.S.09
  23. [23] Kruk-Dowgiałło L., 1996, The role of filamentous brown algae in the degradation of the underwater meadows, the Gulf of Gdańsk. Oceanolog. Stud., 25(2): 125–137
  24. [24] Kruk-Dowgiałło L., Szaniawska A., 2008, Gulf of Gdańsk and Puck Bay. Part. II.B Eastern Baltic Coast [in:] Ecology of Baltic Coastal Waters, Ed. U. Schewier. Ecological Studies 197, Springer-Verlag Berlin Heidelberg: 139–162 10.1007/978-3-540-73524-3_7
  25. [25] Kruk-Dowgiałło L., in preparation, Wieloletnie zmiany makrofitów Zatoki Gdańskiej elementem oceny jakości ekologicznej akwenu (Long-term alterations of macrophytes in the Gulf of Gdańsk — an element of ecological quality assessment) (in Polish)
  26. [26] Krzymiński W., Kruk-Dowgiałło L., Zawadzka-Kahlau E., Dubrawski R., Kamińska M., Łysiak-Pastuszak E., 2004, Typology of Polish marine waters. Coastline Reports: Baltic Sea Typology, 4: 39–48
  27. [27] Krzymiński W.,. Łysiak-Pastuszak E, Miętus M., (eds), 2000–2009, Environmental conditions in the Polish zone of the southern Baltic Sea in 1999 (.....2004). IMGW — Materiały Oddziału Morskiego, Gdynia 2000, 2001, 2009 (in Polish with Engl. summ.)
  28. [28] Łysiak-Pastuszak E., 2000, An assessment of nutrient conditions in the southern Baltic Sea between 1994–1998. Oceanologia, 42: 425–448
  29. [29] Łysiak-Pastuszak E., Krzymiński W., Lewandowski Ł., 2009a, Development of tools for ecological quality assessment in Polish marine areas according to the Water Framework Directive. Part I — Nutrients. Oceanol. Hydrobiol. St., 38(3): 87–99, DOI 10.2478/v10009-009-0037-1 http://dx.doi.org/10.2478/v10009-009-0037-110.2478/v10009-009-0037-1
  30. [30] Łysiak-Pastuszak E., Krzymiński W., Lewandowski Ł., 2009b, Development of tools for ecological quality assessment in Polish marine areas according to the Water Framework Directive. Part II — Chlorophyll-a. Oceanol. Hydrobiol. St., 38(3): 101–112, DOI 10.2478/v10009-009-0038-0 http://dx.doi.org/10.2478/v10009-009-0038-010.2478/v10009-009-0038-0
  31. [31] Łysiak-Pastuszak E., Krzymiński W., Lewandowski Ł., 2009c. Development of tools for ecological quality assessment in Polish marine areas according to the Water Framework Directive. Part III — Secchi depth. Oceanol. Hydrobiol. St., 38(3): 113–124, DOI 10.2478/v10009-009-0039-z http://dx.doi.org/10.2478/v10009-009-0039-z10.2478/v10009-009-0039-z
  32. [32] Osowiecki A., Kruk-Dowgiałło L., (Eds), 2006, Różnorodność biologiczna przybrzeżnego głazowiska Rowy przy Słowińskim Parku Narodowym (Biodiversity of the coastal refuge boulder area ROWY alongside the Słowiński National Park). Wyd. Nauk. IM w Gdańsku: pp. 127 (in Polish with English summary)
  33. [33] Osowiecki A., Łysiak-Pastuszak E., Piątkowska Z., 2008, Testing biotic indices for marine zoobenthos quality assessment in the Polish sector of the Baltic Sea. J. Mar. Sys., 74: S124–S132 http://dx.doi.org/10.1016/j.jmarsys.2008.03.02510.1016/j.jmarsys.2008.03.025
  34. [34] Pliński M., Florczyk L., 1990, Skład i rozmieszczenie fitobentosu w Zatoce Gdańskiej w latach 1984 i 1985 r. (Compositon and distribution of phytobenthos in the Gulf of Gdańsk in 1984 and 1985). Zesz. Nauk. Wydz. Biologii Geogr. i Oceanogr. UG, Oceanografia, 12: 59–75 (in Polish)
  35. [35] Revilla M., Franco J., Bald J., Borja Á., Laza A., Seoane S., Valencia V., 2009, Assessment of phytoplankton ecological status in the Basque coast (northern Spain) according to the European Water Framework Directive. J. of Sea Res., 61(1–2): 60–67 http://dx.doi.org/10.1016/j.seares.2008.05.00910.1016/j.seares.2008.05.009
  36. [36] Sagert S., Rieling T., Eggert A., Schubert H., 2008a, Development of a phytoplankton indicator system for the ecological assessment of brackish coastal waters (German Baltic Sea coast). Hydrobiologia, 611: 91–103 http://dx.doi.org/10.1007/s10750-008-9456-310.1007/s10750-008-9456-3
  37. [37] Sagert S., Selig U., Schubert H., 2008b, Phytoplankton Indikatoren zur ökologischen Klassifizierung der deutschen Küstengewässer der Ostsee (Phytoplankton indicators for ecological classification of coastal waters along the German Baltic coast). Rostocker Meeresbiologische Beiträge, 20:7–24 (in German)
  38. [38] Trzosińska A., 1978, Factors controlling the nutrient balance in the Baltic Sea. Productivity of the Baltic Sea, Polska Akademia Nauk — Komitet Badań Morza, Ossolineum: 25–51.
  39. [39] Vaiciute D., Olenina I., 2009, Chlorophyll-a versus phytoplankton biomass: do they show the same water quality? BSSC 2009, August 17–21, 2009, Tallinn, Estonia, Abstract Book, O139: 155
  40. [40] Valiela I., McClelland J., Hauxwell J., Beher P.J., Hersh D., Foreman K., 1997, Macroalgal blooms in shallow estuaries: Controls and ecophysiological and ecosystem consequences. Limnol. Oceanogr., 42: 1105–1118 http://dx.doi.org/10.4319/lo.1997.42.5_part_2.110510.4319/lo.1997.42.5_part_2.1105
DOI: https://doi.org/10.2478/s13545-012-0022-2 | Journal eISSN: 1897-3191 | Journal ISSN: 1730-413X
Language: English
Page range: 1 - 10
Published on: Jun 29, 2012
Published by: University of Gdańsk
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2012 Andrzej Osowiecki, Elżbieta Łysiak-Pastuszak, Lidia Kruk-Dowgiałło, Magdalena Błeńska, Paulina Brzeska, Wojciech Kraśniewski, Łukasz Lewandowski, Włodzimierz Krzymiński, published by University of Gdańsk
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.