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The Puck Bay as an example of deep dredging unfavorably affecting the aquatic environment

   | 26 juin 2009
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Andrulewicz E., 1993, Obserwacje i badania podwodne, [in:] Zatoka Pucka, Korzeniewski K. (ed.), Fundacja Rozwoju Uniwersytetu Gdańskiego, Gdańsk, 8-13 Search in Google Scholar

Black K.P., Parry G.D., 1994, Sediment transport rates and sediment disturbance due to scallop dredging in Port Phillip Bay, Memoris-Queensland Museum, 36(2), 327-341 Search in Google Scholar

Bolalek J., 1992, Ionic macrocomponents of the interstitial waters of Puck Bay, Oceanologia, 33, 133-158 Search in Google Scholar

Bolałek J., 1993, Krążenie materii między wodą naddenną a osadem na przykładzie Zatoki Puckiej, Rozprawy i monografie UG nr 186. 144 p. Search in Google Scholar

Bolałek J., Falkowska L., Korzeniewski K., 1993, Hydrochemia Zatoki, [in:] Zatoka Pucka, K. Korzeniewski (ed.), Fundacja Rozwoju Uniwersytetu Gdańskiego, Gdańsk, 222-281 Search in Google Scholar

Bolałek J., Graca B., 1996, Ammonia nitrogen at the water-sediment interface in the Puck Bay (Baltic Sea), Estuarine, Coastal and Shelf Science, 43, 776-77910.1006/ecss.1996.0102 Search in Google Scholar

Bolałek J., Jankowska H., Łęczyński L., Frankowski L., Podgórska B., 1996, Geological, geochemical and bacteriological conditions in the postdredging pit in Puck Bay. (Southern Baltic, Poland), Oceanological Studies, 3, Vol XXV, 111-122 Search in Google Scholar

Boyd S.E., Limpenny D.S., Rees H.L., Cooper K.M., 2005, The effects of marine sand and gravel extraction on the macrobenthos at a commercial dredgingsite (results 6 years dredge), Journal of Marine Science, 62: 145-16210.1016/j.icesjms.2004.11.014 Search in Google Scholar

Christensen P.B., Nielsen L.P., Reusbech N.P., Sørensen J., 1989, Microzonation of denitrification activity in stream sediments with a combined oxygen and nitrous oxide microsensor, Applied and Environmental Microbiology, 55, 1234-124110.1128/aem.55.5.1234-1241.1989 Search in Google Scholar

Cieślak A., 1990, 1991, 1992, Kompleksowa ochrona Półwyspu Helskiego (Comprehensive protection of Hel Penisula), Mimeo, Instytut Morski, Gdańsk Search in Google Scholar

Dettmann E.H., 2001, Effect of water residence time on annual export and denitrification of nitrogen in estuaries: A model analysis, Estuaries, 24(4), 481-49010.2307/1353250 Search in Google Scholar

Edenborn H., M., Silverberg N., Mucci A., Sundby B., 1987, Sulfate reduction in deep coastal marine sediments, Mar. Chem., 11, 329-34510.1016/0304-4203(87)90055-7 Search in Google Scholar

Edler I., 1979, Recommendation on a method of marine biological studies in the Baltic Sea. Phytoplankton and chlorophyll, Balt. Mar. Biol. Publ., No 5 (Univ.Lund) Search in Google Scholar

Falcão M., Gaspar M.B., Caetano M., Santos M.N., Vale C., 2003, Short-term environmental impact of calm dredging in coastal waters (south Portugal): chemical disturbance and subsequent recovery of seabed, Marine Environmental Research 56, 649-66410.1016/S0141-1136(03)00069-2 Search in Google Scholar

Flocks, Franze, 2002, Environmental Issues-Dredge Pit Characterization, Environmental Atlas of the Lake Pontchartrain Basin http://pubs.usgs.gov/of/2002/of02-206/env-issues/pitcharacterization.html Search in Google Scholar

Gajewski L., 1993, Falowanie wewnętrzne, [in:] Zatoka Pucka, K. Korzeniewski (ed.), Fundacja Rozwoju Uniwersytetu Gdańskiego, Gdańsk, 160-180 Search in Google Scholar

Gächter R., Müller B., 2003, Why the phosphorus retention of lakes does not necessarily depend on the oxygen supply to their sediment surface, Limnology and Oceanography, 48(2), 929-93310.4319/lo.2003.48.2.0929 Search in Google Scholar

Gilkinson K.D., Fader G.B.J, Gordon D.C. Jr., Charron R., McKeown D. et al., 2003, Immediate and longer-term impacts of hydraulic clam dredging on an offshore sandy seabed: effects on physical habitat and processes of recovery, Continental Shelf Research, 23, 1315-133610.1016/S0278-4343(03)00123-7 Search in Google Scholar

Graca B., 2004, Denitrification in the sediments of the Inner Puck Bay —Preliminary results, Oceanological and Hydrobiological Studies, 33(4), 73-91 Search in Google Scholar

Graca B., Dudkowiak M., 2007, Microbiological changes in environment caused by deep dredging. A case study: dredge pit Kuźnica II, Oceanological and Hydrobioogical Studies, XXXVI, No. 1, 17-2710.2478/v10009-007-0005-6 Search in Google Scholar

Graca B., Burska D., Matuszewska K., 2004, The impact of dredging deep pits on organic matter degradation in sediments, Water Air and soil Polution, 158, 237-25910.1023/B:WATE.0000044853.63461.53 Search in Google Scholar

Graca B., Witek Z., Burska D., Białkowska I., Pawelec A., Bolałek J., 2006, Porewater's nutrients (phosphate, ammonia and silicate) in southern Baltic Sea, Oceanological and Hydrobiological Studies, 3, XXXV, 237-256 Search in Google Scholar

Graca B., Witek Z., Burska D., Białkowska I., Łukawska Matuszewska K., Bolałek J., 2006, Pore water phosphate and ammonia below the permanent halocline in the south-eastern Baltic Sea and their benthic fluxes under anoxic conditions, Journal of Marine System, 63, 141-15410.1016/j.jmarsys.2006.06.003 Search in Google Scholar

Grasshoff K., Ehrhardt M., Kremling K., 1983, Methods of sea water analysis, Verlag Chem., Weinheim, 419 pp. Search in Google Scholar

Gunnars A. Blomqvist S., Johansson P., Andersson C., 2002, Formation of Fe(III) oxyhydroxide colloides in freshwater and brackish seawater, with incorporation of phosphate and calcium, Geochimica et Cosmochimica Acta, 66, 745-75810.1016/S0016-7037(01)00818-3 Search in Google Scholar

Hansen Ch., Zabel M., 2000, Early diagenesis at the benthic boundary layer: oxygen and, nitrate in marine sediments, [in:] D.S. Schulz M. Zabel (eds.), Marine geochemistry, Springer-Verlag Berlin, 442 pp.10.1007/978-3-662-04242-7_6 Search in Google Scholar

Hermanowicz W., Dojlido D., Zerbe J., Dożańska W., Koziorowski B., 1999, Fizyczno-chemiczne badanie wody i ścieków, Arkady, 555 pp. Search in Google Scholar

Jankowska H., 1993, The bottom deposits of Puck Bay, Stud. i Mat. Oceanol., 64, 163-171 Search in Google Scholar

Johnnston S.A. Jr, 1981, Estuarine dredge and fill activities: A review of impacts, Environmental Management, 5(5), 427-44010.1007/BF01866820 Search in Google Scholar

Jorgensen B.B., 1978, A comparsion of methods for the quantification of bacterial sulfate reduction in coastal marine sediments. III. Estimation from chemical and bacteriological field data, Geomicrobial. J., 1, 49-6410.1080/01490457809377723 Search in Google Scholar

Jutte P.C., Van Dolah R.F., Gayes P.T., 2002, Recovery of benthic communities following offshore dredging, Myrtle Beach, South Carolina, Shore & Beach, 70(3), 25-30 Search in Google Scholar

Karlson K., Hulth S., Ringdahl K., Rosenberg R. 2005, Experimental recolonisation of Baltic Sea reduced sediments: survival of benthic macrofauna and effects on N and P biogeochemistry, Marine Ecology Progress Series, 294, 35-4910.3354/meps294035 Search in Google Scholar

Karlson K., Bonsdorff E., Rosenberg R., 2007, The impact of benthic macrofauna for nutrient fluxes from Baltic Sea sediments, Ambio, Vol. 36, No. 2/3, 1-710.1579/0044-7447(2007)36[161:TIOBMF]2.0.CO;2 Search in Google Scholar

Kelly J.R., Berounsky V.M., Nixon S.W., Oviatt C.A., 1985, Benthic-pelagic coupling and nutrient cycling across an experimental eutrophication gradient, Marine Ecology Progress Series, 26, 207-21910.3354/meps026207 Search in Google Scholar

Latała A., 1993, Chlorophyll a, [in:] Zatoka Pucka, K. Korzeniewski (ed.), Fundacja Rozwoju Uniwersytetu Gdańskiego, Gdańsk, 366-377 Search in Google Scholar

Mayer L., Schick D.F., Findlay R.H., Rice D.L., 1991, Effects of commercial dragging on sedimentary organic, Marine Environmental Research 31, 249-26110.1016/0141-1136(91)90015-Z Search in Google Scholar

Mikulski J.S., 1974, Biologia wód śródlądowych, PWN, Warszawa, 434 pp. Search in Google Scholar

Nairn R., Johnson J.A., Hardin D., Michel J., 2004, A biological and physical monitoring program to evaluate long-term impacts from sand dredging operations in the United States outer continental shelf, Journal of Coastal Research, 20(1), 126-13710.2112/1551-5036(2004)20[126:ABAPMP]2.0.CO;2 Search in Google Scholar

Nedwell D.B., Jickells T.D., Trimmer M., Sanders R., 1999, Nutrient in estuaries, Advances in Ecological Research, 29, 43-9210.1016/S0065-2504(08)60191-9 Search in Google Scholar

Nicholas M.M., Diaz R.J., Schaffner L.C., 1990, Effects of hopper dreadging and sediment deposition, Chesapeake Bay, Environ. Geol. Water Sci., vol. 15, no 1., 31-4310.1007/BF01704879 Search in Google Scholar

Nowacki J., 1993, Cyrkulacja i wymiana wód, [in:] Zatoka Pucka, K. Korzeniewski (ed.), Fundacja Rozwoju Uniwersytetu Gdańskiego, Gdańsk, 181-206 Search in Google Scholar

Palmer T.A., Paul A. Montagna P:A., Nairn R.B., 2008, The effects of a dredge excavation pit on benthic macrofauna in offshore Louisiana, Environmental Management, 41, 573-58310.1007/s00267-007-9063-5 Search in Google Scholar

Parsons T.R., Maita Y., Lalli C.M., 1984, A manual of chemical and biological methods for seawater analysis, Pergamon Press, New York, 173 pp. Search in Google Scholar

Pempkowiak J., 1994, Przyczyny katastrofy ekologicznej w rejonie Zatoki Puckiej, Zanieczyszczenie i odnowa Zatoki Gdańskiej, Gdynia, Polska, 67-73 Search in Google Scholar

Pinckney J.L., Perl H.W., Tester P., Richardson T.L., 2001, The role of nutrient loading and eutrophication in estuarine ecology, Environmental Health Perspectives, 109 (suppl. 5). 699-70610.1289/ehp.01109s5699 Search in Google Scholar

Riemann B., Hoffmann E., 1991, Ecological consequences of dredging and bottom trawling in the Limford, Denmark, Marine Ecology Progress Series 69, 171-17810.3354/meps069171 Search in Google Scholar

Robinson J.E., Newell R.C., Seiderer L.J., Simpson N.M., 2005, Impacts of aggregate dredging on sediment composition and associated benthic fauna at an offshore dredge site in the southern North Sea, Marine Environmental Research, 60, 51-6810.1016/j.marenvres.2004.09.001 Search in Google Scholar

Samuelsson M, 1987, Dissimilatory nitrate reduction in the marine environment, Ph.D. Thesis, Department of marine Microbiology, University of Goteborg, Sweden, 41 Search in Google Scholar

Savchuk O., Wulff F., 2007. Modeling the Baltic Sea eutrophication in a decision support system, Ambio, 36 (2), 141-14810.1579/0044-7447(2007)36[141:MTBSEI]2.0.CO;2 Search in Google Scholar

Seiderer L.J., Newell R.C., 1999, Analysis of the relationship between sediment composition and benthic community structure in coastal deposits: Implications for marine aggregate dredging, Journal of Marine Science, 56, 757-76510.1006/jmsc.1999.0495 Search in Google Scholar

Sørensen J., Tiedje J.M., Fiestone R.B., 1980, Inhibition by sulfide of nitric and nitrous oxide reduction by denitrifying Pseudomonas fluorescens, Applied and Environmental Microbiology, 39, 105-10810.1128/aem.39.1.105-108.1980 Search in Google Scholar

Strickland J.D.H., Parsons T.R., 1972, A practical handbook of seawater analysis, Bulletin Fisheries Research Board Canada, 167 pp. Search in Google Scholar

Su S.H., Pearlman N.L.C., Rothrock J.A., Iannuzzi T.J., Finley B.L., 2002, Potential long-term ecological impacts caused by disturbance of contaminated sediments: A case study, Environmental Management, 29(2), 234-24910.1007/s00267-001-0005-3 Search in Google Scholar

Szymelfenig M., Kotwicki L., Graca B., 2006, Benthic re-colonization in dredge pits in the Puck Bay (the southern Baltic Sea), Estuarine and Coastal Shellf Science, 68, 489-49810.1016/j.ecss.2006.02.018 Search in Google Scholar

Takii S., Fukui M., 1999, Relative importance of methanogenesis, sulfate reduction and denitrification in sediment of the lower Tama river, Bull. Jap. Soc. Microbiol. Ecol., 6, 9-1710.1264/microbes1986.6.9 Search in Google Scholar

Vale C., Ferreira A.M., Micaelo C., Caetano M., Pereira E. et al. 1998, Mobility of contaminants in relation to dredging operations in a mesotidal estuary (Tagus estuary, Portugal), Water Science and Technology, 37(6-7), 25-3110.2166/wst.1998.0731 Search in Google Scholar

Wajda W., Witkowski A., 1985, Charakterystyka warunków sedymentacji osadów Zalewu Puckiego na podstawie analizy minerałów ciężkich, Przegl. Geol., 4, 231-235 Search in Google Scholar

Warnken K.W., Gill G.A., Dellapenna T.M., Lehman R.D., Harper D.E., Mead A.A., 2003, The effects of shrimp trawling on sediment oxygen consumption and the flux of trace metals and nutrients from estuarine sediments, Estuarine, Coastal and Shelf Science 57, 25-4210.1016/S0272-7714(02)00316-5 Search in Google Scholar

Wolanski E., Gibbs R., Ridd P., Mehta A., 1992, Settling of ocean-dumped dreadged material, Townsville, Australia, Estuarine, Coastal and Shelf Science, 35, 473-48910.1016/S0272-7714(05)80026-5 Search in Google Scholar

Work P.A., Fehrenbacher F., Voulgaris G., 2004, Nearshore impacts of dredging for beach nourishment, J. Wtrwy., Port, Coast., and Oc. Engrg., 130 (6), 303-31110.1061/(ASCE)0733-950X(2004)130:6(303) Search in Google Scholar

Wu G., Leeuw J., Skidmore A.K., Prins H.H.T., Liu Y., 2007, Concurrent monitoring of vessels and water turbidity enhances the strength of evidence in remotely sensed dredging impact assessment, Water Research, 41, 3271-328010.1016/j.watres.2007.05.01817583768 Search in Google Scholar

Wulff F., Stigebrandt A., 1989, A time-dependent budget model for nutrients in the Baltic Sea, Global Biogeochemical Cycle, 3, 63-7810.1029/GB003i001p00063 Search in Google Scholar

Zhabina N.N., 1985, The new methods of sulfur determination in marinesediments, Academy of Science of USSR, Institute of Oceanology, Moscow, 57 pp. Search in Google Scholar

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