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2013 | 17 |

Tytuł artykułu

The biochemical composition of sedimentary organic matter in sandy beaches of various anthropopressure

Treść / Zawartość

Warianty tytułu

PL
Ocena stopnia infiltracji materii organicznej w osadach plaż o różnej antropopresji

Języki publikacji

EN

Abstrakty

EN
Beach sediments from two beaches at the Polish coast of the Baltic Sea were collected and analyzed. The sediments were collected in two seasons – winter and summer – at two stations, depending on the influence of the sea water on the examined sediments. At each station, surface sediments (0-5 cm) were collected as well as sediments at the depth of 10-15 cm. The results of the conducted tests reveal, that anthropopressure, the depth where the collected sediments were taken and the direct influence of the sea water on the sediments have impact on the chemical composition of beach sediments and their food quality for the inhabiting psammon. The conducted tests disclose that there is more organic matter and its labile forms in the sediments originating from Ustka. Strong anthropogenic pressure found at the beach in Ustka also contributes to higher concentration of uncharacterized fraction of organic carbon in the area. Analyzing alimentary usefulness of the organic matter there, it seems to be higher at the beach in Czołpino.
PL
Pobrano i zanalizowano osady plażowe pochodzące z dwóch plaż polskiego wybrzeża Morza Bałtyckiego. Osady pobierano w dwóch porach roku – zimą i latem – na dwóch stanowiskach w zależności od wpływu wody morskiej na badane osady. Na każdym stanowisk pobierano osady powierzchniowe (0–5 cm) oraz osady z głębokości 10–15 cm. Z przeprowadzonych badań wynika, że skład chemiczny osadów plażowych, a także ich jakość jako pokarmu dla bytującego tam psammonu ma związek z antropopresją, głębokością, z jakiej pobierano osady oraz bezpośrednim wpływem wody morskiej na te osady. Wykonane analizy pokazują, że w osadach pochodzących z Ustki występuje znacznie więcej materii organicznej oraz jej labilnych form. Silna presja antropogeniczna występująca na plaży w Ustce jest również przyczyną znacznie większego stężenia niescharakteryzowanej frakcji węgla organicz nego na tym terenie. Analizując przydatność pokarmową znajdującej się na obu plażach materii, można zauważyć, że jest ona znacznie większa w Czołpinie.

Wydawca

-

Rocznik

Tom

17

Opis fizyczny

p.5-20,fig.,ref.

Twórcy

  • Department of Environmental Chemistry, Institute of Biology and Environmental Protection, Pomeranian University in Slupsk, Arciszewskiego 22, 76-200 Slupsk, Poland
autor
  • Department of Environmental Chemistry, Institute of Biology and Environmental Protection, Pomeranian University in Slupsk, Arciszewskiego 22, 76-200 Slupsk, Poland

Bibliografia

  • Andrulewicz E., 1994. Morze Bałtyckie: jego zagrożenia i ochrona. (The Baltic Sea: its threats and protection). OIKOS, Warszawa, (in Polish).
  • Anschutz P., Smith T., Mouret A., Deborde J., Bujan S., Poirier D., Lecroart P., 2009. Tidal sands as biogeochemical reactors. Estu., Coas. Shelf Sci., 84, 84-90.
  • Ariza E., Ballester R., Rigall Torrent R., Salo Mayolas A., Roca E., Villares M., Jiménez J.A., Sardá R., 2012. On the relationship between quality, users’ perception and economic valuation in NW Mediterranean beaches. Ocean Coast. Manag., 63, 55-66.
  • Bergamino L., Lercari D., Defeo O., 2011. Food web structure of sandy beaches: Temporal and spatial variation using stable isotope analysis. Estu., Coast. Shelf Sci., 91, 536-543.
  • Bianchi A.J.M., Levinton J.S., 1984. The importance of microalgae bacteria and particulate organic matter in the the somatic growth of Hydrobia totteni. J. Mar. Res., 42, 431-443.
  • Buchanan J.B., Longbottom M.R., 1970. The determination of organic matter in marine muds: the effect of the presence of coal and the routine determination of proteins. J. Exper. Mar. Biol. and Ecol., 5, 158-169.
  • Cividanes S., Incera M., López J., 2002. Temporal variability in the biochemical composition of sedimentary organic matter in an intertidal flat of the Galician coast (NW Spain). Oceanologica Acta, 25, 1-12.
  • Danovaro R., 1996. Detritus-bacteria-meiofauna interactions in a seagrass bed (Posidonia oceanica) of the NW Mediterranea. Mar. Biol., 127, 1-13.
  • Danovaro R., Fabiano M., 1997. Seasonal changes in quality and quantity of food available to benthic suspension feeders in the Golfo Marconi (North-Western Mediterranean), Estuar. Coast. Shelf Sci., 44, 723-736.
  • Danovaro R., Fabiano M., Boyer M., 1994. Seasonal changes of benthic bacteria in a seagrass (Posidonia oceanica) bed in relation to the origin composition and fate of the sediment organic matter. Mar. Biol., 119, 489-500.
  • Danovaro R., Fabiano M., Albertelli G., Croce N.D., 1995. Vertical distribution of meiobenthos in bathyal sediments of the eastern Mediterranean Sea: relationship with labile organic matter and bacterial biomasses. P.S.Z.N.I. Mar. Ecol., 2, 103-116.
  • Defeo O., McLachlan A., 2005. Patterns, processes and regulatory mechanisms in sandy beach macrofauna: a multi-scale analysis. Mar. Ecol. Prog. Ser., 295, 1-20.
  • Defeo O., McLachlan A., Schoeman D.S., Schlacher T.A., Dugan J., Jones A., Lastra M., Scapini F., 2009. Threats to sandy beach ecosystems: A review. Estuar., Coast. Shelf Sci., 81, 1-12.
  • Deming J.W., Yager P.L., 1992. Natural bacterial assemblages in deep-sea sediments: toward a global view. In: Deep-Sea Food Chains and the Global Carbon Cycle. (Ed.) G.T. Rowe, V. Pariente, Kluwer, Dordrecht, 11-28.
  • Dubois M., Gilles K.A., Hamilton J.K., Rebers P.A., Smith F., 1956. Colorimetric method for determination of sugars and related substances. Analyt. Chem., 28, 350-356.
  • Duineveld G.C.A., Lavaleye M.S.S., Berghuis E.M., Wilde P.A.W.J., Weele J., Kok A., Bat-ten S.D., Leeuw J.W., 1997. Patterns of benthic fauna and benthic respiration on the Celtic continental margin in relation to the distribution of phytodetritus. Inter. Rev. Gesamt.Hydrobiol., 83, 395-424.
  • Fabiano M., Danovaro R., 1994. Composition of organic matter in sediments facing a river estuary (Tyrrhenian Sea): relationships with bacteria and microphytobenthic biomass. Hydrobiol., 277, 71-84.
  • Fabiano M., Danovaro R., Fraschetti S., 1995. A three-year time series of elemental and biochemical composition of organic matter in subtidal sandy sediments of the Ligurian Sea (northwestern Mediterranean). Cont. Shelf Res., 15(11/12), 1453-1469.
  • Fabiano M., Marin V., Misic C., Moreno M.P., Salvo V.S., Vezzulli L., 2004. Sedimentary organic matter and bacterial community in microtidal mixed beaches of the Ligurian Sea (NW Mediterranean). Chem. Ecol., 20, 6, 428-435.
  • Fichez R., 1991. Composition and fate of organic matter in submarine cave sediments; implications for the biogeochemical cycle of organic carbon. Oceano. Acta, 14, 4, 369-377.
  • Gheskiere T., Vincx M., Weslawski J.M., Scapini F., Degraer S., 2005. Meiofauna as descriptor of tourism-induced changes at sandy beaches. Mar. Environ. Res., 60, 245-265.
  • Graf T., Schulz R., Peinert R., Meyer-Reil L.A., 1983. Benthic response to sedimentation events during autumn to spring at a shallow water station in the Western Kiel Bight. I. Analysis of processes on a community level. Mar. Biol., 77, 235-246.
  • Grant J., Hargrave B.T., 1987. Benthic metabolism and the quality of sediment organic carbon. Biol. Oceanogr., 4, 243-264.
  • Incera M., Cividanes M., Lastra M., López J., 2003. Temporal and spatial variability of sedimentary organic matter in sandy beaches on the northwest coast of the Iberian Peninsula. Estuar., Coast. Shelf Sci., 58S, 55-61.
  • Koop K., Griffiths C.L., 1982. The relative significance of bacteria, meio- and macrofauna on an exposed sandy beaches. Mar. Biol., 66, 295-300.
  • Markwell M.A.K., Hass S.M., Bieber L.L., Tolbert M.E., 1978. A modification of the Lowry procedure to simplify protein determination in membrane and lipoprotein samples. Annals Biochem., 87, 206-210.
  • McLachlan A., Brown A., 2006. The ecology of sandy shores. Elsevier, Amsterdam. McLachlan A., De Ruyck A., Hacking N., 1996. Community structure on sandy beaches: Patterns of richness and zonation in relation to tide range and latitude. Rev. Chil. Hist. Nat., 69, 451-467.
  • Meziane T., Bodineau L., Retiere C., Thoumelin G., 1997. The use of lipid markers to define sources of organic matter in sediment and food web of the intertidal salt-marsh-flat ecosystem of Mont-Saint-Michel Bay, France. J. Sea Res., 38, 47-58.
  • Myślińska E., 2001. Laboratoryjne badania gruntów. (Laboratoria methods of grounds investigation). PWN, Warszawa, (in Polish).
  • Nair S., Bharathi L., 1980. Heterotrophic bacterial population in tropical sandy beaches.
  • Mahasagar Bull. Nat. Inst. Oceanogr., 13, 261-267.
  • Newell R.C., Field J.G., 1983. The contribution of bacteria and detritus to carbon and nitrogen flow in a benthic community. Mar. Biopl. Letters, 4, 23-36.
  • Phillips M.C., Solo-Gabriele H.M., Reniers A.J.H.M., Wang J.D., Kiger R.T., AbdelMottaleb N., 2011. Pore water transport of enterocci out of beach sediments. Mar. Poll. Bull., 62, 2293-2298.
  • Podgórska B., Mudryk Z., 2007. Physiological properties of bacteria inhabiting polluted and unpolluted marine sandy beaches (Southern Baltic Sea). Pol. J. of Ecol., 55, 15-26.
  • Rosenberg R., 1995. Benthic marine fauna structured by hydrodynamic processes and food availability. Neth. J. Sea Res., 34, 303-317.
  • Santhiya G., Lakshumanan C., Janathan M.P., Roy P.D., Navarrete-Lopez M., Srinvasalu S., Uma-Maheswari B., Krishnakumar P., 2011. Metal enrichment in beach sediments from Chennai Metropolis, SE coast of India. Mar. Poll. Bull., 62, 2537-2542.
  • Trojanowski J., Trojanowska Cz., Moczulska A., 2001. Water quality status of the Baltic coastal zone. Balt. Coast. Zone, 5, 5-16.
  • Trojanowski J., Mudryk Z., Trojanowska C., Młynarkiewicz E., 2007. Zróżnicowanie parametrów chemicznych w plażach o odmiennej antropopresji. (The diversification of chemical parameters in beaches with different anthropopressure). Geologia i geomorfologia, 7, 211-228, (in Polish).
  • Zöllner K., Kirsch A., 1962. Über die Quantitative Bestimmung von Lipoiden (Mikromethode) Mittels der Vielen Natürlichen Lipoiden (Allen Bekannten Plasmalipoiden) Gemeinsamen Sulfophosphovanillin-Reaktion. (On the quantitative determination of lipids (micromethod) by means of many natural lichen lipids (Allen acquaintances Plasmalipoiden) Common Sulfophosphovanillin reaction). Zeitschrift für die gesamte experimentelle Medizin, 135, 545-561, (in German).
  • Żmudziński L., 1990. Świat zwierzęcy Bałtyku. (The world of animal Baltic). WSiP, Warszawa, (in Polish).

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

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