A RetroSearch Logo

Home - News ( United States | United Kingdom | Italy | Germany ) - Football scores

Search Query:

Showing content from https://link.springer.com/doi/10.1007/s11273-005-4752-4 below:

Ecohydrology as a new tool for sustainable management of estuaries and coastal waters

  • Ackroyd D.R., Bale A.J., Howland R.J.M., Knox S., Millward G.E. and Morris A.W. 1986. Distributions and behaviour of dissolved Cu, Zn and Mn in the Tamar Estuary. Estuarine, Coastal and Shelf Science 23: 621–624.

    Google Scholar 

  • Adam P. 1990. Saltmarsh Ecology. Cambridge University Press, Cambridge.

    Google Scholar 

  • Al-Mohanna S.Y. and Meakins R. 2003. Endemic macrofauna of the Sulaibikhat Bay salt marsh and mudflat habitats, Kuwait: status and need for conservation. Journal of Arid Environments 54: 115–124.

    Google Scholar 

  • Allen J.R.L. 1990a. Salt-marsh growth and stratification: a numerical model with special reference to the Severn estuary, southwest Britain. Marine Geology 95: 77–96.

    Google Scholar 

  • Allen J.R.L. 1990b. Constraints on measurement of sea-level movements from salt-marsh accretion rates. Journal of the Geological Society 147: 5–7.

    Google Scholar 

  • Alongi D.M. 1987. The influence of mangrove derived tannins on intertidal meiobenthos in tropical estuaries. Oecologia 71: 537–540.

    Google Scholar 

  • Alongi D.M. 1998. Coastal Ecosystem Processes. CRC Press, Boca Raton, 419 pp.

    Google Scholar 

  • Alongi D.M. and Sasekumar A. 1992. Benthic communities. In: Robertson A.I. and Alongi D.M. (eds), Tropical Mangrove Ecosystems, American Geophysical Union, Washington, DC, pp. 137–171.

    Google Scholar 

  • Alongi D.M., Boto K.G. and Robertson A.I. 1992. Nitrogen and Phosphorus Cycles. In: Robertson A.I. and Alongi D.M. (eds), Tropical Mangrove Ecosystems, American Geophysical Union, Washington, DC, pp. 251–292.

    Google Scholar 

  • Alongi D.M., Christoffersen P. and Tirendi F. 1993. The influence of forest type on microbial-nutrient relationships in tropical mangrove sediments. Journal of Experimental Marine Biology and Ecology 171: 201–223.

    Google Scholar 

  • Anderson T.J. 2001. Seasonal variation in erodibility of two temperate, microtidal mudflats. Estuarine, Coastal and Shelf Science 53: 1–12.

    Google Scholar 

  • Anderson I.C., Canuel E.A. and Macko S.A. 2001. Nitrogen cycling through a fringing marsh-aquifer ecotones. Marine Ecology Progress Series 210: 25–39.

    Google Scholar 

  • Andresen H., Bakker J., Brongers M., Heydemann B. and Irmler U. 1990. Long term changes of salt marsh communities by cattle grazing. Vegetatio 89: 137–148.

    Google Scholar 

  • Ayukai T. and Wolanski E. 1997. Importance of biologically mediated removal of fine sediments from the Fly River plume, Papua New Guinea. Estuarine, Coastal and Shelf Science 44: 629–639.

    Google Scholar 

  • Bale A.J., Morris A.W. and Howland R.J.M. 1985. Seasonal sediment movement in the Tamar estuary. Oceanologica Acta 8: 1–6.

    Google Scholar 

  • Balls P.W. 1994. Nutrient inputs to estuaries from nine Scottish East Coast rivers: influence of estuarine processes on inputs to the North Sea. Estuarine, Coastal and Shelf Science 39: 329–352.

    Google Scholar 

  • Biggs R.B., Sharp J.H., Church T.M. and Tramontano J.M. 1983. Optical properties, suspended sediments, and chemistry associated with the turbidity maximum of the Delaware Estuary. Canadian Journal of Fisheries and Aquatic Science 40(Suppl. 1): 172–179.

    Google Scholar 

  • Boorman L.A. 1996. Effects of environmental change on European salt marshes. In: Lefeuvre J.C. (ed.), Structure, Functioning and Exchange Potentialities with Marine Coastal Waters, vol. 5, University of Rennes, France, 50 pp.

    Google Scholar 

  • Boorman L.A. 2000. The functional role of salt marshes in linking land and sea. In: Sherwood B.R., Gardiner B.G. and Harris T. (eds), British Saltmarshes, Forrest Text for the Linnean Society, pp. 1–24.

  • Boorman L.A., Hazelden J.H., Loveland P.J. and Wells J.G. 1994a. Comparative relationships between primary productivity and organic and nutrient fluxes in four salt marshes. In: Mitsch W.J. (ed.), Global Wetlands, Old World and New, Elsevier, Amsterdam, pp. 181–189.

    Google Scholar 

  • Boorman L.A., Hazelden J., Andrews R. and Wells J.G. 1994b. Organic and nutrient fluxes in four north-west European salt marshes. In: Dyer K.R. and Orth R.J. (eds), Changes in Fluxes in Estuaries: Implications from Science to Management, Olsen and Olsen, Fredensborg, pp. 243–248.

    Google Scholar 

  • Boorman L.A., Garbutt A. and Barrat D. 1998. The role of vegetation in determining patterns of the accretion in salt marsh sediment. In: Sedimentary Processes in the Intertidal Zone, Geological Society, Special Publication No. 139, pp. 389–399.

  • Boto K.G. and Wellington J.T. 1983. Phosphorus and nitrogen nutritional status of a northern Australian mangrove forest. Marine Ecology Progress Series 11: 63–69.

    Google Scholar 

  • Boto K.G. and Wellington J.T. 1984. Soil characteristics and nutrient status in a northern Australian mangrove forest. Estuaries 7: 61–69.

    Google Scholar 

  • Boto K.G., Alongi D.M.M. and Nott A.L. 1989. Dissolved organic carbon - bacteria interactions at sediment water interface in a tropical mangrove system. Marine Ecology Progress Series 51: 243–251.

    Google Scholar 

  • Bouchard V. 1996. Production et devenir de la matiére organique des halophytes dans un marais salé Europeén en systéme macrotidal (Baie de Mont St. Michel). PhD thesis, University of Rennes.

  • Boynton W., Kemp M. and Keefe C. 1982. Phytoplankton-bacteria interactions: an apparent paradox? Marine Ecology Progress Series 25: 23–30.

    Google Scholar 

  • Bridges P.H. and Leeder M.R. 1977. Sedimentary model for intertidal mudflat channels with examples from the Solway Firth, Scotland. Sedimentology 23: 533–552.

    Google Scholar 

  • Brown S.L. 1986. Faeces of intertidal benthic invertebrates: influence of particle selection in feeding on trace element concentration. Marine Ecology Progress Series 28: 219–231.

    Google Scholar 

  • Brown S.L., Warman E.A., McGrorty S., Yates M., Pakeman R.J., Boorman L.A., Goss-Custard J.D. and Gray A.J. 1998. Sediment fluxes in intertidal Biotopes: Biota II. Marine Pollution Bulletin 37: 173–181.

    Google Scholar 

  • Burt T.P. 1994. Long-term study of the natural environment: perceptive science or mindless monitoring? Progress in Physical Geography 18: 475–496.

    Google Scholar 

  • Burt T.P. 2003. Monitoring change in hydrological systems. The Science of the Total Environment 310: 9–16.

    Google Scholar 

  • Cahoon D.R., Lynch J.C. and Powell A.N. 1996. Marsh vertical accretion in a Southern California estuary. Estuarine, Coastal and Shelf Science 43: 19–32.

    Google Scholar 

  • Cai W.J., Wang W.C., Krest J. and Moore J.S. 2003. The geochemistry of dissolved inorganic carbon in a surficial groundwater aquifer in North Inlet, South Carolina, and the carbon fluxes to the coastal ocean. Geochimica et Cosmochemica Acta 67: 631–639.

    Google Scholar 

  • Carlson P.R., Yarbro L.A., Zimmermann C.F. and Montgomery J.R. 1983. Pore water chemistry of an overwash mangrove island. In: Taylor W.K. and Whittier H.O. (eds), Future of the Indian River System, First Symposium, Melbourne, Florida, pp. 239–250.

  • Chambers R.M., Osgood D.T. and Kalapasev N. 2003. Hydrological and chemical control of Phragmites growth in tidal marshes of SW Connecticut, USA. Marine Ecology Progress Series 239: 83–91.

    Google Scholar 

  • Chappell J. 1993. Contrasting Holocene sedimentary geologies of lower Daly River, northern Australia, and lower Sepik-Ramu, Papua New Guinea. Sedimentary Geology 83: 339–358.

    Google Scholar 

  • Chappell J. and Woodroffe C.D. 1994. Macrotidal estuaries. In: Carter R.W.G. and Woodroffe C.D. (eds), Coastal Evolution: Late Quaternary Shoreline Morphodynamics, Cambridge University Press, Cambridge, pp. 181–218.

    Google Scholar 

  • Chater E.H. and Jones H. 1957. Some observations on Spartina townsendii in the Dovey estuary. Journal of Ecology 45: 157–167.

    Google Scholar 

  • Chen J.Y., Zhu H.F., Dong Y.F. and Sun J.M. 1985. Development of the Changjiang Estuary and its submerged delta. Continental Shelf Research 4: 47–56.

    Google Scholar 

  • Chícharo L., Chícharo M.A., Esteves E., Andrade P. and Morais P. 2002. Effects of alterations in fresh water supply on the abundance and distribution of Engraulis encrasicolus in the Guadiana Estuary and adjacent coastal areas of south Portugal. Ecohydrology and Hydrobiology 1: 195–200.

    Google Scholar 

  • Chivian E. 2002. Biodiversity: its importance to human health. Interim Executive Summary, Center for Health and the Global Environment. Harvard Medical School, Harvard.

    Google Scholar 

  • Cloern J.E. 1987. Turbidity as a control on phytoplankton biomass and productivity in estuaries. Continental Shelf Research 7: 1367–1381.

    Google Scholar 

  • Coccossis H., Burt T.P. and van der Weide J. 1999. Conceptual framework and planning guidelines for integrated coastal area and river basin management. United Nations Environment Programme, Mediterranean Action Plan, Priorities Actions Programme, Split, Croatia.

    Google Scholar 

  • Cohen M. and Lara R.J. 2003. Temporal changes of mangrove vegetation boundaries in Amazônia: Application of GIS and remote sensing techniques. Wetlands Ecology and Management 11: 223–231.

    Google Scholar 

  • Coleman J.M., Robert H.H. and Stone G.W. 1998. Mississippi River Delta: an overview. Journal of Coastal Research 14: 696–716.

    Google Scholar 

  • Colwell R.R. 1996. Global Climate and Infectious Disease: The Cholera Paradigm. Science 274: 2025–2031.

    Article  CAS  PubMed  Google Scholar 

  • Corbett D.R., Dillon K., Burnett W. and Schaefer G. 2002. The spatial variability of nitrogen and phosphorous concentration in a sand aquifer influenced by onsite sewage treatment and disposal systems: a case study on St. George Island, Florida. Environmental Pollution 117: 337–345.

    Google Scholar 

  • Costa M.J. 1988. The Tagus and Mira estuaries (Portugal) and their role as spawning and nursery areas. Journal of Fish Biology 33(Suppl. A): 249–250.

    Google Scholar 

  • Costa M.J., Lopes M.T., Domingos I.M., de Almeida P.R. and Costa J.L. 1996. Final Report of the Portuguese Fauna Working Group - Tagus and Mira sites. In: Lefeuvre J.C. (ed.), Effects of Environmental Change on European Salt Marshes. Structure, Functioning and Exchange Potentialities with Marine Coastal Waters, vol. 3, University of Rennes, France, pp. 95–174.

    Google Scholar 

  • Cundy A.B., Croudace I.W., Thomson J. and Lewis J.T. 1997. Reliability of salt marshes as ‘geochemical recorders’ of pollution input: a case from contrasting estuaries in southern England. Environmental Science and Technology 31(4): 1093–1101.

    Google Scholar 

  • Dame R.F. and Kenny P.D. 1986. Variability of Spartina alterniflora production in the euhaline North Inlet estuary. Marine Ecology Progress Series 32: 71–80.

    Google Scholar 

  • Dame R.F. and Lefeuvre J.C. 1994. Tidal exchange, import-export of nutrient and organic matter in New World and Old World salt marshes: conclusion. In: Mitsch W.J. (eds), Global Wetlands. Old World and New, Elsevier, Amsterdam, pp. 303–305.

    Google Scholar 

  • Dankers N., Binsbergen N., Zegers K., Laane R. and Van der Loeff M.R. 1984. Transportation of water, particulate and dissolved organic and inorganic matter between a salt marsh and the Eems-Dollard estuary, the Netherlands. Estuarine, Coastal and Shelf Science 19: 143–165.

    Google Scholar 

  • Daszak P., Cunningham A.A. and Hyatt A.D. 2000. Emerging infectious diseases of wildlife-threats to biodiversity and human health. Science 287: 443–449.

    Article  CAS  PubMed  Google Scholar 

  • Degan L.A., Finn J.T., Hopkinson C.S., Giblin A.E., Peterson B.J., Fry B. and Hobbie J.E. 1994. Flow model analysis of the effects of organic matter-nutrient interactions on estuarine trophic dynamics. In: Dyer K.R. and Orth R.J. (eds), Changes in fluxes in estuaries: implications from science to management, Proceedings ofECSA22/ERF Symposium, 13–18 September 1992, Plymouth, Olsen and Olsen, pp. 273–281.

    Google Scholar 

  • Dias J.M., Boski A., Rodrigues T. and Magalhães F. 2000. Coastline evolution in Portugal since the last glacial maximum until present - a synthesis. Marine Geology 170: 177–186.

    Google Scholar 

  • Diaz R.J. and Rosenberg R. 1995. Marine benthic hypoxia: a review of its ecological effects and the behavioural responses of benthic macrofauna. Oceanography and Marine Biology: an Annual Review 33: 245–303.

    Google Scholar 

  • Dijkema K.S. 1983. The salt-marsh vegetation of the mainland coast, estuaries and halligen. In: Dijkema K.S. and Wolff W.J. (eds), Flora and vegetation of the Wadden Sea Islands and Coastal Areas, Stichting Veth, Leide. pp. 185–220.

    Google Scholar 

  • Dijkema K.S. 1997. The influence of salt marsh vegetation on sedimentation. In: Eisma D. (ed.), Intertidal Deposits: River Mouths, Tidal flats and Coastal Lagoons, CRC Press, Boca Raton, FL, pp. 403–414.

    Google Scholar 

  • Diop S. 2003. Vulnerability assessments of mangroves to environmental change. Estuarine, Coastal and Shelf Science 58: 1–2.

    Google Scholar 

  • Dittmar T. and Lara R.J. 2001. Driving forces behind nutrient and organic matter dynamics in a mangrove tidal creek in North Brazil. Estuarine, Coastal and Shelf Science 52: 249–259.

    Google Scholar 

  • Doering P.H., Oviatt C.A., Nowicki B.L., Klos E.G. and Reed L.W. 1995. Phosphorus and nitrogen limitation of primary production in a simulated estuarine gradient. Marine Ecology Progress Series 124: 271–287.

    Google Scholar 

  • Dunne T. and Leopold L.B. 1978. Water in Environmental Planning. W.H. Freeman, San Francisco.

    Google Scholar 

  • Eisma D., Cadée G.C., Laane R. and Kalf J. 1982. Preliminary results of Aurelia and Navicula cruises in the Rhine and Ems estuaries, Jan. – Feb. 1982. Mitteilungen aus dem Geologisch-paleontologischen Institut der Univeritaet Hamburg, SCOPE/UNEP Sonderband, 52: 633–653.

    Google Scholar 

  • Epstein P.R. 1999. Climate and health. Science 285: 347–348.

    Google Scholar 

  • Etcheber H. 1983. Biogéochimie de la matière organique en milieu estuarien: comportement, bilan, propriétés. Le cas de la Gironde. Thèse Doctorat d’Etat, Bordeaux, France.

    Google Scholar 

  • Exner M., Gornik V. and Kistemann T. 2001. Characterization, risk assessment and prevention of waterborne parasitic infections. Bundesgesundheitsblatt, Gesundheitsforschung, Gesundheitsschutz 44: 358–363.

    Google Scholar 

  • Fanos A.M. 1995. The impacts of human activities on the erosion and accretion of the Nile Delta coast. Journal of Coastal Research 11: 821–833.

    Google Scholar 

  • Flameling I.A. and Kromkamp J. 1994. Responses of respiration and photosynthesis of Scenedesmus protuberans (Fritsch) to gradual and steep salinity increases. Journal Plankton Research 16: 1781–1791.

    Google Scholar 

  • Fox W.M., Johnson M.S., Jones S.R., Leah R.T. and Copplestone D. 1999. The use of sediment cores from stable and developing salt marshes to reconstruct historical contamination profiles in the Mersey Estuary, UK. Marine Environmental Research 47: 311–329.

    Google Scholar 

  • French J.R. 1993. Numerical simulation of vertical marsh growth and adjustment to accelerated sea level rise, North Norfolk UK. Earth Surface Processes and Landforms 18: 63–81.

    Google Scholar 

  • French P.W. 1996. Long-term variability of copper, lead, and zinc in intertidal salt marsh sediments of the Severn Estuary. Mangroves and Salt Marshes 1: 59–68.

    Google Scholar 

  • Fujimoto K., Miyagi T., Kikuchi T. and Kawana T. 1996. Mangrove habitat formation and response to Holocene sealevel changes on Kosrae Island, Micronesia. Mangroves and Salt Marshes 1: 47–57.

    Google Scholar 

  • Furukawa K., Wolanski E. and Muller H. 1997. Currents and sediment transport in mangrove forests. Estuarine, Coastal and Shelf Science 44: 301–310.

    Google Scholar 

  • Gameson A.L.H. 1981. The Quality of the Humber Estuary, 1961–1981. The Yorkshire Water Authority, Leeds, UK, 88 pp.

    Google Scholar 

  • Garret E.S., dos Santos C.L. and Jahnke M.L. 1997. Public, animal and environmental health implications of aquaculture. Emerging Infectious Diseases 3: 435–457.

    Google Scholar 

  • Gerdol V. and Hughes R.G. 1994. Effect of Corophium volutator on the abundance of benthic diatoms, bacteria and sediment stability in two estuaries in south-eastern England. Marine Ecology Progress Series 114: 109–115.

    Google Scholar 

  • Goosen N.K., van Rijswijk P. and Brockmann U. 1995. Comparison of hetereotrophic bacterial production rates in early spring in the turbid estuaries of the Scheldt and the Elbe. Hydrobiologia 311: 31–42.

    Google Scholar 

  • Goosen N.K., Kromkamp J., Peene J., van Rijswijk P. and van Breugel P. 1999. Bacterial and phytoplankton production in the maximum turbidity zone of three European estuaries: the Elbe, Westerchelde and Gironde. Journal of Marine Sciences 22: 151–171.

    Google Scholar 

  • Grabemann I., Kühle H., Kunze B., Müller A. and Neumann L.J.R. 1990. Studies on the distribution of oxygen and nutrients in the Weser Estuary. In: Michaelis W. (ed.), Estuarine Water Quality Management, Coastal and Estuarine Studies, Springer-Verlag, Berlin, pp. 341–344.

    Google Scholar 

  • Gramling C.M., McCorkle D.C., Mulligan A.E. and Woods T.L. 2003. A carbon isotope method to quantify groundwater discharge at the land-sea interface. Limnology and Oceanography 48: 957–970.

    Google Scholar 

  • Granja H.M. and Soares-de-Carvalho G. 1999. Inland beach migration and predictability of change in the northwest coastal zone of Portugal. In: Barthel K.G., Barth H., Bohle-Carbonell M., Fragakis C., Lipiatou E., Martin P., Ollier G. and Weydert M. (eds), Proceedings of Third European Marine Science and Technology Conference (MAST), Luxembourg, European Commission DG12, 315 p.

    Google Scholar 

  • Gray A. 1992. Saltmarsh plant ecology: zonation and succession revisited. In: Allen J. and Pye K. (eds), Saltmarshes: Morphodynamics, Conservation and Engineering Significance, Cambridge University Press, Cambridge, pp. 63–79.

    Google Scholar 

  • Gray A.J., Drury M. and Raybould A.F. 1990. Spartina and the ergot fungus Claviceps purpurea - a singular contest?. In: Burdon J.J. and Leather S. (eds), Pests, Pathogens and Plant Communities, Blackwell Scientific, Oxford, pp. 63–79.

    Google Scholar 

  • Gray A.J., Marshall D.F. and Raybould A.F. 1991. A century of evolution of Spartina anglica. Advances in Ecological Research 21: 1–62.

    Google Scholar 

  • Gren I.M., Turner K. and Wulf F. 2000. Managing a Sea: The Ecological Economics of the Baltic. Earthscan, London, 138 pp.

    Google Scholar 

  • Grindrod J. and Rhodes E.G. 1984. Holocene sea-level history of a tropical estuary: Missionary Bay, North Queensland. In: Thom B.G. (ed.), Coastal Geomorphology in Australia, Academic Press, Sydney, pp. 151–178.

    Google Scholar 

  • Groenendijk A.M. 1984. Primary production of four dominant salt marsh angiosperms in the SW Netherlands. Vegetatio 57: 143–152.

    Google Scholar 

  • Guan W.B., Wolanski E. and Dong L.X. 1998. Cohesive sediment transport in the Jiaojiang River estuary, China. Estuarine, Coastal and Shelf Science 46: 861–871.

    Google Scholar 

  • Gueuné Y. and Winett G. 1994. The transport of the pesticide atrazine from the fresh water of the wetlands of Brittany to the salt water of the Bay of Mont Sainte-Michel (France). Journal of Environmental Science and Health 29: 753–768.

    Google Scholar 

  • Guillen J. and Palanques A. 1997. A historical perspective of the morphological evolutions in the lower Ebro River. Environmental Geology 30: 174–180.

    Google Scholar 

  • Hager S.W. and Schemel L.E. 1996. Dissolved inorganic nitrogen, phosphorus and silicon in South San Francisco Bay. 1. Major factors affecting distributions. In: Hollibaugh J.T. (ed.), San Francisco Bay: the Ecosystem, American Association for the Advancement of Science, San Francisco, pp. 189–216.

    Google Scholar 

  • Harris R.P., Wiebe P.H., Lenz J., Skodal H.R. and Huntley M. 2000. ICES Zooplankton Manual. Academic Press, New York, 684 pp.

    Google Scholar 

  • Hawkins S.J., Southward A.J. and Genner M.J. 2003. Detection of environmental change in a marine ecosystem - evidence from the western English Channel. The Science of the Total Environment 310: 245–256.

    Google Scholar 

  • HEED, 1999. Global Change Program. Marine Ecosystems: Emerging Diseases as Indicator of Change. Health, Ecological and Economic Dimensions. http://heed.unh.edu/heedreport/exec/exec001.html.

  • Heip C.H.R., Goosen N.K., Herman P.M.J., Kromkamp J., Middleburg J.J. and Soetaert K. 1995. Production and consumption of biological particles in temperate tidal estuaries. Oceanography and marine Biology: An Annual Review 33: 1–149.

    Google Scholar 

  • Hemminga M.A., Huiskes A.H.L., Steegstra M. and van Soelen J. 1996a. Assessment of carbon allocation and biomass production in a natural stand of salt marsh plant Spartina anglica using 13C. Marine Ecology Progress Series 130: 169–178.

    Google Scholar 

  • Hemminga M.A., Cattrijsse A. and Wielemaker A. 1996b. Bedload and near-bed detritus transport in a tidal salt marsh creek. Estuarine, Coastal and Shelf Science 42: 55–62.

    Google Scholar 

  • Holland A., Zingmark R. and Dean J. 1974. Quantitative evidence concerning the stabilization of sediments by marine benthic diatoms. Marine Biology 27: 191–196.

    Google Scholar 

  • Hughes T.P., Baird A.H. et al. 2003. Climate change, human impacts, and the resilience of coral reefs. Science 301: 929–933.

    Article  CAS  PubMed  Google Scholar 

  • Jackson J.B.C., Hughes T.P. et al. 2001. Historical overfishing and the recent collapse of coastal ecosystems. Science 293: 629–638.

    Article  CAS  PubMed  Google Scholar 

  • Jacobsen A., Egge J.K. and Heimdal B.R. 1995. Effects of increased concentration of nitrate and phosphate during a spring bloom experiment in microcosm. Journal of Experimental Marine Biology and Ecology 187: 239–251.

    Google Scholar 

  • Jakobsen B. 1954. The tidal area in south-western Jutland and the process of the salt marsh formation. Geographisk Tidsskrift 53: 49–61.

    Google Scholar 

  • Jakobsen B., Jensen K.M. and Nielsen N. 1955. Forlag til landvindingsar-bedjerlangs den somderjykse vadehavskyst. Geographisk Tidsskrift 55: 62–87.

    Google Scholar 

  • Jassby A.D., Cloern J.E. and Powell T.M. 1993. Organic carbon sources and sinks in San Francisco Bay: variability induced by river flow. Marine Ecology Progress Series 95: 39–54.

    Google Scholar 

  • Jay D.A. and Simenstad C.A. 1996. Downstream effects of water withdrawal in a small, high-gradient basin: erosion and deposition on the Skokomish River delta. Estuaries 19: 501–517.

    Google Scholar 

  • Jiménez J.A. and Sánchez-Arcilla A. 1993. Medium-term coastal response at the Ebro Delta, Spain. Marine Geology 114: 105–118.

    Google Scholar 

  • Jones J.A.A. 2002. Natural soil piping, water quality and catchment management in the British Uplands. In: Cunnane C. and Barrins J. (eds), Celtic water in European framework -pointing the way to quality, Proceedings of the 3rd Inter-Celtic Colloquium on Hydrology and Management of Water Resources, National University of Ireland, Galway, pp. 98–114.

    Google Scholar 

  • Jorgensen S.E. 1997. Integration of Ecosystem Theories: a Pattern. Kluwer, Dordrecht.

    Google Scholar 

  • Jorgensen S.E. and de Bernardi R. 1998. The use of structural dynamics models to explain success and failures in biomanipulation. Hydrobiologia 379: 147–158.

    Google Scholar 

  • Jumars P.J. and Nowell A.R.M. 1984. Effects of benthos on sediment transport: difficulties with functional grouping. Continental Shelf Research 3: 115–130.

    Google Scholar 

  • Kamps L.F. 1962. Mud distribution and land reclamation in the eastern Wadden Sea shallows. Rijkswaterstaat Communications 4: 1–73.

    Google Scholar 

  • Kerr G. and Nisbet T.R. 1996. The restoration of floodplain woodlands in lowland Britain: a scoping study and recommendations for research. R&D Technical Report W15, Forestry Commision Research Division, 28 pp.

  • Khafagy A.A., Naffaa M.G., Fanos A.M. and Dean R.G. 1992. Nearshore coastal changes along the Nile Delta shores. Proceedings of the 23rd Coastal Engineering Conference, pp. 3260–3270.

  • Kingsford M.J. and Suthers I.M. 1994. Dynamic estuarine plumes and fronts: importance to small fish and plankton in coastal waters of NSW, Australia. Continental Shelf Research 14: 655–672.

    Google Scholar 

  • Kirby C.J. and Gosselink J.G. 1976. Primary production in a Louisiana Gulf Coast Spartina alterniflora marsh. Ecology 57: 1052–1059.

    Google Scholar 

  • Kirchman D., Keil R. and Wheeler P. 1989. The effect of amino acids on ammonium utilization and regeneration by heterotrophic bacteria in the subarctic Pacific. Deep Sea Research 36: 1736–1776.

    Google Scholar 

  • Knox G.A. 1986. Estuarine Ecosystems: a Systems Approach, vol. II, CRC Press, Florida, 230 pp.

    Google Scholar 

  • Koönig D. 1948. Spartina townsendii an der westk üste von schleswig-holstein. Planta 36: 34–70.

    Google Scholar 

  • Kovats R.S., Campbell-Lendrum D.H., Mc-Michael A.J., Woodward A. and Cox J.S. 2001. Early effects of climate change: do they include changes in vector-borne disease? Philosophical Transactions Royal Society of London B 356(1411): 1057–1068.

    Google Scholar 

  • Lancelot C., Martin J.-M., Panin N. and Zaitsev Y. 2002. The north-western Black Sea: a pilot study to understand the complex interaction between human activities and the coastal environment. Estuarine, Coastal and Shelf Science 54: 279–283.

    Google Scholar 

  • Langlois E., Bonis A. and Bouzillé J.B. 2001. The response of Puccinellia maritima to burial: a key to understanding its role in salt marsh dynamics? Journal of Vegetation Science 12: 289–297.

    Google Scholar 

  • Langlois E., Bonis A. and Bouzillé J.B. 2003. Sediment and plant dynamics in saltmarshes pioneer zone: Puccinellia maritima as a key species? Estuarine, Coastal and Shelf Science 56: 239–249.

    Google Scholar 

  • Lara R.J. and Dittmar T. 1999. Nutrient dynamics in a mangrove creek (North Brazil) during the dry season. Mangroves and Salt Marshes 3: 185–195.

    Google Scholar 

  • Lara R.J., Szlafsztein C.F., Cohen M.C.L., Berger U. and Glaser M. 2003. Consequences of mangrove dynamics for private land use in Bragança, North Brazil: a case study. Journal of Coastal Conservation (in press).

  • de Leeuw, J.A. van den Dool, W. de Munck, J. Nieuwenhuize and W.G. Beeftink 1991. Factors influencing the soil salinity regime along an intertidal gradient. Estuarine, Coastal and Shelf Science 32: 87–97.

    Google Scholar 

  • Lefeuvre J.C. 1996. Effects of Environmental Change on European Salt Marshes. Structure, Functioning and Exchange Potentialities with Marine Coastal Waters, vols. 1–6, University of Rennes, France.

    Google Scholar 

  • Lefeuvre J.C. and Dame R.F. 1994. Comparative studies of salt marsh processes on the New and Old Worlds: an introduction. In: Mitsch W.J. (ed.), Global Wetlands. Old World and New, Elsevier, Amsterdam, pp. 169–179.

    Google Scholar 

  • Lefeuvre J.C., Bertru G., Burel F., Brient L., Creach V., Guené Y., Levasseur J., Mariotti A., Radureau A., Retiere C., Savouré B. and Troccaz P. 1994. Comparative studies on salt marsh processes: Mont St. Michel Bay, a multi-disciplinary study. In: Mitsch W.J. (ed.), Global Wetlands. Old World and New, Elsevier, Amsterdam, pp. 215–234.

    Google Scholar 

  • Leggett D., Bubb J.M. and Lester J.N. 1995. The role of pollutants and sedimentary processes in flood defence. A case study: saltmarshes of the Essex coast, UK. Environmental Technology 16: 457–466.

    Google Scholar 

  • Leonard L.A., Hine A.C. and Luther M.E. 1995. Surficial sediment transport and deposition processes in a Juncus roemerianus marsh, West-Central Florida. Journal of Coastal Research 11: 322–336.

    Google Scholar 

  • Li C., Wang P., Daidu F., Bing D. and Tiesong L. 2000. Open-coast intertidal deposits and the preservation potential of individual laminae: a case study from east-central China. Sedimentology 47: 1039–51.

    Google Scholar 

  • Lindeboom H. 2002. The coastal zone: an ecosystem under pressure. In: Field J.G., Hempel G. and Summerhayes C.P. (eds), Oceans 2020: Science, Trends, and the Challenge of Sustainability, Island Press, Washington, pp. 49–84.

    Google Scholar 

  • Linthurst R.A. and Reimold R.J. 1978. An evaluation of the methods for estimating the net aerial primary productivity of estuarine angiosperms. Journal of Applied Ecology 15: 919–931.

    Google Scholar 

  • Lipp E.K. and Rose J.B. 1997. Le rôle des poissons et des fruits de mer dans les toxi-infections alimentaires aux tats-ÉUnis d’Amérique. Revue Scientifique et Technique office International des Epizooties 16: 620–640.

    Google Scholar 

  • Liu Y.P., Millward G.E. and Harris J.R.W. 1998. Modelling the distributions of dissolved Zn and Ni in the Tamar Estuary using hydrodynamics coupled with chemical kinetics. Estuarine, Coastal and Shelf Science 47: 535–546.

    Google Scholar 

  • Luckenbach M.W., Huggett D.V. and Zobrist E.C. 1988. Sediment transport, biotic modifications and selection of grain size in a surface deposit feeder. Estuaries 11: 134–139.

    Google Scholar 

  • Mallin M.A. 2000. Impacts of industrial-scale swine and poultry production on rivers and estuaries. American Scientist 88: 26–37.

    Google Scholar 

  • Matson E.A. and Brinson M.M. 1990. Stable carbon isotopes and the C:N ratio in the estuaries of the Pamlico and Neuse Rivers, North Carolina. Limnology Oceanography 35: 1290–1300.

    Google Scholar 

  • McCaffrey R.J. and Thomson J. 1980. A record of the accumulation of sediment and trace metals in a Connecticut salt marsh. Advances in Geophysics 22: 83–96.

    Google Scholar 

  • McKee K.L. 1993. Soil physicochemical patterns and mangrove species distribution- reciprocal effects? Journal of Ecology 81: 477–487.

    Google Scholar 

  • Meckel L.D. 1975. Holocene sand and bodies in the Colorado Delta area, northern Gulf of California. In: Broussard (ed.), Deltas - Models for Exploration, Houston Geological Society, Houston, pp. 239–265.

    Google Scholar 

  • Melloul A.A. and Hassani L. 1999. Salmonella infection in children from the wastewater-spreading zone of Marrakesh city (Morocco). Journal of Applied Microbiology 87: 536–539.

    Google Scholar 

  • Menne B., Pond K., Noji E.K. and Bertollini R. 1999. Floods and public health consequences, prevention and control measures. Discussion paper presented at the UNECE Seminar on flood prevention, Berlin, 7–8 October 1999.

  • Meybeck M., Cauwet G., Dessery S., Somerville M., Gouleau D. and Billen G. 1988. Nutrients (organic C, P, N, Si) in the eutrophic river Loire (France) and its estuary. Estuarine, Coastal and Shelf Science 27: 595–624.

    Google Scholar 

  • Milliman J.D. and Meade R.H. 1983. World-wide delivery of river sediment to the oceans. Journal of Geology 91: 1–21.

    Google Scholar 

  • Mitsch W.J. 1993. Ecological engineering - a cooperative role with the planetary life-support system. Environmental Science and Technology 27: 438–445.

    Google Scholar 

  • Moeller I., Spencer T. and French J.R. 1997. Wind wave attenuation over salt marsh surfaces: Preliminary results from Norfolk, England. Journal of Coastal Research 12: 1009–1016.

    Google Scholar 

  • Moller J.T. 1963. Vadehavet mellem Mando og Ribe A. Folio Geografica Danica 8: 1–40.

    Google Scholar 

  • Monbet Y. 1992. Control of phytoplankton biomass in estuaries: A comparative analysis of microtidal and macrotidal estuaries. Estuaries 15: 563–571.

    Google Scholar 

  • Moore M.T., Rodgers J.H. Jr., Smith S. Jr. and Cooper C.M. 2001. Mitigation of metolachlor-associated agricultural runoff using constructed wetlands in Mississippi, USA. Agriculture, Ecosystems and Environment 84: 169–176.

    Google Scholar 

  • Morley J.V. 1973. Tidal immersion of Spartina marsh at Bridgwater Bay, Somerset. Journal of Ecology 36: 383–386.

    Google Scholar 

  • Morris A.W. 1988. Kinetic and equilibrium approaches to estuarine chemistry. The Science of the Total Environment 97/98: 253–266.

    Google Scholar 

  • Morris A.W., Bale A.J. and Howland R.J.M. 1981. Nutrient distributions in an estuary: evidence of chemical precipitation of dissolved silicate and phosphate. Estuarine, Coastal and Shelf Science 12: 205–216.

    Google Scholar 

  • Morris A.W., Loring D.H., Bale A.J., Howland R.J.M., Mantoura R.F.C. and Woodward E.M.S. 1982. Particle dynamics, particulate carbon and the oxygen minimum in an estuary. Oceanologica Acta 5: 349–353.

    Google Scholar 

  • Müller A., Grabemann I. and Kunze B. 1991. Water quality modelling: prediction of the transport of water constituents in the Weser Estuary (Germany). Estuarine and Coastal Modeling, Wastewater Division, ASCE, pp. 405–417.

  • Newell S.Y. and Krambeck C. 1995. Responses of bacterioplankton to tidal inundations of a salt marsh in a flume and adjacent mussel enclosures. Journal of Experimental Marine Biology and Ecology 190: 79–95.

    Google Scholar 

  • Nienhuis P.H. 1993. Nutrient cycling and food webs in Dutch estuaries. Hydrobiologia 265: 15–44.

    Google Scholar 

  • Nixon S.W., Ammerman J.W., Atkinson L.P., Berounsky V.M., Billen G., Boicourt W.C., Boynton W.R., Church T.M., Ditoro D.M., Elmgren R., Garber J.H., Giblin A.E., Jahnke R.A., Owens N.J.P., Pilson M.E.Q. and Seitzinger S.P. 1996. The fate of nitrogen and phosphorus at the land-sea margin of the North Atlantic Ocean. Biogeochemistry 35: 141–180.

    Google Scholar 

  • Noji C.I.M. and Noji T.T. 1991. Tube lawns of spionid polychaetes and their significance for recolonization of disturbed benthic substrates. Meeresforch 33: 235–246.

    Google Scholar 

  • Noji E. 1997. The Public Health Consequences of Disasters. Oxford University Press, New York, 496 pp.

    Google Scholar 

  • Okaichi T. and Yanagi T. 1997. Sustainable development in the Seto Inland Sea - from the Viewpoint of fisheries. Terra Publishing Company, Tokyo, 329 pp.

    Google Scholar 

  • Oldfield F., Richardson N., Appleby P.G. and Yu L. 1993. 241Am and 137Cs activity in fine grained sediments from parts of the N.E. Irish Sea shoreline. Journal of Environmental Radioactivity 19: 1–24.

    Google Scholar 

  • Owens N.J.P. 1986. Estuarine nitrification: a naturally occurring fluidized bed reaction? Estuarine, Coastal and Shelf Science 22: 31–44.

    Google Scholar 

  • Owens R.E., Balls P.W. and Price N.B. 1997. Physicochemical processes and their effects on the composition of suspended particulate material in estuaries: implications for monitoring and modelling. Marine Pollution Bulletin 34: 51–60.

    Google Scholar 

  • Parr T.W., Sier A.R.L., Battarbee R.W., Mackay A. and Burgess J. 2003. Detecting environmental change: science and society - perspectives on long-term research and monitoring in the 21st century. The Science of the Total Environment 310: 1–8.

    Google Scholar 

  • Paterson D.M. 1994. Microbiological mediation of sediment structure and behaviour. In: Stal L.J. and Caumette P. (eds), Microbial Mats, vol. 35, NATO ASI series, pp. 97–109.

  • Pauly D., Christensen V., Dalsgaard J., Froese R. and Torres F. Jr. 1998. Fishing down marine food webs. Science 279: 860–863.

    Article  CAS  PubMed  Google Scholar 

  • Pennock J.R. and Sharp J.H. 1986. Phytoplankton production in the Delaware Estuary: temporal and spatial variability. Marine Ecology Progress Series 34: 143–155.

    Google Scholar 

  • Peterken G.F. and Hughes F.M.R. 1995. Restoration of flood-plain forests in Britain. Forestry 68: 187–202.

    Google Scholar 

  • Pethick J.S. 1981. Long-term accretion rates on tidal salt marshes. Journal of Sedimentary Petrology 51: 571–77.

    Google Scholar 

  • Pethick J.S. 1984. An Introduction to Coastal Geomorphology. Edward Arnold, London, 260 pp.

    Google Scholar 

  • Pethick J.S. 1992. Saltmarsh geomorphology. In: Allen J.R.L. and Pye K. (eds), Saltmarshes: Morphodynamics, Conservation and Engineering Significance, The University Press, Cambridge, pp. 41–62.

    Google Scholar 

  • Pethick J., Leggett D. and Husain L. 1992. Boundary layers under salt marsh vegetation developed in tidal currents. In: Thorne J. (ed.), Vegetation and Erosion Processes and Environments, John Wiley, London, pp. 113–124.

    Google Scholar 

  • Pitman S. 1993. Vegetation and over-marsh sediment deposition in a backbarrier saltmarsh at Stiffkey, North Norfolk, UK. MSc thesis, University of Wolverhampton.

  • Plater A.J., Ridgway J., Appleby P.G., Berry A. and Wright M.R. 1998. Historical contaminant fluxes in the Tees estuary, UK: Geochemical, magnetic and radionuclide evidence. Marine Pollution Bulletin 37: 343–360.

    Google Scholar 

  • Plater A.J., Stupples P., Roberts H.M.R. and Owen C. 2002. The evidence for late Holocene foreland progradation and rapid tidal sedimentation from the barrier and marsh sediments of Romney Marsh and Dungeness: a geomorphological perspective. In: Long A., Hipkin S. and Clarke H. (eds), Romney Marsh: Coastal and Landscape Change through the Ages, OUSA Monograph 56, OUSA, Oxford, pp. 40–57.

    Google Scholar 

  • Poulos S., Papadopoulos A. and Collins M.B. 1994. Deltaic progradation in Thermaikos Bay, northern Greece, and its socio-economical implications. Ocean and Coastal Management 22: 229–247.

    Google Scholar 

  • Qian C.L. 1994. The impacts of water withdrawal from Luanhe River on the delta. Acta Geographica Sinica 49: 158–166 (in Chinese).

    Google Scholar 

  • Rabalais N.N., Turner R.E. and Scavia D. 2002. Beyond science into policy: gulf of Mexico hypoxia and the Mississippi River. BioScience 52: 129–142.

    Google Scholar 

  • Randerson P.F. 1979. A simulation model of salt marsh development and plant ecology. In: Knights B. and Phillips A.J. (eds), Estuarine and Coastal Land Reclamation and Water Storage, Saxon House, Fanborough, pp. 48–67.

    Google Scholar 

  • Ranwell D.S. 1972. Ecology of Salt Marshes and Sand Dunes. Chapman Hall, London.

    Google Scholar 

  • Ray G.C. 1996. Coastal-marine discontinuities and synergisms: implications for biodiversity conservation. Biodiversity and Conservation 5: 1095–1108.

    Google Scholar 

  • Reed D.J. and Donovan J. 1994. The character and composition of the Columbia River estuarine turbidity maximum. In: Dyer K.R. and Orth R.J. (eds), Changes in fluxes in estuaries: implications from science to management, Proceedings of ECSA22/ERF Symposium, 13–18 September 1992, Plymouth, pp. 445–450.

  • Reid P.C., Auger C., Chaussepied M. and Burn M. 1994. Quality Status Report of the North Sea 1993. Report on Sub-Region 9. The Channel, 153 pp.

  • Reiter P. 2000. From Shakespeare to Defoe: malaria in England in the Little Ice Age. Emerging Infectious Diseases 6: 1–11.

    Google Scholar 

  • Rey J.R., Kain T., Crossman R., Peterson M., Shaffer J. and Vose F. 1991. Zooplankton of impounded marshes and shallow areas of a subtropical lagoon. Florida Scientist 54: 191–203.

    Google Scholar 

  • Rhee G.Y. 1972. Competition between an alga and its aquatic bacterium phosphate. Limnology and Oceanography 17: 505–514.

    Google Scholar 

  • Rhodes E.G. 1980. Modes of Holecene coastal progradation, Gulf of Carpentaria. PhD thesis, Australian National University, Canberra,

    Google Scholar 

  • Richards F.J. 1934. The salt marshes of the Dovey Estuary. IV. The rates of vertical accretion, horizontal extension and scarp erosion. Annals of Botany 48: 225–259.

    Google Scholar 

  • Richardson K. and Jorgensen B.B. 1996. Eutrophication: definition, history and effects. In: Jorgensen B.B. and Richardson K. (eds), Eutrophication in Coastal Marine Ecosystems, Coastal and Estuarine Studies 52, AGU, Washington DC, pp. 1–20.

    Google Scholar 

  • Riethmüller R., Heineke M., Küh H. and Keuker-Rüdiger R. 2000. Chlorophyll a concentration as an index of sediment surface stabilization by microphytobenthos? Continental Shelf Research 20: 1351–1372.

    Google Scholar 

  • Roberts N. 1998. The Holocene - An Environmental History. Blackwell, Oxford. 316 pp.

    Google Scholar 

  • Rocha C., Galvão H. and Barbosa A. 2002. Role of transient silicon limitation in the development of cyanobacteria blooms in the Guadiana estuary, south-western Iberia. Marine Ecology Progress Series 228: 35–45.

    Google Scholar 

  • Rodriguez-Iturbe I. 2003. Hydrological dynamics and ecosystem structure. Water Science and Technology 47: 18–24.

    Google Scholar 

  • Salomons W. and Forstner U. 1984. Metals in the Hydrocycle. Springer-Verlag, Berlin, 349 pp.

    Google Scholar 

  • Sanchez J.M., San Leon D.G. and Izco J. 2001. Primary colonisation of mudflats estuaries by Spartina maritima (Curtis) Fernald in Northwest Spain: vegetation structure and sediment accretion. Journal of Vegetation Science 7: 695–702.

    Google Scholar 

  • Sankaranarayanan V.N. and Panampunnayil S.U. 1979. Studies on organic carbon nitrogen and phosphorus in sediments of the Cochin Backwater. Indian Journal of Marine Science 8: 27–30.

    Google Scholar 

  • Schaffner L.C. 1990. Small-scale organism distributions and patterns of species diversity: evidence for positive interactions in an estuary benthic community. Marine Ecology Progress Series 61: 107–117.

    Google Scholar 

  • Schemel L.E., Hager S.W. and Childers D. Jr. 1996. The supply and carbon content of suspended sediment from the Sacramento River to San Francisco Bay. In: Hollibaugh J.T. (ed.), San Francisco Bay: the Ecosystem, American Association for the Advancement of Science, San Francisco, pp. 237–260.

    Google Scholar 

  • Scholten M. and Rozema J. 1990. The competitive ability of Spartina anglica on Dutch salt marshes. In: Gray A. and Benham P. (eds), Spartina anglica - a research review, Institute of Terrestrial Ecology, HMSO, London, pp. 39–47.

    Google Scholar 

  • Schories D., Barletta Bergan A., Barletta M., Krumme U., Mehlig U. and Rademaker V. 2003. The keystone role of leaf-removing crabs in mangrove forests of North Brazil. Wetlands Ecology and Management 11: 243–255.

    Google Scholar 

  • Seralathan P., Meenakshikutty N.R., Asarafe K.V. and Padmalal D. 1993. Sediment and organic carbon distributions in the Cochin harbour area. Indian Journal of Marine Sciences 22: 252–255.

    Google Scholar 

  • Serôdio J. and Catarino F. 1999. Fortnightly light and temperature variability on estuarine intertidal sediments and implications for microphytobenthos primary productivity. Aquatic Ecology 33: 235–241.

    Google Scholar 

  • Sherif M.M. and Singh V.P. 1999. Effect of climate change on sea water intrusion in coastal aquifers. Hydrolological Processes 13: 1277–1287.

    Google Scholar 

  • Simenstad C.A., Small L.F. and McIntire C.D. 1990. Consumption processes and food web structure in the Columbia River Estuary. Progress in Oceanography 25: 271–297.

    Google Scholar 

  • Simenstad C.A., Reed D.J., Jay D.A., Baross J.A., Prahl F.G. and Small L.W. 1994. Land-margin ecosystem research in the Columbia River estuary: an interdisciplinary approach to investigating couplings between hydrological, geochemical and ecological processes within estuarine turbidity maxima. In: Dyer K.R. and Orth R.J. (eds), Changes in fluxes in estuaries: implications from science to management, Proceedings of ECSA22/ERF Symposium, 13–18 September 1992, Plymouth, Olsen and Olsen, pp. 437–444.

    Google Scholar 

  • Sivakumar V., Thangaraj G.C., Chandran R. and Ramamoorthi K. 1983. Seasonal variations in carbon, nitrogen and phosphorus in sediments of the Vellar Estuary, Porto Novo, Mahasagar. Bulletin of the National Institute of Oceanography 16: 175–181.

    Google Scholar 

  • Sklar F. and Browder J. 1998. Coastal environmental impacts brought about by alterations to freshwater flow in the Gulf of Mexico. Environmental Management 22: 547–562.

    Google Scholar 

  • Snelgrove P.V.R. and Butman C.A. 1994. Animal-sediment relationships revisited: cause versus effect. Oceanography Marine Biology Annual Review 32: 111–177.

    Google Scholar 

  • Soberón-Chávez G. and Yánez-Arancibia A. 1985. Ecological control of the demersal fishes: Environmental variability of the coastal zone and the influence in the natural production of fisher resources. In: Yánez-Aracibia A. (ed.), Recursos pesqueros potenciales de México: La pesca acompañante del Camarón, Programa Universidad Alimentos, Instituto de Ciencias del Mary Limnologia, Instituto Nacional de Pesca. Editorial Universtaria, UNAM, México D.F., pp. 399–486.

    Google Scholar 

  • Stanley D.J. and Warne A.G. 1998. Nile Delta in its destruction phase. Journal of Coastal Research 14: 794–825.

    Google Scholar 

  • Streever B. 2001. Saving Louisiana? The Battle for Coastal Wetlands. University Press of Mississippi, Jackson, 189 pp.

    Google Scholar 

  • Stumpf R.P. 1983. The process of sedimentation on the surface of a salt marsh. Estuarine, Coastal and Shelf Science 17: 495–508.

    Google Scholar 

  • Sutherland T.F., Grant J. and Amos C.L. 1998a. The effect of carbohydrate production by the diatom Nitzshia curvilineata on the erodibility of sediment. Limnology and Oceanography 43: 65–72.

    Google Scholar 

  • Sutherland T.F., Amos C.L. and Grant J. 1998b. The effect of biofilms on the erodibility of sublittoral sediments of a temperate microtidal estuary. Limnology and Oceanography 43: 225–235.

    Google Scholar 

  • Sutula M., Day J.W., Cable J. and Rudnick D. 2001. Hydrological and nutrient budgets of freshwater and estuarine wetlands of the Taylor Slough in the Southern Everglades, Florida (USA). Biogeochemistry 56: 287–310.

    Article  Google Scholar 

  • Takahashi H., Hosokawa Y., Furukawa K. and Yoshimura H. 2000. Visualisation of an oxygen deficit bottom water circulation in Osaka Bay, Japan. Estuarine, Coastal and Shelf Science 50: 81–84.

    Google Scholar 

  • Takeda S. and Kurihara Y. 1994. Preliminary study of management of red tide water by the filter feeder Mytilus edulis galloprovincialis. Marine Pollution Bulletin 28: 662–667.

    Google Scholar 

  • Tappin A.D. 2002. An examination of the fluxes of nitrogen and phosphorous in temperate and tropical estuaries: current estimates and uncertainties. Estuarine, Coastal and Shelf Science 55: 885–901.

    Google Scholar 

  • Thayer G.W. 1974. Identity and regulation of nutrients limiting phytoplankton production in the shallow estuaries near Beaufort, NC. Oecologia 14: 75–92.

    Google Scholar 

  • Thayer G.W., Powell A.B. and Hoss D.E. 1999. Composition of larval, juvenile and small adult fishes relative to changes in environmental conditions in Florida Bay. Estuaries 22: 518–533.

    Google Scholar 

  • Thompson J.D. 1990. Spartina anglica, characteristic feature, or invasive weed of coastal salt marshes? Biologist 37: 9–12.

    Google Scholar 

  • Thompson G.B. and Yeung S.K. 1982. Phosphorus and organic carbon in the sediments of a polluted subtropical estuary, and the influence of coastal reclamation. Marine Pollution Bulletin 13: 354–359.

    Google Scholar 

  • Thouvenin B., Le Hir P. and Romana L.A. 1994. Dissolved oxygen model in the Loire Estuary. In: Dyer K.R. and Orth R.J. (eds), Changes in Fluxes in Estuaries, Implications from Science to Management, Olsen and Olsen, Fredensborg, pp. 169–178.

    Google Scholar 

  • Thurow R. 2001. In malaria war, south africa turns to pesticide long banned in the west. Wall Street Journal, July 26.

  • Tipping E., Marker A.F.H., Butterwick C., Collett G.D., Cranwell P.A., Ingram J.K.G., Leach D.V., Lishman J.P., Pinder A.C., Rigg E. and Simon B.M. 1997. Organic carbon in the Humber Rivers. The Science of the Total Environment 194/195: 345–355.

    Google Scholar 

  • Townsend P.A. and Walsh S.J. 1998. Modeling floodplain inundation using an integrated GIS with radar and optical remote sensing. Geomorphology 21: 295–312.

    Google Scholar 

  • Trefry J.H., Nelsen T.A., Trocine R.P. and Eadie B.J. 1994. Transport of particulate organic carbon by the Mississippi River and its fate in the Gulf of Mexico. Estuaries 17: 839–849.

    Google Scholar 

  • Troccaz O., Girauld F., Bertru G. and Lefeuvre J.C. 1994. Methodology for studying exchanges between salt marshes and coastal marine waters. Wetlands Ecology and Management 3: 37–48.

    Google Scholar 

  • Tupper M. and Able K.W. 2000. Movements and food habits of Striped Bass (Morone saxatilis) in Delaware Bay (USA) salt marshes: comparison of a restored and a reference marsh. Marine Biology 137: 1049–1058.

    Google Scholar 

  • Turner R.E. 1993. Carbon, nitrogen and phosphorus leaching rates from Spartina alterniflora salt marshes. Marine Ecology Progress Series 92: 135–140.

    Google Scholar 

  • Uncles R.J., Joint I. and Stephens J.A. 1998a. Transport and retention of suspended particulate matter and bacteria in the Humber-Ouse estuary, United Kingdom, and their relationship to hypoxia and anoxia. Estuaries 21: 597–612.

    Google Scholar 

  • Uncles R.J., Howland R.J.M., Easton A.E., Griffiths M.L., Harris C., King R.S., Morris A.W., Plummer D.H. and Woodward E.M.S. 1998b. Seasonal variability of dissolved nutrients in the Humber-Ouse Estuary, UK. Marine Pollution Bulletin 37: 234–246.

    Google Scholar 

  • Uncles R.J., Bloomer N.J., Frickers P.R., Griffiths M.L., Harris C., Howland R.J.M., Morris A.W., Plummer D.H. and Tappin A.D. 2000. Seasonal variability of salinity, temperature, turbidity and suspended chlorophyll in the Tweed Estuary. The Science of the Total Environment 251/252: 115–124.

    Google Scholar 

  • Uncles R.J., Stephens J.A. and Smith R.E. 2002. The dependence of estuarine turbidity on tidal intrusion length, tidal range and residence time. Continental Shelf Research 22: 1835–1856.

    Google Scholar 

  • UNDP,1998. Human Development Report 1998. United Nations Development Programme, Oxford University Press, New York.

    Google Scholar 

  • UNEP,1999. Global Environment Outlook 2000. United Nations Environment Programme, available at: http://www.unep.org/unep/state.htm.

  • USEPA (US Environmental Protection Agency), 1998. Report on the shrimp virus peer review and assessment workshop. Developing a qualitative ecological risk assessment. Report No. US EPA/600/R-97/136, Washington, DC, 38 pp.

  • Valette-Silver N.J. 1993. The use of sediment cores to reconstruct historical trends in contamination of estuarine and coastal sediments. Estuaries 16: 577–588.

    Google Scholar 

  • Victor S., Golbuu Y., Wolanski E. and Richmond R.H. 2003. Fine sediment trapping in two mangrove-fringed estuaries exposed to contrasting land use intensity in Palau, Micronesia. Wetlands Ecology and Management (in press).

  • von Weihe K. 1979. Morphologische und ökologische Grundladen der Vorlandsicherung durch Puccinellia maritima. Helgoländer wiss. Meeresunters 32: 239–254.

    Google Scholar 

  • Walbridge M.R. and Struthers J.P. 1993. Phosphorus retention in non-tidal palustrine forested wetlands of the Mid-Atlantic Region. Wetlands 13: 84–94.

    Google Scholar 

  • Wattayakorn G., Wolanski E. and Kjerfve B. 1990. Mixing, trapping and outwelling in the Klong Ngao mangrove swamp, Thailand. Estuarine, Coastal and Shelf Science 31: 667–688.

    Google Scholar 

  • Webb P. and Iskandarani M. 1998. Water insecurity and the poor: issues and research needs. ZEF Discussion Paper, Zentrum für Entwicklungsforschung, Bonn.

    Google Scholar 

  • West J.M. and Zedler J.B. 2000. Marsh-creek connectivity: Fish use of a tidal salt marsh in southern California. Estuaries 23: 699–710.

    Google Scholar 

  • Wheeler D.J., Simpson D.E. and Houston J.A. 1993. Dune use and management. In: Atkinson D. and Houston J. (eds), The Sand Dunes of the Sefton Coast, National Museums and Galleries on Merseyside, Eaton Press, UK, pp. 129–149.

    Google Scholar 

  • Whitfield A.K. and Wooldridge T.A. 1994. Changes in freshwater supplies to southern African estuaries: some theoretical and practical considerations. In: Dyer K.R. and Orth R.J. (eds), Changes in Fluxes in Estuaries, Implications from Science to Management. ECSA22/ERF Symposium, Olsen and Olsen, Fredensborg, pp. 41–50.

    Google Scholar 

  • WHO, 1996. Climate Change and Human Health. World Health Organization, Geneva.

    Google Scholar 

  • WHO, 2000. Climate Change and Health: Impact and Adaptation. http://www.who.int/environmental_information/Climate/climchange.pdf.

  • Widdows J., Brinsley M.D., Bowley N. and Barrett C. 1998. A benthic annular flume for in situ measurement of suspension feeding/biodeposition rates and erosion potential of intertidal cohesive sediments. Estuarine, Coastal and Shelf Science 46: 27–38.

    Google Scholar 

  • Widdows J., Brinsley M.D., Salkeld P.N. and Lucas C. 2000. Influence of biota on spatial and temporal variation in sediment erodibility and material flux on a tidal flat (Westerschelde, The Netherlands). Marine Ecology Progress Series 194: 23–27.

    Google Scholar 

  • Widdows J., Huntley D.A., Leeks G.J.L. and Walling D.E. 2001. The intertidal zone. In: Huntley D., Leeks G. and Walling D. (eds), Land-ocean Interaction: Measuring and Modelling Fluxes from River Basins to Coastal Seas, IWA Publishing, London, pp. 184–208.

    Google Scholar 

  • Williams T.B., Bubb J.M. and Lester J.N. 1994. Metal accumulation within salt marsh environments: a review. Marine Pollution Bulletin 28(5): 277–290.

    Google Scholar 

  • Wohlenberg E. 1933. Das Andelpolster und die Entstehung einer charakteritischen abrasionform im Wattenmeer. Wiss. Meeresuntersuchungen N.F. Helgoland Band XIX: 1–11.

    Google Scholar 

  • Wolanski E. and Chappell J. 1996. The response of Australian tropical estuaries to a sea level rise. Journal of Marine Systems 7: 267–279.

    Google Scholar 

  • Wolanski E. and Spagnol S. 2000. Environmental degradation by mud in tropical estuaries. Regional Environmental Change 1: 152–162.

    Google Scholar 

  • Wolanski E. and Duke N. 2002. Mud threat to the Great Barrier Reef of Australia. In: Healy T., Wang Y. and Healy J.-A. (eds), Muddy Coasts of the World: Processes, Deposits and Function, Elsevier, Amsterdam, pp. 533–542.

    Google Scholar 

  • Wolanski E. and Spagnol S. 2003. Dynamics of the turbidity maximum in King Sound, tropical Western Australia. Estuarine, Coastal and Shelf Science 56: 877–890.

    Google Scholar 

  • Wolanski E., Jones M. and Bunt J.S. 1980. Hydrodyamics of a tidal creek - mangrove swamp system. Australian Journal of Marine and Freshwater Research 31: 431–450.

    Google Scholar 

  • Wolanski E., Huan N.N., Dao L.T., Nhan N.H. and Thuy N.N. 1996. Fine sediment dynamics in the Mekong River estuary, Vietnam. Estuarine, Coastal and Shelf Science 43: 565–582.

    Google Scholar 

  • Wolanski E., Nhan N.H. and Spagnol S. 1997. Sediment dynamics during low flow conditions in the Mekong River estuary, Vietnam. Journal of Coastal Research 13: 1241–1251.

    Google Scholar 

  • Wolanski E., Spagnol S. and Ayukai T. 1998a. Field and model studies of the fate of particulate carbon in mangrove-fringed Hinchinbrook Channel. Australia, Mangroves and Salt Marshes 2: 205–221.

    Google Scholar 

  • Wolanski E., Gibbs R., Spagnol S., King B. and Brunskill G. 1998b. Inorganic sediment budget in the mangrove-fringed Fly River estuary, Papua New Guinea. Mangroves and Salt Marshes 2: 85–98.

    Google Scholar 

  • Wolanski E., Moore K., Spagnol S., D’Adamo N. and Pattiaratchi C. 2001. Rapid, human-induced siltation of the macro-tidal Ord River Estuary, Western Australia. Estuarine, Coastal and Shelf Science 53: 717–732.

    Google Scholar 

  • Wolanski E., Richmond R., McCook L. and Sweatman H. 2003a. Mud, marine snow and coral reefs. American Scientist 91: 44–51.

    Google Scholar 

  • Wolanski E., Richmond R.H., Davis G. and Bonito V. 2003b. Water and fine sediment dynamics in transient river plumes in a small, reef-fringed bay, Guam. Estuarine, Coastal and Shelf Science 56: 1029–1043.

    Google Scholar 

  • Wolff W., Van Eeden M.J. and Lammens E. 1979. Primary production and import of particulate organic matter on a salt marsh in the Netherlands. Netherlands Journal of Sea Research 13: 242–255.

    Google Scholar 

  • Xiqing C. 1998. Changjiang (Yangtze) River delta, China. Journal of Coastal Research 14: 838–858.

    Google Scholar 

  • Yang S.L., Ding P.X. and Chen S.L. 2001. Changes in progradation rate of the tidal flats at the mouth of the Changjiang (Yangtze) River, China. Geomorphology 38: 167–180.

    Google Scholar 

  • Zaitsev Y.P. 1992. Recent changes in the trophic structure of the Black Sea. Fisheries Oceanography 1: 180–189.

    Google Scholar 

  • Zalewski M. 2000. Ecohydrology - The scientific background to use ecosystem properties as management tools towards sustainability of water resources. Ecological Engineering 16: 1–8.

    Google Scholar 

  • Zalewski M. 2002. Ecohydrology - the use of ecological and hydrological processes for sustainable management of water resources. Hydrological Sciences Bulletin 47: 823–832.

    Google Scholar 


  • RetroSearch is an open source project built by @garambo | Open a GitHub Issue

    Search and Browse the WWW like it's 1997 | Search results from DuckDuckGo

    HTML: 3.2 | Encoding: UTF-8 | Version: 0.7.4