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Export of Organic Matter from a Coastal Freshwater Wetland to Lake Erie: an Extension of the Outwelling Hypothesis

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Abstract

I tested the hypothesis that seiches in large lakes play a role similar to tides in marine system by exporting detrital carbon from coastal wetlands to adjacent open waters. The study was conducted at a wetland site located along the shore of the Lake Erie. Water samples were collected at the outlet of the marsh, during inflow and outflow events, over a 19-month period. Water isotopes were also measured in the lake and in the marsh to establish the magnitude of the mixing between the two water masses. On average, the concentrations of the outflow water samples was enriched by 7.3 mg DOC l−1 and 3.4 mg POC l−1compared to the inflow water samples, while no difference observed in inorganic carbon fluxes. Organic carbon was exported during fall, winter and early spring which coincide with period of organic matter decomposition. Such a concept of outwelling is not new for marine ecosystem, but is demonstrated in this study for the first time in a large lake setting influenced by seiche events. Ultimately to understand the role that these fluxes may play in maintaining the integrity of the wetland-lake system, it will be necessary to investigate whether the detrital material exported from coastal freshwater wetlands is incorporated into the open lake foodweb.

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References

  • Barth JAC, Veizer J, Mayer B (1998) Origin of particulate organic carbon in the upper St. Lawrence: isotopic constraints. Earth Planet Sci Lett 162:111–121

    Article  CAS  Google Scholar 

  • Bedford FW (1992) The physical effects of the Great-Lakes on tributaries and wetlands – A summary. J Great Lakes Res 18:571–589

    Google Scholar 

  • Brazner JC, Sierszen ME, Keough JR, Tanner DK (2000) Assessing the ecological importance of coastal wetlands in a large lake context. Verh Internat Verein Limnol 27:1950–1961

    Google Scholar 

  • Bouchard V, Lefeuvre JC (2000) Primary production and macro-detritus dynamics in a European salt marsh: carbon and nitrogen budgets. Aquat Bot 67:23–42

    Article  CAS  Google Scholar 

  • Childers DL, Jay JW Jr, McKellar HN Jr (2000) Twenty more years of marsh and estuarine flux studies: revisiting Nixon (1980). In: Weinstein MP, Kreegers DA (eds) Concepts and controversies in tidal marsh ecology. Kluwer Academic Publishers, The Netherlands, pp 389–421

    Google Scholar 

  • Craig H (1961) Isotopic variations in meteoric waters. Science 133:1702–1703

    Article  PubMed  CAS  Google Scholar 

  • Deegan LA, Hughes JE, Rountree RA (2000) Salt marsh ecosystem support of marine transient species. In: Weinstein MP, Kreegers DA (eds) Concepts and controversies in tidal marsh ecology. Kluwer Academic Publishers, The Netherlands, pp 331–363

    Google Scholar 

  • Hamblin PF (1987) Meteorological Forcing and water level fluctuations on Lake Erie. J Great Lakes Res 13:436–453

    Google Scholar 

  • Herdendorf CE (1987) The ecology of the coastal marshes of western Lake Erie: a community profile. U.S. fish and wildlife service biological report 85(7.9), p 171

  • Huddart PA, Longstaffe FJ, Crowe AS (1999) δD and δ18O evidence for inputs to groundwater at a wetland coastal boundary in the southern Great Lakes region of Canada. J Hydrol 214:18–31

    Article  CAS  Google Scholar 

  • Junk WJ, Bayley PB, Sparks RE (1989) The flood pulse concept in river-floodplain systems. In: Dodge DP (ed) Proceedings of the international large river symposium canadian special publications fisheries aquatic sciences, 106. pp 110–127

  • Keough JR, Thompson TA, Guntenspergen GR, Wilcox DA (1999) Hydrogeomorphic factors and ecosystem responses in coastal wetlands of the Great Lakes. Wetlands 19:821–835

    Google Scholar 

  • Kowalski KP, Wilcox DA (1999) Use of historical and geospatial data to guide the restoration of a Lake Erie coastal marsh. Wetlands 19:858–868

    Google Scholar 

  • Lefeuvre JC, Dame RF (1994) Comparative studies of salt marshes processes in the New and Old Worlds: an introduction. In: Mitsch WJ (ed) Global wetlands: old and new world. Elsevier Science, BV, Amsterdam, The Netherlands, pp 169–179

    Google Scholar 

  • Mitsch WJ, Reeder BC (1992) Nutrient and hydrologic budgets of a Great Lakes coastal freshwater wetland during a drought year. Wetlands Ecol Manag 1:211–222

    Article  Google Scholar 

  • Morrice JA, Kelly JR, Trebitz AS, Cotter AM, Knuth ML (2004) Temporal dynamics of nutrients (N and P) and hydrology in a Lake Superior coastal wetland. J Great Lakes Res 30:82–96

    Article  Google Scholar 

  • Newell SY, Porter D (2000) Microbial secondary production from saltmarsh grass shoots, and its known and potential fates. In: Weinstein MP, Kreegers DA (eds) Concepts and controversies in tidal marsh ecology. Kluwer Academic Publishers, The Netherlands

  • Nixon SW (1980) Between coastal marshes and coastal waters: a review of twenty years of speculation and research on the role of salt marshes. In: Hamilton PP, MacDonald KB (eds) Estuarine and wetland processes. Plenum, New York, USA, pp 437–525

    Google Scholar 

  • Odum EP (1968) A research challenge: evaluating the productivity of coastal and estuarine water. In: Proceedings of the second sea grant conference, University of Rhode Island, New York, USA, pp 63–64

  • SAS Institute Inc (2000) SAS Software Product Version 8. SAS Institute, Cary, North Carolina, USA

    Google Scholar 

  • Teal JM (1962) Energy flow in the salt marsh ecosystem of Georgia. Ecology 43:614–624

    Article  Google Scholar 

  • Teal JM, Howes BL (2000) Salt marsh values: retrospection from the end of the century. In: Weinstein MP, Kreegers DA (eds) Concepts and controversies in tidal marsh ecology. Kluwer Academic Publishers, The Netherlands, pp 9–19

    Google Scholar 

  • Trebitz AS, Morrice JA, Cotter AM (2002) Relative role of lake and tributary in hydrology of Lake Superior coastal wetlands. J Great Lakes Res 28:212–227

    Google Scholar 

  • Vannote RL, Minshall GW, Cummins KW, Sedell JR, Cushing CE (1980) The river continuum concept. Can J Fish Aquat Sci 37:130–137

    Article  Google Scholar 

  • Weinstein MP, Kreeger DA (2000) Concept and controversies in tidal marsh ecology. Kluwer Academic Publishers, Dordrecht/Boston/London

    Google Scholar 

  • Wilcox DA, Whillans TH (1999) Techniques for restoration of disturbed coastal wetlands of the Great Lakes. Wetlands 19:835–858

    Google Scholar 

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Acknowledgements

This research was supported by the Ohio Sea Grant and the Ohio Water Resources. I appreciate the help of Eugene Braig, Aaron Friend, Kelly Krupa, and Kelly Powell in samples collection and laboratory analysis. Sampling seiche meant long hours of waiting at the site, often over night. I am grateful for useful comments provided by Dr. Dave Johnson, Dr. Timothy Granata, and three anonymous reviewers on an earlier version of this work.

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Correspondence to Virginie Bouchard.

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Bouchard, V. Export of Organic Matter from a Coastal Freshwater Wetland to Lake Erie: an Extension of the Outwelling Hypothesis. Aquat Ecol 41, 1–7 (2007). https://doi.org/10.1007/s10452-006-9044-4

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