Hypoxia in Chesapeake Bay, 1950–2001: Long-term change in relation to nutrient loading and river flow

Author:

Hagy James D.,Boynton Walter R.,Keefe Carolyn W.,Wood Kathryn V.

Publisher

Springer Science and Business Media LLC

Subject

General Environmental Science,Aquatic Science,Environmental Chemistry

Reference110 articles.

1. Adelson, J. M., G. R. Helz, andC. V. Miller. 2001. Reconstructing the rise of recent coastal anoxia; molybdenum in Chesapeake Bay sediments.Geochimica et Cosmochimica Acta 65: 237–252.

2. Baird, D., R. R. Christian, C. H. Peterson, and G. A. Johnson. In press. Consequences of hypoxia on estuarine food web and ecosystem function: Energy diversion from consumers to microbes,Ecological Applications

3. CBL Reference Series 47-1;G. F. Beaven,1947

4. Boesch, D. F. 2002. Challenges and opportunities for science in reducing nutrient over-enrichment of coastal ecosystems.Estuaries 25:886–900.

5. Boicourt, W. C. 1992. Influences of circulation processes on dissolved oxygen in the Chesapeake Bay, p. 7–59.In D. E. Smith, M. Leffler, and G. Mackiernan (eds.), Oxygen Dynamics in the Chesapeake Bay. A Synthesis of Recent Research. Maryland Sea Grant College. College Park, Maryland.

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