Short-Term and Interannual Variability in Primary Production in the Low-Salinity Zone of the San Francisco Estuary

Author:

Kimmerer Wim J.,Parker Alexander E.,Lidström Ulrika E.,Carpenter Edward J.

Publisher

Springer Science and Business Media LLC

Subject

Ecology,Aquatic Science,Ecology, Evolution, Behavior and Systematics

Reference94 articles.

1. Alpine, A.E., and J.E. Cloern. 1992. Trophic interactions and direct physical effects control phytoplankton biomass and production in an estuary. Limnology and Oceanography 37: 946–955.

2. Arar, E. J., and G. B. Collins. 1992. In vitro determination of chlorophyll a and phaeophytin a in marine and freshwater phytoplankton by fluorescence—USEPA Method 445.0. USEPA methods for determination of chemical substances in marine and estuarine environmental samples. Cincinnati, Ohio.

3. Atlas, D., and T.T. Bannister. 1980. Dependence of mean spectral extinction coefficient of phytoplankton on depth, water color, and species. Limnology and Oceanography 25: 157–159.

4. Banse, K. 2002. Should we continue to measure 14C uptake by phytoplankton for another 50 years? Limnology and Oceanography Bulletin 11: 45–46.

5. Baxter, R., R. Breuer, L. Brown, M. Chotkowski, F. Feyrer, M. Gingras, B. Herbold, A. Mueller-Solger, M. Nobriga, T. Sommer, and K. Souza. 2008. Pelagic organism decline progress report: 2007 synthesis of results. Sacramento. http://www.fws.gov/sacramento/es/documents/POD_report_2007.pdf . Accessed 21 June 2011.

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