Sediment microbial enzyme activity as an indicator of nutrient limitation in the great rivers of the Upper Mississippi River basin

Author:

Hill Brian H.,Elonen Colleen M.,Jicha Terri M.,Bolgrien David W.,Moffett Mary F.

Publisher

Springer Science and Business Media LLC

Subject

Earth-Surface Processes,Water Science and Technology,Environmental Chemistry

Reference54 articles.

1. Ainsworth AM, Goulder R (2000) Downstream change in leucine aminopeptidase activity and leucine assimilation by epilithic microbiota along the River Swale, northern England. Sci Total Environ 251(252):191–204

2. Allen AP, Gillooly JF (2009) Towards an integration of ecological stoichiometry and the metabolic theory of ecology to better understand nutrient cycling. Ecol Lett 12:369–384

3. American Public Health Association (APHA) (1998) Standard Methods for the Examination of Water and Wastewater, 20th ed. (eds. L.S. Clesceri, A.E. Greenberg & A.D. Eaton). American Public Health Association, Washington, DC

4. Angradi TR (ed) (2006) Environmental monitoring and assessment program, Great River ecosystems field operations manual. EPA/620R/06/002. US Environmental Protection Agency, Office of Research and Development, Washington, DC. http://www.epa.gov/emap/greatriver/fom.html . Accessed 1 July 2008

5. Angradi TR, Bolgrien DW, Jicha TM, Hill BH, Pearson MS, Taylor DL, Schweiger EW, Shepard L, Batterman AL, Batterman SL, Moffett MF, Elonen CE, Anderson LE (2009) A monitoring and assessment program for the Great Rivers of the Upper Mississippi River basin, USA. Environ Monit Assess 152:425–442

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