Ecosystem-Scale Modeling and Field Observations of Sulfate and Methylmercury Distributions in the Florida Everglades: Responses to Reductions in Sulfate Loading

Author:

Orem William H.ORCID,Fitz Carl,Krabbenhoft David P.,Poulin Brett A.,Varonka Matthew S.,Aiken George R.

Funder

U.S. Geological Survey

Publisher

Springer Science and Business Media LLC

Subject

Geochemistry and Petrology,Geophysics

Reference73 articles.

1. Achá D, Hintelmann H, Pabón CA (2012) Sulfate-reducing bacteria and mercury methylation in the water column of the lake 658 of the experimental lake area. Geomicrobiol J 29(7):667–674. https://doi.org/10.1080/01490451.2011.606289

2. Atkeson T, Axelrad D, Pollman C, Keeler G (2003) Integrating atmospheric mercury deposition and aquatic cycling in the Florida Everglades: an approach for conducting a total maximum daily load analysis for an atmospherically derived pollutant. Integrated summary. Final report. Florida Department of the Environment

3. Atkeson TD, Pollman CD, Axelrad DM (2005) Recent trends in Hg emissions, deposition, and biota in the Florida Everglades: a monitoring and modeling analysis. In: Pirrone N, Mahaffey K (eds) Dynamics of mercury pollution on regional and global scales: atmospheric processes, human exposure around the world. Springer, Norwell, pp 637–656 Ch. 26

4. Axelrad DM, Lange T, Gabriel M, Atkeson TD, Pollman CD, Orem WH, Scheidt DJ, Kalla PI, Frederick PC, Gilmour CC (2008) Mercury and sulfur monitoring, research and environmental assessment in South Florida. South Florida environmental report, Chapter 3B, South Florida Water Management District, West Palm Beach, FL

5. Axelrad DM, Lange T, Atkeson TD, Gabriel MC (2009) Mercury and sulfur monitoring research and environmental assessment in South Florida. South Florida environmental report, Chapter 3B, South Florida Water Management District, West Palm Beach, FL

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