4.5 Article

Elevated concentrations of dissolved Ba, Fe and Mn in a mangrove subterranean estuary: Consequence of sea level rise?

Journal

CONTINENTAL SHELF RESEARCH
Volume 43, Issue -, Pages 86-94

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.csr.2012.04.015

Keywords

Redox cycle; Ion exchange; Geobotanic fade; Sea level rise; Permeable sediments

Categories

Funding

  1. Instituto do Milenio [CNPq/420050/2005-1]
  2. INCT-TMCOcean [573-601/2008-9]
  3. CAPES
  4. FAPERJ [E-26/101.952/2009]
  5. ARC [LP110200975, DP120101645, LP100200732]

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Groundwater underlying a mangrove habitat was studied to determine the geochemical nature of Ba, Fe and Mn as related to dissolved organic carbon (DOC), SO4 and salinity (Sepetiba Bay, Brazil). Wells were placed across geobotanic facies and sampled monthly for a year. We observed non-conservative behavior and elevated concentrations of dissolved metals relative to local end-members (i.e., fresh river water and seawater). Average Ba concentrations were near 2000 nM in an area with low salinity ( similar to 5.3). Dissolved Fe (up to 654 mu M) was two orders of magnitude greater in fresh groundwater than in the seaward sampling stations. Manganese concentrations were greatest (112 mu M) in the high salinity ( similar to 65) zone, being directly influenced by salinity. Groundwater Ba, Fe and Mn showed differing site specific concentrations, likely related to ion exchange processes and redox-controlled cycling along distinct mangrove facies. The results of this work show that metal concentrations are altered relative to conservative mixing between terrestrial and marine endmembers, illustrating the importance of mangrove subterranean estuaries as biogeochemical reactors. Roughly-estimated submarine groundwater discharge-derived dissolved Ba, Fe and Mn fluxes were at least one order of magnitude greater than river-derived fluxes into Sepetiba Bay. (c) 2012 Elsevier Ltd. All rights reserved.

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