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  4. Biogeochemistry of iron in an acidic lake - Dedicated to Werner Stumm for his 65th birthday
 
research article

Biogeochemistry of iron in an acidic lake - Dedicated to Werner Stumm for his 65th birthday

Sulzberger, B.
•
Schnoor, J.L.
•
Giovanoli, R.
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1990
Aquatic Sciences

In this paper, the fate of iron in Lake Cristallina, an acidic lake in the Alps of Switzerland, is discussed. A simple conceptual model is developed in order to explain the observed diel variation in dissolved iron(II) concentration. Biotite weathering provides reduced iron that is oxidized and subsequently precipitated in the lake. The amorphous Fe(III)hydroxide (FeOOH {dot operator}xH2O), found in the sediments of Lake Cristallina, is an Fe(II) oxidation product. This oxygenation reaction is most probably catalyzed by bacteria surfaces, as indicated by the relatively high estimated oxidation rate compared to the oxidation rate of the homogeneous oxidation of inorganic Fe(II) species at the ambient pH of Lake Cristallina (pH 5.4 at 4 °C) and by the scanning electron micrograph pictures. Under the influence of light, these amorphous iron(III)hydroxide phases are reductively dissolved. The net concentration of Fe(II) reflects the balance of the reductive dissolution and the oxidation/precipitation reactions and tends to parallel the light intensity, leading to a diurnal variation in the Fe(II) concentration. The rate of the photochemical reductive dissolution of Lake Cristallina iron(III)hydroxides is greatly enhanced in situ and in the laboratory by addition of oxalate to the lake water. © 1990 Birkhäuser Verlag.

  • Details
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Type
research article
DOI
10.1007/BF00878241
Scopus ID

2-s2.0-34249957707

Author(s)
Sulzberger, B.
Schnoor, J.L.
Giovanoli, R.
Hering, J.G.  
Zobrist, J.
Date Issued

1990

Published in
Aquatic Sciences
Volume

52

Issue

1

Start page

56

End page

74

Editorial or Peer reviewed

REVIEWED

Written at

OTHER

EPFL units
UPHCE  
Available on Infoscience
November 25, 2010
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/58686
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