Published January 2016 | Version v1
Journal article

Bacterially-mediated weathering of crystalline and amorphous Cu-slags

  • 1. UNESCO-IHE Institute for Water Education, P.O. Box 3015, 2601 DA, Delft (Netherlands)
  • 2. Université de Limoges, Groupement de Recherche Eau Sol Environnement (EA 4330), Faculté des Sciences et Techniques, 123 Avenue A. Thomas, 87060 Limoges Cedex (France)
  • 3. Université Paris-Est, Laboratoire Géomatériaux et Environnement (EA 4508), UPEM, 77454 Marne-la-Vallée (France)
  • 4. University of Wroclaw, Institute of Geological Sciences, Cybulskiego 30, 50-205 Wrocław (Poland)

Description

Two types of Cu-slags (CS: crystalline massive slag and GS: granulated amorphous slag) exhibiting a different chemical and mineral phase composition were compared with respect to their susceptibility to bacterial weathering using Pseudomonas aeruginosa (n° CIP 105094). Abiotic conditions e.g. sterile growth medium and ultrapure water were used for comparison. The experiments were extended up to 112 days with a systematic liquid phase renewal every 14 days. The results revealed significant release of elements in the bacterially mediated weathering experiments. Concentrations of elements (Si, Fe, Cu, Zn and Pb) in the biotic solutions were increased at least by 20% up to 99% compared to abiotic ones. From 3 to 77% of the leached elements were associated to the fraction >0.22 μm. Scanning electron microscope observations demonstrated greater weathering of mineral phases in biotic experiments than in abiotic ones which is in accordance with the solution chemistry exhibiting higher concentrations of elements leached in biotic set-ups. In the case of CS, glass and sulfides weathering was yet observed in abiotic experiment, whereas partial dissolution of fayalite (Fe2SiO4) was solely affected by the presence of bacteria. GS having a higher bulk content of metallic elements was found to be more stable than sulfide-bearing CS, while its (GS) glass matrix was found to weather easier under biotic conditions. - Highlights: • Pseudomonas aeruginosa significantly enhance the release of elements from Cu-slags. • Bacteria and/or associated metabolites assist as biosorbent (e.g. Zn). • Amorphous slag is more susceptible to bio-weathering. • Metal carriers of crystalline slag are prone to dissolution. • Fe-bearing fayalite is altered solely due to the presence of bacteria.

Availability note (English)

Available from http://dx.doi.org/10.1016/j.apgeochem.2015.07.011

Additional details

Identifiers

DOI
10.1016/j.apgeochem.2015.07.011;
PII
S0883-2927(15)30016-0;

Publishing Information

Journal Title
Applied Geochemistry
Journal Volume
64
Journal Page Range
p. 92-106
ISSN
0883-2927
CODEN
APPGEY

Optional Information

Copyright
Copyright (c) 2015 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.