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research article

Some fundamental (and often overlooked) considerations underlying the free ion activity and biotic ligand models

Hassler, C. S.
•
Slaveykova, V. I.  
•
Wilkinson, K. J.
2004
Environmental Toxicology and Chemistry

Trace metal bioavailability is often evaluated on the basis of steady-state models such as the free ion activity model (FIAM) and the biotic ligand model (BLM). Some of the assumptions underlying these models were verified by examining Pb and Zn uptake by the green microalga Chlorella kesslerii. Transporter bound metal ({M-R-cell}) and free ion concentrations ([M2+]) were related to experimentally determined uptake fluxes (J(int)). Although the BLM and FIAM correctly predicted Pb uptake in the absence of competing ions, they failed to predict competitive interactions with Ca2+, likely because of modifications of the algal surface charge and the active nature of Ca2+ transport. Zinc transport is also active; in this case, both the internalization rate constant (k(int)) and the equilibrium constant for the binding of Zn to the transport sites (KZn-Rcell)varied as a function of [Zn2+] in the bulk solution. For this reason, Zn uptake could not be modeled by the steady-state models either in the presence or absence of competitors (Cd and Ca). Furthermore, the role of Cu on Pb and Zn adsorption and uptake could not be predicted by either model because of secondary effects on the algal physiology and membrane permeability. Finally, a 17degreesC reduction in temperature resulted in a two to fivefold decrease in membrane permeability of the metals, an observation that also is unaccounted for by either the FIAM or BLM. This paper emphasizes the limitations of the models in well-controlled laboratory systems with the goal of extrapolating the results to complex environmental systems.

  • Details
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Type
research article
DOI
10.1897/03-149
Author(s)
Hassler, C. S.
Slaveykova, V. I.  
Wilkinson, K. J.
Date Issued

2004

Published in
Environmental Toxicology and Chemistry
Volume

23

Issue

2

Start page

283

End page

291

Subjects

free ion activity model

•

biotic ligand model

•

uptake

•

trace metal

•

competition

•

chlorella-vulgaris

•

lead bioaccumulation

•

copper toxicity

•

metal transport

•

coastal diatom

•

aquatic biota

•

zinc toxicity

•

cadmium

•

accumulation

•

alga

Note

Wilkinson, KJ Univ Geneva, CABE, 30 Quai Ernest Ansermet, CH-1211 Geneva 4, Switzerland Univ Geneva, CABE, CH-1211 Geneva 4, Switzerland

Editorial or Peer reviewed

REVIEWED

Written at

OTHER

EPFL units
GR-SLV  
Available on Infoscience
November 27, 2007
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/14980
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