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  • Comparing three approaches in extending biotic ligand models to predict the toxicity of binary metal mixtures (Cu-Ni, Cu-Zn and Cu-Ag) to lettuce (Lactuca sativa L.).

Comparing three approaches in extending biotic ligand models to predict the toxicity of binary metal mixtures (Cu-Ni, Cu-Zn and Cu-Ag) to lettuce (Lactuca sativa L.).

Chemosphere (2014-07-23)
Yang Liu, Martina G Vijver, Willie J G M Peijnenburg
ABSTRAKT

Metals are always found in the environment as mixtures rather than as solitary elements. However, effect models such as biotic ligand models (BLMs) are usually derived for toxicity prediction of single metals. Our study aimed at predicting mixture toxicity of Cu-Ni, Cu-Zn and Cu-Ag combinations to lettuce (Lactucasativa L.) by combining BLMs with three toxicity indexes: the toxic unit, the overall amounts of metal ions bound to the biotic ligands and the toxic equivalency factor. The accumulation of metal ions at the biotic ligands was used to determine the toxic potency of metals alone or in combination. On the basis of parameters derived from toxicity assessment of individual metals, these three extended BLMs appeared to be all acceptable (p<0.0001) in assessing toxicity of diverse metal mixtures. The BLM-based approaches integrated competition between metal ions in assessing mixture toxicity and showed different predictive ability for each metal combination. The outcome of modeling suggested that the combined toxicity depends on the specific components of the metal mixtures. The best developed models assist in identifying the type of underlying toxic mechanisms of diverse metal mixtures in terrestrial plants.

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Sigma-Aldrich
Silver, powder, 5-8 μm, ≥99.9% trace metals basis
Sigma-Aldrich
Nickel, powder, <150 μm, 99.99% trace metals basis
Nickel, foil, 2m coil, thickness 0.0125mm, annealed, 99%
Silver, wire reel, 5m, diameter 0.025mm, as drawn, 99.99%
Copper, rod, 500mm, diameter 4.8mm, as drawn, 99.99+%
Silver, wire reel, 5m, diameter 1.0mm, annealed, 99.99%
Copper, insulated wire, 10m, conductor diameter 0.7mm, insulation thickness 0.01mm, polyurethane insulation
Silver, foil, 100x100mm, thickness 0.15mm, as rolled, 99.95+%
Nickel, foil, 8mm disks, thickness 0.025mm, as rolled, 100%
Nickel, foil, 6mm disks, thickness 0.05mm, as rolled, 99.98%
Nickel, foil, light tested, 100x100mm, thickness 0.05mm, annealed, 99%
Silver, foil, 0.5m coil, thickness 0.0125mm, 99.95+%
Silver, wire reel, 1m, diameter 0.015mm, annealed, 99.99%
Nickel, foil, light tested, 100x100mm, thickness 0.05mm, as rolled, 100%
Copper, rod, 1000mm, diameter 4.8mm, hard, 99.9%
Silver, wire reel, 0.2m, diameter 2.0mm, annealed, 99.99%
Silver, foil, 100x100mm, thickness 0.25mm, as rolled, 99.99+%
Nickel, foil, 8mm disks, thickness 0.05mm, as rolled, 99.99+%
Copper, mesh, 100x100mm, nominal aperture 0.14mm, thickness 0.25mm, wire diameter 0.115mm, 100x100 wires/inch, open area 30.3%, plain weave mesh
Nickel, foil, 8mm disks, thickness 0.008mm, 99.95%
Copper, insulated wire, 20m, conductor diameter 0.5mm, insulation thickness 0.025mm, polyimide insulation, 99.99%
Silver, foil, 0.5m coil, thickness 0.035mm, as rolled, 99.95+%
Silver, foil, 10mm disks, thickness 0.1mm, annealed, 99.95+%
Silver, foil, 10mm disks, thickness 0.005mm, 99.97%
Nickel, foil, 150x150mm, thickness 0.125mm, as rolled, 99.99+%
Silver, foil, 100x100mm, thickness 0.1mm, annealed, 99.95+%
Nickel, foil, light tested, 25x25mm, thickness 0.05mm, annealed, 99%
Nickel, foil, light tested, 25x25mm, thickness 0.03mm, 99.9%
Nickel, foil, light tested, 200x200mm, thickness 0.05mm, as rolled, 99.98%
Copper, insulated wire, 20m, conductor diameter 0.05mm, insulation thickness 0.002mm, 2 micron polyesterimide insulation, 99.9%