Multi-surface models are widely used to assess the potential ecotoxicological risk in metal-contaminated soils. Their accuracy in predicting metal speciation in soils with low metal levels was not yet tested. Now highly sensitive analytical techniques are available to experimentally validate such models at low concentration levels. The objective of this study was to test the accuracy of a multi-surface model to predict the Zn<sup>2+</sup> concentration and to improve our understanding of Zn bioavailability in low-Zn soils. High-Zn soils were included as controls. Model parameters were determined independently on the basis of earlier peer-reviewed publications. Model output was validated against free Zn<sup>2+</sup> concentrations determined...
The development of speciation and surface complexation models to calculate partitioning of metals be...
To provide the basis for an improved quantitative risk assessment of heavy metals in the environmen...
The development of speciation and surface complexation models to calculate partitioning of metals be...
Multi-surface models are widely used to assess the potential ecotoxicological risk in metal-contamin...
Multi-surface models are widely used to assess the potential ecotoxicological risk in metal-contamin...
<strong>Abstract of the PhD thesis entitled “Chemical and biological rhizosphere </strong> <st...
<p><strong>Abstract of the PhD thesis entitled “Chemical and biological rhizosphere </strong></p> <p...
Cadmium and zinc were added at 3 and 300 mg kg−1, respectively, to 23 soils and incubated at 16°C an...
Knowledge on organic matter (OM) concentration and composition is of major importance for predicting...
Knowledge on organic matter (OM) concentration and composition is of major importance for predicting...
Aim Our aim was to improve the prediction of Zn bioavailability to wheat grown on low-Zn soils. The ...
Soils with metal concentrations above regulatory guidelines (e.g., Canadian Soil Quality Guidelines)...
Aim Our aim was to improve the prediction of Zn bioavailability to wheat grown on low-Zn soils. The ...
Copyright © 2002 American Chemical SocietyKnowledge of trace metal speciation in soil pore waters is...
<p> </p><p>To provide the basis for an improved quantitative risk assessment of he...
The development of speciation and surface complexation models to calculate partitioning of metals be...
To provide the basis for an improved quantitative risk assessment of heavy metals in the environmen...
The development of speciation and surface complexation models to calculate partitioning of metals be...
Multi-surface models are widely used to assess the potential ecotoxicological risk in metal-contamin...
Multi-surface models are widely used to assess the potential ecotoxicological risk in metal-contamin...
<strong>Abstract of the PhD thesis entitled “Chemical and biological rhizosphere </strong> <st...
<p><strong>Abstract of the PhD thesis entitled “Chemical and biological rhizosphere </strong></p> <p...
Cadmium and zinc were added at 3 and 300 mg kg−1, respectively, to 23 soils and incubated at 16°C an...
Knowledge on organic matter (OM) concentration and composition is of major importance for predicting...
Knowledge on organic matter (OM) concentration and composition is of major importance for predicting...
Aim Our aim was to improve the prediction of Zn bioavailability to wheat grown on low-Zn soils. The ...
Soils with metal concentrations above regulatory guidelines (e.g., Canadian Soil Quality Guidelines)...
Aim Our aim was to improve the prediction of Zn bioavailability to wheat grown on low-Zn soils. The ...
Copyright © 2002 American Chemical SocietyKnowledge of trace metal speciation in soil pore waters is...
<p> </p><p>To provide the basis for an improved quantitative risk assessment of he...
The development of speciation and surface complexation models to calculate partitioning of metals be...
To provide the basis for an improved quantitative risk assessment of heavy metals in the environmen...
The development of speciation and surface complexation models to calculate partitioning of metals be...