After the scientific development of Biotic Ligand Models (BLMs) in recent decades these models are now considered suitable for implementation in regulatory risk assessment of metals in freshwater bodies. The approach has been developed over several years and has been described in many peer-reviewed publications. The original complex BLMs have been applied in prospective risk assessment reports for metals and metal compounds and are also recommended as suitable concepts for the evaluation of monitoring data in the context of the European Water Framework Directive. Currently, several user-friendly BLM-based bioavailability software tools are available for assessing the aquatic toxicity of a limited number of metals (mainly copper, nickel, and...
Since the early 2000s, biotic ligand models and related constructs have been a dominant paradigm for...
Since the early 2000s, biotic ligand models and related constructs have been a dominant paradigm for...
Environmental Context. The chemical speciation of trace metals greatly influences their biological e...
After the scientific development of biotic ligand models (BLMs) in recent decades, these models are ...
After the scientific development of biotic ligand models (BLMs) in recent decades, these models are ...
During recent years, the biotic ligand model (BLM) has been proposed as a tool to evaluate quantitat...
During recent years, the biotic ligand model (BLM) has been proposed as a tool to evaluate quantitat...
During recent years, the biotic ligand model (BLM) has been proposed as a tool to evaluate quantitat...
Since the early 2000s, biotic ligand models and related constructs have been a dominant paradigm for...
AbstractThe biotic ligand model (BLM) is a numerical approach that couples chemical speciation calcu...
Biotic Ligand Models (BLMs) have been developed for a number of metals (e.g. Cu, Zn, Ni), in order t...
Biotic Ligand Models (BLMs) have been developed for a number of metals (e.g. Cu, Zn, Ni), in order t...
Biotic Ligand Models (BLMs) have been developed for a number of metals (e.g. Cu, Zn, Ni), in order t...
This thesis was submitted for the degree of Doctor of Philosophy and was awarded by Brunel Universit...
AbstractThe biotic ligand model (BLM) is a numerical approach that couples chemical speciation calcu...
Since the early 2000s, biotic ligand models and related constructs have been a dominant paradigm for...
Since the early 2000s, biotic ligand models and related constructs have been a dominant paradigm for...
Environmental Context. The chemical speciation of trace metals greatly influences their biological e...
After the scientific development of biotic ligand models (BLMs) in recent decades, these models are ...
After the scientific development of biotic ligand models (BLMs) in recent decades, these models are ...
During recent years, the biotic ligand model (BLM) has been proposed as a tool to evaluate quantitat...
During recent years, the biotic ligand model (BLM) has been proposed as a tool to evaluate quantitat...
During recent years, the biotic ligand model (BLM) has been proposed as a tool to evaluate quantitat...
Since the early 2000s, biotic ligand models and related constructs have been a dominant paradigm for...
AbstractThe biotic ligand model (BLM) is a numerical approach that couples chemical speciation calcu...
Biotic Ligand Models (BLMs) have been developed for a number of metals (e.g. Cu, Zn, Ni), in order t...
Biotic Ligand Models (BLMs) have been developed for a number of metals (e.g. Cu, Zn, Ni), in order t...
Biotic Ligand Models (BLMs) have been developed for a number of metals (e.g. Cu, Zn, Ni), in order t...
This thesis was submitted for the degree of Doctor of Philosophy and was awarded by Brunel Universit...
AbstractThe biotic ligand model (BLM) is a numerical approach that couples chemical speciation calcu...
Since the early 2000s, biotic ligand models and related constructs have been a dominant paradigm for...
Since the early 2000s, biotic ligand models and related constructs have been a dominant paradigm for...
Environmental Context. The chemical speciation of trace metals greatly influences their biological e...