This paper describes a new method to derive nitrogen critical loads for vegetation, and its application to The Netherlands. An 'inverted' form of the soil chemical model SMART2 was used to estimate atmospheric nitrogen deposition at the critical conditions for 139 terrestrial vegetation types (associations) occurring in northwestern Europe, using an iterative search procedure. The critical conditions are the lower end of the pH range, and the upper end of the nitrogen availability range for each vegetation type. The critical load is assumed to be the nitrogen deposition that results in the critical conditions. The critical load values were subjected to a sensitivity and uncertainty analysis. Sensitivity analysis showed that the estimated cr...
Field observations and experimental data of effects of nitrogen (N) deposition on plant species dive...
This chapter reports the findings of a Working Group to review the critical loads (CLs) and levels a...
Acidification, eutrophication and desiccation are the most important threats to (semi-)natural ecosy...
This paper describes a new method to derive nitrogen critical loads for vegetation, and its applicat...
An iterative search procedure was used to 'invert' the soil chemical model SMART2. This 'inverted' f...
An iterative search procedure was used to 'invert' the soil chemical model SMART2. This 'inverted' f...
An iterative search procedure was used to 'invert' the soil chemical model SMART2. This 'inverted' f...
A method is presented to simulate nitrogen (N) critical load values per vegetation type in the Nethe...
A method is presented to simulate nitrogen (N) critical load values per vegetation type in the Nethe...
Acidification, eutrophication and desiccation are the most important threats to (semi-)natural ecosy...
Field observations and experimental data of effects of nitrogen (N) deposition on plant species dive...
Field observations and experimental data of effects of nitrogen (N) deposition on plant species dive...
Field observations and experimental data of effects of nitrogen (N) deposition on plant species dive...
This chapter reports the findings of a Working Group to review the critical loads (CLs) and levels a...
Field observations and experimental data of effects of nitrogen (N) deposition oil plant species div...
Field observations and experimental data of effects of nitrogen (N) deposition on plant species dive...
This chapter reports the findings of a Working Group to review the critical loads (CLs) and levels a...
Acidification, eutrophication and desiccation are the most important threats to (semi-)natural ecosy...
This paper describes a new method to derive nitrogen critical loads for vegetation, and its applicat...
An iterative search procedure was used to 'invert' the soil chemical model SMART2. This 'inverted' f...
An iterative search procedure was used to 'invert' the soil chemical model SMART2. This 'inverted' f...
An iterative search procedure was used to 'invert' the soil chemical model SMART2. This 'inverted' f...
A method is presented to simulate nitrogen (N) critical load values per vegetation type in the Nethe...
A method is presented to simulate nitrogen (N) critical load values per vegetation type in the Nethe...
Acidification, eutrophication and desiccation are the most important threats to (semi-)natural ecosy...
Field observations and experimental data of effects of nitrogen (N) deposition on plant species dive...
Field observations and experimental data of effects of nitrogen (N) deposition on plant species dive...
Field observations and experimental data of effects of nitrogen (N) deposition on plant species dive...
This chapter reports the findings of a Working Group to review the critical loads (CLs) and levels a...
Field observations and experimental data of effects of nitrogen (N) deposition oil plant species div...
Field observations and experimental data of effects of nitrogen (N) deposition on plant species dive...
This chapter reports the findings of a Working Group to review the critical loads (CLs) and levels a...
Acidification, eutrophication and desiccation are the most important threats to (semi-)natural ecosy...