Use of sap flow measurements to validate stomatal functions for mature beech ( Fagus sylvatica) in view of ozone uptake calculations
For a quantitative estimate of the ozone effect on vegetation reliable models for ozone uptake through the stomata are needed. Because of the analogy of ozone uptake and transpiration it is possible to utilize measurements of water loss such as sap flow for quantification of ozone uptake. This techn...
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Veröffentlicht in: | Environmental pollution (1987) 2010-09, Vol.158 (9), p.2954-2963 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | For a quantitative estimate of the ozone effect on vegetation reliable models for ozone uptake through the stomata are needed. Because of the analogy of ozone uptake and transpiration it is possible to utilize measurements of water loss such as sap flow for quantification of ozone uptake. This technique was applied in three beech (
Fagus sylvatica) stands in Switzerland. A canopy conductance was calculated from sap flow velocity and normalized to values between 0 and 1. It represents mainly stomatal conductance as the boundary layer resistance in forests is usually small. Based on this relative conductance, stomatal functions to describe the dependence on light, temperature, vapour pressure deficit and soil moisture were derived using multivariate nonlinear regression. These functions were validated by comparison with conductance values directly estimated from sap flow. The results corroborate the current flux parameterization for beech used in the DO
3SE model.
A method was developed to derive stomatal functions and ozone uptake calculation from sap flow. |
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ISSN: | 0269-7491 1873-6424 |
DOI: | 10.1016/j.envpol.2010.05.028 |