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- W2625697453 abstract "Abstract Elevated CO2 (eCO2) reduces transpiration at the leaf level by inducing stomatal closure. However, this water saving effect might be offset at the canopy level by increased leaf area as a consequence of eCO2 fertilization. To investigate this bi-directional effect, we coupled a plant growth and a soil hydrological model. The model performance and the uncertainty in model parameters were checked using a 13 year data set of a Free Air Carbon dioxide Enrichment (FACE) experiment on grassland in Germany. We found a good agreement of simulated and observed data for soil moisture and total above-ground dry biomass (TAB) under ambient CO2 (∼395 ppm) and eCO2 (∼480 ppm). Optima for soil and plant growth model parameters were identified, which can be used in future studies. Our study presents a robust modelling approach for the investigation of effects of eCO2 on grassland biomass and water dynamics. We show an offset of the stomatal water saving effect at the canopy level because of a significant increase in TAB (6.5%, p" @default.
- W2625697453 created "2017-06-23" @default.
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- W2625697453 date "2017-11-01" @default.
- W2625697453 modified "2023-09-24" @default.
- W2625697453 title "A coupled hydrological-plant growth model for simulating the effect of elevated CO 2 on a temperate grassland" @default.
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- W2625697453 doi "https://doi.org/10.1016/j.agrformet.2017.05.017" @default.
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