The triple oxygen isotope signature Δ17O in atmospheric CO2, also known as its “17O excess,” has been proposed as a tracer for gross primary production (the gross uptake of CO2 by vegetation through photosynthesis). We present the first global 3-D model simulations for Δ17O in atmospheric CO2 together with a detailed model description and sensitivity analyses. In our 3-D model framework we include the stratospheric source of Δ17O in CO2 and the surface sinks from vegetation, soils, ocean, biomass burning, and fossil fuel combustion. The effect of oxidation of atmospheric CO on Δ17O in CO2 is also included in our model. We estimate that the global mean Δ17O (defined as Δ17O = ln(δ17O+1)−λRL·ln(δ18O+1) with λRL = 0.5229) of CO2 in the lowest ...
In this study, using a three-dimensional (3-D) tracer modeling approach, we simulate the δ18O of atm...
International audienceIn this study, using a three-dimensional (3-D) tracer modeling approach, we si...
In this study, using a three-dimensional (3-D) tracer modeling approach, we simulate the delta(18)O ...
The triple oxygen isotope signature Δ17O in atmospheric CO2, also known as its “17O excess,” has bee...
The triple oxygen isotope signature Δ17O in atmospheric CO2, also known as its “17O excess,” has bee...
The triple oxygen isotope signature Δ17O in atmospheric CO2, also known as its “17O excess,” has bee...
The triple oxygen isotope signature Delta O-17 in atmospheric CO2, also known as its "O-17 excess," ...
The isotope ratios of 16O, 17O and 18O in CO2 are referred to as the triple-oxygen isotope compositi...
The triple oxygen isotope signature Δ17O in atmospheric CO2 is a potential tracer for gross primary ...
The triple oxygen isotope composition of tropospheric CO2 might be a promising new tracer for terres...
In this study, using a three-dimensional (3-D) tracer modeling approach, we simulate the δ18O of atm...
International audienceIn this study, using a three-dimensional (3-D) tracer modeling approach, we si...
In this study, using a three-dimensional (3-D) tracer modeling approach, we simulate the delta(18)O ...
The triple oxygen isotope signature Δ17O in atmospheric CO2, also known as its “17O excess,” has bee...
The triple oxygen isotope signature Δ17O in atmospheric CO2, also known as its “17O excess,” has bee...
The triple oxygen isotope signature Δ17O in atmospheric CO2, also known as its “17O excess,” has bee...
The triple oxygen isotope signature Delta O-17 in atmospheric CO2, also known as its "O-17 excess," ...
The isotope ratios of 16O, 17O and 18O in CO2 are referred to as the triple-oxygen isotope compositi...
The triple oxygen isotope signature Δ17O in atmospheric CO2 is a potential tracer for gross primary ...
The triple oxygen isotope composition of tropospheric CO2 might be a promising new tracer for terres...
In this study, using a three-dimensional (3-D) tracer modeling approach, we simulate the δ18O of atm...
International audienceIn this study, using a three-dimensional (3-D) tracer modeling approach, we si...
In this study, using a three-dimensional (3-D) tracer modeling approach, we simulate the delta(18)O ...