Using data from 28 flux measurement sites, we performed an analysis of the relationship between annual net ecosystem exchange (NEE) and the length of the carbon uptake period (CUP) (the number of days when the ecosystem is a net carbon sink). The observations suggest a linear correlation between the two quantities. The change in annual carbon exchange per day of the CUP differs significantly between deciduous and evergreen vegetation types. The sites containing vegetation with short-lived foliage (less than 1 year) have higher carbon uptake and respiration rates than evergreen vegetation. The ratio between mean daily carbon exchange rates during carbon uptake and release periods is relatively invariant (2.73 ± 1.08) across different vegetat...
Abstract in Undetermined Six to nine years of net ecosystem carbon exchange (NEE) data from forests ...
Using 139 flux studies, we addressed the variability of net ecosystem surface assimilation (A(smax))...
Net ecosystem exchange of carbon (FNEE) was estimated for a temperate broadleaf, evergreen eucalypt ...
Using data from 28 flux measurement sites, we performed an analysis of the relationship between annu...
As length and timing of the growing season are major factors explaining differences in carbon exchan...
Understanding feedbacks of ecosystem carbon sequestration to climate change is an urgent step in dev...
Understanding the feedback of ecosystem carbon uptake on climate change at temporal and spatial scal...
This paper discusses the advantages and disadvantages of the different methods that separate net eco...
The quantification of net ecosystem exchange (NEE) of carbon dioxide over regions, continents, or th...
<div><p>Carbon Flux Phenology (CFP) can affect the interannual variation in Net Ecosystem Exchange (...
Carbon Flux Phenology (CFP) can affect the interannual variation in Net Ecosystem Exchange (NEE) of ...
[ 1] We analyzed measurements of net ecosystem exchange of CO2 ( NEE) over 15 European forests ( the...
<p>A) The coefficient of determination (<i>R</i><sup>2</sup>) between Net Ecosystem Exchange (NEE)-d...
Terrestrial ecosystem plays a critical role in the global carbon cycle and climate system. Therefore...
Differences in the seasonal pattern of assimilatory and respiratory processes are responsible for di...
Abstract in Undetermined Six to nine years of net ecosystem carbon exchange (NEE) data from forests ...
Using 139 flux studies, we addressed the variability of net ecosystem surface assimilation (A(smax))...
Net ecosystem exchange of carbon (FNEE) was estimated for a temperate broadleaf, evergreen eucalypt ...
Using data from 28 flux measurement sites, we performed an analysis of the relationship between annu...
As length and timing of the growing season are major factors explaining differences in carbon exchan...
Understanding feedbacks of ecosystem carbon sequestration to climate change is an urgent step in dev...
Understanding the feedback of ecosystem carbon uptake on climate change at temporal and spatial scal...
This paper discusses the advantages and disadvantages of the different methods that separate net eco...
The quantification of net ecosystem exchange (NEE) of carbon dioxide over regions, continents, or th...
<div><p>Carbon Flux Phenology (CFP) can affect the interannual variation in Net Ecosystem Exchange (...
Carbon Flux Phenology (CFP) can affect the interannual variation in Net Ecosystem Exchange (NEE) of ...
[ 1] We analyzed measurements of net ecosystem exchange of CO2 ( NEE) over 15 European forests ( the...
<p>A) The coefficient of determination (<i>R</i><sup>2</sup>) between Net Ecosystem Exchange (NEE)-d...
Terrestrial ecosystem plays a critical role in the global carbon cycle and climate system. Therefore...
Differences in the seasonal pattern of assimilatory and respiratory processes are responsible for di...
Abstract in Undetermined Six to nine years of net ecosystem carbon exchange (NEE) data from forests ...
Using 139 flux studies, we addressed the variability of net ecosystem surface assimilation (A(smax))...
Net ecosystem exchange of carbon (FNEE) was estimated for a temperate broadleaf, evergreen eucalypt ...