The aspen free-air CO 2 and O 3 enrichment (FACTS II–FACE) study in Rhinelander, Wisconsin, USA, is designed to understand the mechanisms by which young northern deciduous forest ecosystems respond to elevated atmospheric carbon dioxide (CO 2 ) and elevated tropospheric ozone (O 3 ) in a replicated, factorial, field experiment. Soil respiration is the second largest flux of carbon (C) in these ecosystems, and the objective of this study was to understand how soil respiration responded to the experimental treatments as these fast-growing stands of pure aspen and birch + aspen approached maximum leaf area. Rates of soil respiration were typically lowest in the elevated O 3 treatment. Elevated CO 2 significantly stimulated soil respiration (8–...
Rising atmospheric carbon dioxide (CO2) concentration ([CO 2]) could alter terrestrial carbon (C) cy...
As human activity continues to increase CO 2 and O 3 , broad expanses of north temperate forests wil...
As human activity continues to increase CO2 and O3, broad expanses of north temperate forests will b...
The aspen free-air CO2 and O3 enrichment (FACTS II-FACE) study in Rhinelander, Wisconsin, USA, is de...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/65617/1/j.1469-8137.2008.02564.x.pd
Rising atmospheric CO 2 may stimulate future forest productivity, possibly increasing carbon storage...
• The Rhinelander free-air CO2 enrichment (FACE) experiment is designed to understand ecosystem resp...
We repeatedly sampled the surface mineral soil (0–20 cm depth) in three northern temperate forest co...
Rising atmospheric CO2 may stimulate future forest productivity, possibly increasing carbon storage ...
Anthropogenic O3 and CO2-induced declines in soil N availability could counteract greater plant grow...
The rapidly rising concentration of atmospheric CO2 has the potential to alter forest and global car...
Three young northern temperate forest communities in the north‐central United States were exposed to...
1. The impacts of elevated atmospheric CO 2 and/or O 3 have been examined over 4 years using an op...
Many uncertainties remain regarding how climate change will alter the structure and function of fore...
The accumulation of anthropogenic CO 2 in the Earth’s atmosphere, and hence the rate of climate war...
Rising atmospheric carbon dioxide (CO2) concentration ([CO 2]) could alter terrestrial carbon (C) cy...
As human activity continues to increase CO 2 and O 3 , broad expanses of north temperate forests wil...
As human activity continues to increase CO2 and O3, broad expanses of north temperate forests will b...
The aspen free-air CO2 and O3 enrichment (FACTS II-FACE) study in Rhinelander, Wisconsin, USA, is de...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/65617/1/j.1469-8137.2008.02564.x.pd
Rising atmospheric CO 2 may stimulate future forest productivity, possibly increasing carbon storage...
• The Rhinelander free-air CO2 enrichment (FACE) experiment is designed to understand ecosystem resp...
We repeatedly sampled the surface mineral soil (0–20 cm depth) in three northern temperate forest co...
Rising atmospheric CO2 may stimulate future forest productivity, possibly increasing carbon storage ...
Anthropogenic O3 and CO2-induced declines in soil N availability could counteract greater plant grow...
The rapidly rising concentration of atmospheric CO2 has the potential to alter forest and global car...
Three young northern temperate forest communities in the north‐central United States were exposed to...
1. The impacts of elevated atmospheric CO 2 and/or O 3 have been examined over 4 years using an op...
Many uncertainties remain regarding how climate change will alter the structure and function of fore...
The accumulation of anthropogenic CO 2 in the Earth’s atmosphere, and hence the rate of climate war...
Rising atmospheric carbon dioxide (CO2) concentration ([CO 2]) could alter terrestrial carbon (C) cy...
As human activity continues to increase CO 2 and O 3 , broad expanses of north temperate forests wil...
As human activity continues to increase CO2 and O3, broad expanses of north temperate forests will b...