This publication briefly reviews the impact of increasing atmospheric carbon dioxide and tropospheric ozone on global climate change, and the response of forest trees to these atmospheric pollutants and their interactions; points out the need for large-scale field experiments to evaluate the response of plants to these environmental stresses; and describes the development, operational parameters, experimental methods, and the potential research scope of the aspen Free-air Carbon dioxide and ozone Enrichment (FACE) project
Rising atmospheric carbon dioxide (CO2) concentration ([CO 2]) could alter terrestrial carbon (C) cy...
Atmospheric CO2 is rising rapidly, and options for slowing the CO2 rise are politically charged as t...
The free-air CO2 enrichment (FACE) experiment in the Duke Forest tests how a forest will respond to ...
The FACTS II (ASPEN FACE) infrastructure including 12 FACE [Free-Air Carbon dioxide Enrichment] ring...
The objective of this research was to determine the functional responses of a cultivated, agro-fores...
Many uncertainties remain regarding how climate change will alter the structure and function of fore...
The FACTS II (Aspen FACE) infrastructure including 12 FACE rings, a central control facility, a cent...
1. The impacts of elevated atmospheric CO2 and/or O3 have been examined over 4 years using an open-a...
• Concentrations of atmospheric CO2 and tropospheric ozone (O3) are rising concurrently in the atmos...
Forest ecosystems constitute an important part of the planet's land cover. Understanding their excha...
Globally, the mean atmospheric carbon dioxide level has risen steadily since pre-industrial times, w...
• The Rhinelander free-air CO2 enrichment (FACE) experiment is designed to understand ecosystem resp...
The International Panel of Climate Change (IPCC) has concluded that the greenhouse gases, carbon dio...
The aspen free-air CO2 and O3 enrichment (FACTS II-FACE) study in Rhinelander, Wisconsin, USA, is de...
181 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2008.Forests are an integral part ...
Rising atmospheric carbon dioxide (CO2) concentration ([CO 2]) could alter terrestrial carbon (C) cy...
Atmospheric CO2 is rising rapidly, and options for slowing the CO2 rise are politically charged as t...
The free-air CO2 enrichment (FACE) experiment in the Duke Forest tests how a forest will respond to ...
The FACTS II (ASPEN FACE) infrastructure including 12 FACE [Free-Air Carbon dioxide Enrichment] ring...
The objective of this research was to determine the functional responses of a cultivated, agro-fores...
Many uncertainties remain regarding how climate change will alter the structure and function of fore...
The FACTS II (Aspen FACE) infrastructure including 12 FACE rings, a central control facility, a cent...
1. The impacts of elevated atmospheric CO2 and/or O3 have been examined over 4 years using an open-a...
• Concentrations of atmospheric CO2 and tropospheric ozone (O3) are rising concurrently in the atmos...
Forest ecosystems constitute an important part of the planet's land cover. Understanding their excha...
Globally, the mean atmospheric carbon dioxide level has risen steadily since pre-industrial times, w...
• The Rhinelander free-air CO2 enrichment (FACE) experiment is designed to understand ecosystem resp...
The International Panel of Climate Change (IPCC) has concluded that the greenhouse gases, carbon dio...
The aspen free-air CO2 and O3 enrichment (FACTS II-FACE) study in Rhinelander, Wisconsin, USA, is de...
181 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2008.Forests are an integral part ...
Rising atmospheric carbon dioxide (CO2) concentration ([CO 2]) could alter terrestrial carbon (C) cy...
Atmospheric CO2 is rising rapidly, and options for slowing the CO2 rise are politically charged as t...
The free-air CO2 enrichment (FACE) experiment in the Duke Forest tests how a forest will respond to ...