High Elevation Ecosystem Responses to Atmospheric Deposition of Nitrogen in the Colorado Rocky Mountains, USA

Baron JS, Lafrancois BM, Nydick KR, Wolfe AP. 2005. High Elevation Ecosystem Responses to Atmospheric Deposition of Nitrogen in the Colorado Rocky Mountains, USA

The rapid rise in human populations and technological advances since 1850 have caused changes in several global scale biogeochemical cycles, including the global nitrogen cycle. The Haber-Bosch process to convert atmospheric nitrogen gas (N2) to ammonia (NH3) is now almost universally used to fertilize food crops. The production of nitrogen oxides (NOx) from combustion for industrial purposes, energy production, and transportation is the other large source of reactive nitrogen to the atmosphere. Combined, these two human alterations have added approximately 140 Tg N yr1 to the global reactive N pool, a value that now exceeds natural source contributions of about 100 Tg N yr1 (Galloway and Cowling 2002).

Type
Unpublished Report
Authors
Baron, Jill; Lafrancois, Brenda; Nydick, Koren; Wolfe, Alexander
Date of Issue
2005-01
Units
ROMO
Keywords
Acidification, Eutrophication, Forests, Lakes, Nitrogen, Rocky Mountains

Browse the catalog