The high elevation Front Range ecosystems of Rocky Mountain National Park are extremely vulnerable to acidification from atmospheric deposition. Throughout the Rocky Mountain West increasing urbanization, development and combustion of fossil fuels, and mining and smelting of ores may combine to prov
Effects of acid deposition on watershed ecosystems of national parks in the great lakes basin
โ Scribed by R. Stottlemyer; Darcy Rutkowski; David Toczydlowski
- Publisher
- Springer
- Year
- 1989
- Tongue
- English
- Weight
- 78 KB
- Volume
- 12
- Category
- Article
- ISSN
- 0167-6369
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โฆ Synopsis
Legally protected national parks provide an appropriate substrate for essential long-term study of ecosystem structure and function, and for detecting trends in natural and human-induced stress. The absence of unplanned site manipulation in such areas is especially valuable for such research. Our present research has two major components. The first is the long-term ecosystem-level study of the effects of atmospheric contaminants on ecosystem processes. The overall objective is to evaluate ecosystem aquatic/terrestrial linkages and their role in establishing aquatic ecosystem sensitivity to anthropic atmospheric inputs. Four watershed/lake ecosystems, representative of much of the region's diversity, are under study. Two mature boreal sites on Isle Royale are characterized by first-order perennial surface stream input and lake outflow. Two additional mainland northern hardwood sites, one with shallow soils and one with soils derived from glacial till, are characterized by sensitive aquatic systems. One site is in a private reserve and the other in Pictured Rocks National Lakeshore. Surface outflow is gaged by Parshall flume and stage height recorder. Meteorological stations record variables for estimating evapotranspiration. One-tenth ha plots have been established in all watersheds and three sites have had intensive study of precipitation modification by canopy and forest soil. Five-year mean maximum and minimum lake pH varies from 6.
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