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Titlebook: Integrated Lake-Watershed Acidification; Ilwas Project Ilwas Project Book 1985 D. Reidel Publishing Company, Dordrecht, Holland 1985 acid.c

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書目名稱Integrated Lake-Watershed Acidification
副標(biāo)題Ilwas Project
編輯Ilwas Project
視頻videohttp://file.papertrans.cn/469/468532/468532.mp4
圖書封面Titlebook: Integrated Lake-Watershed Acidification; Ilwas Project Ilwas Project Book 1985 D. Reidel Publishing Company, Dordrecht, Holland 1985 acid.c
描述ROBERT A. GOLDSTEIN Electric Power Research Institute. Environmental Assessment Department. P.O. Box 10412. Palo Alto. CA 94303. U.S.A. CARL W. CHEN Systech Engineering. Inc .. 3744 Mt. Diablo Boulevard. Suite 101. Lafayette. CA 94549. U.S.A. and STEVEN A. GHERINI Tetra Tech. Inc .. 3746 Mt. Diablo Boulevard. Suite 300. Lafayette. CA 94549. U.S.A. (Received November I, 1984; revised May 14, 1985) Abstract. An integrated, interdisciplinary, intensive study of three forested watersheds in the Adirondack Park region of New York State was started in 1977 to quantify the relationship between the deposition of atmospheric acids and surface water acidity. A general mechanistic theory of lake-watershed acidification that takes into account the production and consumption of acidity by watershed processes, as well as atmospheric inputs of acidity, was developed. This theory is formulated as a mathematical simulation model. Model and data analyses establish the importance of using an integrated ecosystem perspective to assess the vulnerability of surface waters to acidification by acidic deposition. The acid-base status of surface waters is determined by the interaction of many factors: soil,
出版日期Book 1985
關(guān)鍵詞acid; cement; chemistry; deposition; ecosystem; engine; environment; geology; gold; iron; research; simulation;
版次1
doihttps://doi.org/10.1007/978-94-009-5498-4
isbn_softcover978-94-010-8926-5
isbn_ebook978-94-009-5498-4
copyrightD. Reidel Publishing Company, Dordrecht, Holland 1985
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Biogeochemical Influence of Vegetation and Soils in the ILWAS Watersheds,ion. Dominant species in these watersheds are: American beech, sugar maple, red spruce, red maple, and yellow birch. On an areal basis, the watersheds contain 57 to 88% hardwood cover type and range in percent coniferous cover from 28% in Sagamore watershed to 5% in Woods catchment. Mean live basal
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Influence of Geology on Lake Acidification in the ILWAS Watersheds,sition, were found to have very different surface water alkalinities. The chemical differences appear to be due to differences in the unconsolidated surficial materials in the basins. Woods Lake watershed (mean lake outlet pH of 4.7) is covered by thin till with many interspersed bedrock outcrops. T
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Surface Water Chemistry in the ILWAS Basins, differences in base cation supply rates, relative to comparable strong acid input levels. The relatively high proportion of base rich ground water input to Panther Lake results in high pH and alkalinity (annual mean pH 6.2*, alkalinity 147 μeq L.). In contrast, shallow interflow with excess strong
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