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Titlebook: Analysis of Biogeochemical Cycling Processes in Walker Branch Watershed; Dale W. Johnson,Robert I. Hook Textbook 1989 Springer-Verlag New

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期刊全稱Analysis of Biogeochemical Cycling Processes in Walker Branch Watershed
影響因子2023Dale W. Johnson,Robert I. Hook
視頻videohttp://file.papertrans.cn/157/156333/156333.mp4
學(xué)科分類Springer Advanced Texts in Life Sciences
圖書封面Titlebook: Analysis of Biogeochemical Cycling Processes in Walker Branch Watershed;  Dale W. Johnson,Robert I. Hook Textbook 1989 Springer-Verlag New
影響因子The Oak Ridge National Laboratory‘s Environmental Sciences Division initiated the Walker Branch Watershed Project on the Oak Ridge Reservation in east Tennessee in 1967, with the support of the U. S. Department of Energy‘s Office of Health and Environmental Research (DOE/OHER), to quantify land-water interactions in a forested landscape. It was designed to focus on three principal objectives: (1) to develop baseline data on unpolluted ecosystems, (2) to contribute to our knowledge of cycling and loss of chemical elements in natural ecosystems, and (3) to provide the understanding necessary for the construction of mathe- matical simulation models for predicting the effects of man‘s activities on forested landscapes. In 1969, the International Biological Program‘s Eastern Deciduous Forest Biome Project was initiated, and Walker Branch Watershed was chosen as one of several sites for intensive research on nutrient cycling and biological productivity. This work was supported by the National Science Foundation (NSF). Over the next 4 years, intensive process-level research on primary productivity, decomposition, and belowground biological processes was coupled with ongoing DOE-supported
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https://doi.org/10.1007/978-3-658-40280-8ical, chemical, and biological processes of their associated watershed. Thus, considering streams only as conduits or agents of geomorphology is, as Hynes (1963) pointed out, a failure to perceive the terrestrial-aquatic linkage that exists between streams and their surrounding watershed.
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Terrestrial Nutrient Cycling,1980a), harvesting (Johnson et al. 1982b), and pollutant deposition, including sulfur (Shriner and Henderson 1978; Johnson et al. 1982a), trace metals (Van Hook et al. 1977), and acid deposition (Richter et al. 1983; Johnson et al. 1985).
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0172-6226 on in east Tennessee in 1967, with the support of the U. S. Department of Energy‘s Office of Health and Environmental Research (DOE/OHER), to quantify land-water interactions in a forested landscape. It was designed to focus on three principal objectives: (1) to develop baseline data on unpolluted e
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