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Titlebook: Biogeochemistry of Forested Catchments in a Changing Environment; A German Case Study Egbert Matzner Book 2004 Springer-Verlag Berlin Heide

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發(fā)表于 2025-3-21 18:52:57 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
期刊全稱Biogeochemistry of Forested Catchments in a Changing Environment
期刊簡稱A German Case Study
影響因子2023Egbert Matzner
視頻videohttp://file.papertrans.cn/188/187044/187044.mp4
發(fā)行地址Provides an up-to-date synthesis of concepts, methods and results of forest ecosystem research.Presents unique data covering both long term flux measurements and short term process information.Include
學(xué)科分類Ecological Studies
圖書封面Titlebook: Biogeochemistry of Forested Catchments in a Changing Environment; A German Case Study Egbert Matzner Book 2004 Springer-Verlag Berlin Heide
影響因子Forest ecosystems represent a major type ofland use in Germanyand in Europe. They provide a number of functions, or ecosystem services, beneficial to humans, namely biomass production, regulation of the water- and energy cyde, C and N sequestration, erosion control, recreation, and they act as habitat for numerous species. The stability of forest ecosystems in Europe as influenced by the deposition of air pollutants has been a matter of debate for more than 20 years. Besides atmospheric deposition, other environmental conditions affecting forest ecosystems, such as temperature, CO content of the atmosphere 2 and precipitation, have significantly changed in the past and continue to change in the future. Quantifying and predicting the effects of these changes on ecosys- tem functioning are achallenge to ecosystem research and also a requirement to establish sustainable use of forest ecosystems in the future. This book summarizes results of long-term, interdisciplinary ecosystem research conducted in two forested catchments and coordinated at the Bayreuth Institute of Terrestrial Ecosystem Research (BIT?K), University of Bayreuth, Germany. It does not aim to summarize all the research
Pindex Book 2004
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Introduction to ‘Connecting Peace and War’imate change as a global and hemispherical phenomenon (macro-scale) is an example. On smaller scales, the atmosphere interacts intensively with terrestrial ecosystems, and thus plays a key role in ecosystem processes. An important example is the input of liquid water through precipitation, which is
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Introduction on the ‘State of the State’logy. While leaves and their stomata are the causal agents of stand transpiration and canopy conductance, and their position and orientation are known to be decisive for their gas-exchange contribution, the spatial distribution pattern of leaves inside a forest cannot yet be considered in stand gas-
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,Kalkulation mit Deckungsbeitr?gen, release of terrestrial ecosystems. Whether temperate ecosystems will act as sources or sinks of carbon under altered environmental conditions depends on the way in which the balance of these processes is shifted in the short term, and in the long term. Soils of forest ecosystems are generally regar
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https://doi.org/10.1007/978-3-658-05199-0 if the assimilation is larger than the respiration. Alternatively, increasing temperatures due to climate change (IPCC 2001) may be a reason for increasing respiratory fluxes. While low-altitude spruce sites in Germany are significant carbon sinks (e.g. Bernhofer et al. 2003), sites above 600 m a.s
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Elmar Br?kling,J?rg Lux,Tobias Udingnteith 1980) which is based on the energy balance equation. This method describes the interaction with the surface by a resistance approach and relies on the constant flux layer approach which is equivalent to the classical K approach (see, e.g., Stull 1988; Kramm 1995). The PM method is mainly forc
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