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Titlebook: Interactions Between Biosphere, Atmosphere and Human Land Use in the Amazon Basin; Laszlo Nagy,Bruce R. Forsberg,Paulo Artaxo Book 2016 Sp

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Interactions Between Biosphere, Atmosphere and Human Land Use in the Amazon Basin978-3-662-49902-3Series ISSN 0070-8356 Series E-ISSN 2196-971X
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Laszlo Nagy,Bruce R. Forsberg,Paulo ArtaxoProvides the knowledge required for informed decisions on land use and development in Amazonia.Offers perspectives for future research.Richly illustrated throughout.Includes supplementary material:
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Ecological Studieshttp://image.papertrans.cn/i/image/470435.jpg
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The Hydrology and Energy Balance of the Amazon Basinns, particularly in the agricultural frontier of southeastern Amazonia. In the future, increasing atmospheric greenhouse gases are expected to increase temperatures, drought frequency, and drought intensity in the Amazon, causing further changes to the cycling of energy and water in the basin.
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The Amazon Carbon Balance: An Evaluation of Methods and Resultsights have provided a more direct measurement over the Amazon basin area. Flights need to be made several times a year, and the profiles may be compared with concentrations measured in the incoming air from the Atlantic Ocean. Such measurements demonstrate that the vegetation itself is a sink in a n
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Aquatic Ecosystemside emission. Combination of updated inundated areas and gas transfer velocities with numerous new measurements of carbon dioxide concentrations and fluxes from streams, rivers, lakes, reservoirs, and wetlands results in an estimate up to approximately 1800 Tg C year. for the whole lowland Amazon ba
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Ecosystem–Atmosphere Exchanges of CO2 in Dense and Open ‘Terra Firme’ Rainforests in Brazilian Amazobility of carbon fluxes inferred from the eddy covariance towers. We analyse seasonal patterns of photosynthetic capacity and ecosystem productivity in response to adaptive mechanisms (leaf flush and litterfall seasonality) and environmental conditions, such as direct and diffuse radiation, temperat
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Recent Changes in Amazon Forest Biomass and Dynamicsed on-the-ground measurements, coupled with targeted experiments and physiological measurements, are key to making significant progress towards understanding changes in forest biodiversity and carbon.
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