Biogeochemical cycling of carbon, water, energy, trace gases, and aerosols in Amazonia: The LBA-EUSTACH experiments

Detalhes bibliográficos
Autor(a) principal: Andreae, M. O.
Data de Publicação: 2002
Outros Autores: Artaxo, P. O., Brandão, C., Ruivo, Maria de Lourdes Pinheiro, Waterloo, M. J.
Tipo de documento: Artigo
Idioma: eng
Título da fonte: Repositório Institucional do MPEG
Texto Completo: http://repositorio.museu-goeldi.br/handle/mgoeldi/1119
Resumo: The biogeochemical cycling of carbon, water, energy, aerosols, and trace gases in the Amazon Basin was investigated in the project European Studies on Trace Gases and Atmospheric Chemistry as a Contribution to the Large-Scale Biosphere-Atmosphere Experiment in Amazonia (LBA-EUSTACH). We present an overview of the design of the project, the measurement sites and methods, and the meteorological conditions during the experiment. The main results from LBA-EUSTACH are: Eddy correlation studies in three regions of the Amazon Basin consistently show a large net carbon sink in the undisturbed rain forest. Nitrogen emitted by forest soils is subject to chemical cycling within the canopy space, which results in re-uptake of a large fraction of soilderived NOx by the vegetation. The forest vegetation is both a sink and a source of volatile organic compounds, with net deposition being particularly important for partially oxidized organics. Concentrations of aerosol and cloud condensation nuclei (CCN) are highly seasonal, with a pronounced maximum in the dry (burning) season. High CCN concentrations from biomass burning have a pronounced impact on cloud microphysics, rainfall production mechanisms, and probably on large-scale climate dynamics.
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spelling 2017-01-25T14:29:24Z2017-01-252017-01-25T14:29:24Z2002ANDREAE, M. O.; ARTAXO, P.; BRANDÃO, C.; CARSWELL, F. E.; CICCIOLI, P.; DA COSTA, A. L.; CULF, A. D.; ESTEVES, J. L.; GASH, J. H. C.; GRACE, J.; KABAT, P.; LELIEVELD, J.; MALHI, Y.; MANZI, A. O.; MEIXNER, F. X.; NOBRE, A. D.; NOBRE, C.; RUIVO, Maria de Lourdes Pinheiro; SILVA-DIAS, M. A.; STEFANI, P.; VALENTINI, R.; VON JOUANNE, J.; WATERLOO, M. J. Biogeochemical cycling of carbon, water, energy, trace gases, and aerosols in Amazonia: The LBA-EUSTACH experiments. Journal of Geophysical Research, v. 107, n. D20, LBA 33.1-LBA 33.25] (2 p.1/4), doi:10.1029/2001JD000524, 2002.0148-0227http://repositorio.museu-goeldi.br/handle/mgoeldi/1119The biogeochemical cycling of carbon, water, energy, aerosols, and trace gases in the Amazon Basin was investigated in the project European Studies on Trace Gases and Atmospheric Chemistry as a Contribution to the Large-Scale Biosphere-Atmosphere Experiment in Amazonia (LBA-EUSTACH). We present an overview of the design of the project, the measurement sites and methods, and the meteorological conditions during the experiment. The main results from LBA-EUSTACH are: Eddy correlation studies in three regions of the Amazon Basin consistently show a large net carbon sink in the undisturbed rain forest. Nitrogen emitted by forest soils is subject to chemical cycling within the canopy space, which results in re-uptake of a large fraction of soilderived NOx by the vegetation. The forest vegetation is both a sink and a source of volatile organic compounds, with net deposition being particularly important for partially oxidized organics. Concentrations of aerosol and cloud condensation nuclei (CCN) are highly seasonal, with a pronounced maximum in the dry (burning) season. High CCN concentrations from biomass burning have a pronounced impact on cloud microphysics, rainfall production mechanisms, and probably on large-scale climate dynamics.The biogeochemical cycling of carbon, water, energy, aerosols, and trace gases in the Amazon Basin was investigated in the project European Studies on Trace Gases and Atmospheric Chemistry as a Contribution to the Large-Scale Biosphere-Atmosphere Experiment in Amazonia (LBA-EUSTACH). We present an overview of the design of the project, the measurement sites and methods, and the meteorological conditions during the experiment. The main results from LBA-EUSTACH are: Eddy correlation studies in three regions of the Amazon Basin consistently show a large net carbon sink in the undisturbed rain forest. Nitrogen emitted by forest soils is subject to chemical cycling within the canopy space, which results in re-uptake of a large fraction of soilderived NOx by the vegetation. The forest vegetation is both a sink and a source of volatile organic compounds, with net deposition being particularly important for partially oxidized organics. Concentrations of aerosol and cloud condensation nuclei (CCN) are highly seasonal, with a pronounced maximum in the dry (burning) season. High CCN concentrations from biomass burning have a pronounced impact on cloud microphysics, rainfall production mechanisms, and probably on large-scale climate dynamics.engMuseu Paraense Emilio GoeldiMPEGBrasilJournal of Geophysical ResearchCNPQ::CIENCIAS AGRARIASBiogeochemicalCycling of carbonBiogeochemical cycling of carbon, water, energy, trace gases, and aerosols in Amazonia: The LBA-EUSTACH experimentsinfo:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/article107125Andreae, M. O.Artaxo, P. O.Brandão, C.Ruivo, Maria de Lourdes PinheiroWaterloo, M. 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dc.title.pt_BR.fl_str_mv Biogeochemical cycling of carbon, water, energy, trace gases, and aerosols in Amazonia: The LBA-EUSTACH experiments
title Biogeochemical cycling of carbon, water, energy, trace gases, and aerosols in Amazonia: The LBA-EUSTACH experiments
spellingShingle Biogeochemical cycling of carbon, water, energy, trace gases, and aerosols in Amazonia: The LBA-EUSTACH experiments
Andreae, M. O.
CNPQ::CIENCIAS AGRARIAS
Biogeochemical
Cycling of carbon
title_short Biogeochemical cycling of carbon, water, energy, trace gases, and aerosols in Amazonia: The LBA-EUSTACH experiments
title_full Biogeochemical cycling of carbon, water, energy, trace gases, and aerosols in Amazonia: The LBA-EUSTACH experiments
title_fullStr Biogeochemical cycling of carbon, water, energy, trace gases, and aerosols in Amazonia: The LBA-EUSTACH experiments
title_full_unstemmed Biogeochemical cycling of carbon, water, energy, trace gases, and aerosols in Amazonia: The LBA-EUSTACH experiments
title_sort Biogeochemical cycling of carbon, water, energy, trace gases, and aerosols in Amazonia: The LBA-EUSTACH experiments
author Andreae, M. O.
author_facet Andreae, M. O.
Artaxo, P. O.
Brandão, C.
Ruivo, Maria de Lourdes Pinheiro
Waterloo, M. J.
author_role author
author2 Artaxo, P. O.
Brandão, C.
Ruivo, Maria de Lourdes Pinheiro
Waterloo, M. J.
author2_role author
author
author
author
dc.contributor.author.fl_str_mv Andreae, M. O.
Artaxo, P. O.
Brandão, C.
Ruivo, Maria de Lourdes Pinheiro
Waterloo, M. J.
dc.subject.cnpq.fl_str_mv CNPQ::CIENCIAS AGRARIAS
topic CNPQ::CIENCIAS AGRARIAS
Biogeochemical
Cycling of carbon
dc.subject.por.fl_str_mv Biogeochemical
Cycling of carbon
description The biogeochemical cycling of carbon, water, energy, aerosols, and trace gases in the Amazon Basin was investigated in the project European Studies on Trace Gases and Atmospheric Chemistry as a Contribution to the Large-Scale Biosphere-Atmosphere Experiment in Amazonia (LBA-EUSTACH). We present an overview of the design of the project, the measurement sites and methods, and the meteorological conditions during the experiment. The main results from LBA-EUSTACH are: Eddy correlation studies in three regions of the Amazon Basin consistently show a large net carbon sink in the undisturbed rain forest. Nitrogen emitted by forest soils is subject to chemical cycling within the canopy space, which results in re-uptake of a large fraction of soilderived NOx by the vegetation. The forest vegetation is both a sink and a source of volatile organic compounds, with net deposition being particularly important for partially oxidized organics. Concentrations of aerosol and cloud condensation nuclei (CCN) are highly seasonal, with a pronounced maximum in the dry (burning) season. High CCN concentrations from biomass burning have a pronounced impact on cloud microphysics, rainfall production mechanisms, and probably on large-scale climate dynamics.
publishDate 2002
dc.date.issued.fl_str_mv 2002
dc.date.accessioned.fl_str_mv 2017-01-25T14:29:24Z
dc.date.available.fl_str_mv 2017-01-25
2017-01-25T14:29:24Z
dc.type.status.fl_str_mv info:eu-repo/semantics/publishedVersion
dc.type.driver.fl_str_mv info:eu-repo/semantics/article
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dc.identifier.citation.fl_str_mv ANDREAE, M. O.; ARTAXO, P.; BRANDÃO, C.; CARSWELL, F. E.; CICCIOLI, P.; DA COSTA, A. L.; CULF, A. D.; ESTEVES, J. L.; GASH, J. H. C.; GRACE, J.; KABAT, P.; LELIEVELD, J.; MALHI, Y.; MANZI, A. O.; MEIXNER, F. X.; NOBRE, A. D.; NOBRE, C.; RUIVO, Maria de Lourdes Pinheiro; SILVA-DIAS, M. A.; STEFANI, P.; VALENTINI, R.; VON JOUANNE, J.; WATERLOO, M. J. Biogeochemical cycling of carbon, water, energy, trace gases, and aerosols in Amazonia: The LBA-EUSTACH experiments. Journal of Geophysical Research, v. 107, n. D20, LBA 33.1-LBA 33.25] (2 p.1/4), doi:10.1029/2001JD000524, 2002.
dc.identifier.uri.fl_str_mv http://repositorio.museu-goeldi.br/handle/mgoeldi/1119
dc.identifier.issn.pt_BR.fl_str_mv 0148-0227
identifier_str_mv ANDREAE, M. O.; ARTAXO, P.; BRANDÃO, C.; CARSWELL, F. E.; CICCIOLI, P.; DA COSTA, A. L.; CULF, A. D.; ESTEVES, J. L.; GASH, J. H. C.; GRACE, J.; KABAT, P.; LELIEVELD, J.; MALHI, Y.; MANZI, A. O.; MEIXNER, F. X.; NOBRE, A. D.; NOBRE, C.; RUIVO, Maria de Lourdes Pinheiro; SILVA-DIAS, M. A.; STEFANI, P.; VALENTINI, R.; VON JOUANNE, J.; WATERLOO, M. J. Biogeochemical cycling of carbon, water, energy, trace gases, and aerosols in Amazonia: The LBA-EUSTACH experiments. Journal of Geophysical Research, v. 107, n. D20, LBA 33.1-LBA 33.25] (2 p.1/4), doi:10.1029/2001JD000524, 2002.
0148-0227
url http://repositorio.museu-goeldi.br/handle/mgoeldi/1119
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