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Radon fluxes in tropical forest ecosystems of Brazilian Amazonia: night-time CO2 net ecosystem exchange derived from radon and eddy covariance methods.

Martens, C.S. (author)
Univ North Carolina-Chapel Hill
Shay, T.J. (author)
Univ North Carolina-Chapel Hill
Mendlovitz, H.P. (author)
Univ North Carolina-Chapel Hill
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Matross, D.M. (author)
Harvard University
Saleska, S.R. (author)
Harvard University
Wofsy, S.C. (author)
Harvard University
Woodward, W.S. (author)
Univ North Carolina-Chapel Hill
Menton, M.C. (author)
Univ North Carolina-Chapel Hill
Moura, J.M.S. (author)
Univ North Carolina-Chapel Hill
Crill, Patrick (author)
Stockholms universitet,Institutionen för geologi och geokemi
Moraes, O.L.L. (author)
Univ Fed Santa Maria
Lima, R.L. (author)
Univ Fed Para
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 (creator_code:org_t)
2004-05-04
2004
English.
In: Global Change Biology. - : Wiley. - 1354-1013 .- 1365-2486. ; 10:5, s. 618-629
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • Radon-222 (Rn-222) is used as a transport tracer of forest canopy–atmosphere CO2 exchange in an old-growth, tropical rain forest site near km 67 of the Tapajós National Forest, Pará, Brazil. Initial results, from month-long periods at the end of the wet season (June–July) and the end of the dry season (November–December) in 2001, demonstrate the potential of new Rn measurement instruments and methods to quantify mass transport processes between forest canopies and the atmosphere. Gas exchange rates yield mean canopy air residence times ranging from minutes during turbulent daytime hours to greater than 12 h during calm nights. Rn is an effective tracer for net ecosystem exchange of CO2 (CO2 NEE) during calm, night-time hours when eddy covariance-based NEE measurements are less certain because of low atmospheric turbulence. Rn-derived night-time CO2 NEE (9.00±0.99 μmol m−2 s−1 in the wet season, 6.39±0.59 in the dry season) was significantly higher than raw uncorrected, eddy covariance-derived CO2 NEE (5.96±0.51 wet season, 5.57±0.53 dry season), but agrees with corrected eddy covariance results (8.65±1.07 wet season, 6.56±0.73 dry season) derived by filtering out lower NEE values obtained during calm periods using independent meteorological criteria. The Rn CO2 results suggest that uncorrected eddy covariance values underestimate night-time CO2 loss at this site. If generalizable to other sites, these observations indicate that previous reports of strong net CO2 uptake in Amazonian terra firme forest may be overestimated.

Subject headings

NATURVETENSKAP  -- Geovetenskap och miljövetenskap (hsv//swe)
NATURAL SCIENCES  -- Earth and Related Environmental Sciences (hsv//eng)

Keyword

Earth sciences
Geovetenskap
miljökemi
Environmental Chemistry

Publication and Content Type

ref (subject category)
art (subject category)

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