The University of Southampton
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Tree height integrated into pantropical forest biomass estimates

Tree height integrated into pantropical forest biomass estimates
Tree height integrated into pantropical forest biomass estimates
Above ground tropical tree biomass and carbon storage estimates commonly ignore tree height (H). We estimate the effect of incorporating H on tropics-wide forest biomass estimates in 327 plots across four continents using 42 656 H and diameter measurements and harvested trees from 20 sites to answer the following questions:

1. What is the best H-model form and geographic unit to include in biomass models to minimise site-level uncertainty in estimates of destructive biomass?

2. To what extent does including H estimates derived in (1) reduce uncertainty in biomass estimates across all 327 plots?

3. What effect does accounting for H have on plot- and continental-scale forest biomass estimates?

The mean relative error in biomass estimates of destructively harvested trees when including H (mean 0.06), was half that when excluding H (mean 0.13). Power- and Weibull-H models provided the greatest reduction in uncertainty, with regional Weibull-H models preferred because they reduce uncertainty in smaller-diameter classes (?40 cm D) that store about one-third of biomass per hectare in most forests. Propagating the relationships from destructively harvested tree biomass to each of the 327 plots from across the tropics shows that including H reduces errors from 41.8 Mg ha?1 (range 6.6 to 112.4) to 8.0 Mg ha?1 (?2.5 to 23.0). For all plots, aboveground live biomass was ?52.2 Mg ha?1 (?82.0 to ?20.3 bootstrapped 95% CI), or 13%, lower when including H estimates, with the greatest relative reductions in estimated biomass in forests of the Brazilian Shield, east Africa, and Australia, and relatively little change in the Guiana Shield, central Africa and southeast Asia. Appreciably different stand structure was observed among regions across the tropical continents, with some storing significantly more biomass in small diameter stems, which affects selection of the best height models to reduce uncertainty and biomass reductions due to H. After accounting for variation in H, total biomass per hectare is greatest in Australia, the Guiana Shield, Asia, central and east Africa, and lowest in east-central Amazonia, W. Africa, W. Amazonia, and the Brazilian Shield (descending order). Thus, if tropical forests span 1668 million km2 and store 285 Pg C (estimate including H), then applying our regional relationships implies that carbon storage is overestimated by 35 Pg C (31–39 bootstrapped 95% CI) if H is ignored, assuming that the sampled plots are an unbiased statistical representation of all tropical forest in terms of biomass and height factors. Our results show that tree H is an important allometric factor that needs to be included in future forest biomass estimates to reduce error in estimates of tropical carbon stocks and emissions due to deforestation.
1726-4170
3381-3403
Feldpausch, T.R.
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Lloyd, J.
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Lewis, S.L.
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Brienen, R.J.W.
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Gloor, M.
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Monteagudo Mendoza, A.
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Lopez-Gonzalez, G.
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Banin, L.
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Abu Salim, K.
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Alexiades, M.
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Almeida, S.
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Amaral, I.
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Araujo Murakami, A.
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Bánki, O.S.
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Cardozo, N.
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Chave, J.
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Alvarez, E.
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França, M.B.
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Freitas, M.A.
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Lenza, E.
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Nilus, R.
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Nogueira, E.M.
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Parada, A.
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Peh, K.S.-H.
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Prieto, A.
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Quesada, C.A.
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Ramírez, F.
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Ramírez-Angulo, H.
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Rudas, A.
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Saiz, G.
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Salomão, R.P.
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Schwarz, M.
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Silva, N.
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Silva-Espejo, J.E.
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Silveira, M.
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Sonké, B.
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Stropp, J.
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Taedoumg, H.E.
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Tan, S.
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Terborgh, J.
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Torello-Raventos, M.
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van der Heijden, G.M.F.
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Vásquez, R.
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Vilanova, E.
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Vos, V.A.
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White, L.
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Willcock, S.
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Woell, H.
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Phillips, O.L.
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Feldpausch, T.R.
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Lloyd, J.
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Lewis, S.L.
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Gloor, M.
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Monteagudo Mendoza, A.
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Lopez-Gonzalez, G.
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Banin, L.
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Alexiades, M.
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Almeida, S.
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Amaral, I.
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Andrade, A.
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Aragão, L.E.O.C.
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Araujo Murakami, A.
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Arets, E.J.M.M.
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Arroyo, L.
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Aymard C., G.A.
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Baker, T.R.
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Bánki, O.S.
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Cardozo, N.
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Chave, J.
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Comiskey, J.A.
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Alvarez, E.
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Di Fiore, A.
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Djagbletey, G.
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Domingues, T.F.
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Erwin, T.L.
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Fearnside, P.M.
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França, M.B.
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Freitas, M.A.
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Higuchi, N.
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Honorio C., E.
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Iida, Y.
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Jiménez, E.
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Kassim, A.R.
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Killeen, T.J.
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Malhi, Y.
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Marimon, B.S.
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Marimon-Junior, B.H.
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Lenza, E.
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Marshall, A.R.
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Mendoza, C.
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Metcalfe, D.J.
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Mitchard, E.T.A.
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Neill, D.A.
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Nelson, B.W.
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Nilus, R.
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Nogueira, E.M.
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Parada, A.
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Peh, K.S.-H.
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Pena Cruz, A.
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Prieto, A.
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Quesada, C.A.
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Ramírez, F.
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Ramírez-Angulo, H.
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Reitsma, J.M.
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Rudas, A.
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Saiz, G.
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Salomão, R.P.
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Schwarz, M.
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Silva, N.
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Silveira, M.
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Sonké, B.
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Stropp, J.
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Taedoumg, H.E.
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Tan, S.
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ter Steege, H.
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Terborgh, J.
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van der Heijden, G.M.F.
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Vásquez, R.
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Vilanova, E.
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Vos, V.A.
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White, L.
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Willcock, S.
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Woell, H.
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Phillips, O.L.
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Feldpausch, T.R., Lloyd, J., Lewis, S.L., Brienen, R.J.W., Gloor, M., Monteagudo Mendoza, A., Lopez-Gonzalez, G., Banin, L., Abu Salim, K., Affum-Baffoe, K., Alexiades, M., Almeida, S., Amaral, I., Andrade, A., Aragão, L.E.O.C., Araujo Murakami, A., Arets, E.J.M.M., Arroyo, L., Aymard C., G.A., Baker, T.R., Bánki, O.S., Berry, N.J., Cardozo, N., Chave, J., Comiskey, J.A., Alvarez, E., de Oliveira, A., Di Fiore, A., Djagbletey, G., Domingues, T.F., Erwin, T.L., Fearnside, P.M., França, M.B., Freitas, M.A., Higuchi, N., Honorio C., E., Iida, Y., Jiménez, E., Kassim, A.R., Killeen, T.J., Laurance, W.F., Lovett, J.C., Malhi, Y., Marimon, B.S., Marimon-Junior, B.H., Lenza, E., Marshall, A.R., Mendoza, C., Metcalfe, D.J., Mitchard, E.T.A., Neill, D.A., Nelson, B.W., Nilus, R., Nogueira, E.M., Parada, A., Peh, K.S.-H., Pena Cruz, A., Peñuela, M.C., Pitman, N.C.A., Prieto, A., Quesada, C.A., Ramírez, F., Ramírez-Angulo, H., Reitsma, J.M., Rudas, A., Saiz, G., Salomão, R.P., Schwarz, M., Silva, N., Silva-Espejo, J.E., Silveira, M., Sonké, B., Stropp, J., Taedoumg, H.E., Tan, S., ter Steege, H., Terborgh, J., Torello-Raventos, M., van der Heijden, G.M.F., Vásquez, R., Vilanova, E., Vos, V.A., White, L., Willcock, S., Woell, H. and Phillips, O.L. (2012) Tree height integrated into pantropical forest biomass estimates. Biogeosciences, 9 (8), 3381-3403. (doi:10.5194/bg-9-3381-2012).

Record type: Article

Abstract

Above ground tropical tree biomass and carbon storage estimates commonly ignore tree height (H). We estimate the effect of incorporating H on tropics-wide forest biomass estimates in 327 plots across four continents using 42 656 H and diameter measurements and harvested trees from 20 sites to answer the following questions:

1. What is the best H-model form and geographic unit to include in biomass models to minimise site-level uncertainty in estimates of destructive biomass?

2. To what extent does including H estimates derived in (1) reduce uncertainty in biomass estimates across all 327 plots?

3. What effect does accounting for H have on plot- and continental-scale forest biomass estimates?

The mean relative error in biomass estimates of destructively harvested trees when including H (mean 0.06), was half that when excluding H (mean 0.13). Power- and Weibull-H models provided the greatest reduction in uncertainty, with regional Weibull-H models preferred because they reduce uncertainty in smaller-diameter classes (?40 cm D) that store about one-third of biomass per hectare in most forests. Propagating the relationships from destructively harvested tree biomass to each of the 327 plots from across the tropics shows that including H reduces errors from 41.8 Mg ha?1 (range 6.6 to 112.4) to 8.0 Mg ha?1 (?2.5 to 23.0). For all plots, aboveground live biomass was ?52.2 Mg ha?1 (?82.0 to ?20.3 bootstrapped 95% CI), or 13%, lower when including H estimates, with the greatest relative reductions in estimated biomass in forests of the Brazilian Shield, east Africa, and Australia, and relatively little change in the Guiana Shield, central Africa and southeast Asia. Appreciably different stand structure was observed among regions across the tropical continents, with some storing significantly more biomass in small diameter stems, which affects selection of the best height models to reduce uncertainty and biomass reductions due to H. After accounting for variation in H, total biomass per hectare is greatest in Australia, the Guiana Shield, Asia, central and east Africa, and lowest in east-central Amazonia, W. Africa, W. Amazonia, and the Brazilian Shield (descending order). Thus, if tropical forests span 1668 million km2 and store 285 Pg C (estimate including H), then applying our regional relationships implies that carbon storage is overestimated by 35 Pg C (31–39 bootstrapped 95% CI) if H is ignored, assuming that the sampled plots are an unbiased statistical representation of all tropical forest in terms of biomass and height factors. Our results show that tree H is an important allometric factor that needs to be included in future forest biomass estimates to reduce error in estimates of tropical carbon stocks and emissions due to deforestation.

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Published date: 2012
Organisations: Centre for Biological Sciences

Identifiers

Local EPrints ID: 352971
URI: http://eprints.soton.ac.uk/id/eprint/352971
ISSN: 1726-4170
PURE UUID: 3ea8c7f5-70a8-4c1f-9d16-4a27368af390
ORCID for K.S.-H. Peh: ORCID iD orcid.org/0000-0002-2921-1341

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Date deposited: 22 May 2013 12:07
Last modified: 15 Mar 2024 03:44

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Author: T.R. Feldpausch
Author: J. Lloyd
Author: S.L. Lewis
Author: R.J.W. Brienen
Author: M. Gloor
Author: A. Monteagudo Mendoza
Author: G. Lopez-Gonzalez
Author: L. Banin
Author: K. Abu Salim
Author: K. Affum-Baffoe
Author: M. Alexiades
Author: S. Almeida
Author: I. Amaral
Author: A. Andrade
Author: L.E.O.C. Aragão
Author: A. Araujo Murakami
Author: E.J.M.M. Arets
Author: L. Arroyo
Author: G.A. Aymard C.
Author: T.R. Baker
Author: O.S. Bánki
Author: N.J. Berry
Author: N. Cardozo
Author: J. Chave
Author: J.A. Comiskey
Author: E. Alvarez
Author: A. de Oliveira
Author: A. Di Fiore
Author: G. Djagbletey
Author: T.F. Domingues
Author: T.L. Erwin
Author: P.M. Fearnside
Author: M.B. França
Author: M.A. Freitas
Author: N. Higuchi
Author: E. Honorio C.
Author: Y. Iida
Author: E. Jiménez
Author: A.R. Kassim
Author: T.J. Killeen
Author: W.F. Laurance
Author: J.C. Lovett
Author: Y. Malhi
Author: B.S. Marimon
Author: B.H. Marimon-Junior
Author: E. Lenza
Author: A.R. Marshall
Author: C. Mendoza
Author: D.J. Metcalfe
Author: E.T.A. Mitchard
Author: D.A. Neill
Author: B.W. Nelson
Author: R. Nilus
Author: E.M. Nogueira
Author: A. Parada
Author: K.S.-H. Peh ORCID iD
Author: A. Pena Cruz
Author: M.C. Peñuela
Author: N.C.A. Pitman
Author: A. Prieto
Author: C.A. Quesada
Author: F. Ramírez
Author: H. Ramírez-Angulo
Author: J.M. Reitsma
Author: A. Rudas
Author: G. Saiz
Author: R.P. Salomão
Author: M. Schwarz
Author: N. Silva
Author: J.E. Silva-Espejo
Author: M. Silveira
Author: B. Sonké
Author: J. Stropp
Author: H.E. Taedoumg
Author: S. Tan
Author: H. ter Steege
Author: J. Terborgh
Author: M. Torello-Raventos
Author: G.M.F. van der Heijden
Author: R. Vásquez
Author: E. Vilanova
Author: V.A. Vos
Author: L. White
Author: S. Willcock
Author: H. Woell
Author: O.L. Phillips

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