Dynamics of Tropical Forest Twenty-Five Years after Experimental Logging in Central Amazon Mature Forest
Abstract
:1. Introduction
2. Materials and Methods
2.1. Study Area
2.2. Experimental Desingn
2.3. Data Collection
2.4. Data Analysis
2.4.1. Biomass
2.4.2. Bole Volume
2.4.3. Mortality Rate
2.4.4. Recruitment Rate
2.4.5. Individual Increment
2.5. Statistical Analysis
3. Results
3.1. Mortality Rates
3.2. Recruitment Rates
3.3. Diameter Increments
4. Discussion
5. Conclusions
Author Contributions
Funding
Acknowledgments
Conflicts of Interest
References
- Higuchi, N.; Dos Santos, J.; Martins, L.T.; Nogueira, A.J.L. O Mercado Internacional De Madeira Tropical Está À Beira Do Colapso; Instituto Nacional de Pesquisas da Amazônia: Manaus, Brazil, 2006. [Google Scholar]
- Cardoso, D.; Särkinen, T.; Alexander, S.; Amorim, A.M.; Bittrich, V.; Celis, M.; Daly, D.C.; Fiaschi, P.; Funk, V.A.; Giacomin, L.L.; et al. Amazon Plant Diversity Revealed by A Taxonomically Verified Species List. Proc. Natl. Acad. Sci. USA 2017, 114, 10695–10700. [Google Scholar] [CrossRef] [PubMed]
- Phillips, O.L.; Hall, P.; Gentry, A.H.; Sawyer, S.A.; Vásquez, R. Dynamics and Species Richness of Tropical Rain Forests. Proc. Natl. Acad. Sci. USA 1994, 91, 2805–2809. [Google Scholar] [CrossRef] [PubMed]
- Ribeiro, J.E.L.; Da, S. Flora Da Reserva Ducke; DFID: London, UK, 1999; ISBN 8521100116. [Google Scholar]
- Higuchi, N.; Chambers, J.; Santos, J. Dos Dinâmica E Balanço Do Carbono Da Vegetação Primária Da Amazônia Central. Floresta 2005, 34, 295–304. [Google Scholar] [CrossRef]
- Houghton, R.A.; Lawrence, K.T.; Hackler, J.L.; Brown, S. The Spatial Distribution of Forest Biomass in the Brazilian Amazon: A Comparison of Estimates. Glob. Chang. Biol. 2001, 7, 731–746. [Google Scholar] [CrossRef]
- Saatchi, S.; Houghton, R.A.; Dos Santos Alvalá, R.C.; Soares, J.V.; Yu, Y. Distribution of Aboveground Live Biomass inThe Amazon Basin. Glob. Chang. Biol. 2007, 13, 816–837. [Google Scholar] [CrossRef]
- Malhi, Y.; Grace, J. Tropical Forests and Atmospheric Carbon Dioxide. Trends Ecol. Evol. 2000, 15, 332–337. [Google Scholar] [CrossRef]
- Soares-Filho, B.S.; Nepstad, D.C.; Curran, L.M.; Cerqueira, G.C.; Garcia, R.A.; Ramos, C.A.; Voll, E.; Mcdonald, A.; Lefebvre, P.; Schlesinger, P. Modelling Conservation in the Amazon Basin. Nature 2006, 440, 520–523. [Google Scholar] [CrossRef] [PubMed]
- Asner, G.P.; Rudel, T.K.; Aide, T.M.; Defries, R.; Emerson, R. A Contemporary Assessment of Change inHumid Tropical Forests. Conserv. Biol. 2009, 23, 1386–1395. [Google Scholar] [CrossRef]
- De Avila, A.L.; Ruschel, A.R.; De Carvalho, J.O.P.; Mazzei, L.; Silva, J.N.M.; Lopes, J.; Do, C.; Araujo, M.M.; Dormann, C.F.; Bauhus, J. Medium-Term Dynamics of Tree Species Composition in Response to Silvicultural Intervention Intensities in a Tropical Rain Forest. Biol. Conserv. 2015, 191, 577–586. [Google Scholar] [CrossRef]
- Higuchi, N.; Dos Santos, J.; José, A.; Lima, N.; Higuchi, F.G.; Chambers, J.Q. A Floresta Amazônica E A Água Da Chuva; Floresta: Curitiba, Brazil, 2011; Volume 41, pp. 427–434. [Google Scholar]
- Otani, T.; Lima, A.J.N.; Suwa, R.; Amaral, M.R.M.; Ohashi, S.; Pinto, A.C.M.; Dos Santos, J.; Kajimoto, T.; Higuchi, N.; Ishizuka, M. Recovery of Above-Ground Tree Biomass after Moderate Selective Logging in a Central Amazonian Forest. Iforest 2018, 11, 352–359. [Google Scholar] [CrossRef]
- Shenkin, A.; Bolker, B.; Peña-Claros, M.; Licona, J.C.; Putz, F.E. Fates of Trees Damaged by Logging in Amazonian Bolivia. For. Ecol. Manag. 2015, 357, 50–59. [Google Scholar] [CrossRef]
- De Oliveira, L.C.; Couto, H.T.Z.; Natalino, J.N.M.; Carvalho, J.O.P. De Exploração Florestal E Eficiência Dos Tratamentos Silviculturais Realizados Em Uma Área De 136 Ha Na Floresta Nacional Do Tapajós, Belterra—Pará. Revista Ciências Agrárias 2006, 46, 195–213. [Google Scholar]
- Higuchi, N.; Ferraz, J.B.S.; Antony, L.; Luizão, F.; Luizão, R.; Biot, Y.; Hunter, I.; Proctor, J.; Ross, S. Biomassa E Nutrients Florestais: Projeto Bionte Relatorio Final; Instituto Nacional de Pesquisas da Amazônia: Manaus, Brazil, 1997. [Google Scholar]
- Osazuwa-Peters, O.L.; Jiménez, I.; Oberle, B.; Chapman, C.A.; Zanne, A.E. Selective Logging: Do Rates of Forest Turnover in Stems, Species Composition and Functional Traits Decrease With Time Since Disturbance?—A 45 Year Perspective. For. Ecol. Manag. 2015, 357, 10–21. [Google Scholar] [CrossRef] [PubMed]
- Putz, F.E.; Zuidema, P.A.; Synnott, T.; Peña-Claros, M.; Pinard, M.A.; Sheil, D.; Vanclay, J.K.; Sist, P.; Gourlet-Fleury, S.; Griscom, B.; et al. Sustaining Conservation Values in Selectively Logged Tropical Forests: The Attained and the Attainable. Conserv. Lett. 2012, 5, 296–303. [Google Scholar] [CrossRef]
- Mazzei, L.; Sist, P.; Ruschel, A.; Putz, F.E.; Marco, P.; Pena, W.; Ferreira, J.E.R. Above-Ground Biomass Dynamics after Reduced-Impact Logging in the Eastern Amazon. For. Ecol. Manag. 2010, 259, 367–373. [Google Scholar] [CrossRef]
- Trumbore, S.; Brando, P.; Hartmann, H. Forest Health and Global Change. Science 2015, 349, 814–818. [Google Scholar] [CrossRef]
- Phillips, O.; Sheil, D. Forest Turnover, Diversity and CO2. Trends Ecol. Evol. 1997, 12, 404. [Google Scholar] [CrossRef]
- Baker, T.R.; Phillips, O.L.; Malhi, Y.; Almeida, S.; Arroyo, L.; Di Fiore, A.; Erwin, T.; Higuchi, N.; Killeen, T.J.; Laurance, S.G.; et al. Increasing Biomass in Amazonian Forest Plots. Philos. Trans. R. Soc. Lond. B 2004, 359, 353–365. [Google Scholar] [CrossRef]
- Rees, M.; Condit, R.; Crawley, M.; Pacala, S.; Tilman, D. Long-Term Studies of Vegetation Dynamics. Science 2001, 293, 650–654. [Google Scholar] [CrossRef]
- Phillips, O.L.; Baker, T.R.; Arroyo, L.; Higuchi, N.; Killeen, T.J.; Laurance, W.F.; Lewis, S.L.; Lloyd, J.; Malhi, Y.; Monteagudo, A.; et al. Pattern and Process inAmazon Tree Turnover, 1976–2001. Philos. Trans. R. Soc. B Biol. Sci. 2004, 359, 381–407. [Google Scholar] [CrossRef]
- Laurance, S.G.W.; Laurance, W.F.; Nascimento, H.E.M.; Andrade, A.; Fearnside, P.M.; Rebello, E.R.G.; Condit, R. Long-Term Variation inAmazon Forest Dynamics. J. Veg. Sci. 2009, 20, 323–333. [Google Scholar] [CrossRef]
- Carneiro, V.M.C. Composição Florística E Análise Estrutural Da Floresta Primária De Terra Firme Na Bacia Do Rio Cuieiras, Manaus; Instituto Nacional de Pesquisas da Amazônia: Manaus, Brazil, 2004. [Google Scholar]
- Marra, D.M.; Chambers, J.Q.; Higuchi, N.; Trumbore, S.E.; Ribeiro, G.H.P.M.; Dos Santos, J.; Negrón-Juárez, R.I.; Reu, B.; Wirth, C. Large-Scale Wind Disturbances Promote Tree Diversity inA Central Amazon Forest. PLoS ONE 2014, 9, e114769. [Google Scholar] [CrossRef]
- Higuchi, N.; Jardim, F.C.S.; Dos Santos, J.; Barbosa, A.P.; Wood, T.W.W. Inventário Florestal Comercial. Acta Amazon. 1985, 15, 327–369. [Google Scholar] [CrossRef]
- Alvares, C.A.; Stape, J.L.; Sentelhas, P.C.; de Moraes Gonçalves, J.L.; Sparovek, G. Köppen’s Climate Classification Map For Brazil. Meteorol. Z. 2013, 22, 711–728. [Google Scholar] [CrossRef]
- Miranda, E.V. De Padrão De Desenvolvimento Radial Horário Do Fuste De Três Espécies Florestais Típicas Da Amazônia Utilizando Dendrômetros Automáticos. Ph.D. Thesis. National Institute of Amazonian Research/Amazon University Foundation, Manaus, Amazonas, Brazil, 2002. [Google Scholar]
- Laurance, W.F.; Lovejoy, T.E.; Vasconcelos, H.L.; Emilio, M.; Didham, R.K.; Stouffer, P.C.; Gascon, C.; Bierregaard, R.O.; Laurance, S.G.; Sampaio, E. Ecosystem Decay of Amazonian Forest Fragments: A 22-Year Investigation Ecosystem Decay of Amazonian Forest Fragments: A 22-Year Investigation. Conserv. Biol. 2002, 16, 605–618. [Google Scholar] [CrossRef]
- Silva, R.P. Da Alometria, Estoque E Dinâmica Da Biomassa De Florestas Primárias E Secundárias Na Região De Manaus; Instituto Nacional de Pesquisas da Amazônia: Manaus, Brazil, 2007. [Google Scholar]
- Lima, A.J.N. Avaliação De Um Sistema De Inventário Florestal Contínuo Em Áreas Manejadas E Não Manejadas Do Estado Do Amazonas; Instituto Nacional de Pesquisas da Amazônia: Manaus, Brazil, 2010. [Google Scholar]
- Ende, C.N. Von Repeated-Measures Analysis: Growth and Other Time-Dependent Measures 6: 113–137. In Design and Analysis of Ecological Experiments; Scheiner, S.M., Gurevitch, J., Eds.; Chapman & Hall: New York, NY, USA, 1993. [Google Scholar]
- Azevedo, C.P.; Sanquetta, C.R.; Silva, J.N.M.; Do Machado, S.A. Efeitos De Diferentes Níveis De Exploração E De Tratamentos Silviculturais Sobre A Dinâmica Da Floresta Remanescente. Floresta 2008, 38, 277–293. [Google Scholar] [CrossRef]
- Martins, E.P.; De Oliveira, A.D.; Scolforo, J.R. Avaliação Dos Danos Causados Pela Exploração Florestal À Vegetação Remanescente, Em Florestas Naturais. Cerne 1997, 3, 14–24. [Google Scholar]
- Silva, E.J.V. Da Dinâmica De Florestas Manejadas E Sob Exploraçao Convencional Na Amazônia Oriental. Ph.D. Thesis. Universidade de São Paulo, São Paulo, Brazil, 2004. [Google Scholar]
- Lieberman, D.; Lieberman, M. Forest Tree Growth and Dynamics At La Selva, Costa Rica (1969–1982). J. Trop. Ecol. 1987, 3, 347–358. [Google Scholar] [CrossRef]
- Swaine, M.D.; Lieberman, D.; Putz, F.E. the Dynamics of Tree Populations inTropical Forest: A Review. J. Trop. Ecol. 1987, 3, 359–366. [Google Scholar] [CrossRef]
- De Oliveira, A.A. Diversidade, Estrutura E Dinâmica Do Componente Arbóreo De Uma Floresta De Terra Firme De Manaus, Amazonas. Ph.D. Thesis, Universidade de São Paulo, São Paulo, Brazil, 1997. [Google Scholar]
- Silva, J.N.M.; da Silva, S.M.A.; Costa, D.H.M.; Baima, A.M.V.; de Oliveira, L.C.; de Carvalho, J.O.P.; Lopes, J.C.A. Crescimento, Mortalidade E Recrutamento Em Florestas De Terra Firme Da Amazônia Oriental: Observações Nas Regiões Do Tapajós E Jarí. In A Silvicultura na Amazônia Oriental: Contribuições do Projeto Embrapa/DFID; Embrapa Amazônia Oriental: Belém, Brazil, 2001; pp. 291–308. [Google Scholar]
- Teixeira, L.M.; Chambers, J.Q.; Silva, A.R.E.; Lima, A.J.N.; Carneiro, V.M.C.; Dos Santos, J.; Higuchi, N. Projeção Da Dinâmica Da Floresta Natural De Terra- Firme, Região De Manaus-Am, Com O Uso Da Cadeia De Transição Probabilística De Markov. Acta Amazon. 2007, 37, 377–384. [Google Scholar] [CrossRef]
- Gomide, G.L.A. Estrutura E Dinâmica De Crescimento De Florestas Tropicais Primária E Secundária No Estado Do Amapá. Ph.D. Thesis. Universidade Federal do Paraná, Curitiba, Brazil, 1997. [Google Scholar]
- Rocha, R.M. Taxas De Recrutamento E Mortalidade Da Floresta De Terra-Firme Da Bacia Do Rio Cuieiras Na Região De Manaus-Am; Mestrado INPA/FUA: Manaus, Brazil, 2001. [Google Scholar]
- Marengo, J.A.; Nobre, C.A.; Tomasella, J.; Oyama, M.D.; Sampaio de Oliveira, G.; de Oliveira, R.; Camargo, H.; Alves, L.M.; Brown, I.F. The Drought of Amazonian in 2005. Am. Meteorol. Soc. 2008, 21, 495–516. [Google Scholar]
- Lewis, S.L.; Brando, P.M.; Phillips, O.L.; Van Der Heijden, G.M.F.; Nepstad, D. The 2010 Amazon Drought. Science 2011, 331, 554. [Google Scholar] [CrossRef] [PubMed]
- Phillips, O.L.; Aragão, L.E.O.C.; Lewis, S.L.; Fisher, J.B.; Lloyd, J.; López-González, G.; Malhi, Y.; Monteagudo, A.; Peacock, J.; Quesada, C.A.; et al. Drought Sensitivity of the Amazon Rainforest. Science 2009, 323, 1344–1347. [Google Scholar] [CrossRef] [Green Version]
- Negrón-Juárez, R.I.; Chambers, J.Q.; Guimaraes, G.; Zeng, H.; Raupp, C.F.M.; Marra, D.M.; Ribeiro, G.H.P.M.; Saatchi, S.S.; Nelson, B.W.; Higuchi, N. Widespread Amazon Forest Tree Mortality from A Single Cross-Basin Squall Line Event. Geophys. Res. Lett. 2010, 37, 1–5. [Google Scholar] [CrossRef]
- Swaine, M.D.; Whitmore, T.C. On the Definition of Ecological Species Groups inTropical Rain Forests. Vegetatio 1988, 75, 81–86. [Google Scholar] [CrossRef]
- Whitmore, T.C. Canopy Gaps and the Two Major Groups of Forest Trees. Ecology 1989, 70, 536–538. [Google Scholar] [CrossRef]
- Laurance, W.F.; Oliveira, A.A.; Laurance, S.G.; Condit, R.; Nascimento, H.E.M.; Sanchez-Thorin, A.C.; Lovejoy, T.E.; Andrade, A.; D’angelo, S.; Ribeiro, J.E. Pervasive Alteration of Tree Communities inUndisturbed Amazonian Forests. Nature 2004, 428, 171. [Google Scholar] [CrossRef]
- Phillips, O.L.; van der Heijden, G.; Lewis, S.L.; López-González, G.; Aragão, L.E.O.C.; Lloyd, J.; Malhi, Y.; Monteagudo, A.; Almeida, S.; Dávila, E.A. Drought-Mortality Relationships For Tropical Forests. New Phytol. 2010, 187, 631–646. [Google Scholar] [CrossRef] [PubMed]
- Lewis, S.L.; Phillips, O.L.; Sheil, D.; Vinceti, B.; Baker, T.R.; Brown, S.; Graham, A.W.; Higuchi, N.; Hilbert, D.W.; Laurance, W.F. Tropical Forest Tree Mortality, Recruitment and Turnover Rates: Calculation, Interpretation and Comparison When Census Intervals Vary. J. Ecol. 2004, 92, 929–944. [Google Scholar] [CrossRef]
- Malhi, Y.; Wright, J. Spatial Patterns and Recent Trends inThe Climate of Tropical Rainforest Regions. Philos. Trans. R. Soc. B Biol. Sci. 2004, 359, 311–329. [Google Scholar] [CrossRef] [PubMed]
- Vanclay, J.K. Modelling Forest Growth and Yield: Applications To Mixed Tropical Forests; M CAB International: Wallingford, UK, 1994. [Google Scholar]
- Shugart, H.H. A Theory of Forest Dynamics: The Ecological Implications of Forest Succession Models; Springer: Berlin, Germany, 1984; ISBN 0387960007. [Google Scholar]
- Nascimento, R.G.M.; Do Amaral Machado, S.; Filho, A.F.; Higuchi, N. Modelagem Da Sobrevivência, Mortalidade E Recrutamento De Uma Floresta Na Amazônia Central. Sci. For. Sci. 2013, 41, 319–330. [Google Scholar]
- Martins, P.C. Dinâmica De Uma Floresta De Terra Firme Manejada Experimentalmente Na Região De Manaus (Am). Ph.D. Thesis. Instituto Nacional de Pesquisas da Amazônia/Universidade Federal do Amazonas, Manaus, Brazil, 2008. [Google Scholar]
- Silva, J.N.M.; de Carvalho, J.O.P.; Lopes, J.D.C.A.; de Almeida, B.F.; Costa, D.H.M.; de Oliveira, L.C.; Vanclay, J.K.; Skovsgaard, J.P. Growth and Yield of A Tropical Rain Forest inThe Brazilian Amazon 13 Years after Logging. For. Ecol. Manag. 1995, 71, 267–274. [Google Scholar] [CrossRef]
- Felfili, J.M. Growth, Recruitment and Mortality inThe Gama Gallery Forest inCentral Brazil Over A Six-Year Period (1985–1991). J. Trop. Ecol. 1995, 11, 67–83. [Google Scholar] [CrossRef]
- Rossi, L.M.B.; Koehler, H.S.; Arce, J.E.; Sanquetta, C.R. Modelagem De Recrutamento Em Florestas. Floresta 2007, 37, 275–291. [Google Scholar] [CrossRef]
- Costa, D.H.M.; Silva, J.N.M.; Carvalho, O.P. De Crescimento De Árvores Em Uma Área De Terra Firme Na Floresta Nacional Do Tapajós Após A Colheita De Madeira. Revista Ciências Agrárias 2008, 50, 63–76. [Google Scholar]
TTS | INT | LY | ML | RMV (Tree−1∙ha−1) | VOL (m3∙ha−1) | BA (m2∙ha−1) |
---|---|---|---|---|---|---|
T0 | Control | - | - | - | - | - |
T1 | Low Intensity | 1987 | ≥ 55 | 5 | 34 | 32% |
T2 | Medium Intensity | 1987 | ≥ 50 | 8 | 49 | 42% |
T3 | Heavy Intensity | 1988 | ≥ 40 | 16 | 67 | 69% |
Treatments | N | RT (%) | BA | VOL | BIO | CAR | |
---|---|---|---|---|---|---|---|
(m2∙ha−1∙year−1) | (m3∙ha−1∙year−1) | (t∙ha−1∙year−1) | (t∙ha−1∙year−1) | ||||
T0 | Mortality | 469 | 0.97 ± 0.14 | 0.30 ± 0.06 | 4.49 ± 0.82 | 6.78 ± 1.20 | 1.92 ± 0.34 |
T1 | 806 | 1.58 ± 0.30 | 0.41 ± 0.09 | 6.08 ± 1.35 | 9.39 ± 2.08 | 2.66 ± 0.59 | |
T2 | 691 | 1.34 ± 0.21 | 0.37 ± 0.13 | 5.53 ± 1.91 | 8.49 ± 2.88 | 2.40 ± 0.82 | |
T3 | 840 | 1.82 ± 0.38 | 0.46 ± 0.09 | 6.89 ± 1.33 | 10.59 ± 2.01 | 3.0 ± 0.57 | |
T0 | Recruitment | 385 | 0.85 ± 0.18 | 0.05 ± 0.01 | 0.73 ± 0.15 | 1.26 ± 0.26 | 0.36 ± 0.07 |
T1 | 1146 | 2.54 ± 0.67 | 0.15 ± 0.04 | 2.31 ± 0.61 | 3.97 ± 1.05 | 1.12 ± 0.30 | |
T2 | 1009 | 2.17 ± 0.58 | 0.13 ± 0.04 | 2.00 ± 0.59 | 3.44 ± 1.02 | 0.97 ± 0.29 | |
T3 | 1298 | 2.93 ± 0.77 | 0.18 ± 0.05 | 2.62 ± 0.73 | 4.51 ± 1.26 | 1.28 ± 0.36 |
Treatment | Species | Botany Family | N | BA (m²) | VOL (m³) | BIO (t) | CAR (t) | EG |
---|---|---|---|---|---|---|---|---|
T0 | Protium spp. | Burseraceae | 44 | 1.0 | 15.6 | 25.1 | 7.1 | NP |
Eschweilera spp. | Lecythidaceae | 22 | 0.8 | 11.9 | 18.8 | 5.3 | NP | |
Lauraceae spp. * | Lauraceae | 16 | 0.5 | 6.9 | 11.0 | 3.1 | NP | |
Rinorea paniculata (Mart.) Kuntze | Violaceae | 15 | 0.3 | 3.9 | 6.4 | 1.8 | NP | |
Mabea spp. | Euphorbiaceae | 14 | 0.2 | 3.1 | 5.1 | 1.5 | NP | |
T1 | Cecropia sciadophylla Mart. | Urticaceae | 67 | 1.8 | 27.3 | 43.6 | 12.4 | PS |
Vismia spp. | Hypericaceae | 46 | 0.7 | 10.1 | 17.0 | 4.8 | PS | |
Eschweilera spp. | Lecythidaceae | 42 | 2.0 | 29.5 | 45.3 | 12.8 | NP | |
Protium spp. | Burseraceae | 40 | 0.8 | 12.3 | 20.0 | 5.7 | NP | |
Croton urucurana Baill. | Euphorbiaceae | 39 | 0.7 | 10.4 | 17.1 | 4.9 | PS | |
T2 | Cecropia sciadophylla Mart. | Urticaceae | 55 | 1.5 | 22.7 | 36.3 | 10.3 | PS |
Protium spp. | Burseraceae | 43 | 1.3 | 19.0 | 30.0 | 8.5 | NP | |
Croton matourensis Aubl. | Euphorbiaceae | 30 | 0.8 | 11.5 | 18.4 | 5.2 | PS | |
Inga spp. | Fabaceae | 28 | 0.8 | 12.5 | 19.7 | 5.6 | NP | |
Vismia spp. | Hypericaceae | 26 | 0.4 | 5.5 | 9.3 | 2.6 | PS | |
T3 | Cecropia sciadophylla Mart. | Urticaceae | 121 | 3.1 | 45.8 | 73.9 | 20.9 | PS |
Protium spp. | Burseraceae | 44 | 1.1 | 16.8 | 27.0 | 7.6 | NP | |
Miconia spp. | Melastomataceae | 40 | 0.9 | 13.7 | 22.1 | 6.3 | PS | |
Vismia spp. | Hypericaceae | 36 | 0.6 | 8.8 | 14.6 | 4.1 | PS | |
Eschweilera spp. | Lecythidaceae | 34 | 1.6 | 23.3 | 36.0 | 10.2 | NP |
Treatment | Species | Botanic Family | N | AB (m²) | VOL (m³) | BIO (t) | CAR (t) | EG |
---|---|---|---|---|---|---|---|---|
T0 | Protium hebetatum D.C. Daly | Burseraceae | 18 | 0.2 | 2.3 | 4.0 | 1.1 | NP |
Eschweilera wachenheimii (Benoist) Sandwith | Lecythidaceae | 12 | 0.1 | 1.5 | 2.5 | 0.7 | NP | |
Eschweilera romeu-cardosoi S.A. Mori | Lecythidaceae | 10 | 0.1 | 1.2 | 2.2 | 0.6 | NP | |
Rinorea paniculata (Mart.) Kuntze | Violaceae | 9 | 0.1 | 1.1 | 2.0 | 0.6 | NP | |
Scleronema micranthum (Ducke) Ducke | Malvaceae | 7 | 0.1 | 0.9 | 1.5 | 0.4 | NP | |
T1 | Cecropia sciadophylla Mart. | Urticaceae | 83 | 1.2 | 18.5 | 30.8 | 8.7 | PS |
Croton urucurana Baill. | Euphobiaceae | 57 | 0.6 | 8.4 | 14.4 | 4.1 | PS | |
Vismia spp. | Hypericaceae | 54 | 0.5 | 7.7 | 13.2 | 3.8 | PS | |
Croton matourensis Aubl. | Euphobiaceae | 50 | 0.5 | 7.3 | 12.6 | 3.6 | PS | |
Miconia spp. | Melastomataceae | 33 | 0.3 | 4.3 | 7.5 | 2.1 | PS | |
T2 | Croton matourensis Aubl. | Euphorbiaceae | 78 | 0.8 | 11.9 | 20.5 | 5.8 | PS |
Cecropia sciadophylla Mart. | Urticaceae | 64 | 0.8 | 11.8 | 20.1 | 5.7 | PS | |
Byrsonima duckeana W.R. Anderson | Malpighiaceae | 34 | 0.3 | 4.6 | 7.9 | 2.2 | PS | |
Miconia minutiflora (Bonpl.) DC. | Melastomataceae | 27 | 0.2 | 3.7 | 6.4 | 1.8 | PS | |
Miconia spp. | Melastomataceae | 25 | 0.2 | 3.3 | 5.8 | 1.6 | PS | |
T3 | Cecropia sciadophylla Mart. | Urticaceae | 127 | 1.6 | 23.4 | 39.6 | 11.2 | PS |
Miconia minutiflora (Bonpl.) DC. | Melastomataceae | 64 | 0.6 | 8.8 | 15.2 | 4.3 | PS | |
Bellucia grossularioides (L.) Triana | Melastomataceae | 52 | 0.5 | 7.0 | 12.1 | 3.4 | PS | |
Miconia spp. | Melastomataceae | 47 | 0.4 | 6.2 | 10.8 | 3.1 | PS | |
Croton matourensis Aubl. | Euphorbiaceae | 45 | 0.4 | 6.7 | 11.5 | 3.3 | PS |
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Amaral, M.R.M.; Lima, A.J.N.; Higuchi, F.G.; dos Santos, J.; Higuchi, N. Dynamics of Tropical Forest Twenty-Five Years after Experimental Logging in Central Amazon Mature Forest. Forests 2019, 10, 89. https://doi.org/10.3390/f10020089
Amaral MRM, Lima AJN, Higuchi FG, dos Santos J, Higuchi N. Dynamics of Tropical Forest Twenty-Five Years after Experimental Logging in Central Amazon Mature Forest. Forests. 2019; 10(2):89. https://doi.org/10.3390/f10020089
Chicago/Turabian StyleAmaral, Márcio R. M., Adriano J. N. Lima, Francisco G. Higuchi, Joaquim dos Santos, and Niro Higuchi. 2019. "Dynamics of Tropical Forest Twenty-Five Years after Experimental Logging in Central Amazon Mature Forest" Forests 10, no. 2: 89. https://doi.org/10.3390/f10020089
APA StyleAmaral, M. R. M., Lima, A. J. N., Higuchi, F. G., dos Santos, J., & Higuchi, N. (2019). Dynamics of Tropical Forest Twenty-Five Years after Experimental Logging in Central Amazon Mature Forest. Forests, 10(2), 89. https://doi.org/10.3390/f10020089