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Tree biomass estimation in regenerating areas of tropical dry vegetation in northeast Brazil
Authors:Everardo Sampaio  Peter Gasson  Amelia Baracat  David Cutler  Frans Pareyn  Kleber Costa Lima
Affiliation:1. Departamento de Energia Nuclear, Universidade Federal de Pernambuco, Av. Prof. Moraes Rego, no. 1235, Cidade Universitária, Recife, PE, Brazil;2. Royal Botanic Gardens, Kew, Richmond, Surrey, TW9 3AB, United Kingdom;3. Associação Plantas do Nordeste - APNE, Rua Dr. Nina Rodrigues, 265, Iputinga, 50.731-280 Recife, PE, Brazil
Abstract:Allometric equations have been developed for various different vegetation types but have rarely been validated in the field and never for dry tropical forest such as caatinga. In three areas of semi-arid Brazil, with regenerating caatinga vegetation, we measured and weighed twelve hundred individuals of four tree species and used the data to validate equations previously determined in mature caatinga. They and several other equations developed for tropical vegetations overestimate the biomass (B) of trees from the regeneration areas by more than 20%, possibly because these trees have reduced crowns, with lower branch masses. We then determined new allometric equations for them, validating equations for one site against data of the others and pooling the data if they were cross-validated. The best equations were power ones, based on diameter at breast height (D), with little improvement by including height, crown area and/or wood density (Caesalpinia pyramidalis, B = 0.3129D1.8838; Croton sonderianus, B = 0.4171D1.5601; Mimosa ophthalmocentra, B = 0.4369D1.8493; and Mimosa tenuiflora, B = 0.3344D1.9648 and 0.4138D1.7718).
Keywords:Allometry   Caatinga   Caesalpinia pyramidalis   Croton sonderianus   Mimosa ophthalmocentra   Mimosa tenuiflora   Weight equations
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