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Biomass equations for hybrid larch growing on farmland
Affiliation:1. Dept. of Civil Engineering, Indian Institute of Technology, Roorkee, India;2. Center of Environmental Strategy, University of Surrey, Guildford, UK;3. Institute of Sustainability in Civil Engineering, RWTH Aachen University, Germany;4. Dept. of Civil Engineering, University of British Columbia, Canada;1. Laboratory for Assessment of Organic Contaminants (LACOr), Institute of Marine Sciences, Federal University of Ceará (LABOMAR-UFC), Av. Abolição, 3207-Meireles, 60165-081 Fortaleza, CE, Brazil;2. Department of Chemistry, Federal University of Ceará, Av. Humberto Monte, SN-PICI, 60000-000 Fortaleza, CE, Brazil;3. Oceanographic Institute, University of São Paulo (IOUSP), Praça do Oceanográfico, 191, 05508-900 São Paulo, SP, Brazil;4. Department of Marine Chemistry and Geochemistry, Woods Hole Oceanographic Institution, 266 Woods Hole Road, Woods Hole, MA 02543, United States of America
Abstract:Johansson, T. 2011. Biomass equations for hybrid larch growing on farmland.Data were collected from 20 stands of hybrid larch (Larix x eurolepis) growing on abandoned farmland in southern and central Sweden (Lat. 55–60° N.). The mean stand age was 19 years (range 18–23). The mean number of stems per hectare was 1150 (range 364–2374) and the mean breast height diameter (over bark) was 15.6 cm (6.8–24.2). Soil types in the stands were light and medium clay and tills (sandy-silty and light clay).Mean dry weight above stump level (20 cm) for a hybrid larch tree in this study was 117 kg (range 36–245) and the standing dry weight for hybrid larch stands was 120 t ha?1 (42–350). Mean annual increment (MAI) for the tree was 6.09 kg y?1 (1.89–13.61) corresponding to production of 90–120 t ha?1 after 15–20 years growth and a stem number of 1000–1500, if the stand is mainly used for biomass. Alternatively, for pulp wood and timber production a rotation period of 30–40 years can be used, with thinnings being exploited for biomass.
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