Alternative planting method for short rotation coppice with poplar and willow

Biomass and Bioenergy - Tập 87 - Trang 39-45 - 2016
Sara Bergante1, Marco Manzone2, Gianni Facciotto1
1Consiglio per la Ricerca in Agricoltura e l'analisi dell’Economia agraria (CREA), Unità di Ricerca per le Produzioni Legnose fuori Foresta (PLF), Strada Frassineto Po 35, 15033, Casale Monferrato, Alessandria, Italy
2University of Turin, Via Leonardo da Vinci, 44, 10095, Grugliasco, Torino, Italy

Tài liệu tham khảo

Manzone, 2016, Energy balance of poplar and maize crops for biomass production in North Italy, Renew. Energ, 86, 675, 10.1016/j.renene.2015.08.047 Paine, 1996, Some ecological and socio-economic considerations for biomass energy crop production, Biomass Bioenerg., 10, 231, 10.1016/0961-9534(95)00072-0 Coaloa, 2014, Biomass feedstock from multipurpose poplar plantations: current situation and potential development in Italy, 112 Coaloa, 2014, Economic sustainability of biomass for energy use in Italian rural context, 1500 Stupak, 2007, Sustainable utilization of forest biomass for energy possibilities and problems: policy, legislation, certification, and recommendations and guidelines in the Nordic, Baltic, and other European countries, Biomass Bioenerg., 31, 666, 10.1016/j.biombioe.2007.06.012 Rosso, 2013, Selection and testing of Populus alba and Salix spp. as bioenergy feedstock: preliminary results, Appl. Energ., 102, 87, 10.1016/j.apenergy.2012.07.042 Djomo, 2011, Energy and greenhouse gas balance of bioenergy production from poplar and willow: a review, Biomass Bioenerg., 3, 181 McIvor, 2014, Genetic and environmental influences on root development in cuttings of selected Salix and Populus clones—a greenhouse experiment, Plant Soil, 377, 25, 10.1007/s11104-013-1770-5 Zalesny, 2005, Early rooting of dormant hardwood cuttings of Populus: analysis of quantitative genetics and genotype × environment interactions, Can. J. For. Res., 35, 918, 10.1139/x05-018 Ying, 1977, Variation in rooting capability of Populus deltoides, Silvae Genet., 26, 204 Frison, 1995, 31 Frison G. Propagazione del pioppo. Bologna; Edizioni L'Informatore Agrario 199; 75 pp. Balsari, 2002, Messa a dimora di un impianto di pioppo da biomassa, Sherwood, 81, 49 Manzone, 2009, Energetic and economic evaluation of a poplar cultivation for the biomass production in Italy, Biomass Bioenerg., 33, 1258, 10.1016/j.biombioe.2009.05.024 Manzone, 2014, Planters performance during a very Short Rotation Coppice planting, Biomass Bioenerg., 67, 188, 10.1016/j.biombioe.2014.04.029 Balsari, 2003, Operative and economic evaluation of machines for planting cuttings, 9 Ledin, 1998, 200 Bergante, 2010, Identification of the main site factors and management intensity affecting the establishment of Short-Rotation-Coppices (SRC) in Northern Italy through Stepwise regression analysis, Cent. Eur. J. Biol., 5, 522 Giorcelli, 1992, Pest, diseases and others injuries in short rotation forestry, 1 Telenius, 1995, The influence of allometric variation, vertical biomass distribution and sampling procedure on biomass estimates in commercial short rotation forests, Biores. Technol., 51, 247, 10.1016/0960-8524(94)00133-L Verwijst, 1999, Biomass estimation procedures in short rotation forestry, For. Ecol. Manag., 121, 137, 10.1016/S0378-1127(98)00562-3 Facciotto, 2005, Aboveground biomass estimation for Italian poplar SRF, 298 R Core Team, 2015 Felipe de Mendiburu, 2014 Manzone, 2014, Energy and economic evaluation of a poplar plantation for woodchips production in Italy, Biomass Bioenerg., 60, 164, 10.1016/j.biombioe.2013.11.012 Mitchell, 1999, Short-rotation forestry- operations, productivity and costs based on experience gained in the UK, For. Ecol. Manag., 121, 123, 10.1016/S0378-1127(98)00561-1 Heaton, 1999, The economics of growing short rotation coppice in the uplands of mid-Wales and an economic comparison with sheep production, Biomass Bioenerg., 17, 59, 10.1016/S0961-9534(99)00025-2 Lowthe-Thomas, 2010, Reducing the establishment costs of short rotation willow coppice (SRC) - a trial of a novel layflat planting system at an upland site in mid-Wales, Biomass Bioenerg., 34, 677, 10.1016/j.biombioe.2010.01.011 Schweiner, 2013, Economics of poplar short rotation coppice plantations on marginal land in Germany, Biomass Bioenerg., 59, 494, 10.1016/j.biombioe.2013.10.020 Frison, 1984, Influenza della lunghezza delle talee sul loro attecchimento e sull’accrescimento delle pioppelle in vivaio, Cellul. Carta, XXV, 67 Facciotto, 1998, Ricerche sulla selvicoltura a breve turno di rotazione a scopo energetico, 40 Baratto, 2008, 26 Bergante S., Facciotto G. Nine years of measurements in Italian SRC trial with 14 poplar and 6 willow clones. Proceedings of 19th European Biomass Conference & Exhibition, 6–10 June 2011, Berlin, Germany. 178-182. Facciotto G., Bergante S., Lioia C., Rosso L., Mughini G., Zenone T., Nervo G. Produttività di cloni di pioppo e salice in piantagioni a turno breve. Forest@ 3(2): 238–252. [online] URL: http://www.sisef.it/. Bullard, 2002, Yield improvements through modification of planting density and harvest frequency in short rotation coppice Salix spp.- 2. Resource capture and use in two morphologically diverse varieties, Biomass Bioenerg., 22, 27, 10.1016/S0961-9534(01)00055-1 McCracken, 2010, Effect of planting vertical/horizontal willow (Salix spp.) cuttings on establishment and yield, Biomass Bioenerg., 34, 1764, 10.1016/j.biombioe.2010.07.008 Bergante S., Facciotto G., Comolli R., Ferré C. Land Use Change: from traditional cultivations to poplar SRF. Proceedings of 20th European Biomass Conference & Exhibition, 18–22 June 2012, Milano, Italy. 409-416.