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Wooden biomass potential from apple orchards in Poland

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
A side product emerging during apple orchard cultivation is pruned biomass, which may be used for energetic purposes. As Poland is the third largest producer of apples in the world, it is crucial to estimate the annual energetic potential of branches from apple tree pruning. In this paper, the theoretical, technical and economic potential of cut branches for energy production with distribution according to provinces (Voivodeships) is determined. Based on literature reviews and our own measurements the amount of produced branches was estimated to be 3.5 Mg×ha-1×year-1. It was shown, that the energetic potential of pruned biomass from apple trees in Poland is in the range of 7.9-12.5 PJ×year-1. Moreover, the abundance of that potential depends on the province and for a single Voivodeship, may vary from 0.04 PJ×year-1 up to 4.8 PJ×year-1.
Słowa kluczowe
Rocznik
Strony
73--86
Opis fizyczny
Bibliogr. 30 poz., rys., tab.
Twórcy
autor
  • Wrocław University of Environmental and Life Sciences, Institute of Agricultural Engineering, Wrocław, Poland
autor
  • Wrocław University of Environmental and Life Sciences, Institute of Agricultural Engineering, Wrocław, Poland
autor
  • Wrocław University of Environmental and Life Sciences, Institute of Agricultural Engineering, Wrocław, Poland
autor
  • Industrial Institute of Agricultural Engineering, Poznań, Poland
  • Industrial Institute of Agricultural Engineering, Poznań, Poland
Bibliografia
  • ARR [2014]: Rynek owoców w Polsce (The fruits market in Poland). Agencja Rynku Rolnego, Listopad 2014, Warszawa. [accessed 16.02.2015]. Available from: www.arr.gov.pl
  • Badowska-Czubik T., Bielicki P., Bryk H., Buczek M., Cieślińska M., Kołtowski Z., Kruczyńska D., Lisek J., Meszka B., Morgaś H., Rabcewicz J., Rutkowski K., Sekrecka M., Sobiszewski P.J., Treder W., Wawrzyniak A., Wójcik P. [2012]: Jabłonie (Apple trees). Hortpress, Warszawa
  • Bilandzija N., Voca N., Kricka T., Matin A., Jurisic V. [2012]: Energy potential of fruit tree pruned biomass in Croatia. Spanish Journal of Agricultural Research 10 (2): 292-298
  • Boschiero M., Kelderer M., Schmitt A., Andreotti C., Zerbe S. [2015] Influence of agricultural residues interpretation and allocation procedures on the environmental performance of bioelectricity production – A case study on woodchips from apple orchards. Applied Energy 147, 1: 235-245
  • Boschiero M., Zerbe S. [2014]: Woody biomass from apple orchards in South Tyrol: quantification, quality assessment and environmental sustainability, Sustainable use of biomass in South Tyrol: from production to technology. Project financed by the Autonomous Province of Bozen-Bolzano, Bolzano, 11.11.2014
  • Broekema P. [2013]: Availability of local woody biomass for large-scale energy production in the Netherlands, Case study: Vattenfall biomass plant in Utrecht. University of Groningen, Center for Energy and Environmental Studies, Report EES 2013-164 M
  • Cotana F., Cavalaglio G., Rinaldi S. [2009]: Energy and environmental performance of a polygeneration plant from vineyard pruning residues. Proceedings of 17th European Biomass Conference and Exhibition, 29 June - 2 July 2009, Hamburg, Germany
  • Cowie A., Smith P., Johnson D. [2006]: Does soil carbon loss in biomass production systems negate the greenhouse benefits from bioenergy? Mitigation Adapt Start Global Change 11: 979-1002
  • Duca D., Toscano G., Pizzi A., Rossini G., Fabrizi S., Lucesoli G., Servili A., Mancini V., Romanazzi G., Mengarelli Ch. [2016]: Evaluation of the characteristics of vineyard pruning residues for energy applications: effect of different copper-based treatments. Journal of Agricultural Engineering 47 (1): 22-27
  • Dyjakon A., Den Boer J., Bukowski P. [2014]: Europruning: A new direction for energy production from biomass. Agricultural Engineering 151 (3): 163-174
  • EuroPruning [2014]: Deliverable report: Mapping and analysis of the pruning biomass potential in Europe. EuroPruning Project, October 2014 [unpublished]
  • Gabrielle B., Gagnaire N. [2008]: Life-cycle assessment of straw use in bio-ethanol production: a case study based on biophysical modelling. Biomass and Bioenergy 32: 431-441
  • Grella M., Manzone M., Gioelli F., Balsari P. [2013]: Harvesting orchard pruning residues in southern Piedmont: a first evaluation of biomass production and harvest loss. Journal of Agricultural Engineering 44 (3): 97-102
  • GUS (Central Statistical Office) [1980-2015]: Użytkowanie gruntów i powierzchnia zasiewów (Land use and sown area). Reports, Warszawa. [accessed: 15.02.2016). Available from: www.stat.gov.pl
  • GUS (Central Statistical Office) [2014]: Produkcja upraw rolnych i ogrodniczych w 2013 r. (Production of agricultural and horticultural crops in 2013). Warszawa, czerwiec 2014, ISSN 1509-7099 [accessed: 15.02.2016]. Available from: www.stat.gov.pl
  • Janic T. (ed.) [2012]: Energy efficiency and biomass potential analysis. UNDP – SERBIA, Novi Sad, Report SI-06/2012
  • Kadiata B.D., Mulongoy K., Isirimah N.O. [1998]: Effect of tree pruning and pruning application to trees on nitrogen fixation by Leucaena and Gliricidia. Agroforestry Systems 39: 117-128
  • Kruczek S. [2001]: Kotły – konstrukcje i obliczenia (Boilers – design and calculations). Oficyna Wydawnicza Politechniki Wrocławskiej, Wrocław
  • Magagnotti N., Pari. L., Picchi G., Spinelli R. [2013]: Technology alternatives for tapping the pruning residue resorce. Bioresource Technology 128: 697-702
  • Mika A. [2012]: Cięcie drzew w sadach intensywnych (Trimming of trees in intensive orchards). Hortpress, Warszawa
  • Niederholzer F.J., Krueger W.H., Buchner R.P., Klonsky K.M., De Moura R.L. [2007]: Sample costs to establish a prune orchard and produce prunes. University of California Cooperative Extension, Sacramento Valley
  • PN-EN 14774:2010: Biopaliwa stałe – Oznaczanie zawartości wilgoci – Metoda suszarkowa – Część 2: Wilgoć całkowita – Metoda uproszczona (Solid biofuels – Determination of moisture content – Oven dry method – Part 2: Total moisture – Reference method)
  • Pudelko R., Borzecka-Walker M., Faber A. [2013]: The feedstock potential assessment for EU-27 + Switzerland in NUTS-3 (WP1, D1.2). In: Biomass based energy intermediates boosting biofuel production (BioBoost). Project co-funded by the European Commission FP7 (Grant No. 282873)
  • Rabcewicz J., Wawrzyńczak P., Konopacki P. [2007]: Określenie ilości drewna pozyskiwanego z cięcia drzew i krzewów owocowych do wykorzystania w celach energetycznych – oferta wdrożeniowa. [accessed 12.09.2015]. Available from: www.insad.pl
  • Ritchie D.F., Sutton T.B., Walgenbach J.F. [2012]: Disease and insect management in the home orchard. The University of North Carolina, North Carolina Plant Disease and Insect Clinic, October 2012
  • Romański L., Dyjakon A., Adamczyk F., Frąckowiak P. [2014]: Problems with deriving the fruit tree pruned biomass for energy use. Agricultural Engineering 151 (3): 157-167
  • Sanford M.R., Schultz Ch. [2013]: How to prune fruit trees. Echo Point Books & Media, September 2013
  • Silvestri S., Cristoforetti A., Mescalchin E., Spinelli R. [2011]: Recovery of pruning waste for energy use - agronomic, economic and ecological aspects. Proceedings of Central European, Biomass Conference 2011, 26-29 January, Graz, Austria
  • Spinelli R., Lombardini C., Pari L., Sadauskiene L. [2014]: An alternative to field of pruning residues in mountains. Ecological Engineering 70: 212-216
  • Zivkovic M., Urosevic M., Oljaca S., Oljaca M., Gligorevic K., Zlatanovic I., Koprivica R. [2013]: Aspects of using potential energy products of biomass after pruning fruit and grape plantations in the Republic of Serbia. Agriculture and Forestry 59 [1]: 167-182.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-c3a8c233-cb97-45d8-9a94-b9281e935cc3
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