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2014 | 23 | 2 |

Tytuł artykułu

Market of producers and processors of agricultural biomass for energy purposes

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Development of renewable energy sources and efficient use thereof are universal indicators of responsible environmental policy. It is estimated that in EU countries, biomass can provide approximately 2/3 of the declared share of energy generated from RES in 2020. This paper identifies, on the basis of the example of Warmińsko-Mazurskie province, both the existing producers of biomass and operators involved in the processing and purchase thereof. Furthermore, an attempt was made at assessing local determinants affecting the development of the production trend concerned, with account taken of sustainable development of agriculture and rural areas. In order to identify the producers and processors of biomass for energy purposes, a computer application called MapInfo Professional was used, it being a useful GIS tool for data acquisition (building databases), processing, and visualization in the form of tables and thematic maps.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

23

Numer

2

Opis fizyczny

p.619-627,fig.,ref.

Twórcy

  • Faculty of Environmental Management and Agriculture, University of Warmia and Mazury in Olsztyn, Oczapowskiego 2, 10-719 Olsztyn, Poland
autor
  • Faculty of Geodesy and Land Management University of Warmia and Mazury in Olsztyn, Oczapowskiego 2, 10-719 Olsztyn, Poland
autor
  • Faculty of Geodesy and Land Management University of Warmia and Mazury in Olsztyn, Oczapowskiego 2, 10-719 Olsztyn, Poland

Bibliografia

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  • 4. Dyrective 2009/28/EC of the European Parliament and of the Council of 23 April 2009 on the promotion of the use of energy from renewable sources and amending and subsequently repealing Directives 2001/77/EC and 2003/30/EC.
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  • 6. GAŹDZICKI J. Lexicon of Geomatics. Warszawa: Polish Association of Spatial Information, 2001 [In Polish].
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  • 13. ROSZKOWSKI A. Energy and Agriculture (Energy Crisis – Effectivity – Agriculture). Inżynieria Rolnicza 4, (102), 25, 2008.
  • 14. BIENIEK J., SAWKO Ł., MOLENDOWSKI F. Ecconomic analysis of the use of cob rachis as alternative fuel. Inżynieria Rolnicza 9, (134), 7, 2011.
  • 15. ROMAŃSKI L., BUKOWSKI P., DĘBOWSKI M. Analysis of using renewable energy in rural farms. Inżynieria Rolnicza 2, (137), 261, 260, 2012.
  • 16. STOLARSKI M., Prospects for the use of renewable energy sources. In: Current status and prospects of development of rural areas in the Warmia-Mazury 2020 Ed. by Brodziński Z., Samorząd Wojewodztwa Warmińsko-Mazurskiego, Olsztyn. pp. 79-98, 2012 [In Polish].
  • 17. NOON C.E., DALY M.J. GIS-based biomass resource assessment with bravo. Biomass Bioenerg. 10, 101, 1996.
  • 18. LAMPART P., KOWALSKI P. Biomass/biogas cogeneration. [In:] Ekoenergetyka – issues of technology, environment and economy. Eds. Cenion A., Noch T., Wydawnictwo Gdańskiej Wyższej Szkoły Administracji, Gdańsk. pp. 121-144, 2010 [In Polish].
  • 19. FIORESE G., GUARISO G. A GIS-based approach to evaluate biomass potential from energy crops at regional scale. Environ. Modell. Softw. 25, 705, 2010.
  • 20. JASIULEWICZ M. Possibility of Liquid Bio-Fuels, Electric and Heat Energy Production from Biomass in Polish Agriculture. Pol. J. Environ. Stud. 19, (3), 480, 2010.
  • 21. GOSTOMCZYK W. The use of biomass for energy purposes in the creation of rural development and employment. [In:] Energy use of biomass in business. Eds. M. Jasiulewicz, Politechnika Koszalińska, Koszalin. pp. 179-198, 2009 [In Polish].
  • 22. JASIULEWICZ M. Use of Idle Lands for Biomass Production and Creation of Local Energy [in:] Biomas for Electrical Power Engineering and Heat Engineering. Oppourtunities and Problems, Warsaw, pp. 122-132, 2005 [In Polish].
  • 23. PERPIÑÁ C., ALFONSO D., PÉREZ-NAVARRO A., PEÑALVO E., VARGAS C., CÁRDENAS R. Methodology based on Geographic Information Systems for biomass logistics and transport optimization. Renew. Ener. 34, 556, 2009.
  • 24. MA J., SCOTT N.R., DeGLORIA S.D., LEMBO A.J. Siting analysis of farm-based centralized anaerobic digester systems for distributed generation using GIS. Biomass Bioenerg. 28, 591, 2005.
  • 25. PANICHELLI L., GNANSOUNOU E. GIS-based approach for defining bioenergy facilities location: A case study in Northern Spain based on marginal delivery costs and resources competition between facilities. Biomass Bioenerg. 32, 292, 2008.
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  • 27. LOVETT A.A., SÜNNENBERG GM., RICHTER G.M., DAILEY A. G., RICHE A.B., KARP A. Land Use Implications of Increased Biomass Production Identified by GIS-Based Suitability and Yield Mapping for Miscanthus in England. Bioenerg. Res. 2, 17, 2009.
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  • 32. GOSTOMCZYK W. The possibilities of using biomass energy in the activation of rural areas. Barometr Regionalny. Analizy i prognozy. Wyższa Szkoła Zarządzania i Administracji w Zamościu, 3, (25), 46, 2011.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

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