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Effects of field’s topology on energetic efficiency of rapeseed plantation for biofuel production

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Treść / Zawartość
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The model, developed earlier, have been designed to the studies of energy gain in the biofuels production, as compared to the sum of energy inputs on various production steps, and in processes enabling biomass conversion to energy. The present paper shows application of that model towards estimation of the contribution of energy used for commuting between agricultural production sites for a chosen example of plantation’s topological characteristics. Algorithm for computations is elaborated, and numerical example is shown. The sizes of the fields as well as distances between them determine the amount of energy spend for the agricultural work in addition to the tillage technologies being applied.
Rocznik
Strony
83--98
Opis fizyczny
Bibliogr. 17 poz., fig., tab.
Twórcy
autor
  • Bialystok University of Technology, 15-351 Białystok, Wiejska Str. 45A
autor
  • Bialystok University of Technology, 15-351 Białystok, Wiejska Str. 45A
Bibliografia
  • [1] Mathews J. A.: From the petroeconomy to the bioeconomy: Integrating bioenergy production with agricultural demands; Biofuels, Bioprod. Bioref.
  • [2] Chum H. M., Overend R. P.: Biomass and Renewable Fuels: Fuel Processing Technology 71, 2001, pp. 187–195.
  • [3] Barnwal B. K., Scharma M. P.: Prospects of biodiesel production from vegetable oils in India, Renewable and Sustainable Energy Reviews 9, 2005, pp. 363–378.
  • [4] Fontaras G., Skoulou V., Zanakis G., Zabaniotou A., Samaras Z.: Integrated environmental assessment of energy crops for biofuel and energy production in Greece, Renewable Energy 43, 2012, pp. 201–209.
  • [5] Painuly J. P., Rao H., Parikh J.: A rural energy-agriculture interaction model applied to Karnataka state, Energy Vol. 20, No. 3, 1995, pp. 219–233.
  • [6] Abnisa F., Wan Daud W.M.A., Husin W.N.W., Sahu J.N.: Utilization possibilities of palm shell as a source of biomass energy in Malaysia by producing bio-oil in pyrolysis process, Biomass and Bioenergy 35, 2011, pp. 1863–1872.
  • [7] Nilsson D.: Energy, Exergy and Emergy analysis of using straw as fuel in district heating plant, Biomass and Bioenergy, Vol. 13, Nos. ½, 1997, pp. 63–73.
  • [8] Alluvione F., Moretti B., Sacco D., Grignani C.: EUE (energy use efficiency) of cropping system for a sustainable agriculture, Energy 36, 2011, pp. 4468–4481.
  • [9] Mitchell C.P., Bridgwater A.V, Stevens D.J., Toft A.J., Watters M.P.: Technoeconomic assessment of biomass to energy, Biomass and Bioenergy, Vol. 9, Nos. 1-5, 1995, pp. 205–226.
  • [10] Borjesson P. I. I.: Energy Analysis Of Biomass Production and Transportation, Biomass and Bioenergy, Vol. 11, No. 4, 1996, pp. 305–318.
  • [11] Wasiak A., Orynycz O.: Formulation of a model for energetic efficiency of agricultural subsystem of biofuel production, IEEE ENERGYCON 2014, Dubrovnik, Croatia 2014.
  • [12] Orynycz O., Wasiak A.: Effects of tillage technology on energetic efficiency of rapeseed plantation for biofuel production.: Applied Computer Science, Vol. 10, No. 2, 2014, pp. 67–76.
  • [13] Wasiak A., Orynycz O.: The effect of transport on the energetic efficiency of biomass plantations dedicated for production of biofuels, Catching up new ideas: Management, Economics and Law, Kaunas, 2014.
  • [14] Small rapeseed plantation for home-made biodiesel – private communication.
  • [15] Perrier T.: Private communication – agricultural enterprise „Barycz”, 2014.
  • [16] Lorencowicz E.: Poradnik użytkownika techniki rolniczej w tabelach, (Handbook for the user of agrotechnology), Agencja Promocji Rolnictwa i Agrobiznesu, Bydgoszcz 2012.
  • [17] The Team Of District Advisers In Chojnow: The crop of rape and winter wheat. Results from experimental plots of the ground http://www.dodr.pl/III/4/1/3/1/6.pdf
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-76ed2743-38dc-4e2f-a569-c46f60e23a6e
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