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Vol. 36 No. 2 (2018)

Articles

Biogas resources in industrial production of pork

DOI: https://doi.org/10.24326/jasbbx.2018.2.1
Submitted: November 29, 2018
Published: 2018-11-29

Abstract

The article analyzes the use of renewable sources of energy – biogas in the European Union and Ukraine. It is shown that the agro-industrial sector of Ukraine, producing a significant amount of organic waste, potentially has the resources to produce biogas and can replace 2.6 bln m³ PG/year. The contribution of organic waste in industrial production of pork can be 0.32 Mt of fuel. The authors believe that the main barrier to the implementation of bioenergy systems in industrial production of pork in Ukraine are large capital investments and operating costs as well as suboptimal substrate for fermentation parameters. Strategieses to ensure the reduction of capital investment  and implementation of technologies of using sewages from the industrial production of pork to obtain renewable energy should be promoted more strongly. The technological process includes separating sewage, sediment compaction, resulting in a thin layer of its subsequent methane fermentation to produce biogas, electricity and heat. It is shown that the proposed approach can reduce capital investment at 30%.

References

  1. Geletuha G.G., Zhelezna T.A., 2013. Barriers for the bioenergy development in Ukraine. Analytical note of BAU, http://www.uabio.org/img/files/docs/position-paper-uabio-4-ua.pdf.
  2. Geletuha G.G., Zhelezna T.A., Kucheruk P.P., Olijnyk J.N., 2014. Current state and prospects of bioenergy development in Ukraine. Analytical note of BAU, http://www.uabio.org/img/files/docs/position -paper-uabio-9-ua.pdf.
  3. ISO 5984:2004. Animal feeding stuffs – Determination of crude ash.
  4. ISO 6496:2005. Animal feeding stuffs – Determination of moisture and other volatile matter content.
  5. ISO/IEC 17025:2006. General requirements for competence of testing and calibration laboratories.
  6. Kozyr V.S., Ruban S.J., Sokrut O.V., Olijnyk S.O., Filjak M.M., Korovnikov G.B., Chernjavskyj S.J., Zajcev V.G., 2009. Biogas is the source of alternative energy. Dnipropetrovsk, 136.
  7. Matvjejev J., Geletuha G., 2004. Biogas station. Ukrainian experience. Green power 4–6 (in Ukrainian).
  8. Piskun V.I., 2013. Wastewater treatment in industrial production of pork. Bulletin of Kharkiv National Technical University of Agriculture 132, 374–378.
  9. Rjabov G.A., 2005. Biomass and waste products using for energy saving problems solving. Power stations 7, 33–38.
  10. Sorokin O.A., 2005. Agricultural productions waste processing by bioconversion. Industrial power engineering 8, 39–45.
  11. Vlislo V., Fedoruk R., Makar I., 2004. Physiological and biochemical methods of research in biology, livestock and veterinary medicine: reference book. VKP ”VMS”, 40.
  12. http://energetyka.com.ua/slovarterminov/293-biogaz.
  13. http://www.myshared.ru/slide/1034167/.

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