10. Use of winter rye for production of biogas

https://doi.org/10.31073/agrovisnyk201805-10
Jegorov D. K., Zmiievs'ka O. A., Dem’ianenko S. B.
Pages: 63-67.

Full article: 
Abstract
The purpose. To determine suitability of grades and hybrids of winter rye for production of alternative kinds of fuel. Methods. Field, laboratory, statistical. Results. Variability in productivity of green and dry mass, content of dry matter and exit of biogas depending on genotype, phases of growth of a plant and hydrothermal conditions of vegetation is established. In phase of shooting according to productivity of green material they selected 1 sample (26,7 t / hectare), to phase of swelling — 5 samples with productivity of 31,2 – 35,7 t/hectare. Conclusions. Grades and hybrids of winter rye of domestic selection provide lump of biomass with high exit of biogas for a unit of the area. But it is necessary for Ukraine to create power hybrids of winter rye with stably high productivity of green mass and resistance to adverse conditions of vegetation.


Key words: winter rye, biofuel, bio-power crops, green material, dry mass, biomass.



References
  1. Geletuha G., Kucheruk P., Matveev Ju. (2013). Perspektivy proizvodstva i ispol'zovanija biogaza v Ukraine. [The prospects of biogas production and use in Ukraine]. Analiticheskaja zapiska BAU. 4. 22 s. [in Russian].
  2. Dubovin V., Mel'nichuk M., Mironenko V., Polishhuk V., Dragnev S. (2007). Ukrainskoe biotoplivo budet kachestvennym. [The Ukrainian biofuel will be qualitative]. Zerno. 5(14), S. 98-103. [in Russian].
  3. Geletuha G., Zheliezna T., Zhovmir M., Matvieiev Ju., Drozdova O. (2011). Otsinka enerhetychnoho potentsialu biomasy v Ukraini. [The biomass energy potential estimation in Ukraine]. Prom. teplo tehnika. Vol.33,1, Is. 2, S. 57-64. [in Ukrainian].
  4. Scholz V., Ellerbrock R. (2002).The growth productivity, and environmental impact of the cultivation of energy crops on sandy soil in Germany. Biomass and Bioenergy. V. 23. Is. 2. P. 81–92.
  5. Roux S., Wortmann H., Schlathölter M. (2010). Bre­ding capability of rye (Secale cereale L.) for biogas production. EUCARPIA-International Symposium on Rye Breeding and Genetics. Minsk, Belarus: UP “IVC Minfina”P. 29.
  6. Piechota T., Sawinska Z., Kowalski M. et al. (2017). Plonowanie i zdrowotność wybranych odmian żyta ozimego uprawianego z przeznaczeniem na biogaz. Fragm. Agron.. R. 34, 2. S. 67–74.
  7. Hübner M., Oechsner H., Koch S. et al. Impact of genotype, harvest time and chemical composition on the methane yield of winter rye for biogas production. Biomass and Bioenergy. 2011. V. 35(10). P. 4316–4323.
  8. Marlen Gottwald (2014). Phenotypic and molecular analyses of grain and biomass productivity under irrigated and rainfed conditions in hybrid rye: dissertation zur Erlangung des Grades eines Doktors der Agrarwissenschaften vorgelegt der Fakultät Agrarwissenschaften von Diplom-Agrarbiologin Marlen Gottwald (geb. Hübner) aus Hofheim am Taunus Stuttgart-Hohenheim, Germany.
  9. Miedaner T., Hübner M., Koch S. et al. (2010). Biomass yield of self-incompatible germplasm resources and testcrosses in winter rye. Plant Breeding. V. 129(4). P. 369–375.
  10. Deublein D., Steinhauser A. (2008). Biogas from Waste and Renewable Resources: An Introduction. Weinheim: WILEY-VCH Verlag GmbH & Co. KGaA. 444 p.