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The depletion of traditional energy sources and the increase in the cost of energy resources have a negative impact on the determination of the cost of production of agricultural and industrial products, which leads to a decrease in its competitiveness at the international level. Thus, the main task of the state is to ensure the efficient use of its own fuel and energy reserves and to diversify the sources and routes of supply of energy resources. Ukraine has all the necessary prerequisites for the widespread introduction and application of advanced technologies for growing and processing biomass and energy crops. The development of bioenergy technologies will help solve the problem of providing the country with energy resources, improve the environmental situation in the regions and help increase the employment of the local population. The fundamentals of growing less common energy crops are considered, the works of both domestic and foreign scientists are analysed, including the selection of the optimal place and soil, the establishment of optimal types of promising sparsely distributed energy crops, as raw materials for the energy sector of the state. Particular attention is paid to the need to improve the elements of technology in order to achieve a greater increase in biomass.
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Tom
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191--197
Opis fizyczny
Bibliogr. 39 poz., rys., tab.
Twórcy
autor
- Vasyl Stefanyk Precarpathian National University, Shevchenko Str., 57, Ivano-Frankivsk, 76018, Ukraine
autor
- Sumy National Agrarian University, H. Kondratieva Str., 160, Sumy, 40021, Ukraine
autor
- Sumy National Agrarian University, H. Kondratieva Str., 160, Sumy, 40021, Ukraine
autor
- Kharkiv State Biotechnological University, Alchevskikh Str., 44, Kharkiv, 61000, Ukraine
autor
- Sumy National Agrarian University, H. Kondratieva Str., 160, Sumy, 40021, Ukraine
autor
- Sumy National Agrarian University, H. Kondratieva Str., 160, Sumy, 40021, Ukraine
autor
- Sumy National Agrarian University, H. Kondratieva Str., 160, Sumy, 40021, Ukraine
autor
- Sumy National Agrarian University, H. Kondratieva Str., 160, Sumy, 40021, Ukraine
autor
- Sumy National Agrarian University, H. Kondratieva Str., 160, Sumy, 40021, Ukraine
autor
- Sumy National Agrarian University, H. Kondratieva Str., 160, Sumy, 40021, Ukraine
Bibliografia
- 1. Bentsarovskiy D.M., Datsko L.V. 2004. Soil Fertility Changes in Ukraine under the Influence of Agricultural Use. Soil Fertility Protection, 1, 123. (in Ukrainian)
- 2. Ciurescu G., Ropota M., Toncea I., Habeanu M. 2016. Camelia (Camelina sativa L.) Crantz Variety oil and seeds as n-3 fatty acids rich products in broiler diets and its effects on performance, meat fatty acid composition, immune tissue weights, and plasma metabolic profile. Journal of Agricultural Science and Technology, 18, 315–326.
- 3. Dumych V.V., Zhurba H.I., Kurylo H.I. 2013. Technical and technological measures for the establishment of switchgrass energy plantations in the conditions of the Polissia of Ukraine. Collection of scientific works of the Institute of bioenergetic crops and sugar beets of the National Academy of Sciences, 19, 37–42. (in Ukrainian)
- 4. Fedorchuk М.I., Kokovikhin S.V., Kalenska S.M. 2017. Agrotechnological Aspects of Energy Crop Cultivation in the Conditions of Southern Ukraine: Educational Manual. 42–45. (in Ukrainian)
- 5. Gupta V.K., Tuohy M.G., Kubicek C.P., Saddler J. 2014. Bioenergy Research: Advances and Applications: textbook. Oxford, 500.
- 6. Harkavyi A.D., Petrychenko V.F., Spirin A.V. 2003. Competitiveness of technologies and machines. Vinnytsia, Tiras, 68. (in Ukrainian)
- 7. Heletukha H.H., Zhelezna T.A., Kucheruk P.P., Oliynyk Y.M. 2014. Current state and prospects of bioenergy development in Ukraine. Analytical Note BAE, 9, 9–10. (in Ukrainian)
- 8. Heletukha H.H., Zhelezna T.A., Oliinyk E.M. 2013. Prospects for thermal energy production from biomass in Ukraine. Industrial heat engineering, 4, 5–15. (in Ukrainian)
- 9. Heletukha H.H., Zhelezna T.A., Zhovmir M.M. 2010. Assessment of the energy potential of bio–mass in Ukraine. Promyslova teplotekhnika, 6, 58–65. (in Ukrainian)
- 10. Hryhoriv Y, Butenko A, Masyk I, Onychko T, Davydenko G, Bondarieva. 2023a. Growth and Development of Sweet Corn Plants in the Agro–Ecological Conditions of the Western Region of Ukraine. Ecological Engineering & Environmental Technology, 24(4), 216–222. https://doi.org/10.12912/27197050/162699
- 11. Hryhoriv Y., Butenko A., Kozak M., Tatarynova V., Bondarenko O., Nozdrina N., Stavytskyi A., Bordun R. 2022. Structure components and yielding capacity of Camelina sativa in Ukraine. Agriculture and Forestry, 68(3), 93–102. doi:10.17707/AgricultForest.68.3.07
- 12. Hryhoriv Y., Lyshenko M., Butenko A., Nechyporenko V., Makarova V., Mikulina M., Bahorka M., Tymchuk D.S., Samoshkina I., Torianyk I. 2023b. Competitiveness and Advantages of Camelina sativa on the Market of Oil Crops. Ecological Engineering & Environmental Technology, 24(4), 97–103. doi.org/10.12912/27197050/161956
- 13. Humentyk M.Ya., Khivrych O.B., Kvak V.M., Zamoiskyi O.I. 2013. The effectiveness of weed protection methods on the growth and development of miscanthus plants in the conditions of the western part of the forest-steppe of Ukraine. Collection of scientific works of the Institute of bioenergetic crops and sugar beets of the National Academy of Sciences, 19, 24–27. (in Ukrainian)
- 14. Juodka R., Nainienė R., Juškienė V., Juška R., Leikus R., Kadžienė G., Stankevičienė D. 2022. Camelina (Camelina sativa L.) Crantz as feedstuffs in meat type poultry diet: A source of protein and n –3 fatty acids. Animals, 12(3), 295. https://doi.org/10.3390/ani12030295
- 15. Krzyżaniak M., Stolarski M.J., Tworkowski J., Puttick D., Eynck C., Załuski D., Kwiatkowski J. 2019. Yield and seed composition of 10 spring camelina genotypes cultivated in the temperate climate of Central Europe. Industrial Crops and Products, 138, 111443. https://doi.org/10.1016/j.indcrop.2019.06.006
- 16. Kurgak V.G., Panasyuk S.S., Asanishvili N.M., 2020. Influence of perennia llegume son the productivity of meadow phytocenoses. Ukrainian J. of Ecology, 6, 310–315. doi: 10.15421/ 2020_298.
- 17. Kurgak V.G. 2010. Meadow agrophytocenoses. Kyiv, DIA. (in Ukrainian)
- 18. Kurgak V.G., Levkovskyi A.M., Yefremova H.V., Leshchenko O.Yu. 2013. Bioenergy potential of perennial herbaceous phytocenoses of Ukraine. NAAN, 19, 63–67. (in Ukrainian)
- 19. Kurgak V.G., Tkachenko A.M. 2016. Bioenergy potential of perennial herbaceous phytocenoses. Herald of Agrarian Science, 2, 15–20. (in Ukrainian)
- 20. Kurgak V.G., Tkachenko M.A., Asanishvili N.M. 2021. Energy productivity of uncommon herbs for solid fuel manufacturing. Ukrainian J. оf Ecology, 1, 299–305. doi: 10.15421/ 2021_45.
- 21. Liu Y., Han J.,Mishchenko Y., Butenko А., Kovalenko V., Zhao H. 2023. Facile synthesis of β-cyclodextrin decorated Super P Li carbon black for the electrochemical determination of methyl parathion. Materials Research Innovations, Taylor and Francis, 1–8. DOI:10.1080/14328917.2023.2243069
- 22. Lys N., Tkachuk N., Butenko A., Kozak M., Polyvanyi A., Kovalenko V., Livoshchenko L. 2023. Evaluation of the efficiency of energy populus (poplar) growing technology as an alternative source of energy. Journal of Ecological Engineering, 24(12), 152– 157. https://doi.org/10.12911/22998993/173006
- 23. Peiretti P.G., Meineri G. 2007. Fatty acids, chemical composition and organic matter digestibility of seeds and vegetative parts of false flax (Camelina Sativa L.) after different lengths of growth. Animal Feed Science and Technology, 133(3–4), 341–350. https://doi.org/10.1016/j.anifeedsci.2006.05.001
- 24. Petrychenko V., Kurgak V., Rybak S. 2014. Bioenergy potential of meadows of Ukraine. Grassland Federation, 2, 143–145.
- 25. Radchenko M., Trotsenko V., Butenko A., Masyk I., Bakumenko O., Butenko S., Dubovyk O., Mikulina M. 2023. Peculiarities of forming productivity and quality of soft spring wheat varieties. Agriculture and Forestry, 69(4), 19–30. doi:10.17707/AgricultForest.69.4.02
- 26. Riaz R., Ahmed I., Sizmaz O., Ahsan U. 2022. Use of Camelina sativa and by – products in diets for dairy cows: Are view. Animals, 12(9), 1082. https://doi.org/10.3390/ani12091082
- 27. Rieznik S., Havva D., Butenko A., Novosad K. 2021. Biological activity of chernozems typical of different farming practices. Agraarteadus, 32(2), 307–313. DOI: 10.15159/jas.21.34.
- 28. Roik M., Kurylo V., Humentyk M. 2011. The efficiency of growing high-yielding energy crops. VLNAU, 15(2), 12–13. (in Ukrainian)
- 29. Ryzhuk S.M., Slyusar I.T., Vergunov V.A. 2002. Agroecological Features of Highly Efficient Use of Drained Peat Soils in Polissia and Forest-Steppe. Kyiv, Agrarian Science, 136. (in Ukrainian)
- 30. Sikora J., Niemiec M., Szeląg-Sikora A., Gródek-Szostak Z., Kuboń M., Komorowska M. 2020. Te impact of a controlled-release fertilizer on greenhouse gas emissions and the efciency of the production of Chinese cabbage. Energies, 8(13), 20–63. doi.org/10.3390/en13082063.
- 31. Syvyryn A.H., Reshetnykov V.N. 1988. Crop of saffron milk intensive technology. Industrial crops. Kolos, 19. (in Ukrainian)
- 32. Tanchyk S., Litvinov D., Butenko A., Litvinova O., Pavlov O., Babenko A., Shpyrka N., Onychko V., Masyk I., Onychko T. 2021. Fixed nitrogen in agriculture and its role in agrocenoses. Agronomy Research, 19(2), 601–611. doi.org/10.15159/AR.21.086
- 33. Trotsenko N., Zhatova H., Radchenko M. 2023. Growth and yield capacity of quinoa (chenopodium quinoa willd.) depending on the sowing rate in the conditions of the North–Eastern Forest–Steppe of Ukraine. AgroLife Scientific Journal, 12(2), 206– 213. https://doi.org/10.17930/AGL2023226
- 34. Tsyuk O., Tkachenko M., Butenko A., Mishchenko Y., Kondratiuk I., Litvinov D., Tsiuk Y., Sleptsov Y. 2022. Changes in the nitrogen compound transformation processes of typical chernozem depending on the tillage systems and fertilizers. Agraarteadus, 33(1), 192–198. DOI: 10.15159/jas.22.23.
- 35. Тytko R., Kalinichenko V. 2010. Renewable energy sources (Poland’s experience for Ukraine). Varshava: QWG.
- 36. Voitovyk М., Butenko A., Prymak І., Mishchenko Y., Tkachenko M., Tsyuk О., Panchenko О., Sleptsov Y., Kopylova T., Havryliuk O. 2023. Influence of fertilizing and tillage systems on humus content of typical chernozem. Agraarteadus, 34(1), 44–50. DOI: 10.15159/jas.23.03.
- 37. Woźniak A. 2019. Chemical Properties and Enzyme Activity of Soil as Affected by Tillage System and Previous Crop. Agriculture, 9(12), 262. doi: 10.3390/agriculture9120262
- 38. Zając M., Kiczorowska B., Samolińska W., Klebaniuk R. 2020. Inclusion of camelina, flax, and sun-flower seeds in the diets for broiler chickens: Apparent digestibility of nutrients, growth performance, health status, and carcass and meat quality traits. Animals, 10(2), 321. https://doi.org/10.3390/ani10020321
- 39. Zhang C.J., Gao Y., Jiang C., Liu L., Wang Y., Kim D.S., Yan X. 2021. Camelina seed yield and quality in different growing environments in northern China. Industrial Crops and Products, 172, 114071. https://doi.org/10.1016/j.indcrop.2021.114071
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-2f41c10e-5f30-4237-b606-b8eea52505cc