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The method of utilization of biomass ash in agriculture as an agrochemical is considered. Studies have shown that biomass ash contains a number of macro-and microelements essential for agriculture, such as phosphorus, potassium, calcium, magnesium and sulphur. Based on the content of the main chemical components and physical and chemical parameters of wood and plant ash, conclusions are drawn regarding its use. Wood ash with a high calcium content is suitable for agromelioration of soils with a low pH value. Ash from agricultural crop straw with a high calcium and potassium content is suitable for the production of potash fertilizers, and with a high potassium and phosphorus content–for the production of phosphorus-potassium fertilizers.
Czasopismo
Rocznik
Tom
Strony
332--339
Opis fizyczny
Bibliogr. 18 poz., rys., tab.
Twórcy
autor
- Sumy State University, St. Kharkivska 116, Sumy, 40007, Ukraine
autor
- CROP-INCRIS LLC, 1st Svobody lane 8, Romny, Sumy region, 42000, Ukraine
autor
- Research Institute of Mineral Fertilizers and Pigments of Sumy State University, St. Kharkivska, p/o 12, Sumy, 40003, Ukraine
autor
- Research Institute of Mineral Fertilizers and Pigments of Sumy State University, St. Kharkivska, p/o 12, Sumy, 40003, Ukraine
autor
- Viacheslav Chornovil Institute of Sustainable Development, Lviv Polytechnic National University, S. Bandera Str. 12, Lviv, 79013, Ukraine
Bibliografia
- 1. Agbor E., Zhang X., Kumar A. 2014. A review of biomass co-firing in North America. Renewable and Sustainable Energy Reviews, 40, 930–943.
- 2. Basok B.I., Davydenko B.V., Kuzhel L.M., Lysenko O.M., Veremiychuk H.M. 2021. Experimental studies of combustion of vegetable pellets in a household boiler. Ventyliatsiia, osvitlennia ta teplohazopostachannia, 37, 13–22. (in Ukrainian).
- 3. Bebber D.P., Richards V.R. 2022 A meta-analysis of the effect of organic and mineral fertilizers on soil microbial diversity. Appl Soil Ecol, 175, 104450–104459. https://doi.org/10.1016/j. apsoil.2022.104450.
- 4. Dibáczi Z., Hujber D., Lipcsik M., Simon T. 2010. Study on biomass trade in poland. energy centre- energy efficiency. Environment and Energy Information Agency Non-profit Limited Company. Retrieved from http://www.central2013.eu/fileadmin/ user_upload/Downloads/ outputlib/4biomas s_ Hungary_trade_study_uploaded.pdf.
- 5. Dyakonov O.V., Dyakonov V.I., Skrypnyk O.S. 2015. Energy efficiency of biofuel. Materials of the conference Safety of human life and activity. Education. Science. Practice, 98–99. (in Ukrainian).
- 6. Kashkovskyi V.I., Yevdokymenko V.O., Kamenskikh D.S., Tkachenko T.V., Vakhrin V.V. 2017. Ash and ash slag waste as multifunctional raw materials. Nauka innov., 13(4), 53–63. (In Ukrainian).
- 7. Kramar V.G. 2021. Problems of disposal of ash from biomass boilers in Ukraine. Teplofizyka ta teploenerhetyka, 43(3), 71–77с. (In Ukrainian).
- 8. Kukharets S.M., Holub H.A. 2012. Ensuring energy autonomy of agroecosystems based on biofuel production. Visnyk Zhytomyrskoho natsionalnoho ahroekolohichnoho universytetu, 1(1), 345–352. (in Ukrainian).
- 9. Malovanyy M., Palamarchuk O., Trach I., Petruk H., Sakalova H., Soloviy Kh., Vasylinych T., Tymchuk I., Vronska N. 2020. adsorption extraction of chromium ions (III) with the help of bentonite clays. Journal of Ecological Engineering, 21(7), 178-185. https://doi.org/ 10.12911/22998993/125545.
- 10. Malovanyy M., Moroz O., Popovich V., Kopiy M., Tymchuk I., Sereda A., Krusir G., Soloviy Ch. 2021. The perspective of using the «open biological conveyor» method for purifying landfill filtrates. Environmental Nanotechnology, Monitoring & Management, 16(2021), 100611. https://doi.org/10.1016/j. enmm.2021.100611.
- 11. Polyanskyi O.S., Dyakonov O.V., Skrypnyk O.S., Fesenko G.V., Dyakonov V.I., Kharchenko Yu.V., Torosov A.S., Voloshchenko V.V. 2017. Development directions of alternative energy sources: emphasis on solid biofuel and flexible technologies for its production. KhNUMH im. O. M. Beketova, Kharkiv (in Ukrainian)
- 12. Savci S. 2012 Investigation of effect of chemical fertilizers on environment. APCBEE Proc., 1, 287292. https://doi.org/10.1016/j.apcbee.2012.03.047.
- 13. Slobodianyk M.S., Chebotko K.O., Voytenko L.V., Kopilevich V.A., Zhirnov V.V., Kosmatiy V.E. 2015. Bioconversion of organic waste: theory and practice. Vydavets PP Lysenko M.M., Nizhyn. (in Ukrainian).
- 14. Stankovski S., Maciorovsky R., Hybzhynska M. 2012. Are ash and slag from biomass combustion valuable by-products or waste? Materialyi seminara Materialyi seminara Zoloshlaki TES: udalenie, transport, pererabotka, skladirovanie, 106–109. (in Russian).
- 15. Tymchuk I., Malovanyy M., Shkvirko O., Zhuk V., Masikevych A., Synelnikov S. 2020. Innovative creation technologies for the growth substrate based on the man-made waste – perspective way for Ukraine to ensure biological reclamation of waste dumps and quarries. International Journal of Foresight and Innovation Policy, 14(2/3/4), 248-263. https://doi. org/ 10.1504/IJFIP.2020.111239.
- 16. Vakal S., Yanovska A., Vakal V., Artyukhov A., Shkola V., Yarova T., Dmitrikov V., Krmela J., Malovanyy M. 2020. Minimization of soil pollution as a result of the use of encapsulated mineral fertilizers. Journal of Ecological Engineering, 22(1), 221230. https://doi.org/10.12911/22998993/128965.
- 17. Vygovska H.P., Mishchenko V.S. 2008. Waste management in Ukraine: results and prospects. Materials of the conference Spivrobitnytstvo dlia vyrishennia prtoblemy vidkhodiv, 17–20. (in Ukrainian).
- 18. State Enterprise “Ukrainian Scientific Pharmacopoeial Center for the Quality of Medicines” 2015. Derzhavna Farmakopeia Ukrainy [State Pharmacopoeia of Ukraine], Kharkiv: State Enterprise “Ukrainian Scientific Pharmacopoeial Center for the Quality of Medicines”.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-d3ad379f-a398-4779-8845-78733c13e30a