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dc.contributor.authorГавриш, Валерій Іванович-
dc.contributor.authorHavrysh, Valeriy-
dc.contributor.authorKalinichenko, Antonina-
dc.contributor.authorMentel, Grzegorz-
dc.contributor.authorMentel, Urszula-
dc.contributor.authorVasbieva, Dinara G.-
dc.date.accessioned2023-06-06T07:54:41Z-
dc.date.available2023-06-06T07:54:41Z-
dc.date.issued2020-
dc.identifier.citationHavrysh, V., Kalinichenko, A., Mentel, G., Mentel, U., & Vasbieva, D. G. (2020). Husk energy supply systems for sunflower oil mills // Energies, 13(2) doi:10.3390/en13020361uk_UA
dc.identifier.urihttps://dspace.mnau.edu.ua/jspui/handle/123456789/14260-
dc.description.abstractTogether with solar, wind, and hydro renewable energy sources (RES), biomass constitutes an integral part of the high-renewables electricity systems. Considerable feedstocks for electricity generation are process-based residues. Ukraine is the world leader in sunflower seed production, therefore, husk (a by-product of oil production) is a promising biofuel for combustion- based power plants. The plants consume primarily electricity and fossil fuels (natural gas or fuel oil) for steam production. Their usage affects the edible oil production cost and impacts on climate change. The above facts force us to look for alternatives. By-product (husk) utilization can reduce exhaustible energy consumption (fossil fuels and grid electricity) and mitigate climate change. The aim of the study is to make an energy and ecological assessment of biomass energy supply systems. Specifically, the electricity and heat consumption of Ukrainian sunflower oil mills is investigated. Different options of cogeneration systems are analyzed. The preferable mode of combustion-based husk combined heat and power plants is to meet their own heat demand and to sell surplus electricity. Relative gross income and carbon dioxide emission reductions are calculated. Our results show that husk utilization can meet electricity and heat requirements of edible plants. The surplus electricity may be sold to the grid. Husk combined heat and power plants may result in reduction of carbon dioxide by 200–300% and an increase of total income by 24.7–65.7% (compared to conventional energy supply systems). © 2020 by the authors.uk_UA
dc.language.isoenuk_UA
dc.publisherMykolayiv National Agrarian Universityuk_UA
dc.subjectBiomassuk_UA
dc.subjectCarbon dioxideuk_UA
dc.subjectEfficiencyuk_UA
dc.subjectEmissionsuk_UA
dc.subjectEnergy supplyuk_UA
dc.subjectHuskuk_UA
dc.subjectRenewable energy sourcesuk_UA
dc.subjectemissionsuk_UA
dc.subjectCogeneration plantsuk_UA
dc.subjectCombustionuk_UA
dc.subjectEmission controluk_UA
dc.subjectEnergy utilizationuk_UA
dc.subjectFossil fuel power plantsuk_UA
dc.subjectFossil fuelsuk_UA
dc.subjectGas plantsuk_UA
dc.subjectGlobal warminguk_UA
dc.subjectNatural gasoline plantsuk_UA
dc.subjectNatural resourcesuk_UA
dc.subjectOilseedsuk_UA
dc.subjectParticulate emissionsuk_UA
dc.subjectPower generationuk_UA
dc.subjectSunflower oiluk_UA
dc.subjectCarbon dioxide emissionsuk_UA
dc.subjectCogeneration systemsuk_UA
dc.subjectElectricity generationuk_UA
dc.subjectElectricity systemuk_UA
dc.subjectEnergy suppliesuk_UA
dc.subjectEnergy supply systemuk_UA
dc.subjectRenewable energy sourceuk_UA
dc.titleHusk energy supply systems for sunflower oil millsuk_UA
dc.typeArticleuk_UA
dcterms.publisherUniversity of Opole-
dcterms.publisherUniversity of Information Technology and Management in Rzeszow-
Розташовується у зібраннях:Публікації науково-педагогічних працівників МНАУ у БД Scopus
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