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dc.contributor.authorKarbivska, Uliana-
dc.contributor.authorSitnyk, Andriy-
dc.contributor.authorLehun, Vitalii-
dc.contributor.authorPanakhyd, Halyna-
dc.contributor.authorГамаюнова, Валентина Василівна-
dc.contributor.authorGamayunova, Valentina-
dc.contributor.authorSolovei, Halyna-
dc.contributor.authorGniezdilova, Victoria-
dc.contributor.authorMel'nyk, Vitaliy-
dc.contributor.authorKoliadzhyn, Yurii-
dc.contributor.authorBobrova, Olena-
dc.contributor.authorHusak, Viktor-
dc.date.accessioned2026-09-01T06:24:14Z-
dc.date.available2026-09-01T06:24:14Z-
dc.date.issued2026-
dc.identifier.citationKarbivska, U., Sitnyk, A., Lehun, V., Panakhyd, H., Gamajunova, V., Solovei, H., Gniezdilova, V., Mel’nyk, V., Koliadzhyn, Y., Bobrova, O., & Husak, V. (2026). Integrated fertilization enhances biomass yield of miscanthus × giganteus on acidic marginal soils. Biomass, 6(4), 50. https://doi.org/10.3390/biomass6040050uk_UA
dc.identifier.urihttps://dspace.mnau.edu.ua/jspui/handle/123456789/26773-
dc.description.abstractOptimizing nutrient management is essential for improving the productivity and profitability of perennial bioenergy crops on marginal soils. This study evaluated the effects of mineral fertilization, a humic-based biostimulant, and a titanium-containing micronutrient preparation on the growth, biomass yield, and economic performance of Miscanthus & times; giganteus grown on acidic low-fertility soil in Western Ukraine from 2022 to 2025. A repeated-measures mixed-model analysis showed significant effects of treatment, year, and treatment & times; year interaction for the main growth and productivity parameters, indicating a year-dependent fertilization response. Integrated fertilization improved plant height, shoot formation, dry biomass yield, and biofuel output compared with the unfertilized control. The highest mean dry biomass yield was obtained with N30P30K30 + Black Jack, reaching 16.43 t ha-1 and exceeding the control by approximately 40%, while N30P30K30 + Intermag Titan also showed high productivity. Dry biomass yield was strongly associated with plant height, confirming the role of structural development in biomass formation. Economic assessment indicated the highest long-term profitability for N30P30K30 + Black Jack. These findings indicate that integrated fertilization is an effective strategy for sustainable miscanthus biomass production on marginal soils.uk_UA
dc.language.isoenuk_UA
dc.subjectMiscanthus × giganteusuk_UA
dc.subjectintegrated nutrient managementuk_UA
dc.subjectNPK fertilizationuk_UA
dc.subjecthumic substancesuk_UA
dc.subjecttitaniumuk_UA
dc.subjectbiomass productivityuk_UA
dc.subjectmarginal soilsuk_UA
dc.titleIntegrated Fertilization Enhances Biomass Yield of Miscanthus × giganteus on Acidic Marginal Soilsuk_UA
dc.typeArticleuk_UA
Розташовується у зібраннях:Публікації науково-педагогічних працівників МНАУ у БД Web of Science
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