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Дослідження дефектів та недоліків при влаштуванні систем теплоізоляції на основі навісних вентильованих фасадів

dc.contributor.authorBabii, I.en
dc.contributor.authorOliinyk, N.en
dc.contributor.authorFadeeva, A.en
dc.contributor.authorBondarenko, O.en
dc.contributor.authorKuralova, A.en
dc.date.accessioned2026-07-08T11:43:35Z
dc.date.available2026-07-08T11:43:35Z
dc.date.issued2026
dc.description.abstractThis article presents a detailed analysis of the possibilities of applying various methods for landfill leachate treatment, including biological, physicochemical, membrane, and hybrid technologies. The study examines the main parameters and characteristics of landfill leachate, which is considered one of the most hazardous by-products of municipal solid waste disposal due to its complex chemical composition and high concentration of pollutants. Particular attention is paid to the variability of leachate composition depending on landfill operating conditions and external environmental factors. Based on an extensive review of scientific literature and existing practical experience, the article identifies treatment methods that are currently available and potentially applicable in Ukraine. The effectiveness of these methods is analyzed using real examples of leachate and wastewater treatment processes. The advantages and disadvantages of each approach are presented, taking into account operational efficiency, technological complexity, environmental safety, and economic feasibility. In addition, the treatment methods are compared according to key indicators, including biological oxygen demand (BOD), chemical oxygen demand (COD), ammonium nitrogen concentration, heavy metal content, and the degree of organic pollutant removal. The influence of landfill age on the composition and characteristics of leachate is also investigated, as this factor directly affects the ion and efficiency of treatment technologies. The article provides a classification of landfills according to their age and analyzes the processes of leachate formation at different stages of landfill operation. Special attention is given to the bacteriological characteristics of landfill leachate, including the presence of microorganisms, pathogens, fungi, and other microbial contaminants that may pose environmental and sanitary risks. The environmental impact of untreated leachate and the potential risks to soil, groundwater, surface water, and human health are identified and discussed. Based on the conducted review and comparative analysis, it is concluded that hybrid treatment methods are the most promising solution, as they combine the advantages of individual technologies, ensure greater treatment efficiency, and provide more universal application under varying local conditions and treatment requirements.en
dc.identifier.citationБабій І. М., Олійник Н. В., Фадєєва А. П., Бондаренко О. В., Куралова А. С. Дослідження дефектів та недоліків при влаштуванні систем теплоізоляції на основі навісних вентильованих фасадів // Сучасні технології, матеріали і конструкції в будівництві. 2026. № 1. С. 106-115. URI: https://stmkvb.vntu.edu.ua/index.php/stmkvb/article/view/1006.uk
dc.identifier.doihttps://doi.org/10.31649/2311-1429-2026-1-106-115
dc.identifier.issn2311-1437
dc.identifier.orcidhttps://orcid.org/0000-0001-8650-1751
dc.identifier.orcidhttps://orcid.org/0000-0003-4492-7003
dc.identifier.orcidhttps://orcid.org/0009-0008-6874-2496
dc.identifier.udc69.022.32
dc.identifier.urihttps://ir.lib.vntu.edu.ua/handle/123456789/52188
dc.language.isouk_UAuk_UA
dc.publisherВінницький національний технічний університетuk
dc.relation.ispartofСучасні технології, матеріали і конструкції в будівництві. № 1 : 106-115.uk
dc.relation.referencesGoulouti K., Castro J., Vassilopoulos А., Keller T. Thermal performance evaluation of fiber-reinforced polymer thermal breaks for balcony connections // Energy and Buildings, 70. –2014. –P. 365-371.en
dc.relation.referencesBabii I, KucherenkoL.,Sokolan Yu, Zalogina A., Sławomir Rabczak. Сomparative characteristics of modern technologies thermal insulation of the houses. Czasopismo Inżynierii Lądowej, Środowiska I Architektury Journal Of Civil Engineering, Environment And Architecture JCEEA, t. XXXVIII, z. 68, 2021. -Ss.17-25. http://doi.prz.edu.pl/pl/publ/biis/1107.en
dc.relation.referencesSiciliano, A.P.; Zhao, X.; Fedderwitz, R.; Ramakrishnan, K.; Dai, J.; Gong, A.; Zhu, J.Y.; Kośny, J.; Hu, L. Sustainable wood-waste-based thermal insulation foam for building energy efficiency. Buildings, 2023, 13, 840. https://doi.org/10.3390/buildings13040840.en
dc.relation.referencesPontinha, A.D.R.; Mäntyneva, J.; Santos, P.; Durães, L. Thermomechanical performance assessment of sustainable buildings’insulating materials under accelerated ageing conditions. Gels, 2023, 9, 241. https://doi.org/10.3390/gels9030241.en
dc.relation.referencesNazirov R. A., Belov T. V. Influence of heat transfer resistance of insulation on the distribution of temperature fields in wall enclosures with hinged ventilated facades. Journal of Siberian Federal University. Engineering & Technologies. 2014. Vol. 7, No 2. P. 207-213.en
dc.relation.urihttps://stmkvb.vntu.edu.ua/index.php/stmkvb/article/view/1006
dc.subjecthinged ventilated facadesen
dc.subjectfacade insulationen
dc.subjectexternal wallsen
dc.subjectthermal modernizationen
dc.subjectenergy efficiencyen
dc.titleДослідження дефектів та недоліків при влаштуванні систем теплоізоляції на основі навісних вентильованих фасадівuk
dc.title.alternativeResearch of defects and shortcomings in the installation of thermal insulation systems based on hinged ventilated facadesen
dc.typeArticle, professional native edition
dc.typeArticle

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