Zitieren

Azkorra-Larrinaga, Z., Erkoreka-González, A., Martín-Escudero, K., Pérez-Iribarren, E., Romero-Antón, N., 2023. Thermal characterization of a modular living wall for improved energy performance in buildings, Building and Environment, 234, 110102, DOI: 10.1016/j.buildenv.2023.110102. Search in Google Scholar

Čákyová, K., Vertal, M., Vargová, A., Vranayová, Z., Lis, A., 2023.Transforming urban areas in accordance with the principles of Nature-Based Solutions, Construction of Optimized Energy Potential, 12, 94-106, DOI: 10.17512/bozpe.2023.12.11. Search in Google Scholar

Cardinali, M., Balderrama, A., Arztmann, D., Pottgiesser, U., 2023. Green walls and health: An umbrella review, Nature-Based Solutions, 3, 100070, DOI: 10.1016/j.nbsj.2023.100070. Search in Google Scholar

Cilliers, E. J., Ghosh, S., Ndaguba, E. A., 2023. Reclaiming Healthy Cities Through Nature-Based Planning Solutions. In: Biloria, N., Sebag, G., Robertson, H. (eds) The Empathic City. An Urban Health and Wellbeing Perspective, Springer, Cham. Search in Google Scholar

Doan, D.T., Kumarasiri, B., Ghaffarian Hoseini, A., 2023. Green Building. In: Brinkmann, R., (eds.) The Palgrave Handbook of Global Sustainability. Palgrave Macmillan, Cham. Search in Google Scholar

EEA European Environment Agency. Available with: www.eea.europa.eu (24.11.2023). Search in Google Scholar

El Badaoui, M., Touzani, A, 2022. AHP QFD methodology for a recycled solar collector, Production Engineering Archives, 28(1), 30-39, DOI: 10.30657/pea.2022.28.04. Search in Google Scholar

Energy. European Commission, Available with: https://ec.europa.eu/energy/ (24.11.2023). Search in Google Scholar

Energy from renewable sources, 2022. Statistics Poland, Warsaw. Search in Google Scholar

European Commission, 2020. A Renovation Wave for Europe – greening our buildings, creating jobs, improving lives, COM 662. Search in Google Scholar

Fonseca, F, Paschoalino, M, Silva, L., 2023. Health and Well-Being Benefits of Outdoor and Indoor Vertical Greening Systems: A Review, Sustainability, 15(5), 4107, DOI: 10.3390/su15054107. Search in Google Scholar

Idzikowski, A., Cierlicki, T., 2021. Economy and energy analysis in the operation of renewable energy installations - a case study, Production Engineering Archives, 27(2), 90–99, DOI: 10.30657/pea.2021.27.11. Search in Google Scholar

Knut, P., Kocúrková, M., Vranayová Z., 2023. Biosolar panels: An innovative solution for sustainable construction, Construction of Optimized Energy Potential, 12, 172-181, DOI: 10.17512/bozpe.2023.12.19. Search in Google Scholar

Kuok Ho, D. T., 2023. Green walls as mitigation of urban air pollution: A review of their effectiveness, Research in Ecology, 2(5), 5710, DOI:10.30564/re.v5i2.5710. Search in Google Scholar

Kuzior, A., Vyshnevskyi, O., Trushkina, N., 2022. Assessment of the impact of digitalization on greenhouse gas emissions on the example of EU Member States. Production Engineering Archives, 28(4), 407-419, DOI: 10.30657/pea.2022.28.50. Search in Google Scholar

Lis, A., Savchenko O., 2022. Possibilities of using the energy potential of geothermal waters in the case of Poland and Ukraine, Construction of Optimized Energy Potential, 11, 181 - 194, DOI: 10.17512/bozpe.2022.11.21. Search in Google Scholar

Long-term building renovation strategy, 2022. Council of Ministers, Warsaw. Search in Google Scholar

National Census of Population and Housing from 2011, 2013. Statistics Poland, Warsaw. Search in Google Scholar

Pongkua, W., Sriprapat, W., Thiravetyan, P., Treesubsuntorn, Ch., 2023. Active living wall for particulate matter and VOC remediation: potential and application, Environmental Science and Pollution Research, 30, 37428325, DOI: 10.1007/s11356-023-28480-2. Search in Google Scholar

Savchenko, O., Lis, A., 2021. Efficiency of solar energy use in domestic hot water systems in Poland, Construction of Optimized Energy Potential, 10(2), 45-52, DOI: 10.17512/bozpe.2021.10.06. Search in Google Scholar

Shapoval, S., Zhelyh, V., Venhryn, I., Myroniuk, K., Hensetskyy, M., 2020. Examination of the thermal efficiency of the solar collector integrated into the light transparent building façade, Theory and Building Practice, 2(1), 30-37, DOI: 10.23939/jtbp2020.01.030. Search in Google Scholar

Sonkar, A., Kumar, M., Gupta, R., Dixit, D., Rahul, R., 2023. Review on green building, International Journal of Scientific Research in Engineering and Management, 7(4), DOI: 10.55041/IJSREM18766. Search in Google Scholar

Srbinovska, M.; Andova, V.; Mateska, A.; Krstevska, M., 2021. The effect of small green walls on reduction of particulate matter concentration in open areas, Journal of Cleaner Production, 279, 123306, DOI: 10.1016/j.jclepro.2020.123306. Search in Google Scholar

Tan, T., Kong, F., Yin, H., Cook, L. M., Middel, A, Yang, S., 2023. Carbon dioxide reduction from green roofs: A comprehensive review of processes, factors, and quantitative methods, Renewable and Sustainable Energy Reviews, 182, 113412, DOI: 10.1016/j.rser.2023.113412. Search in Google Scholar

Tkachenko, T., Mileikovskyi, V., Hunchenko, O., 2019a. Assessment of energy savings and indirect reduction of CO2 emissions by vertical gardening, Ventilation Illumination and Heat Gas Supply, 31, 16-23, DOI: 10.32347/2409-2606.2019.31.16-23. Search in Google Scholar

Tkachenko, T., Mileikovskyi, V., Ujma, A., 2019b. Field Study of Air Quality Improvement by a “Green Roof” in Kyiv, System Safety: Human - Technical Facility - Environment, CzOTO, 1(1), 419-424, DOI: 10.2478/czoto-2019-0054. Search in Google Scholar

Venuh, Z., Thaneshwari, T., Raut, S., Kombey, P., 2023. Green wall for healthy and sustainable urban society: A review, Journal of the Greens and Gardens, 5(15-16), 1-9. Search in Google Scholar

Vera, S., Viecco, M., Jorquera, H., 2021. Effects of biodiversity in green roofs and walls on the capture of fine particulate matter, Urban Forestry & Urban Greening, 63, 127229, DOI: 10.1016/j.ufug.2021.127229. Search in Google Scholar

Voznyak, O., Spodyniuk, N., Antypov, I., Dudkiewicz, E., Kasynets, M., Savchenko, O., Tarasenko, S., 2023. Efficiency Improvement of Eco-Friendly Solar Heat Supply System as a Building Coating, Sustainability, 15(3), 2831, DOI: 10.3390/su15032831. Search in Google Scholar

Vranay, F., Vranayova, Z., Lis. A., 2021. Building´s heat potential on resources in respect to CO2 emissions and primary energy reduction, Materials Science and Engineering, 1203, 022139, DOI: 10.1088/1757-899X/1203/2/022139. Search in Google Scholar

WHO World Health Organization, 2023. Air quality and health, WHO, Geneva. Search in Google Scholar

World Green Building Trends, 2021. Dodge Construction Network Research, Bedford. Search in Google Scholar

World Air Quality Report 2022, 2023.IQAir, Goldach. Search in Google Scholar

Ysebaert, T., Koch, K., Samson, R. & Denys, S., 2021. Green walls for mitigating urban particulate matter pollution. A review, Urban Forestry & Urban Greening, 59, 127014, DOI: 10.1016/j.ufug.2021.127014. Search in Google Scholar

Zhelykh, V., 2023. Characteristics of heat exchange in the energy-efficient exterior wall of a passive house, Construction of Optimized Energy Potential, 12, 143-153, DOI: 10.17512/bozpe.2023.12.16. Search in Google Scholar