Asadian, Y., & Weiler, M. (2009). A new approach in measuring rainfall interception by urban trees. Hydrological Processes, 23(3), 357–364.
Bartens, J., Day, S. D., Harris, J. R., Dove, J. E., & Wynn, T. M. (2008). Can urban tree roots improve infiltration through compacted subsoils? Journal of Environmental Quality, 37(6), 2048–2057.
Berland, A., Shiflett, S. A., Shuster, W. D., Garmestani, A. S., Goddard, H. C., Herrmann, D. L., & Hopton, M. E. (2017). The role of trees in urban stormwater management. Landscape and Urban Planning, 162, 167–177.
Coutts, A. M., White, E. C., Tapper, N. J., Beringer, J., & Livesley, S. J. (2016). Temperature and human thermal comfort effects of street trees across three contrasting street canyon environments. Theoretical and Applied Climatology, 124(1–2), 55–68.
Didur, O. O., Katsevych, V. V., Ivanko, I. A., Loza, I. M., Strepetova, K. V., Holoborodko, K. K., Lovynska, V. M., & Sytnyk, S. A. (2024). The influence of introduced tree species on the relationships between soil buffering capacity and ecological groups of microorganisms in urban park soils. Biosystems Diversity, 32(4), 512–517.
Feng, X., Qiu, B., Li, Z., Li, H., & Xu, Y. (2023). Microclimate effects of four urban tree species. Frontiers in Environmental Science, 11, 1108002.
Georgi, N. J., & Zafiriadis, K. (2006). The impact of park trees on microclimate in urban areas. Urban Ecosystems, 9, 195–209.
Gorb, A. S., & Duk, N. M. (2006). Klimat Dnipropetrovs’koyi oblasti [Climate of Dnipropetrovsk Region]. Dnipropetrovs’k National University Press, Dnipropetrovs’k (in Ukrainian).
Hardin, P. J., & Jensen, R. R. (2007). The effect of urban leaf area on summer time urban surface kinetic temperatures: A Terre Haute case study. Urban Forestry and Urban Greening, 6, 63–72.
Helletsgruber, C., Gillner, S., Gulyás, Á., Junker, R. R., Tanács, E., & Hof, A. (2020). Identifying tree traits for cooling urban heat islands – a cross-city empirical analysis. Forests, 11(10), 1064.
IUSS Working Group WRB (2022). World reference base for soil resources: International soil classification system for naming soils and creating legends for soil maps. 4th ed. International Union of Soil Sciences.
Ivanko, I. A., Baranovsky, B. O., Kabar, A. M., Karmyzova, L. O., Holoborodko, K. K., & Didur, O. O. (2024). Modern diversity and dynamics of dendroflora in the megalopolis located in subaride zone (Dnipro city). Lira, Dnipro (in Ukrainian).
Kokila, A., Nagarajaa, S., Hanumantappa, K., & Mahadevamurthy, M. (2024). Effect of tree canopy cover on soil moisture dynamics in different agroforestry systems under semi-arid condition. International Journal of Environment and Climate Change, 14(9), 485–495.
Konarska, J., Uddling, J., Holmer, B., Lutz, M., Lindberg, F., Pleijel, H., & Thorsson, S. (2016). Transpiration of urban trees and cooling effect. International Journal of Biometeorology, 60(1), 159–172.
Kunakh, O. M., Ivanko, I. A., Holoborodko, K. K., Lisovets, O. I., Volkova, A. M., Nikolaieva, V. V., & Zhukov, O. V. (2022). Modeling the spatial variation of urban park ecological properties using remote sensing data. Biosystems Diversity, 30(3), 213–225.
Li, H., Zhao, Y., Wang, C., Ürge-Vorsatz, D., Carmeliet, J., & Bardhan, R. (2024). Cooling efficacy of trees across cities is determined by background climate, urban morphology, and tree traits. Communications Earth and Environment, 5, 754.
Livesley, S. J., McPherson, E. G., & Calfapietra, C. (2016). The urban forest and ecosystem services: Impacts on urban water, heat, and pollution cycles at the tree, street, and city scale. Journal of Environmental Quality, 45(1), 119–124.
Lykholat, Y. V., Davydov, V. R., Khromykh, N. O., & Didur, O. O. (2022). Specific features of the water regime of the genus Chaenomeles introduced plants in the steppe zone conditions. Ecology and Noospherology, 33(1), 9–14.
Marinšek, A., Bindewald, A., Kraxner, F., La Porta, N., Meisel, P., Stojnić, S., Cocozza, C., & Lapin, K. (Eds.). (2022). Management of nonnative tree species in urban areas of the Alpine space. BFW.
Pataki, D. E., McCarthy, H. R., Litvak, E., & Pincetl, S. (2011). Transpiration of urban forests in Los Angeles. Ecological Applications, 21(3), 661–677.
Pepe, M., Crescente, M. F., & Varone, L. (2022). Effect of water stress on physiological and morphological leaf traits: A comparison among three widely-spread invasive alien species (Ailanthus altissima, Phytolacca americana, and Robinia pseudoacacia). Plants, 11(7), 899.
Ponte, S., Sonti, N. F., Phillips, T. H., & Pavao-Zuckerman, M. A. (2021). Transpiration rates of red maple (Acer rubrum) differ between management contexts in urban forests of Maryland, USA. Scientific Reports, 11, 22538.
Rahman, M. A., Armson, D., & Ennos, A. R. (2015). A comparison of the growth and cooling effectiveness of five commonly planted urban tree species. Urban Ecosystems, 18, 371–389.
Rahman, M. A., Hartmann, C., Moser-Reischl, A., Freifrau von Strachwitz, M., Paeth, H., Pretzsch, H., Pauleit, S., & Rötzer, T. (2020a). Tree cooling effects and human thermal comfort under contrasting species and sites. Agricultural and Forest Meteorology, 287, 107947.
Rahman, M. A., Moser, A., Rötzer, T., & Pauleit, S. (2017). Within canopy temperature differences and cooling ability of Tilia cordata trees grown in urban conditions. Building and Environment, 114, 118–128.
Rahman, M. A., Stratópoulos, L. M., Moser-Reischl, A., Zölch, T., Häberle, K. H., Rötzer, T., Pretzsch, H., & Pauleit, S. (2020b). Traits of trees for cooling urban heat islands: A meta-analysis. Building and Environment, 170, 106606.
Richter, R., Ballasus, H., Engelmann, R. A., Zielhofer, C., Sanaei, A., & Wirth, C. (2022). Tree species matter for forest microclimate regulation during the drought year 2018: Disentangling environmental drivers and biotic drivers. Scientific Reports, 12, 17559.
Schlaepfer, M. A., Guinaudeau, B., Martin, P., & Wyler, N. (2020). Quantifying the contributions of native and non-native trees to a city’s biodiversity and ecosystem services. Urban Forestry and Urban Greening, 56, 126861.
Shupranova, L., Holoborodko, K., Loza, I., Zhukov, O., & Pakhomov, O. (2022). Assessment of Parectopa robiniella Clemens effect on biochemical parameters of Robinia pseudoacacia in industrial city conditions in Steppe Ukraine. Ekológia (Bratislava), 41(4), 340–350.
Souch, C. A., & Souch, C. (1993). The effect of trees on microclimate. Journal of Arboriculture, 19(5), 303–312.
Toscano, S., Ferrante, A., & Romano, D. (2019). Response of Mediterranean ornamental plants to drought stress. Horticulturae, 5(1), 6.
Xiao, Q., & McPherson, E. G. (2002). Rainfall interception by urban forest. Urban Ecosystems, 6, 291–302.
Zhang, B., & Brookhouse, M. (2025). Microclimatic benefits of urban shading trees: Synergies and trade-offs in Canberra, Australia. Building and Environment, 285, 113584.
Zölch, T., Maderspacher, J., Wamsler, C., & Pauleit, S. (2016). Using green infrastructure for urban climate-proofing: An evaluation of heat mitigation measures at the micro-scale. Urban Forestry and Urban Greening, 20, 305–316.
Comments (0)