Vol. 16, No. 2, 2025

Method of preparing oat straw for biofuel production

Suggested citation

Halysh, V., Trus, I., Yashchenko, O., Hromnadska, M., & Zubyk, P. (2025). Method of preparing oat straw for biofuel production. Ecological Safety and Balanced Use of Resources, 16(2), 9-18. https://doi.org/10.63341/esbur/2.2025.09

Vegetation cover dynamics of the Dniester basin under climate change influence in the 21st century

Suggested citation

Salyha, V., & Arkhypova, L. (2025). Vegetation cover dynamics of the Dniester basin under climate change influence in the 21st century. Ecological Safety and Balanced Use of Resources, 16(2), 19-30. https://doi.org/10.63341/esbur/2.2025.19

Comprehensive assessment of heavy metal pollution in urban environme nts: A case study from Jelgava, Latvia

Suggested citation

Grinfelde, I., Bertins, M., & Pilecka-Ulcugaceva, J. (2025). Comprehensive assessment of heavy metal pollution in urban environme nts: A case study from Jelgava, Latvia. Ecological Safety and Balanced Use of Resources, 16(2), 31-42. https://doi.org/10.63341/esbur/2.2025.31

Hydrochemical regime of rivers in the Borzhava River basin

Suggested citation

Vovkunovych, M., Sukharev, S., Kut, D., Karabiniuk, M., & Leta, V. (2025). Hydrochemical regime of rivers in the Borzhava River basin. Ecological Safety and Balanced Use of Resources, 16(2), 43-56. https://doi.org/10.63341/esbur/2.2025.43

Evaluation of the assimilation capacity and self-cleaning ability of biogeoecosystems along the Caspian Sea coastal zone

Suggested citation

Sadigova, N., Nadjafova, S., & Gulieva, L. (2025). Evaluation of the assimilation capacity and self-cleaning ability of biogeoecosystems along the Caspian Sea coastal zone. Ecological Safety and Balanced Use of Resources, 16(2), 57-68. https://doi.org/10.63341/esbur/2.2025.57

Assessment of heavy metal and pesticide contamination in organic crops using Allium cepa

Suggested citation

Babych, O., Khonenko, L., Gamajunova, V., Bulba, I., & Salnikova, A. (2025). Assessment of heavy metal and pesticide contamination in organic crops using Allium cepa. Ecological Safety and Balanced Use of Resources, 16(2), 69-81. https://doi.org/10.63341/esbur/2.2025.69

Methodological approaches to assessing the impact of threats on environmental safety

Suggested citation

Maksiuta, N., Levchenko, I., Buriak, A., & Cherviak, A. (2025). Methodological approaches to assessing the impact of threats on environmental safety. Ecological Safety and Balanced Use of Resources, 16(2), 82-96. https://doi.org/10.63341/esbur/2.2025.82

Environmental risks of thermal waste management and prospects for sustainable remediation

Suggested citation

Soboliev, S., & Pitak, I. (2025). Environmental risks of thermal waste management and prospects for sustainable remediation. Ecological Safety and Balanced Use of Resources, 16(2), 97-106. https://doi.org/10.63341/esbur/2.2025.97

Integrated aerial and ground unmanned systems for assessing war-induced forest ecosystem damage

Suggested citation

Semenenko, O., Serhiienko, A., Dobrovolskyi, U., Yarmolchyk, M., & Yehorov, S. (2025). Integrated aerial and ground unmanned systems for assessing war-induced forest ecosystem damage. Ecological Safety and Balanced Use of Resources, 16(2), 107-120. https://doi.org/10.63341/esbur/2.2025.107

Determination of the ecological state of atmospheric air in the Ivano-Frankivsk territorial community

Suggested citation

Zorin, D., & Solodkyy, O. (2025). Determination of the ecological state of atmospheric air in the Ivano-Frankivsk territorial community. Ecological Safety and Balanced Use of Resources, 16(2), 121-136. https://doi.org/10.63341/esbur/2.2025.121

Analysis of data on the generation of waste electrical and electronic equipment

Suggested citation

Grechanyuk, E., & Ishchenko, V. (2025). Analysis of data on the generation of waste electrical and electronic equipment. Ecological Safety and Balanced Use of Resources, 16(2), 137-150. https://doi.org/10.63341/esbur/2.2025.137

Predictive modelling of the movement of pollutants of the Naryn River using the SWAT+ model

Suggested citation

Myrzabekowa, A., Totubaeva, N., & Myrzabekova, U. (2025). Predictive modelling of the movement of pollutants of the Naryn River using the SWAT+ model. Ecological Safety and Balanced Use of Resources, 16(2), 151-162. https://doi.org/10.63341/esbur/2.2025.151