Assist. Prof. Dr. Stanislav Yankovsky | Energy | Best Academic Researcher Award
Assistant Professor | Tomsk Polytechnic University | Russia
Stanislav Aleksandrovich Yankovsky is a highly accomplished academic and researcher specializing in energy engineering and thermal power systems. He serves as an Associate Professor at the I.N. Butakov Research and Educational Center of the National Research Tomsk Polytechnic University, where he also earned his engineering degree and Ph.D. equivalent. His professional journey spans engineering practice, teaching, and research leadership, with a strong focus on energy efficiency, renewable energy sources, hydrogen energy, carbon-neutral conversion technologies, recycling, geothermal technologies, and tribotechnologies. He has led and participated in numerous large-scale research projects funded by national science foundations and strategic development programs, contributing to advancements in coal-wood fuel combustion, geothermal technologies for autonomous energy supply, and distributed energy systems. His work has resulted in over 150 scientific publications, including many in high-impact journals indexed in Scopus and Web of Science, with notable citation metrics and an H-index of 11 across major databases. In addition to research, he is actively engaged in teaching courses such as hydrodynamics of power plants, modern energy technologies, and combustion of organic fuels, and he has developed several innovative curricula in renewable and non-traditional energy sources. He regularly reviews for leading international journals published by MDPI and Elsevier and plays a key role in applied research and industrial collaborations aimed at improving energy systems and resource efficiency. His career reflects a blend of academic excellence, practical expertise, and commitment to sustainable energy development.
Featured Publications
Yankovsky, S., Misyukova, A., Berikbolov, A., Vagner, M., & Yankovskaya, N. (2023). Influence of grinding methodology and particle size on coal and wood co-combustion via injection flame opening angle. Energies, 16(11), 4469.
Gorshkov, A., Berezikov, N., Kaltaev, A., Yankovsky, S., Slyusarsky, K., Tabakaev, R., & Larionov, K. (2021). Analysis of the physicochemical characteristics of biochar obtained by slow pyrolysis of nut shells in a nitrogen atmosphere. Energies, 14(23), 8075.
Yankovsky, S., Tolokol’nikov, A., Gorshkov, A., Misyukova, A., & Kuznetsov, G. (2021). Justification of the reduction possibility of sulfur oxides and fly ash emissions during co-combustion of coal and waste from woodworking enterprises. Applied Sciences, 11(24), 11719.
Yankovsky, S., Tolokol’nikov, A., Misyukova, A., & Kuznetsov, G. (2021). On the effect of the distances between coal and wood particles during their joint pyrolysis on sulfur oxides formation. Energies, 14(24), 8321.
Yankovsky, S., Tolokol’nikov, A., Berezikov, N., & Gubin, V. (2021). Justification of the energy use of cedar husk waste as an environmentally friendly additive for co-combustion with coal. Energies, 14(21), 7027.