Scientific specialization of the department:"Study of the agroecological condition of the soil cover of the Western Polissya and Forest-Steppe, changes in soils under the influence of natural factors and their production use, as well as the development of measures to restore soil fertility and increase the productivity of agricultural lands".
The scientific work of the department is overseen by its head, candidate of agricultural sciences, associate professor T.M. Kolesnyk.
The scientific activities of the department are carried out in the following areas:
1. Optimization of soil regime management and properties.
2. Justification for the use of wastewater sludge as fertilizers for agricultural lands.
3. Development of new types of fertilizers and plant growth stimulators, studying their effects on plant growth and development.
4. Conducting assessments of the state of soil cover in natural and agroecosystems in the Rivne region based on existing bioindication methods.
5. Study of the spread of weed plants, their dependence on various factors, and development of measures to prevent their spread.
6. Optimization of technological processes for growing crops in closed soil conditions using aquaponics.
The aforementioned scientific areas are implemented through the execution of departmental, state budgetary, and contractual research projects. In previous years, the department has carried out departmental research projects on the topic:"Study of the agroecological condition of soils in the humid zone of Ukraine, their evolution under the influence of natural and anthropogenic factors and the development of measures to increase the productivity of agrocenoses" (state registration number 0112U002522)and"Monitoring the Condition and Evolution of Soil Cover in the Northwestern Region of Ukraine and Adapting Modern Agricultural Systems to the Requirements of Balanced Natural Resource Management" (state registration number 0119U000583).
Each field is assigned instructors from the department who are leading and experienced specialists in this area. Based on the results of research work, at the end of each calendar year, the department compiles a report based on the conducted studies.
A research school has been established at the department.S.T. Voznyuk "Genesis, evolution, and study of hydromorphic and meliorated"It seems you may have entered an incorrect or incomplete submission. Could you please provide the text you would like translated?"Foundations"that deals with a range of issues related to the efficient use of soils in the humid zone of Ukraine. The main achievements of this research school aredevelopment of a system of measures aimed at the broad involvement of the soils of the Polissya region of Ukraine in agricultural production through the implementation of appropriate reclamation activities.
The scientific school initiated by S.I. Veremeyenko, “Assessment of the agroecological state, evolution, and reproduction of soil fertility in the humid zone of Ukraine.is engaged in the study and analysis of the current state of the soil cover, as well as the development of measures to maintain soil fertility and prevent the loss of their productive properties.
A significant practical impact on the scientific level of the department's teachers and, accordingly, on the training of specialists in the specialty N1 "Agronomy"includes conducting expeditionary-field, laboratory, and scientific-theoretical research on assessing the agro-ecological state of agricultural land and developing measures for its optimization. Over the past five years, more than 30 such studies have been conducted, indicating a high professional level of the scientific and pedagogical staff.
A scientific herbarium has been created and is functioning at the department, which is registered in the international database under the acronym RIVUN and currently contains more than 8,000 herbarium specimens of higher vascular plants.
The experimental base of the department and its branches for conducting scientific research:
- educational and scientific laboratory of biochemistry and agrochemistry;
- educational and scientific laboratory of soil science;
- educational and scientific laboratory of biotechnology;
- educational and scientific laboratory of botany and entomology;
- educational and scientific laboratory of aquaponics of the agrochemistry department, soil science and agriculture;
- herbarium of higher vascular plants, which is registered in the international herbarium database of the world Index Herbariorum under the acronym RIVUN;
- laboratory of agroecology and agrochemistry of the Institute of Agriculture of the Western Polissya of the National Academy of Agrarian Sciences of Ukraine (accreditation certificate №08 dated 27.03.2017, issued by the Vinnytsia Regional Production and Technical Center for Standardization, Metrology and Quality of Agricultural Products 'OblAgroStandard');
- research field station of the Institute of Agriculture of the Western Polissya of the National Academy of Agrarian Sciences of Ukraine;
- educational and research polygon of NUVHP with a total area of 10.0 ha (coordinates: 50.600268, 26.329484).
There is a postgraduate program at the department and doctoral studies.
The scientific activity of the department is reflected in publications of research results. In the last five years, the academic staff of the department has published over a hundred articles and abstracts in scientific publications, including in cited scientific publications.
Over the past five years, the results of scientific work have been reported at more than 30 international, all-Ukrainian, intra-university scientific and technical, and scientific-practical conferences.
An important component of the scientific work of the department is the involvement of students in scientific activities. The results of joint scientific work by students, postgraduates, and faculty members of the department are presented at student scientific and technical conferences, which have been traditionally held annually in April-May for many years. At the end of the conferences, the best presentations are selected, the abstracts of which are published in specialized collections of NUVHP.
Department students participated inAll-Ukrainian Olympiads in disciplines such as plant biology (Mykolaiv), agroecology (Zhytomyr, Lviv), where they repeatedly took prize places.
International connections create opportunities for internships and training for talented students abroad, particularly in countries such as Poland, Switzerland, Great Britain, Sweden, the Netherlands, Denmark, the USA, Canada, Austria.
The department actively participates in experience exchange with other higher educational institutions, research organizations, and production enterprises in the region. Leading faculty members of the department are members of specialized councils for dissertation defense, as well as members of the scientific and technical councils of the Rivne Nature Reserve, the national natural park 'Derman-Ostrozhsky', and the Nobel National Nature Park, having participated as experts in international projects.(‘Polissia – wildlife without borders’, A300399 IKEA 7.2 ‘Support for sustainable forest management for sustainable development in Central-Eastern Europe’).
The department collaborates with firms of non-state ownership.
Scientists of the department who obtained a Doctor of Science degree
1. Truskavetsky Roman Stepanovych, 1984. 'Patterns of Evolution of Drained Peat Soils, Their Cultivation and Fertility Management.'
2. Olinyvych Valentin Oleksandrovych, 1985. 'Evolution of Peat Soils of Ukraine in the Conditions of Integrated Reclamation.'
3. Klymenko Mykola Oleksandrovych, 1991. 'Evolution of Fertility of Hydromorphic Soils of Polissia in Ukraine Under the Influence of Integrated Reclamation.'
4. Lyko Daria Vasylivna, 1991. 'Scientific and Practical Foundations of Cultivating Reclaimed Peat Soils of Polissia in Ukraine.'
5. Kyriienko Tetiana Mykolaivna, 1991. 'General Patterns of Soil Evolution in Southern Ukraine Under the Influence of Flooded Rice Cultivation.'
6. Yezhi Vira, 1996. "Optimization of the parameters of drainage and irrigation systems considering environmental aspects in Poland."
7. Rokochynskyi Anatolii Mykolaiovych, 1998, "Scientific principles and models of optimization and predictive assessment of the effectiveness of water regulation of drained lands on a long-term basis."
8. Moshynskyi Viktor Stepanovych, 2003. "Methods for managing productivity and ecological sustainability of drained lands based on monitoring data."
9. Poliovyi Volodymyr Mefoidiovych, 2006. "Agroecological monitoring and restoration of soil fertility in the northwestern region of Ukraine.”.
Scientists of the department who obtained the degree of Candidate of Sciences.
1. Zinchuk Petro Yosypovych, 1967. "The effect of cultivation of peat soils in the Western Polissia of the USSR on the quantity and quality of agricultural crop yields."
2. Faliush Vitalii Vasylovych, 1969. "Phosphorus regime of peat bogs in the Volyn Polissia."
3. Korobchenko Yurii Tymofiiovych, 1970. "Water-physical properties of peat soils in the Western Polissia of Ukraine and their dynamics under the influence of drainage."
4. Halkina Anastasiia Oleksandrivna, 1974. "Utilization of peat bogs in the western regions of the USSR, their properties and improvement of fertility."
5. Kardashov Mykola Oleksandrovych, 1975.“Features of the hydrothermal regime of drained lands in the Western Polissia of Ukraine as a plant environment.
6. Volkovа Liudmyla Andriivna, 1981.“Permeability of mineral over-saturated soils of Western Polissia of the Ukrainian SSR and methods of their improvement.
7. Yehorkina Liudmyla Andriivna, 1987. "Use of cooling water from thermal and nuclear power plants for irrigating agricultural crops."
8. Furman Volodymyr Myletiyovych, 1989.“Structural improvements as a factor in increasing the fertility of drained peat soils of Western Polissia of the Ukrainian SSR.
9. Novachok Oleksandr Mykhailovych, 1993."Assessment of the ameliorated mineral soils of Western Polissia of Ukraine."”.
10. Ivanchенко Anatoliy Myronovych, 2001. "Ecological and economic problems of construction and operation of water management facilities, using the basin of the Horyn River as an example."
11. Volodymyrets Vitaliy Oleksandrovych, 2003.“Anthropogenic transformation of the species composition of flora in drained territories in connection with the processes of its synanthropization.
12. Lychuk Taras Yevheniyovych, 2007. "Formation of crusts on soils of the Northwestern region of Ukraine as one of their degradation types: causes, prevention."
13. Solodka Tetyana Mykolaivna, 2005. "Improvement of the monitoring of drained lands by applying biological criteria."
14. Sasyuk Zoya Kostyantynivna, 2006. "Spatial Extrapolation of Monitoring Indicators of Drained Soils."
15. Furmanets Oleg Anatoliyovych, 2016. "Changes in the agroecological condition of dark gray soil in the Western Forest-Steppe of Ukraine under the influence of anthropogenic activity and climate change."
16. Samchuk Zhanna Serhiivna, 2016. “Demutation of Phytocenoses on Sod-Carbonate Soils of the Small Polissia”.
17. Kulyk Svitlana Mykolaivna, 2018. “Effectiveness of Soybean Fertilization Depending on the Acidity of Podzol Soil in the Conditions of Western Polissya.”
Practical significance of the obtained results:
ü Recommendations have been developed for assessing the effectiveness of drainage systems and the efficient use of drained lands based on monitoring data of the ecological and meliorative condition of drained lands. The scientific results obtained have been used in the development and practical verification of two methodological guidelines and departmental construction standards (DBN 33- 5.5-01-97), approved and implemented in the State Water Resources Agency of Ukraine;
ü improved existing methods for substantiating design and technological solutions for water regulation of drained lands in construction, reconstruction, and operation of drainage systems by applying forecasting and optimization calculations on a long-term basis, adhering to economic and environmental requirements. For the project stage of new construction and reconstruction of drainage systems, methods for calculating and substantiating technological and design solutions have been enhanced on a multi-variant basis using the water balance method and optimal parameters for drainage, main canals, and water collectors through an economic and mathematical approach. These developments have been implemented and tested on more than 40 sites (area over 10,000 hectares) located in areas of sufficient and unstable moisture in Ukraine. The results of the research and its testing in production conditions have been used and sufficiently reflected in the preparation of 12 types of industry regulatory and technical documents (RTD) and recommendations, which were reviewed, approved, and put into operation by decisions of expert and scientific-technical councils (STC) within the structure of the State Water Agency of Ukraine from 1987 to 1996.
ü Norms for organic fertilizers have been proposed to ensure optimal parameters of humus status in arable chernozem soils. An optimal system for the application of fertilizers has been identified to ensure high energy efficiency in the cultivation of agricultural crops and to maintain favorable indicators of humus status in chernozem soils, which is recommended for production.
ü A technology for obtaining a plant growth stimulator based on vermicompost has been developed, and certain elements of its application technologies in crop rotation have been justified. It has been established that the yield increase of agricultural crops from the use of vermiculture products ranges from 14% to 104% compared to the control. It has been proven that their use significantly improves the phytosanitary condition of crops by reducing weediness and increasing plant resistance to pathogens. The economic and energy advantages of using vermiculture products over manure have been demonstrated.
ü To assess the ecological state of drained areas, a new methodology has been developed that is based on a quantitative evaluation of the level of anthropogenic transformation of the species composition of their flora isolates. This methodology identifies five levels of transformation, allowing for a differentiated approach to the use of specific areas and the development of measures for their ecological stabilization. The existing level of transformation of the flora species composition for individual drainage objects and the overall ecological condition of their territories has been established. A number of practical measures have been proposed aimed at slowing down the processes of synanthropization of flora and improving the condition of drained areas.
ü a method for assessing the condition of the soil cover using bioindication methods with the involvement of plant and animal objects has been proposed;
ü a preliminary list of higher vascular plant species of the flora of the Rivne region has been compiled, and an electronic database of the localities of rare plant species in the region has been formed;
ü measures have been developed to reduce the level of biological pollution in the region's territory by invasive plant species.
Publications by the department's scientists indexed in scientometric databases, such asScopusIt seems like your message might be incomplete. Could you please provide the text you would like translated?Web of Science
ü Veremeenko, S. I., Furmanets, O. A. Changes in the agrochemical properties of dark gray soil in the Western Ukrainian forest-steppe under the effect of long term agricultural use. Eurasian Soil Science. 2014. DOI: 10.1134/S106422931405024X.
ü Trofimenko P. I., Trofimenko N. V., Veremeenko S. I., Furmanets O. A. Remote monitoring of winter crops' development using the satellite data.«Geoinformatics: Theoretical and Applied Aspects» (14-16 May 2019, Kiev, Ukraine). DOI: https//doi.org/10.3997/2214-4609.201902049.
ü Lebed O. O., Trusheva S. S., Lysytsya A. V. Impact of radon exposure upon dynamics of mortality rate from lung cancer for population of Rivne city, Ukraine. Ukrainian Journal of Ecology. 2019. № 9 (1). P.25-34. Received: 26.12.2018. Accepted: 28.01.2019.
ü Veremeenko S., Furmanets O., Semenko L., Bykina N., Bobkov V. Influence of Climate Changes on Hydrothermal Regime of Dark Gray Podzolized Soil of Western Forest Steppe. Scientific Horizons. 2021. 24(12). P. 46–54.
ü Furmanets O. A., Veremeenko S. I., Poliovyi V. M., Piddybn’ak V. A. Remote monitoring of moisture deficit as a basis for preventing environmental and economic risks. 15th International Conference Monitoring of Geological Processes and Ecological Condition of the Environment, Monitoring. 2021. Kyiv.
ü Volodymyrets V., Oytsius L., Hutsman S., Savchuk L., 2021: Biological pollution of the flora of Volyn’ Polissya in Ukraine by alien plants. Botanica, 27(1): 69–76. https://doi.org/10.2478/botlit-2021-0008.
ü Grokhovska Y., Volodymyrets V., Konontsev S. Diversity and dynamics of hydrophilic flora of Lowland Polissya (on the example of the Sluch River basin). Biosystems Diversity. 2021. 29(3). P. 303–310.https://doi.org/10.15421/012138.
ü Melnyk V. I., Baransky O. R., Batochenko V. M., Volodymyrets V. O., Dovhopola L. I., Melnyczenko N. V. Aconitum lasiocarpum and A. variegatum (Ranunculaceae) populations near the eastern limits of their ranges in the lowlands of Ukraine. Biosystems Diversity. 2023. 31(1). P. 28–33. doi:10.15421/012304.
ü Danylyk I., Volodymyrets V., Kuzyarin O. Botrychium virginianum (Ophioglossaceae), new species for the flora of Volyn Polissia (Ukraine). Ukrainian Botanical Journal. 2023. 80(6). P. 476–481.https://doi.org/10.15407/ukrbotj80.06.476.
ü Melnyk V., Volodymerets V., Bertash B., Didenko S. Distribution and state of Botrychium virginianum (Botrychiaceae) populations in Ukraine. Botanica. 2023. 30(2). P. 59–69. https://doi.org/10.35513/Botlit.2024.2.1.
ü Veremeenko S., Furmanets O., Vozniuk N., Oliinyk O. The effect of the application of liquid complex fertilizers and mixtures based on them on the productivity of corn in the conditions of the Western Polissia. Scientific Horizons This link is disabled. 2023. 26(4). Pp. 97–107.
ü Polovyy V., Yashchenko L., Lopushniak V., Kolesnyk, T. The Influence of Chemical Amelioration on the Structure of the Phosphate Fund of Retisol of Western Polissia in Ukraine. Ecological Engineering & Environmental Technology. 2023. 24(5). Pp. 100-110. DOI 10.12912/27197050/163669.
ü Polovyy V., Yashchenko L., Marchuk I., Kolesnyk T. Effect of fertilisers, dolomite lime, and crop by-products on crop productivity, phosphorus balance and content in Western Polissia’s Retisol of Ukraine. Zemdirbyste. Volume 110, Issue 3. 2023. Pp. 207-216. DOI: 10.13080/z-a.2023.110.03024.
ü Kolesnyk T., Konarivska O., Pozniakovska N., Mikluha O., Yakovyshyna М. Assessment of the impact of recreation load on the development of responsible community tourism.IOP Conference Series: Earth and Environmental Science. Volume 1269. 3rd International Conference on Environmental Sustainability in Natural Resources Management 2023 20/10/2023 - 20/10/2023 Batumi, Georgia. DOI 10.1088/1755-1315/1269/1/012013.
ü Kuzmych L., Voropai H., Poliakov V., Kotykovych I., Kharlamov O., Furmanets O. Study of contemporary climate changes in the humid zone of Ukraine (on the example of the Rivne region). 17th International Conference Monitoring of Geological Processes and Ecological Condition of the Environment, Monitoring. 2023.
ü Besediuk V., Yatskov M., Korchyk N., Kucherova A., Maletskyi Z. Whey - From waste to a valuable resource. Journal of Agriculture and Food Research. Volume 18, 2024, 101280. https://doi.org/10.1016/j.jafr.2024.101280.
Monographs
ü Klymenko M. O., Voznyuk S. T., Lyko D. V., Hats P. I. Regulation of the water regime is the key to high yields: monograph.Kyiv: Kameniar, 1987. 35 p.
ü Moshynskyi V. S. Methods of Managing Productivity and Ecological Sustainability of Drainage Lands: Monograph. Rivne: NUVHP, 2005. 250 p.
ü Poliovyi V. M., Veremienko S. I., Trusheva S. S. Changes in the Composition and Properties of Sod-Podzolic Soils of the Polissia Region of Ukraine Under the Influence of Long-Term Agricultural Use: Monograph. Rivne: NUVHP, 2013. 180 p.
ü Shevchuk M. Y., Kovalychuk N. S., Kolesnyk T. M., Klymenko L. V. Agroecological Effectiveness of Using Fermented Organic Fertilizer on Sod-Slightly Podzolic Soil: Monograph. Rivne. 2017. 183 p.
ü Mykytyn T. M., Volodymyrets V. O., Bertash B. M., Yakymchuk A. Yu. Regional Landscape Park 'Nadsluchanskyi': Ecological and Economic Preconditions for Rational Nature Management: Monograph. Rivne: 'Volynskii Oberg', 2017. 248 p.
ü Peatland Resource of the Northwestern Region of Ukraine: Monograph / S. T. Vozniuk, V. S. Moshynskyi, M. O. Klymenko [et al.]. Rivne: NUVHP, 2017. 117 p.
ü Moshynskyi V. S., Solodka T. M. Monitoring of Drainage Lands: Biological-Indication Approach: Monograph. Rivne: NUVHP, 2018. 220 p.
ü Melioration and Arrangement of Ukrainian Polissia (Collective Monograph). Kherson: Oldi-Plus, 2018. In 2 volumes.
ü Moroz O. S., Furman V. M., Liusak A. V., Solodka T. M. Ecological Problem of Soils in Western Polissia of Ukraine and Prospective Ways of Its Resolution.Formation of a New Paradigm for the Development of the Agro-Industrial Sector in the 21st Century: collective monograph : in 2 parts / responsible for publication O. V. Averchev. Lviv-Toruń: Liga-Press, 2021. Pp. 620-645.http://catalog.liha-pres.eu/index.php/liha-pres/catalog/book/145.
Textbooks:
ü Agrochemistry: textbook. Part 1. Theoretical foundations of crop formation / M. Y. Shevchuk, S. I. Veremeyenko, V. I. Lopusnyak. Lutsk, 2012. 196 p.
ü Agrochemistry: textbook. Part 2. Fertilizers and their impact on soil bioproductivity / M. Y. Shevchuk, S. I. Veremeyenko, V. I. Lopusnyak. Lutsk, 2012. 440 p.
Study guides:
ü Veremeyenko S. I., Trusheva S. S. Rational use and protection of land resources. Rivne: NUVHP, 2008. 162 p.
ü Veremeyenko S. I., Trusheva S. S. Soil monitoring. Rivne: NUVHP, 2010. 227 p.
ü Trusheva S. S., Veremeyenko S. I. Biological systems of agriculture. Rivne: NUVHP, 2011. 196 p.
ü Trusheva S. S. Soil ecology with the basics of land reclamation. Rivne: NUVHP, 2016. 224 p.
ü Klemenko M. O., Trusheva S. S., Grokhovska Yu. R. Restoration hydroecology of disturbed river and lake systems (hydrochemistry, hydrobiology, management) Volume III: study guide. Rivne: UDUVHP, 2004. 211 p.
ü Evolution and management of soil productivity in the Polissya of Ukraine / S. I. Veremeyenko. Lutsk: Nadvyshtyria, 1997. 312 p.
ü Veremeyenko S. I., Furman V. M. Soil Cartography: A textbook. Rivne: NUWGP, 2013. 228 pages.
ü Furman V. M., Lyusak A. V., Oliynyk O. O. Soil Conservation Contour Melioration System of Agriculture: A textbook. Rivne: Publishing House FOP Melnikova M.V., 2016. 215 pages.
ü Klymenko M. O., Moroz O. S. Computer Games in Ecology. Rivne: NUWGP, 2006. 228 pages.
ü Klymenko M. O., Borysyuk B. V., Kolesnyk T. M. Balanced Use of Land Resources. Kherson: Oldi-plus, 2014. 552 pages.
ü Volodymyrets V. O. Biochemistry of Plants. Interactive Educational and Methodological Support Complex. Rivne: NUWGP, 2006. 127 pages.
ü Volodymyrets V. O. Botany. Interactive Educational and Methodological Support Complex. Rivne: NUWGP, 2010. 209 pages.
ü Kucherova A. V., Volodymyrets V. O. Biology and ecology of living organisms. Practical manual. Rivne : NUWMNRU. 2013. 121 p.
ü Hladovska T. M. Plant Genetics.Interactive Educational and Methodological Support Complex. Rivne: NUWGP,2008. 81 pages.
ü Hladovska T. M. Pests of Agricultural Crops: A textbook. Rivne: NUWGP, 2010. 102 pages.
ü Veremeyenko S. I., Hladovska T. M. Radiobiology: A textbook. Rivne: NUWGP, 2010. 110 pages.
ü Furman V. M., Trotsyuk V. S., Kovalchuk N. S. Agriculture: A textbook. Rivne: NUWGP, 2015. 357 pages.
ü Kurichenko I. I., Ryskova V. H., Volodymyrets V. O. Biodiversity:Cuculidae(Orchidaceae Juss.) of Rivne Region: Atlas-Reference. Rivne: Volynska Oberihy, 2020. 112 pp.
ü Veremeyenko S. I., Polovy V. M., Furmanets O. A. Ecological Soil Science: Educational Manual. Rivne: NUVHP, 2021. 277 pp.
ü Solodka T. M., Moroz O. S. Plant Growing with Basics of Agrometeorology. Practicum: Educational Manual. Rivne: NUVHP, 2022. 351 pp.http://ep3.nuwm.edu.ua/id/eprint/23966
ü Kurichenko I. I., Ryskova V. H., Volodymyrets V. O. Features of Using Green Plantings in Landscape Design of Cities: Educational Manual. [Electronic Edition]. Rivne, 2024. 183 pp.
Patents
ü Veremeyenko S. I. Method for Obtaining a Plant Growth and Development Stimulator from Humus-containing Substance / S.I. Veremeyenko, O.O. Oliynyk, A.V. Kucherova // Patent of Ukraine S 05 F11/02/ №37422, dated 25.11.2008. Bulletin № 22.
ü Veremeyenko S. I. Method for Obtaining a Complex Plant Growth and Development Stimulator Enriched with Microelements / S.I. Veremeyenko, O.O. Oliynyk, I. M. Lepekha // Patent of Ukraine S 05 F11/02/ №40626, dated 27.06.2009. Bulletin № 8.
ü Veremeyenko S. I. Method for Enriching Plant Growth Stimulators and Fertilizers with Iodine Salts / S.I. Veremeyenko, O.O. Oliynyk // Patent of Ukraine S 05 F11/02/ №42057, dated 25.06.2009. Bulletin № 12.
ü Klymenko N. A. Device for Determining Carbon Dioxide in Soil / N. A. Klymenko, P. K. Kuzmych, S. I. Veremyenko // Official Bulletin of the State Committee of the USSR on Inventions №4. Author's certificate №1070475, 1984.
ü Oliynyk O. O. Method for Chemical Purification of Humic Nature Preparations / Tryukhyn O. I., Matiytsyh O. I., Kyryanchuk K. I., Oliynyk O. O., Kucherova A. V. // Patent for Utility Model S 05 F11/02/ №131683, dated 25.01.2019. Bulletin № 22.
ü Klymenko N. A. Device for cooling circulating water of power plants / N. A. Klymenko, P. K. Kuzmych, S. I. Veremeyenko // Official Bulletin of the State Committee of the USSR for Inventions No. 12. A.S. No. 14669275, 1989.
ü Klymenko N. A. Device for heating soil / N. A. Klymenko, S. I. Veremeyenko // Official Bulletin No. 28 A.S. No. 1665821, 1991.
ü Klymenko N. A. Device for thermal protection of plants / N. A. Klymenko, S. I. Veremeyenko, A. D. Solodky // Official Bulletin No. 28 A.S. No. 1665955, 1991.
ü Fedoruk V. A. Device for introducing liquid ameliorants and fertilizers into the soil / O. R. Strilets, V. M. Strilets, V. M. Furman // Utility model patent No. 94131. – 27.10.2014, – p. 5.
ü Fedoruk V. A. Device for introducing liquid ameliorants and fertilizers into the soil / V. A. Fedoruk, O. R. Strilets, V. M. Furman, V. M. Strilets // Utility model patent No. 94132. – 27.10.2014, – p. 5.
ü Moshynskyi V. S. Method for increasing the yield of various varieties of winter wheat in the conditions of the forest-steppe zone of Ukraine / V. S. Moshynskyi, V. A. Fedoruk, V. M. Furman, O. R. Strilets, V. M. Strilets // Utility model patent No. 99596. – 10.06.2015 – p. 5.
ü Moshynskyi V. S. Method for growing winter rapeseed in the area of the Western Forest-Steppe of Ukraine / V. S. Moshynskyi, V. A. Fedoruk, O. R. Strilets, V. M. Strilets, V. M. Furman // Utility model patent No. 99597. – 10.06.2015 – p. 5.
ü Moshynskyi V. S. Method for growing spring wheat in the conditions of the Western Forest-Steppe of Ukraine / V. S. Moshynskyi, V. A. Fedoruk, O. R. Strilets, V. M. Furman, V. M. Strilets // Utility model patent No. 99598. – 10.06. 2015 – p. 5.
ü Kostenko K. H. Organomineral bioactive fertilizer / K. H. Kostenko, T. M. Kolesnyk //Patent for a utility model113190 - 10.01.2017.
© 2026 National University of Water and Environment Engineering