Mohammad Hosain Beheshty | Sustainable Technology | Best Researcher Award

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Prof. Mohammad Hosain Beheshty | Sustainable Technology | Best Researcher Award

Academic Staff, Iran Polymer and Petrochemical Institute, Iran

Prof. Mohammad Hosain Beheshty is a leading polymer scientist and Professor at the Iran Polymer and Petrochemical Institute (IPPI), renowned for his expertise in sustainable polymer technologies, thermoset composites, nanocomposites and prepreg processing. He earned his B.Sc. (1987) and M.Sc. (1991) in Polymer Engineering from Amirkabir University of Technology, Tehran, and completed his Ph.D. in Polymer Composite Materials at the University of Bath, UK, in 1997. Since then, he has held numerous academic and executive positions at IPPI, including Head of Education, Deputy Director of Research Affairs, Head of Composites Department, and Director of the National Megaprojects Center under the Vice-Presidency for Science and Technology. His research interests include polymer composites, materials processing and innovation strategies for sustainable applications, supported by advanced skills in composite characterization, nondestructive testing, and resin quality control. With 74 Scopus-indexed publications, 1,576 citations and an h-index of 23, his work demonstrates both academic impact and industrial relevance. He has served on editorial boards of major polymer journals and chaired the Iran Composite Scientific Association (2016–2022). His honors include recognition as a Distinguished Academic Member of IPPI (2002) and Distinguished Research Manager of MSRT (2008). Prof. Beheshty’s career reflects outstanding research, leadership and commitment to advancing polymer science globally.

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Featured Publications

Bahramian, A. R., Kokabi, M., Famili, M. H. N., & Beheshty, M. H. (2006). Ablation and thermal degradation behaviour of a composite based on resol type phenolic resin: Process modeling and experimental. Polymer, 47(10), 3661–3673.

Beheshty, M. H., Harris, B., & Adam, T. (1999). An empirical fatigue-life model for high-performance fibre composites with and without impact damage. Composites Part A: Applied Science and Manufacturing, 30(8), 971–987.

Beheshty, M. H., & Harris, B. (1998). A constant-life model of fatigue behaviour for carbon-fibre composites: The effect of impact damage. Composites Science and Technology, 58(1), 9–18.

Akbari, R., Beheshty, M. H., & Shervin, M. (2013). Toughening of dicyandiamide-cured DGEBA-based epoxy resins by CTBN liquid rubber. Iranian Polymer Journal, 22(5), 313–324.

Hayaty, M., Honarkar, H., & Beheshty, M. H. (2013). Curing behavior of dicyandiamide/epoxy resin system using different accelerators. Iranian Polymer Journal, 22(8), 591–598.

 

Diego Zarie | Renewable Energy | Young Researcher Award

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Mr. Diego Zarie | Renewable Energy | Young Researcher Award

Junior Researcher, University of Cuenca, United States

Mr. Diego Zarie is a dedicated Electrical Engineering student at the University of Cuenca, Ecuador (2019–2025), specializing in Control and Automation with a strong academic foundation that also includes studies in Power Systems at the Universidad Autónoma de Ciudad Juárez, Mexico (2024) and early technical training at Unidad Educativa Técnico Salesiano, Cuenca (2012). Professionally, he has served as Project Manager at M.O. Construcciones (2023–2025), where he has been responsible for designing, planning and executing residential, commercial and industrial electrical projects, including the successful implementation of the ISO 50001 energy efficiency standard in residential construction. His research interests lie in renewable energy, energy efficiency, power systems and automation, with a focus on integrating sustainable practices into engineering solutions. Skilled in project management, system control, and programming across Assembly, C, C++,and ML, Mr. Diego Zarie combines technical expertise with leadership and organizational abilities. He has also demonstrated strong community engagement as an international volunteer in Teresina, Brazil, contributing to UN Sustainable Development Goal 4 on quality education. Recipient of recognition for his early contributions, including one indexed publication, he shows great promise as a young researcher. In conclusion, Mr. Diego Zarie exemplifies academic excellence, professional competence, and social responsibility, making him a deserving candidate for recognition.

Profile: ORCID

Featured Publications

Arévalo-Cordero, P., González, F., Martínez, A., Zarie, D., Rodas, A., Albornoz, E., Ochoa-Correa, D., & Benavides, D. (2025). Hybrid LSTM–FACTS control strategy for voltage and frequency stability in EV-penetrated microgrids. Technologies, 13(9), 402.

 

Prof. Vieroslav Molnár | Sustainable Technologies | Best Researcher Award

Prof. Vieroslav Molnár | Sustainable Technologies | Best Researcher Award

Prof. Vieroslav Molnár, Technical University of Kosice, Slovakia

Prof. Vieroslav Molnár is a distinguished academic at the Technical University of Košice, Slovakia, where he currently serves as Professor at the Department of Computer Aided Manufacturing Technologies. With a career spanning over three decades, he has significantly contributed to the fields of logistics, sustainable transport systems, and CAD technologies. His early enterprise experiences enriched his academic insights, leading to impactful research on ecological transport systems, conveyor design, and mechanical engineering modeling. A recognized expert in engineering technology and logistics, he is known for combining mathematical precision with ecological awareness. His work in tolerance analysis, strain modeling, and the design of sustainable conveyor systems has earned national acclaim. Prof. Molnár continues to shape the future of eco-friendly industrial transport solutions. 🌱🔧📘

🌍 Professional Profile 

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🏆 Suitability for Best Researcher Award 

Prof. Molnár’s innovative work in sustainable logistics and transport systems design positions him as a leading contender for the Best Researcher Award. His focus on ecological transport technology, including mathematical modeling of conveyor systems, directly addresses global needs for greener industries. By merging experimental research with real-world applications, he enhances operational safety, efficiency, and sustainability. His dedication is evidenced by award-winning projects funded by the Slovak Academy of Sciences and the Ministry of Education. His prototype developments and service life simulations of materials show a rare blend of technical depth and environmental consciousness. His legacy lies in shaping the next generation of green industrial solutions, making him exceptionally suited for this prestigious recognition. 🌍📐🏅

🎓 Education 

Prof. Molnár’s academic journey began with an Engineer degree (Ing.) in Instrumentation and Manipulation Equipment from the Technical University of Košice (1985). He earned his Ph.D. (CSc.) in Engineering Technology in 1995, followed by his habilitation as Associate Professor (2005) in Mining Machinery and Transport Systems, and ultimately attained the rank of Professor in Logistics (2015). His educational path reflects a comprehensive mastery of mechanical engineering, transport systems, and automation. This academic evolution has empowered him to address the complexities of modern manufacturing technologies, with a strong foundation in both technical precision and ecological integration. Each degree and title has deepened his commitment to research, education, and the advancement of sustainable logistics engineering. 🎓📊🛠️

🔍 Professional Experience

Prof. Molnár has held key academic positions for over two decades at the Technical University of Košice. Since 2018, he has served as Professor in the Faculty of Manufacturing Technologies, previously contributing as Associate Professor and Assistant Professor at the Faculty of Mining, Ecology, Process Control and Geotechnology. From 1995–2001, he worked in the private sector with companies such as KDK s.r.o. and AAA Netings, blending practical industry experience with academic expertise. His work encompasses logistics systems, CAD technologies, and conveyor modeling, often bridging research and industrial application. His academic leadership, coupled with real-world insights, positions him as a pivotal figure in the design and modeling of sustainable transport technologies. 🏭📚🔍

🏅 Awards & Honors

Prof. Molnár’s research excellence has been acknowledged with prestigious awards from the Scientific Grant Agency of the Ministry of Education of the Slovak Republic and the Slovak Academy of Sciences. Notably, he received a Certificate of Successful Project Completion in 2017 for outstanding work on the VEGA 1/0922/14 project, and in 2007 for VEGA 1/2162/05, both recognizing his leadership and innovation in logistics and transport systems. These honors reflect his consistent dedication to cutting-edge research, his success in managing complex projects, and his impact on sustainable engineering. His work exemplifies both scientific rigor and practical contribution, making him a model researcher whose achievements continue to influence academia and industry alike. 🥇🔬🇸🇰

🔬 Research Focus

Prof. Molnár’s research integrates sustainable technologies, logistics modeling, and ecological transport systems. He specializes in analyzing deviations and tolerances in complex mechanical structures, using advanced mathematical modeling to enhance accuracy and reliability. His work on strain and deformation in conveyor belts contributes to designing long-lasting, green transport solutions. He has pioneered cable hook conveyor prototypes and inter-operational logistic systems that reduce environmental impact. His focus on CAD systems, rope conveyor mechanics, and ecological logistics design showcases a rare fusion of mechanical engineering and environmental consciousness. By applying modern statistical tools, he transforms industrial transport into sustainable, efficient, and safe systems, earning recognition across academic and industrial sectors. 🚛♻️📏

📊 Publication Top Notes

  • Finite Element Analysis of Spiral Strands with Different Shapes Subjected to Axial Loads

    • Year: 2015
    • Citations: 183

  • Pyrolysis Gases Produced from Individual and Mixed PE, PP, PS, PVC, and PET—Part I: Production and Physical Properties

    • Year: 2018
    • Citations: 180

  • Failure Analysis of Hoisting Steel Wire Rope

    • Year: 2014
    • Citations: 116

  • Failure Analysis of Belt Conveyor Damage Caused by the Falling Material. Part I: Experimental Measurements and Regression Models

    • Year: 2014
    • Citations: 93

  • Failure Analysis of Textile Rubber Conveyor Belt Damaged by Dynamic Wear

    • Year: 2013
    • Citations: 93

 

 

 

Dr. Milada Pezo | Materials | Best Researcher Award

Dr. Milada Pezo | Materials | Best Researcher Award

Dr. Milada Pezo, Institute of Nuclear Sciences VINČA, Serbia

Dr. Milada Pezo is a distinguished Research Professor at the Institute of Nuclear Sciences VINČA, specializing in mechanical engineering with a focus on energy systems. She earned her BSc, MSc, and PhD from the University of Belgrade, Faculty of Mechanical Engineering. Dr. Pezo’s research covers thermal-hydraulics, energy efficiency, renewable energy sources, and computational fluid dynamics (CFD). A principal investigator for the Serbian-Slovenian bilateral project (2020-2022), she is renowned for advancing numerical modeling of multiphase flows and heat transfer. With over 100 peer-reviewed publications, Dr. Pezo is a leading expert in her field and serves as a subject editor for the prestigious Thermal Science journal. Her work plays a vital role in enhancing industrial applications, process industry optimization, and promoting sustainable energy solutions.

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Suitability for the Best Researcher Award

Dr. Milada Pezo is a highly qualified candidate for the Best Researcher Award due to her extensive academic achievements, leadership in international research projects, and significant contributions to the fields of thermal-hydraulics, computational multifluid dynamics, and energy efficiency.

🎓    Education 

Dr. Milada Pezo’s academic journey in Mechanical Engineering began at the University of Belgrade, Faculty of Mechanical Engineering. She completed her BSc, MSc, and PhD degrees with a specialized focus on Automatic Control and Thermal Power Engineering. Her education is deeply rooted in interdisciplinary studies, blending mechanical engineering principles with advanced energy systems. Throughout her academic pursuits, she developed expertise in thermal-hydraulics, computational multifluid dynamics, and energy efficiency. Her PhD thesis explored mathematical modeling of heat and mass transfer, contributing to the development of innovative engineering solutions in multiphase flow and renewable energy integration. Dr. Pezo’s academic foundation has been instrumental in driving her career forward, positioning her as an expert in both theoretical and practical applications of mechanical engineering, with a focus on sustainability and renewable energy systems.

💼     Experience

Dr. Milada Pezo boasts extensive experience in mechanical engineering, specifically within the energy sector. She has been a Research Professor at the Institute of Nuclear Sciences VINČA, where she has led pivotal research initiatives in thermal-hydraulics and computational fluid dynamics (CFD). As principal investigator of the Serbian-Slovenian project “Development of Advanced Numerical Modelling Approaches of Multiphase Flows and Heat Transfer for Industrial Application” (2020-2022), she successfully bridged academia and industry, enhancing practical solutions for energy efficiency. Her experience extends beyond academia; she collaborates with industrial partners to optimize energy systems and renewable energy sources. Dr. Pezo is also a subject editor for Thermal Science and regularly contributes her expertise to peer-reviewed publications. Her vast knowledge in thermal-hydraulics, renewable energy integration, and industrial processes solidifies her role as a key influencer in the mechanical engineering field.

🏅 Awards and Honors 

Dr. Milada Pezo has been recognized with numerous awards and honors for her contributions to mechanical engineering, particularly in energy systems. As the principal investigator of the prestigious Serbian-Slovenian bilateral research project (2020-2022), she earned commendations for her innovative work on multiphase flow and heat transfer. Her involvement in the project led to industry-wide recognition, enhancing energy efficiency practices. Dr. Pezo has also been honored by various scientific communities for her editorial work at Thermal Science, where she oversees publications on computational fluid dynamics and heat and mass transfer. With over 100 peer-reviewed articles, Dr. Pezo’s contributions have received multiple citations and accolades from international conferences and journals. Her work in renewable energy, energy efficiency, and thermal-hydraulics has been instrumental in fostering sustainable engineering solutions, leading to numerous invitations to keynote at international forums and participate in expert panels.

🌍   Research Focus 

Dr. Milada Pezo’s research centers on thermal-hydraulics, energy efficiency, and renewable energy systems, utilizing advanced numerical modeling techniques. She specializes in computational fluid dynamics (CFD), with an emphasis on multiphase flow and heat transfer for industrial applications. Her groundbreaking work in granular transportation, mixing, and separation processes within the chemical and energy sectors has significantly impacted energy-efficient designs. A key area of her research is the development of sustainable solutions for renewable energy integration, optimizing heat and mass transfer in multiphase flow systems. Through her role as principal investigator in international collaborative projects, Dr. Pezo has driven innovations in energy-efficient technologies, including solar and wind power systems. Her research efforts also focus on mathematical modeling and simulation, aiming to enhance industrial applications and promote sustainability in energy production and consumption.

 📖 Publication Top Notes

  • Modified screw conveyor-mixers–Discrete element modeling approach
    • Citations: 85
  • DEM/CFD analysis of granular flow in static mixers
    • Citations: 65
  • Dynamical simulation of PV/Wind hybrid energy conversion system
    • Citations: 62
  • Discrete element model of particle transport and premixing action in modified screw conveyors
    • Citations: 50
  • Sustainability estimation of energy system options that use gas and renewable resources for domestic hot water production
    • Citations: 43