Fekadu Mosisa Wako | Energy | Best Researcher Award

Dr. Fekadu Mosisa Wako | Energy | Best Researcher Award

Dr Fekadu Mosisa Wako, IMT Atlantique, France.

Dr. Fekadu Mosisa Wako 🇪🇹 is a dynamic and globally experienced chemical engineer with a robust academic and research profile in the areas of sustainable energy, chemical kinetics, and biofuel production. Born in Ethiopia in 1988, Dr. Wako is currently a Marie Sklodowska-Curie (MSCA) Postdoctoral Researcher at IMT Atlantique, Nantes, France. His international academic journey includes significant research appointments in Canada, Italy, Taiwan, and Ethiopia, reflecting both versatility and scientific commitment. Dr. Wako’s research blends experimental and simulation-based techniques for green fuel synthesis, including biomass pyrolysis, catalytic hydrothermal liquefaction (HTL), and combustion modeling. His efforts have significantly advanced the understanding of clean energy processes, making him a valuable contributor to global sustainability goals. With a strong publication record and international collaborations, he is widely respected in both academic and applied engineering circles. His work not only advances science but also addresses real-world environmental and energy challenges.

Profile

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Education

Dr. Wako holds a PhD in Chemical and Process Engineering from the University of Bologna, Italy (2019–2022), where his research focused on combustion modeling and kinetic mechanism reduction for sustainable fuels. Prior to this, he earned a Master of Technology in Chemical Engineering with specialization in Petroleum Science and Technology from the Indian Institute of Technology Guwahati, India (2015–2017). His foundational training was a BSc in Food Technology and Process Engineering from Haramaya University, Ethiopia (2008–2013). Additionally, Dr. Wako has completed numerous advanced international trainings, including summer courses on nanomaterials, CFD for turbomachinery, biosafety, reaction mechanisms, and teaching in higher education. These diverse educational experiences not only underscore his commitment to lifelong learning but also position him at the intersection of experimental science, computational modeling, and educational leadership.

Professional Experience

Dr. Wako’s career spans multiple leading institutions across continents. Currently, he serves as an MSCA Postdoctoral Researcher at IMT Atlantique, France (2025–Present), where he works on microwave-assisted pretreatment of microalgae and HTL for bio-oil. Previously, he conducted combustion kinetic modeling of oxygenated fuels (PODE1-3) at the University of British Columbia, Canada (2024–2025), and zero-carbon gas turbine combustion CFD modeling at Università Degli Studi Firenze, Italy (2023–2024). His earlier research at the University of Bologna (2022–2023) explored oxy-biofuel kinetics and combustion safety. From 2013 to 2018, he served in faculty roles at Haramaya University, Ethiopia, rising from Assistant Lecturer to Head of the Department of Food Technology and Principal Investigator of international projects. His experience demonstrates not only scientific expertise but also leadership in education, research mentoring, and cross-cultural academic collaboration.

Research Interests

Dr. Wako’s interdisciplinary research focuses on bioenergy conversion, combustion chemistry, and reaction kinetics modeling. He specializes in hydrothermal liquefaction (HTL), microwave-assisted biomass pretreatment, and CFD modeling for cleaner fuel combustion. His recent work at IMT Atlantique explores optimal kinetic conditions for bio-oil production from microalgae, while his prior projects involved modeling the combustion properties of oxygenated and zero-carbon fuels. He is also adept in simulation platforms like Cantera, Chemkin, RMG, Aspen Plus, and CFD tools, enabling in-depth thermochemical process modeling. Driven by the global need for renewable energy, Dr. Wako’s research advances the understanding and application of biofuels and sustainable energy systems. His interest extends to reaction mechanism generation, flame dynamics, and fuel safety mechanisms, making his work highly relevant to energy transition and decarbonization efforts.

Awards and Distinctions

Dr. Wako has consistently demonstrated academic excellence throughout his career. His selection as a Marie Sklodowska-Curie Actions (MSCA) Postdoctoral Fellow is a testament to his research caliber and international recognition. He also secured competitive visiting research fellowships at renowned institutions such as the University of Calgary and Academia Sinica, Taiwan. During his tenure at Haramaya University, he was appointed as Principal Investigator for an international welfare project and held multiple leadership positions, including Head of Department and University Student Discipline Committee Member. His selection for high-level international summer schools and training programs, including those at MIT, Wageningen University, and Florence University, highlights his global academic visibility.

Publication Top Notes

Temperature Dependence of Hydrogen/Air and Methane/Air Deflagration.

Performance Assessment of Drop Tube Reactor for Biomass Fast Pyrolysis.

Modelling of Acetaldehyde and Acetic Acid Combustion.

Modeling Formic Acid Combustion.

Reduced Combustion Mechanism for Fire with Light Alcohols.

Laminar Burning Velocity and Ignition Delay Time of Oxygenated Biofuel.

Prediction of the Ignition Delay Time of Bio-Syngas.

Effect of Hydrogen Addition on Low-Temperature Combustion.

Catalytic Cracking of Waste Cooking Oil for Biofuel.

Thermal Degradation of Waste Cooking Oil.

Conclusion

Dr. Fekadu Mosisa Wako stands out as a highly competent and visionary researcher committed to sustainable energy innovations. His strong academic foundation, vast international experience, and prolific publication record make him an ideal candidate for recognition through prestigious research awards. His multidisciplinary expertise—from biomass conversion and catalytic systems to combustion modeling—addresses pressing global energy and environmental challenges. His ability to bridge theory, simulation, and practical experimentation is remarkable, and his work continues to contribute to cleaner and more efficient energy systems. Given his accomplishments and future potential, Dr. Wako is highly deserving of the Best Researcher Award or any title that honors global scientific excellence in energy and environmental engineering.

Ismail Kamdar | Renewable Energy | Best Researcher Award

Dr. Ismail Kamdar | Renewable Energy | Best Researcher Award

Dr. Ismail Kamdar, Nanjing University of Aeronautics and Astronautics, China.

Dr. Ismail Kamdar is a dedicated renewable energy researcher with a multidisciplinary academic and professional background spanning over 8 years. Based in Nanjing, China, he is currently a Postdoctoral Fellow at the prestigious Nanjing University of Aeronautics and Astronautics. Dr. Kamdar specializes in energy technology, particularly in the development and application of grey systems theory and multi-criteria decision-making techniques for sustainable energy systems. With a robust publication record in high-impact journals, his work has attracted over 300 citations, underscoring his influence in the fields of wind and solar energy, waste management, and GIS-based energy planning. His research is aimed at advancing sustainable energy development, especially in developing economies, through a blend of theoretical rigor and practical application. Dr. Kamdar is also active in academic dissemination, having presented at international conferences and conducted workshops to share his knowledge on scientific tools and energy assessment frameworks.

👨‍🎓 Profile

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🎓 Education Background

Dr. Kamdar holds a PhD in Energy Technology (2022) and an MSc in Sustainable Energy Management (2019) from Prince of Songkla University, Thailand. During his doctoral research under the supervision of Prof. Juntakan Taweekun, he investigated wind energy development in Southern Thailand, using models and tools such as WAsP and GIS. His master’s thesis applied a GIS-AHP methodology for evaluating solid waste landfill sites, highlighting his early commitment to integrating sustainability with geospatial intelligence. Prior to this, he earned his BSc in Electrical (Power) Engineering from COMSATS University, Pakistan, where he built a strong foundation in power generation, circuit analysis, and energy systems. Dr. Kamdar’s academic journey showcases a seamless progression from electrical engineering fundamentals to advanced renewable energy applications, with a strong focus on interdisciplinary and technological integration. This rich educational trajectory has positioned him as a well-rounded expert capable of bridging theoretical frameworks with real-world environmental and energy challenges.

💼 Professional Experience

Dr. Kamdar is currently serving as a Postdoctoral Researcher (2023–2025) at Nanjing University of Aeronautics and Astronautics, where he developed a novel dynamic grey relational analysis model integrated with TOPSIS and AHP to assess solar energy development barriers in China. He has also served as a Research Associate at Thaksin University (2022–2023), contributing to three major publications on solar energy for tropical hospitals and islands. His academic roles include lecturing on energy management and conducting international workshops on research software tools like OriginLab and Mendeley. Before academia, Dr. Kamdar gained hands-on industrial experience as an Electrical Trainee Engineer at Islamabad Electric Supply Company (2016–2017), focusing on power distribution, load forecasting, and system optimization. This blend of academic insight and industrial exposure has equipped him with a holistic understanding of energy systems—both from a theoretical and practical standpoint—making him an asset to multidisciplinary renewable energy initiatives worldwide.

🌱 Research Interests

Dr. Kamdar’s research interests are deeply rooted in sustainable energy systems, with particular emphasis on renewable energy resource assessment, municipal waste-to-energy conversion, and offshore renewable technologies. He is an expert in integrating Multi-Criteria Decision-Making (MCDM) techniques such as AHP, TOPSIS, and dynamic grey relational analysis to prioritize energy strategies in complex socio-political and geographic contexts. His recent work focuses on the levelized cost of energy (LCOE) analysis, techno-economic assessments, and policy frameworks guiding photovoltaic and wind energy deployment. Dr. Kamdar also explores the application of grey systems theory and geographic information systems (GIS) to optimize energy planning and landfill siting. His interdisciplinary approach draws from engineering, data analytics, environmental science, and policy studies, ensuring a well-rounded solution framework for real-world energy challenges. He is committed to sustainable development goals and actively collaborates on projects that influence national and regional renewable energy policies, particularly in developing nations across Asia.

🏆 Awards and Recognition

Dr. Kamdar’s research excellence has been recognized through several notable achievements. Most recently, he received the Best Paper Award at an international energy conference for his innovative application of dynamic grey relational analysis in evaluating solar energy barriers. His article in Resources, Conservation and Recycling (IF: 11.2) was marked as a Highly Cited Paper, reflecting its significant academic and practical impact. Additionally, his contributions to Sustainability (2021) and the International Journal of Renewable Energy Development (2023) have been recognized for their citation performance. As an early-career researcher, these acknowledgments underscore his growing influence in global energy discourse. His interdisciplinary work is not only pushing the boundaries of energy systems modeling but also creating pathways for smarter, greener decision-making in developing regions. His dedication to knowledge dissemination, policy impact, and technical development positions him as a top candidate for awards recognizing scientific innovation, impact, and leadership in the renewable energy domain.

📚 Publications

Evaluating underlying barriers and development pathways for photovoltaic solar energy in China

Prioritizing barriers for solar energy in China

Wind characteristics in Thailand

Wind farm site selection using WAsP tool

Landfill siting using GIS-AHP

Solar PV for Thai hospitals

Hybrid Microgrid in Koh Samui

1 MW rooftop solar in Thailand

Conclusion

Dr. Ismail Kamdar exemplifies the qualities of an impactful researcher whose work bridges theory and application in the field of sustainable energy. His outstanding record of publications in high-impact journals, pioneering methodologies in grey systems, and practical insights into GIS and renewable energy modeling reflect a commitment to solving real-world energy challenges. With over 300 citations and multiple highly cited papers, he has made a mark in global academic and policy-oriented research landscapes. His interdisciplinary approach, technical depth, and forward-thinking mindset make him an ideal nominee for any prestigious research award in renewable energy and sustainability. Recognizing his contributions will not only honor his individual excellence but also spotlight emerging methodologies and practices essential to the global transition toward clean energy. He is poised to make further breakthroughs and inspire future innovations in the renewable energy sector.