Sourav Ranjan Satpathy | Ceramic Engineering | Best Researcher Award

Sourav Ranjan Satpathy | Ceramic Engineering | Best Researcher Award

NIT Rourkela, India

Author Profile

ORCID

GOOGLE SCHOLAR

🎓 EARLY ACADEMIC PURSUITS

Sourav Ranjan Satpathy embarked on his academic journey with a deep-rooted passion for physics and material science. He completed his postgraduate studies in Physics from Veer Surendra Sai University of Technology (VSSUT), Burla, Odisha, where he cultivated a strong foundation in fundamental sciences. His keen interest in research led him to qualify GATE (Physics) in 2022, a national-level competitive examination that opened doors to advanced research.

🏢 PROFESSIONAL ENDEAVORS

Currently, Sourav is serving as a Research Scholar (Ph.D. Student) at the National Institute of Technology (NIT), Rourkela, one of India’s premier institutes. He is actively engaged in interdisciplinary research in the Department of Ceramic Engineering. His doctoral research brings together core physics principles and innovative material science approaches, specifically focusing on clay-based geopolymer adsorbents for environmental cleanup.

📚 CONTRIBUTIONS AND RESEARCH FOCUS IN CERAMIC ENGINEERING

Sourav’s research revolves around the synthesis and performance evaluation of geopolymer materials—a class of advanced ceramics derived from industrial waste and natural clays. His recent publication:

Satpathy, Sourav Ranjan, and Sunipa Bhattacharyya. “Adsorptive dye removal using clay-based geopolymer: Effect of activation conditions on geopolymerization and removal efficiency.” Materials Science and Engineering: B 319 (2025): 118348.

highlights his breakthrough in wastewater treatment through eco-friendly and cost-effective ceramic adsorbents. He explores the adsorption kinetics, material regeneration, and the influence of activation conditions—critical parameters for practical environmental applications.

🏅 RESEARCH GRANTS AND FUNDING

Currently, Sourav’s work is supported through institutional infrastructure and academic grants facilitated by NIT Rourkela. He is poised to secure independent or collaborative funding from national research councils such as DST, CSIR, and SERB, aiming to expand the scope of applied ceramic engineering in environmental science.

🌍 IMPACT AND INFLUENCE

Sourav’s work aligns with global goals of sustainable development, especially UNSDG 6 (Clean Water and Sanitation) and UNSDG 12 (Responsible Consumption and Production). By developing geopolymer materials from waste clays and industrial byproducts, his research contributes toward circular economy models, reducing landfill waste, and offering scalable technologies for industrial wastewater remediation.

🧭 LEGACY AND FUTURE CONTRIBUTIONS

Sourav envisions scaling up his research into pilot-scale environmental solutions, collaborating with industries to implement adsorbent technologies for textile dye effluent treatment and heavy metal removal. His broader mission includes fostering awareness about low-carbon materials and mentoring future researchers in eco-materials and environmental technology.

 ✅CONCLUSION

Sourav Ranjan Satpathy represents the emerging generation of multidisciplinary Indian researchers, committed to scientific excellence, environmental stewardship, and technological innovation. His contribution to ceramic-based adsorbents is not only scientifically relevant but socially responsible, addressing some of the most pressing ecological challenges. As a nominee for the Best Researcher Award, Sourav brings merit, passion, and promise—hallmarks of a future leader in sustainable material science.

 🔬NOTABLE PUBLICATION:

Adsorptive dye removal using clay-based geopolymer: Effect of activation conditions on geopolymerization and removal efficiency

Author(s): Sourav Ranjan Satpathy, Sunipa Bhattacharyya
Journal: Materials Science and Engineering: B
Year: 2025


Clay Based Geopolymer Adsorbent and Its Application for Methylene Blue Dye Removal from Wastewater System

Author(s): Sourav Ranjan Satpathy, Sunipa Bhattacharyya
Journal: (Not specified; likely unpublished or conference/workshop paper)
Year: 2023

Vikas Sharma | Engineering | Young Scientist Award

Dr. Vikas Sharma | Engineering | Young Scientist Award

University of Brighton, UK United Kingdom

Author Profile

Early Academic Pursuits

Dr. Vikas Sharma embarked on his academic journey with a Bachelor of Engineering in Mechanical Engineering from Vinayaka Mission University, Tamil Nadu, India, in 2011. His passion for internal combustion engines led him to pursue a Master of Technology in Internal Combustion Engine from Vel Tech Rangarajan Dr. Sagunthala R&D Institute of Science and Technology, completing his degree in 2013 with a thesis on “Laser Ignition System in Lean Burn CNG Engine.” He culminated his formal education with a Ph.D. in Mechanical Engineering/Renewable Energy from Anna University, Chennai, India, in 2020, focusing his doctoral research on “Bio-mix Fuel Production, Characterisation and Its Impact on the Non-Road Diesel Engine Combustion, Performance and Emissions.”

Professional Endeavors

Dr. Sharma’s professional career is marked by significant roles in academia and industry. He currently serves as a Senior Research Fellow at the School of Architecture, Technology, and Engineering at the University of Brighton, UK. His previous roles include Research Associate positions at Aston University, Birmingham, UK, where he worked on projects like Waste to Energy and Low Temperature Combustion of Sustainable Green Fuels. He has also been a lecturer at various institutions, including Anna University and Laxmi Narain College of Technology, where he imparted knowledge in subjects like Engineering Thermodynamics, Internal Combustion Engine, and Renewable Energy.

Contributions and Research Focus

Dr. Sharma’s research focuses on advanced combustion technologies, including Hydrogen and Ammonia combustion for split cycle engines, and low temperature combustion techniques such as HCCI, PCCI, and RCCI. He has contributed significantly to biofuel production from waste feedstocks, algae biofuel production, and the development of nano-catalysts for biodiesel production. His technical skills encompass the use of Ansys Chemkin Pro and Ansys CFD for combustion analysis, as well as various combustion analyzers and emission analysis tools.

Accolades and Recognition

Dr. Sharma’s work has been recognized with several research and travel grants, including funding from the Royal Academy of Engineering (UK)-DST-India and ASTUTE seed corn grant. He has also completed various certification courses related to hydrogen and ammonia safety, biofuel production, and sustainable fuels and chemical production. His research achievements are documented in numerous publications, and he has been a mentor and supervisor for many undergraduate students.

Impact and Influence

Dr. Sharma has made substantial contributions to the field of mechanical engineering and renewable energy through his research and consultancy roles. His work on projects like the MariNH3, funded by EPSRC-UKRI, focuses on hydrogen and ammonia combustion for marine applications, which has significant implications for sustainable energy solutions. His collaborations with institutions such as the University of Brighton, Aston University, and various Indian institutes highlight his global impact and influence.

Legacy and Future Contributions

Looking ahead, Dr. Sharma aims to continue his research in sustainable energy technologies and advanced combustion systems. His ongoing projects on hydrogen and ammonia combustion and waste-to-energy conversion demonstrate his commitment to addressing global energy challenges. Through his teaching, research, and consultancy, Dr. Sharma continues to inspire and mentor the next generation of engineers, contributing to advancements in energy technologies and sustainable engineering practices.

Citations

A total of 317 citations for his publications, demonstrating the impact and recognition of his research within the academic community.

  • Citations         317
  • h-index           11
  • i10-index        12
Notable Publications 

Production, combustion and emission impact of bio-mix methyl ester fuel on a stationary light duty diesel engine

Vikas Sharma, Ganesh Duraisamy, Haeng Muk Cho, Kanagaraj Arumugam
Journal of Cleaner Production

Plastic waste to liquid fuel: A review of technologies, applications, and challenges

V Sharma, AK Hossain, G Griffiths, G Duraisamy, A Krishnasamy, …
Sustainable Energy Technologies and Assessments