Mr. Abhimanyu Kumar Gond – AIR QUALITY – Best Researcher Award

Mr. Abhimanyu Kumar Gond - AIR QUALITY - Best Researcher Award

IIT BHU - India 

AUTHOR PROFILE 

SCOPUS 

ORCID 

EARLY ACADEMIC PURSUITS 🎓

Abhimanyu Kumar Gond’s academic journey began with a strong foundation in Civil Engineering at AISECT University, Bhopal, where he excelled with a notable 84.2%. His passion for technology and environmental studies led him to pursue a Master of Technology in GIS and Remote Sensing from MNNIT Allahabad, where he achieved a commendable 73%. Building on his robust technical knowledge, Abhimanyu is currently pursuing a Ph.D. at the prestigious Indian Institute of Technology (IIT) Banaras Hindu University (BHU) in Varanasi. His ongoing research focuses on air quality prediction and its impacts, particularly in the context of large open-cast coal mining operations.

PROFESSIONAL ENDEAVORS 💼

Abhimanyu’s professional journey has been marked by both academic and applied research experiences. As a teaching assistant at IIT BHU, he has played a crucial role in guiding undergraduate and postgraduate students in the areas of remote sensing, GIS, coal quality, and image processing. This role has honed his leadership and communication skills while deepening his understanding of practical applications in environmental science. Additionally, his earlier work as a Junior Project Fellow at the Institute of Forest Productivity in Ranchi provided him with hands-on experience in environmental data collection and analysis, which he later integrated into his research on air quality prediction.

CONTRIBUTIONS AND RESEARCH FOCUS 🔬

Abhimanyu’s research contributions are primarily focused on air quality prediction, leveraging satellite data and machine learning techniques. His Ph.D. research aims to develop an integrated satellite and ground-data fusion model to predict air quality in coal mining regions, with an emphasis on the Korba coalfield in Chhattisgarh, India. He has made notable strides in using AIR QUALITY machine learning models such as Long Short-Term Memory (LSTM) for air quality prediction, contributing significantly to the field of environmental monitoring. Abhimanyu has also worked on the development of a web application to monitor air quality using Google Earth Engine, a tool that is expected to have a significant impact on policy and decision-making related to air pollution in coal mining areas.

ACCUMULATION OF KNOWLEDGE AND RECOGNITION 🏅

Abhimanyu’s dedication to his field has earned him recognition in several prestigious journals. His research articles on air quality trends and machine learning models for predicting air quality have been published in notable journals such as Remote Sensing Applications: Society and Environment and Atmospheric Pollution Research. These publications have garnered attention within the AIR QUALITY scientific community for their innovative approach to environmental monitoring using remote sensing and AI. Abhimanyu’s work continues to contribute valuable insights into the effects of coal mining on air quality, which is crucial for both public health and environmental management.

IMPACT AND INFLUENCE 🌍

Abhimanyu’s research has a direct impact on both environmental and public health policies in mining regions. His work, particularly in the Korba coalfield, is vital for understanding the temporal and spatial trends of air pollutants and their relationship with human health. By developing predictive models for air quality, Abhimanyu’s studies assist in mitigating the harmful AIR QUALITY effects of air pollution caused by coal mining. His contributions extend beyond academia, with practical applications in governmental and industrial decision-making, guiding the implementation of effective mitigation measures in high-risk areas.

LEGACY AND FUTURE CONTRIBUTIONS 🌱

Abhimanyu’s long-term research vision is to develop more sophisticated models for air quality prediction, integrating advanced satellite data and machine learning techniques. His aim is to extend his current research to other coal mining regions in India and globally, expanding the scope of his work to provide actionable solutions for mitigating the environmental impacts of mining. The integration of satellite data with ground-based measurements will continue to play a key role in his future projects, fostering greater collaboration between academia, industry, and policymakers. Abhimanyu’s work is expected to leave a lasting legacy in the field of environmental engineering, particularly in the sustainable management of air quality in mining regions.

NOTABLE PUBLICATIONS 

Title: Developing a machine learning model using satellite data to predict the Air Quality Index (AQI) over Korba Coalfield, Chhattisgarh (India)
Authors: Gond, A.K., Jamal, A., Verma, T.
Journal: Atmospheric Pollution Research, 2025, 16(2), 102398.

Mr. Ajan Meenakshisundaram – Geothermal energy – Best Researcher Award

Mr. Ajan Meenakshisundaram - Geothermal energy - Best Researcher Award

University of North Dakota - United States

Author Profile 

SCOPUS

Early academic pursuits 🎓

Ajan Meenakshisundaram embarked on his academic journey with a Bachelor of Technology in Mechanical Engineering from Dr. M.G.R Educational and Research Institute in Chennai, where he achieved a CGPA of 7.3/10. His quest for deeper knowledge led him to pursue a Master of Energy Engineering at the University of Genoa in Italy, graduating with a vote of 100/110. Currently, he is furthering his expertise with a Ph.D. in Energy Engineering at the University of North Dakota, where he maintains an impressive GPA of 3.9/4.

Professional endeavors 🌟

Ajan's professional experience reflects a strong commitment to advancing energy engineering. As a Graduate Research Assistant at the University of North Dakota, he is actively involved in a Department of Energy project focusing on hydrogen production from biomass feedstock. His role includes modeling high-temperature shell and tube heat exchangers and analyzing pilot experimental data. Additionally, he has served as a Graduate Teaching Assistant, where he supports the development of lecture materials and tutorials for courses on project dynamics and applied business analysis. His internship at the Energy and Environmental Research Center further enriched his knowledge of the North Dakota energy market.

Contributions and research focus 🔬

Ajan’s research contributions are centered on energy engineering, with a particular focus on hydrogen production and biomass feedstock. His work involves using advanced computational fluid dynamics software to model heat exchangers and assess thermophysical characteristics of Geothermal energy core samples. His research on high-pressure and temperature equipment demonstrates his technical expertise and commitment to addressing complex energy challenges. This work aims to improve the efficiency and sustainability of energy systems, making a significant impact in the field.

Accolades and recognition 🏅

Ajan's academic and professional achievements have been recognized through his involvement in prestigious organizations. He is an active member of the American Association of Energy Engineers (AEE) and the Society of Petroleum Engineers (SPE). His role as the Secretary for the Geothermal energy Student Association of India (SAI) at the University of North Dakota and his volunteer work with the National Entrepreneurship Network (NEN) highlight his leadership and organizational skills. These roles underscore his dedication to both his professional field and community engagement.

Impact and influence 🌍

Ajan’s work in energy engineering has the potential to significantly influence the field, particularly in the areas of hydrogen production and biomass utilization. His innovative approach to modeling and data analysis contributes to the development of more efficient and sustainable Geothermal energy energy systems. By addressing critical energy challenges and providing valuable insights into energy markets, he is helping to shape the future of energy engineering and its applications.

Legacy and future contributions 🔮

Ajan Meenakshisundaram's legacy will be defined by his contributions to energy engineering and his commitment to advancing sustainable energy solutions. His ongoing research and professional endeavors are paving the way for future innovations in the field. As he continues to explore new methodologies and technologies, his work is expected to leave a lasting impact on the energy sector, influencing both academic research and practical applications.

Notable Publications 

Assist Prof Dr. Burak Tekin – Rechargeable Batteries – Young Scientist Award

Assist Prof Dr. Burak Tekin - Rechargeable Batteries - Young Scientist Award

Ondokuz Mayis University, Chemical Engineering - Turkey

Professional Profile

SCOPUS

ORCID  

Early Academic Pursuits

Dr. Burak Tekin's academic journey is distinguished by his focus on chemical engineering with a particular interest in energy storage devices. He completed his Bachelor's degree in Chemical Engineering from Cumhuriyet University in Sivas, Turkey, in 2011, graduating with honors. During his undergraduate studies, he was involved in research on supercapacitors and rechargeable batteries. He continued his academic pursuits at the same institution, earning his Master's degree in Chemical Engineering in 2013, where he was awarded the first-place student award for his thesis on novel electrode materials for various ion batteries. Dr. Tekin then pursued his Ph.D. at Gebze Technical University, focusing on the development of cathode materials for sodium-ion batteries with aqueous electrolytes, which he completed in 2019.

Professional Endeavors

Dr. Tekin has an extensive professional background in both academia and industry, with a focus on electrochemical energy storage systems. His experience spans several prestigious institutions, where he has contributed to groundbreaking research and development in battery technology.

Contributions and Research Focus

Dr. Tekin's research is centered on the development and characterization of advanced materials for energy storage devices, particularly sodium-ion and lithium-ion batteries. His work has significantly contributed to the understanding and improvement of cathode materials, enhancing the Rechargeable Batteries performance and efficiency of these batteries.

Accolades and Recognition

Dr. Tekin has been recognized for his academic excellence and research contributions throughout his career. His achievements include high GPA scores, prestigious research positions, Rechargeable Batteries and significant awards during his studies.

Impact and Influence

Dr. Tekin's research has had a significant impact on the field of energy storage, particularly in the development of more efficient and sustainable battery technologies. His work on sodium-ion and lithium-ion batteries has implications for various applications, including portable electronics, Rechargeable Batteries  electric vehicles, and renewable energy storage.

Legacy and Future Contributions

Dr. Tekin is poised to continue making substantial contributions to the field of chemical engineering and energy storage. His future research aims to further enhance the performance and sustainability of battery technologies, contributing to the development of next-generation energy storage systems.