Md Salim Newaz Kazi | Characterization of fibres and fouling mitigation | FRP Academic Excellence Award

Prof Dr. Md Salim Newaz Kazi | University Malaya | Malaysia

Professional Profiles:

Early Academic Pursuits

His academic journey with a background in Mechanical Engineering. His academic qualifications include a B.Sc. in Engineering (Mechanical), M.Sc. in Engineering (Mechanical), Master of Engineering (Mechanical), and a Ph.D. in Chemical and Materials Engineering. This robust academic foundation reflects his commitment to multidisciplinary knowledge.

Professional Endeavors

With 18 years of engineering service experience in petrochemical industries and chemical plants, Professor Newaz brought valuable industry insights when transitioning to academia in 2009. He has served as a senior engineer and plant manager, contributing to plant design, troubleshooting, and maintenance. His role as a consultant for various engineering companies further enriched his practical expertise.

Contributions and Research Focus

His specializes in Heat Transfer, Fluid Mechanics, Particle Characterization, Heat Exchanger Fouling Mitigation, Nanofluid Synthesis and Applications, and Renewable Energy. His research efforts extend to areas such as energy transportation, effects of stable metallic nanofluids, and the hydrothermal and energy analysis of solar collectors. His work includes the development of novel nanofluids and their applications in thermal systems.

Accolades and Recognition

His contributions to research and innovation have earned him recognition and accolades. Notably, he was selected as one of the highly cited researchers in mixed mode by Web of Science in 2019. He was also recognized as one of the top 2 percent scientists globally for the years 2019 and 2022. These acknowledgments highlight the impact and influence of his research in the scientific community.

Impact and Influence

With an impressive h-index of 60 and over 11,900 citations, Professor Newaz's research has significantly influenced the field of thermal engineering. His work on nanofluids, heat exchanger fouling mitigation, and renewable energy has contributed to advancements in understanding and applications in these areas. His active participation in international conferences and keynote speeches underscores his influence in disseminating knowledge.

Legacy and Future Contributions

His legacy lies in his extensive academic and industrial contributions. Having supervised numerous Ph.D. and Master theses, authored technical papers, book chapters, and patents, he has shaped the academic landscape. His commitment to research, recognition as a top scientist, and active role in editorial boards underscore his dedication. In the future, his continued research endeavors are likely to contribute further to the field of thermal engineering, with a focus on sustainable and innovative solutions.

Notable Publications:

 

 

Bhaskar Deka | Membrane based desalination | Best Researcher Award

Assist Prof Dr. Bhaskar Deka | Indian Institute of Technology | India

Professional Profiles:

Early Academic Pursuits

Dr. Bhaskar Jyoti Deka embarked on his academic journey with a Ph.D. in Environmental Engineering, specifically in the field of Desalination and Membrane Distillation, from City University Hong Kong. His research interests, evident from the early stages, include nanoengineered surface design and the fabrication of polymeric/nanocomposite membranes for various applications.

Professional Endeavors

Dr. Deka has demonstrated a diverse and enriching professional career. Currently serving as an Assistant Professor at the Department of Hydrology at the Indian Institute of Technology (IIT) Roorkee, he is also a Joint Faculty at the Centre for Nanotechnology, IIT Roorkee. Before joining IIT Roorkee, he held significant roles as a Postdoctoral Fellow and Senior Research Associate at the Membrane and Water Technology Laboratory in City University of Hong Kong.

Contributions and Research Focus

With a strong focus on membrane-related technologies, Dr. Deka's research spans membrane distillation, forward osmosis, and applications of membranes in fuel cell technology. His contributions include the development of reinforced superhydrophobic antiwetting membranes, conductive hydrophobic membranes, and the exploration of nanomaterials in membrane design. His work significantly advances the understanding and application of membrane technologies in desalination and water treatment.

Accolades and Recognition

Dr. Bhaskar Jyoti Deka has garnered recognition for his contributions, including being awarded the Technology Readiness Level Booster at IIT Roorkee and receiving the Outstanding Academic Performance Award at City University of Hong Kong. His research has been supported by prestigious grants, including the UGC Research funding from the Government of Hong Kong. Additionally, he is a qualified Graduate Aptitude Test in Engineering (GATE) candidate.

List of Publications

His research output is prolific, with publications in reputable journals such as Desalination, Journal of Membrane Science, Advanced Materials, and Environmental Science and Technology. His work covers topics ranging from superhydrophobic membranes for membrane distillation to advancements in nano-enabled membrane distillation for sustainable water-energy-environment applications.

Impact and Influence

As evidenced by the publication of his research in high-impact journals, Dr. Deka's work has made a significant impact on the fields of membrane technology and environmental engineering. His contributions to the understanding of fouling mechanisms, surface energy optimization, and the development of novel membrane materials have implications for sustainable water treatment and desalination processes.

Legacy and Future Contributions

His legacy lies in his multifaceted contributions to academia, research, and membrane technology. His research has the potential to shape the future of water treatment technologies, especially in membrane distillation. As he continues to explore new frontiers in membrane engineering, his future contributions are likely to further enhance the understanding and application of membranes in environmental and water-related challenges.

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