Arjun Pukkella | Chemical Engineering | Best Researcher Award

Mr. Arjun Pukkella | Chemical Engineering | Best Researcher Award

Imperial College London, India

Author Profile

Early Academic Pursuits 🎓

Arjun Kumar Pukkella’s journey into the realm of academia began with a BTech in Chemical Engineering from Andhra University College of Engineering. Graduating with distinction in May 2013, Arjun quickly established himself as a top-performing student, earning the opportunity to participate in industrial visits due to his stellar academic performance. This early exposure to the practical aspects of chemical engineering further solidified his passion for the field.He then pursued a Master of Engineering (ME) in Chemical Engineering at the Indian Institute of Science (IISc) in Bangalore from 2013 to 2015. Under the supervision of Prof. Jayant Modak, Arjun focused his thesis on CFD modeling of Algal Bio‑reactors, specifically raceway ponds. His coursework at IISc covered a range of essential subjects including Transport Phenomena, Chemical Reaction Engineering, and Computational Transport Phenomenon, further enhancing his technical foundation. His time at IISc played a critical role in shaping his approach to research, particularly in the areas of mathematical modeling and numerical methods. This experience laid the groundwork for his subsequent research career.

Professional Endeavors 🛠️

With a solid academic foundation, Arjun Kumar Pukkella transitioned into a six-year stint at TCS Innovation Labs (TATA), where he contributed to cutting-edge R&D projects. His work at TCS exposed him to a variety of advanced technologies, particularly in computational fluid dynamics (CFD), 3D printing, and Monte Carlo simulations. These experiences honed his skills in machine learning and further deepened his expertise in process modeling.Arjun’s proficiency in patent documentation was a significant aspect of his role at TCS. His work in documenting intellectual property (IP) not only protected key innovations but also underscored his ability to navigate the intricate legal and technical aspects of research and development. His contributions during this time were marked by collaboration and teamwork, helping to foster a culture of innovation at TCS.In January 2021, Arjun took his professional experience a step further by pursuing a Ph.D. in Earth Science and Engineering at Imperial College London. His thesis focuses on the Optimization of Dry Mineral Classification, specifically leveraging insights from hydrocyclones to re‑design gas cyclones using Computational Fluid Dynamics (CFD) and laboratory experiments. The research aligns with a pressing global need: water conservation in mining operations. This groundbreaking work positions Arjun at the forefront of waterless mining technologies, advocating for sustainable practices in an industry that traditionally consumes vast amounts of water.

Contributions and Research Focus 🔬

Arjun’s Ph.D. research delves into the optimization of dry mineral classification, exploring the nuances of gas cyclones as efficient particle separators. His work reveals how convex-conic hydrocyclones can offer a coarser cut-size with reduced bypass compared to standard designs, a discovery validated by his CFD simulations and laboratory experiments.Arjun’s exploration extends to gas cyclones, where he employs Design of Experiments (DOE) and Monte Carlo simulations to model these systems. The result? Convex-conic gas cyclones deliver coarser cut-sizes, improving the efficiency of dry classification processes in mining. The practical implications of this research could lead to a transformative shift in how mining operations are conducted, potentially reducing water usage across the globe.Additionally, Arjun’s earlier work at IISc on algal bio-reactors underscores his versatility as a researcher. His ability to apply CFD modeling to different contexts—whether it be mining or bioengineering—demonstrates a broad skill set, making his contributions valuable across multiple sectors.

Accolades and Recognition 🏆

Throughout his academic and professional career, Arjun Kumar Pukkella has garnered recognition for his innovative contributions. Graduating with distinction from Andhra University, and later thriving in the competitive research environment at TCS Innovation Labs, Arjun has consistently demonstrated excellence in his field.At Imperial College London, his Ph.D. research under the guidance of Prof. Jan J. Cilliers and Dr. Kathryn Hadler has earned him praise for its potential environmental impact. The advocacy for waterless mining techniques positions Arjun as a leader in sustainable practices within the mining industry, and his technical work on gas cyclones has been recognized by his peers in academia and industry alike.

Impact and Influence 🌍

Arjun’s work is not just academically significant—it has the potential to make a tangible difference in the world. His research on water conservation in mining operations is particularly timely, as industries across the globe are seeking ways to reduce their environmental footprint. By promoting waterless mining techniques, Arjun’s contributions could play a crucial role in helping the mining industry move toward more sustainable practices. His research could help shape future policies and technologies aimed at reducing water consumption and environmental degradation.

Legacy and Future Contributions 🌟

As Arjun continues his academic journey, the future looks incredibly promising. His current research at Imperial College London positions him as a thought leader in the intersection of CFD modeling, machine learning, and sustainable mining practices.With his vast experience in both academia and industry, Arjun is uniquely positioned to bridge the gap between theoretical research and practical applications. His ability to collaborate effectively and foster innovation within teams will undoubtedly contribute to his continued success. Looking forward, Arjun’s legacy will likely include significant advancements in mineral classification technologies and water conservation methods, positioning him as a key player in the global movement toward sustainable industrial practices.As Arjun continues to advocate for environmental sustainability and innovation, his contributions to both the academic and industrial sectors will leave an indelible mark on the future of earth science and engineering. 🌱

Citations

A total of 106 citations for his publications, demonstrating the impact and recognition of his research within the academic community.

  • Citations         106
  • h-index           10
  • i10-index        5

Notable Publications 

  • Optimising miniaturised hydrocyclones for enhanced separation of microplastics
    • Authors: Bu, T., Mesa, D., Pukkella, A.K., Brito-Parada, P.R.
    • Journal: Chemical Engineering Journal, 2024.
  • Design of parabolic conic gas cyclones for coarse particle classification: A CFD study with Response Surface Methodology
    • Authors: Pukkella, A.K., Cilliers, J., Hadler, K.
    • Journal: Powder Technology, 2024.
  • A comprehensive review and recent advances in dry mineral classification
    • Authors: Pukkella, A.K., Cilliers, J.J., Hadler, K.
    • Journal: Minerals Engineering, 2023.
  • An integrated CFD methodology for tracking fluid interfaces and solid distributions in a vortexing stirred tank
    • Authors: Pukkella, A.K., Subramanian, S.
    • Journal: Canadian Journal of Chemical Engineering, 2023.
  • A novel spiral infinity reactor for continuous hydrothermal synthesis of nanoparticles
    • Authors: Pukkella, A.K., Nadimpalli, N.R.V., Runkana, V., Subramanian, S.
    • Journal: Scientific Reports, 2022.

Santhosh | Membrane Technology | Best Researcher Award

Mr. Santhosh - Membrane Technology - Best Researcher Award 🏆 

Jain (Deemed-to-be) University - India

Professional Profiles

Early Academic Pursuits

He embarked on his academic journey with a Bachelor of Science degree, opting for Chemistry, Zoology, and Sericulture at Sri Siddhartha First Grade College, Tumkur. His passion for chemistry led him to pursue a Master of Science in Chemistry with a specialization in General Chemistry at the Department of Studies in Chemistry, Manasagangothri, University of Mysore. During his master's program, he delved into research, focusing on the synthesis and characterization of Piperonyl piperazine Amide derivatives under the guidance of Dr. H. S. Yathirajan.

Professional Endeavors

Following his academic pursuits, Santhosh ventured into the field of membrane technology as a Senior Research Scholar at the Sustainable Materials and Processes Lab, Centre for Nano and Material Science (CNMS), Jain University, Bangalore. Under the mentorship of Dr. S. K. Nataraj, a renowned Professor at CNMS, Santhosh embarked on his research journey focusing on membrane technology, adsorption studies, and organic synthesis. His thesis titled "Functional Nanocomposite membrane for Water treatment" showcases his dedication to exploring innovative solutions for water treatment using membrane technology.

Contributions and Research Focus in Membrane Technology

His research endeavors have been centered around membrane technology, where he has contributed significantly to the development of functional nanocomposite membranes for water treatment. His pioneering work includes the synthesis and characterization of novel materials such as Aminopropyl functionalized iron-phyllosilicate (AIP) engineered composite membrane for hazardous emerging pollutant treatment. Additionally, he has explored the use of deep eutectic solvents for upcycling waste membranes into high-performance adsorbents and energy storage materials.

Membrane technology encompasses a diverse array of filtration, separation, and purification techniques that have revolutionized various industries and applications. From wastewater treatment to desalination, membrane technology plays a vital role in ensuring clean water, efficient separation processes, and advanced purification methods.

Accolades and Recognition

His contributions to membrane technology have garnered recognition in the form of awards and achievements. His groundbreaking research on MoS2@AIP clay device-based materials for heavy metals removal and the design of Mg-aminoclay based thin film nanocomposite membranes for nanoplastic removal and wastewater treatment have been widely acknowledged in the scientific community.

Whether in membrane bioreactors, reverse osmosis systems, or gas separation units, membrane technology continues to evolve, driving progress and innovation in filtration and separation processes.

Impact and Influence

His work has not only expanded the frontiers of membrane technology but also has practical implications for addressing pressing environmental challenges such as water pollution and nanoplastic contamination. His research has the potential to revolutionize water treatment processes, offering sustainable solutions for a cleaner and healthier environment.

Legacy and Future Contributions

As he continues his research journey, his legacy in the field of membrane technology is poised to inspire future generations of scientists and researchers. His innovative approach and commitment to addressing global environmental challenges through cutting-edge research lay the foundation for a more sustainable future. With a focus on industrial applications, Santhosh aims to translate his research findings into practical solutions that can make a tangible difference in society.

Citations

  • Citations              21
  • h-index                 3
  • i-10 index             1

Notable Publications

Aaliya Qureashi | Wastewater treatment | Best Researcher Award

Dr. Aaliya Qureashi - Wastewater treatment - Best Researcher Award 🏆 

University of Kashmir - India

Professional Profiles

Early Academic Pursuits

She embarked on her academic journey with a deep-seated passion for environmental science and chemistry. She pursued her Bachelor of Science degree at Govt. College for Women, M.A. Road, Srinagar, in 2012, laying the foundation for her future endeavors. Subsequently, she delved into the realm of chemistry by completing her Master of Science at the University of Kashmir in 2014, where her fervor for research in water treatment and environmental remediation began to take shape.

Professional Endeavors

Following her academic pursuits, She ventured into the field of wastewater treatment as a researcher and educator. She commenced her journey as a Ph.D. scholar at the University of Kashmir, Department of Chemistry, in January 2019. Simultaneously, she assumed the role of Principal Investigator as a Women Scientist (WOS-A) at the University of Kashmir, Department of Chemistry, from 2022. Her dual roles reflect her dedication to advancing scientific knowledge and addressing pressing environmental challenges.

Contributions and Research Focus in Wastewater treatment

Her research is centered on the design and synthesis of innovative magnetic composites tailored for the detection and removal of contaminants from wastewater. She focuses on modifying these composites using various polymers and carbon-based materials through techniques such as ultrasonication, co-precipitation, and hydrothermal methods. Her ultimate goal is to gain a profound understanding of removal processes, adsorption mechanisms, and electrochemical phenomena at electrode-electrolyte interfaces. This knowledge will inform the development of highly efficient electrochemical devices and sensors for applications in water treatment and environmental monitoring.

Wastewater treatment is the process of removing contaminants and impurities from wastewater to make it safe for discharge back into the environment or for reuse. It is a critical component of environmental engineering and pollution control, aimed at protecting public health and preserving natural resources.

Accolades and Recognition

Her contributions to environmental science and wastewater treatment have garnered significant recognition. In February 2022, she was honored by the Department of Science and Technology (DST-GOI) as a Women Scientist (WOS-A) Principal Investigator for her project titled "Synthesis and Characterization of Some Magnetic Composites for the Abatement of Environmental Toxicants." Additionally, she received accolades from the Journal of Global Ecology and Environment for her exemplary peer reviewing efforts.

Treatment technologies employed in wastewater treatment plants include filtration, biological treatment, and chemical treatment. Filtration methods like sand filtration and membrane filtration are used to remove suspended solids and microorganisms.

Impact and Influence

Her research endeavors have the potential to make a profound impact on water purification and pollution control efforts. By developing novel materials and techniques for wastewater treatment, she aims to contribute to the preservation of environmental quality and human health. Her work has the potential to revolutionize sewage treatment processes and mitigate the adverse effects of water pollution on ecosystems and communities.

Legacy and Future Contributions

As she continues her journey as a dedicated researcher and educator, her legacy will be defined by her commitment to advancing knowledge and addressing environmental challenges. Through her innovative research, she seeks to leave a lasting impact on the field of wastewater treatment and inspire future generations of scientists to tackle pressing environmental issues. With her unwavering dedication and passion, she is poised to make significant contributions to water purification, environmental engineering, and pollution control efforts for years to come.

Citations

  • Citations              834
  • h-index                 10
  • i-10 index             11

Notable Publications