Marie Giroudon – Civil and environmental engineering – Best Researcher Award

Marie Giroudon - Civil and environmental engineering - Best Researcher Award

INSA Toulouse - France

AUTHOR PROFILE

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🔬 SUMMARY

Marie Giroudon is a pioneering researcher in civil engineering, specializing in the sustainability and durability of cementitious materials under aggressive conditions. Grounded in both academic excellence and hands-on experimentation, the work contributes meaningfully to environmental engineering and sustainable construction. With a strong interdisciplinary approach, Marie bridges civil engineering with microbiological and biochemical phenomena, particularly in the context of biogas and anaerobic digestion infrastructures. The research explores how binders, additives, and natural aggregates behave in corrosive environments, aiming to develop low-carbon, bio-integrated materials that withstand biodeterioration. The innovative contributions have gained recognition across both scientific and industrial communities, notably in Europe. Presently working as Maßtre de Conférences at INSA Toulouse, the career reflects a continuous trajectory of academic distinction, impactful collaborations, and scientific leadership. With a solid publication record and active roles in international working groups, Marie continues to shape the future of sustainable and durable construction materials research globally.

📘 EARLY ACADEMIC PURSUITS

Marie Giroudon’s academic path reflects a steady ascent through top-tier institutions and rigorous programs in science and engineering. The journey began with a Bachelor's degree in Physics at UniversitĂ© Toulouse III Paul Sabatier, attained with distinction. The foundation in physics cultivated a strong analytical and technical perspective, later channeled into civil and geotechnical engineering. The academic development continued through a Master’s and Engineering diploma from UPSSITECH, marked by honors and international exposure through a semester at Polytechnique MontrĂ©al. The formal academic training culminated in a PhD in Civil Engineering from INSA Toulouse, successfully defended in January 2021. The thesis explored interactions between biowaste in anaerobic digestion and cement-based materials, laying the groundwork for future innovations in eco-resilient infrastructure. Throughout this formative period, Marie consistently demonstrated high aptitude, curiosity, and commitment to research excellence, supported by prestigious grants and supervision under renowned French experts in materials durability and sustainable construction.

đŸ—ïž PROFESSIONAL ENDEAVORS

Marie Giroudon's professional experience showcases a seamless blend of research, teaching, and interdisciplinary project leadership. Currently serving as Maßtre de Conférences at INSA Toulouse within the Laboratoire Matériaux et Durabilité des Constructions (LMDC), the role integrates research on cementitious materials with pedagogy across subjects such as BIM, geotechnics, and prestressed concrete. Previously, Marie contributed to cutting-edge postdoctoral projects like WWT Concrete, targeting sustainable solutions for wastewater infrastructure. These roles followed a rich doctoral journey supported by ANR BIBENdOM, focusing on how cement-based materials react in biodeteriorative, anaerobic conditions. Each professional role has been guided by a strong commitment to innovation and sustainability. With active involvement in mentoring research students and coordinating academic collaborations across institutions like EPFL and Université Gustave Eiffel, the career reflects a mature scientific vision combined with practical leadership in environmental and construction material research. These roles reinforce Marie's expertise in applying fundamental science to real-world engineering challenges.

đŸ§Ș CONTRIBUTIONS AND RESEARCH FOCUS

The research of Marie Giroudon addresses critical challenges in environmental engineering by focusing on the durability of cementitious materials in chemically aggressive settings, particularly anaerobic digestion systems. By investigating alternative binders such as metakaolin geopolymers, blast-furnace slag cement, and calcium aluminate cement, the work contributes to lowering the environmental footprint of construction. Key innovations include identifying the biodeterioration kinetics and interaction mechanisms between organic matter and cement matrices. Marie's investigations into materials behavior under exposure to ammonium, organic acids, and fermentation byproducts are crucial for designing long-lasting bio-infrastructure. Collaborations with biotechnologists and environmental chemists have enriched these studies with multidisciplinary insights. Through over 15 peer-reviewed articles and numerous conference presentations, Marie has established a strong scientific presence in sustainable materials research. The work influences guidelines for agricultural and industrial infrastructure, particularly biogas plants, and contributes to European discussions on green civil engineering, forming the scientific basis for future innovations in eco-construction.

🏅 ACCOLADES AND RECOGNITION

Marie Giroudon has earned several recognitions that underscore both scientific excellence and community engagement. A prominent achievement includes winning the 3rd prize at the “Forum Jeunes Chercheurs” in Marne la VallĂ©e for research on biodeterioration of cement materials—an acknowledgment of originality and societal relevance. As a dedicated member of international expert committees like RILEM TC 253-MCI and the French Civil Engineering Association’s “BĂ©tons et Microorganismes” group, Marie contributes actively to shaping technical documentation and standards on microbial impacts on concrete. Participation in these expert networks reflects not only scientific credibility but also an enduring commitment to collaborative advancement. Furthermore, the invitation to contribute to state-of-the-art reports published by Springer, and repeated representation at top-tier conferences such as the International Congress on the Chemistry of Cement, highlight widespread recognition. These honors affirm Marie’s status as a rising leader in the domain of eco-resilient construction materials and sustainable civil infrastructure research.

🌍 IMPACT AND INFLUENCE

Marie Giroudon's research exerts tangible influence on both academic and applied sectors, particularly in the design and maintenance of biogas infrastructure and wastewater facilities. The interdisciplinary work directly informs environmental policy and engineering practices by providing evidence-based insights into material degradation in microbial and chemical environments. Collaborations with major public utilities like SIAAP and universities such as EPFL have fostered research-to-practice translation. The development of low-carbon, bio-integrated binders presents a promising direction in the global shift toward sustainable construction, aligning with EU climate goals. The work contributes significantly to reducing lifecycle emissions from concrete structures by substituting conventional Portland cement with geopolymer and aluminate alternatives. Moreover, Marie’s mentorship of graduate students ensures that this impact extends through a new generation of eco-conscious engineers. Through scholarly publications, cross-disciplinary research projects, and leadership in technical networks, the contributions continue to shape research trajectories, industrial protocols, and sustainability standards across Europe and beyond.

đŸ§± LEGACY AND FUTURE CONTRIBUTIONS

Marie Giroudon’s legacy lies in pioneering eco-durability within civil engineering and creating a research foundation that combines chemical resilience, microbial science, and materials engineering. The emerging expertise in micromechanical analysis and nanoindentation of cementitious composites paves the way for future breakthroughs in infrastructure diagnostics. Current recruitment for PhD and postdoctoral positions under Marie’s guidance signals a growing research lab ecosystem focused on innovative materials in leaching and bio-reactive environments. With active roles in scientific communities, the next decade is poised to see deeper exploration into LC3-type low-carbon materials, resistance modeling under multiaxial stress conditions, and long-term simulations of degradation pathways. Furthermore, the integration of sustainability into structural engineering curricula ensures lasting academic influence. With a track record of practical, publication-driven, and collaborative research, Marie’s future contributions will likely redefine durability standards for green buildings and bio-infrastructure, thereby reinforcing global efforts toward resilient, sustainable urban and rural development through advanced material science.

NOTABLE PUBLICATIONS

Title: Comparison of barley and lavender straws as bioaggregates in earth bricks
Authors: M. Giroudon, A. Laborel-Préneron, J.E. Aubert, C. Magniont
Journal: Construction and Building Materials, Vol. 202, pp. 254–265 (2019)

Title: Blast-furnace slag cement and metakaolin based geopolymer as construction materials for liquid anaerobic digestion structures: Interactions and biodeterioration mechanisms
Authors: M. Giroudon, M.P. Lavigne, C. Patapy, A. Bertron
Journal: Science of The Total Environment, Vol. 750, Article 141518 (2021)

Title: Cementitious materials in biogas systems: Biodeterioration mechanisms and kinetics in CEM I and CAC based materials
Authors: C. Voegel, M. Giroudon, A. Bertron, C. Patapy, P.L. Matthieu, T. Verdier, ...
Journal: Cement and Concrete Research, Vol. 124, Article 105815 (2019)

Title: Experimental assessment of bio-based earth bricks durability
Authors: A. Laborel-Préneron, M. Giroudon, J.E. Aubert, C. Magniont, P. Faria
Journal: IOP Conference Series: Materials Science and Engineering, Vol. 660 (1), Article 012069 (2019)

Title: Potential of low carbon materials facing biodeterioration in concrete biogas structures
Authors: M. Giroudon, C. Patapy, M. Peyre Lavigne, M. Andriamiandroso, R. Cartier, ...
Journal: Materials and Structures, Vol. 56 (4), Article 80 (2023)

Title: Insights into the local interaction mechanisms between fermenting broken maize and various binder materials for anaerobic digester structures
Authors: M. Giroudon, C. Perez, M.P. Lavigne, B. Erable, C. Lors, C. Patapy, A. Bertron
Journal: Journal of Environmental Management, Vol. 300, Article 113735 (2021)

Qiu Jun – Environmental Engineering – Outstanding Scientist Award

Qiu Jun - Environmental Engineering - Outstanding Scientist Award

Beijing Normal University - China

AUTHOR PROFILE

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ORCID

SUMMARY

Qiu Jun is a renowned expert in atmospheric water resource technology, microscale fluid-solid interaction mechanics, and engineering design. A consistent contributor to water sciences and hydrology, the research spans multiple domains, including energy-water systems and environmental sustainability. Roles in academia and national laboratories emphasize a dedication to scientific advancement, innovation, and interdisciplinary collaboration. The focus lies in solving practical water and environmental challenges using advanced simulation, modeling, and field experimentation. With a series of high-impact publications and international collaborations, Qiu Jun's contributions are pivotal in bridging aerospace engineering principles with water science to address global resource challenges.

EDUCATION

Education began with a Bachelor of Science degree from the School of Aerospace, Tsinghua University, Beijing. This was followed by a Master’s and Ph.D. from the same institution, deepening expertise in engineering and applied sciences. Further academic enrichment came through a visiting scholar program at Columbia University in the Department of Biomedical Engineering. Postdoctoral research continued at Tsinghua University, focusing on applied hydrology and mechanics. The educational background combines aerospace, hydrology, and biomedical research, equipping Qiu Jun with a unique interdisciplinary foundation ideal for tackling modern challenges in water resource management and environmental engineering.

PROFESSIONAL EXPERIENCE

Professional trajectory includes roles from Postdoctoral Research Fellow to Assistant Professor at Tsinghua University. Later held research fellow positions in the Department of Hydraulic and Hydrology, culminating in appointment as Distinguished Research Fellow at Qinghai University’s State Key Laboratory. Currently serving as Professor at Beijing Normal University's College of Water Sciences. Experience reflects a steady progression through prestigious institutions, emphasizing innovation in water systems, experimental hydrology, and resource optimization. Work includes leadership in major national and institutional research programs, with responsibilities in academic mentorship, experimental platform development, and policy-informing environmental studies.

RESEARCH INTEREST

Core interests include atmospheric water harvesting, gravity energy storage systems, climate-influenced hydrological cycles, reservoir management, and fluid mechanics at the microscale. Research integrates physical experimentation with advanced modeling to enhance water resource reliability and sustainable energy applications. Special attention is given to ecological water demand, fog elimination, and climate-induced precipitation patterns. Studies frequently address the Qinghai-Tibet Plateau, emphasizing regional hydrological behavior and its global implications. Optimization techniques, including particle swarm algorithms, are applied across image processing and water systems. This multidisciplinary approach enables the design of practical and theoretical frameworks to tackle pressing environmental and energy challenges.

AWARD AND HONOR

Recognition stems from significant publications, international collaborations, and national-level appointments. Invitations to contribute as corresponding author on numerous peer-reviewed journals highlight leadership within the field. Notable appointments at Tsinghua University and Beijing Normal University reflect academic and institutional recognition. Participation in interdisciplinary research projects across China and abroad demonstrates trust in scientific competence and leadership. Although formal awards are not listed, distinguished titles and appointments serve as evidence of professional acknowledgment. Positions in leading water science centers and engineering departments reinforce continued contributions to scientific excellence and environmental solutions in academia and applied science.

RESEARCH SKILL

Possesses advanced skills in experimental system design, atmospheric water collection techniques, hydrological modeling, MATLAB GUI programming, image inpainting using PSO algorithms, and climate variability analysis. Well-versed in integrating environmental data with simulation software and optimization tools to enhance decision-making in reservoir and water system management. Additional competencies include acoustic fog elimination, ecological forecasting, and data-driven zoning of precipitation regimes. Research frequently applies computational fluid dynamics, laboratory-scale validation, and long-term environmental monitoring. The integration of engineering methods with climate science underlines a systems-level research skillset suited for applied environmental and hydrological studies.

CONCLUSION

Work exemplifies the fusion of aerospace engineering, environmental science, and water resource management. With strong academic roots and wide-ranging applications, research addresses urgent global challenges such as water scarcity, climate variability, and energy sustainability. Contributions span foundational theory, applied experimentation, and policy-relevant insights. Engagement across major Chinese universities and global institutions underscores influence and reach. From designing fog elimination systems to optimizing reservoir operations, the approach remains comprehensive, forward-thinking, and multidisciplinary. Through high-level appointments, impactful publications, and continuous research, Qiu Jun emerges as a key figure in advancing scientific solutions for sustainable resource management.

Ahmad Suliman – Environmental Engineering – Best Researcher Award

Ahmad Suliman - Environmental Engineering - Best Researcher Award

National Research Centre - Egypt

AUTHOR PROFILE

SCOPUS

ORCID

📚 SUMMARY 

Dr. Ahmad A. M. Elsagheer Suliman is a dedicated horticultural researcher, educator, and leader in sustainable agriculture. His mission revolves around combining traditional knowledge with modern technology to combat global agricultural challenges. Through research, collaboration, and advocacy, he contributes to the development of environmentally sustainable food systems, ensuring better productivity and nutritional quality for future generations.

🎓 EARLY ACADEMIC PURSUITS

Dr. Ahmad A. M. Elsagheer Suliman embarked on his academic path with a Bachelor’s degree in Agricultural Sciences from Al-Azhar University, achieving high distinction. Motivated by a passion for horticulture and plant sciences, he pursued a Master’s in Vegetable Crops at Cairo University, followed by a Ph.D. in the same field from Kazan State Agrarian University in Russia. His doctoral focus on vegetable physiology and climate change adaptation underscored his early interest in sustainable crop production. Dr. Suliman also obtained a mini-MBA from the American University of Science and Technology, demonstrating his commitment to interdisciplinary growth and leadership training. His early academic background formed a solid foundation for a career dedicated to agricultural innovation and research excellence.

🧑‍🔬 PROFESSIONAL ENDEAVORS

Dr. Suliman began his career as an Agricultural Engineer before joining the National Research Centre (NRC) in Egypt. He ascended through research roles to become a full researcher in the Horticultural Crops Technology Department. Over the years, he has also held managerial and leadership roles, including Vice President of the Moringa Plant Production Unit and Inspector at the Food Safety and Inspection Administration. His contributions extend beyond research into public health and education, where he has played a key role in promoting awareness of climate change and plant nutrition. His professional activities reflect a blend of scientific inquiry and service, aimed at improving agricultural systems and food quality in Egypt and beyond.

🔬 CONTRIBUTIONS AND RESEARCH FOCUS

Dr. Suliman’s research is deeply rooted in vegetable crop physiology, with particular expertise in tomatoes and moringa. His studies explore the use of bio-nanoparticles, plant hormones, and organic fertilizers to improve crop yield and resilience against climate stressors. A strong advocate of digital agriculture, he has developed methods for measuring leaf area index and has contributed significantly to sustainable farming techniques. His recent work on nanoparticle applications in plant growth and natural fertilizer production illustrates his pioneering approach to modern agronomy. His involvement in national projects to enhance seed quality and adapt crops to salinity further exemplifies his commitment to food security and agricultural sustainability.

🏅 ACCOLADES AND RECOGNITION

Throughout his career, Dr. Suliman has received widespread recognition for his scholarly and practical achievements. His work has earned him international language and research certifications, including IELTS and Russian language proficiency. He has also completed over 20 certified training programs ranging from scientific writing and digital transformation to chemical safety and business management. His extensive list of peer-reviewed publications in high-impact journals—such as Horticulturae, Scientific Reports, and Agronomy—attest to his scientific rigor and innovation. He is widely respected within Egypt’s research community and often represents the NRC in international conferences and workshops.

🌍 IMPACT AND INFLUENCE

Dr. Suliman’s impact spans academic, governmental, and societal domains. He has contributed to agricultural policy and research projects that aim to improve vegetable seed quality and address food insecurity through Moringa cultivation. His collaborative research with national and international partners has brought attention to the value of eco-friendly fertilizers, drought tolerance, and bioactive plant compounds. As a mentor and educator, he promotes knowledge transfer by supervising graduate students and leading public awareness initiatives. His influence is also evident in his role in organizing scientific symposia on topics such as climate change and food sustainability.

🔼 LEGACY AND FUTURE CONTRIBUTIONS

Looking ahead, Dr. Suliman aspires to further bridge agricultural biotechnology and environmental resilience. He is committed to expanding the use of Moringa-based biofertilizers and advancing nanotechnology in crop enhancement. His future vision includes the integration of AI and digital monitoring systems into horticulture for smarter farming solutions. Through sustained research, policy input, and education, Dr. Suliman seeks to leave a legacy of innovation that strengthens global food systems and supports climate adaptation strategies for developing nations.

NOTABLE PUBLICATION

Ovario-protective effect of Moringa oleifera leaf extract against cyclophosphamide-induced oxidative ovarian damage and reproductive dysfunction in female rats
Authors: Soliman, S.S. (Seham S.), Suliman, A.A. (Ahmad A.), Fathy, K. (Khaled), Sedik, A.A. (Ahmed A.)
Journal: Scientific Reports, 2025

Production of secondary metabolites in callus cultures of Scutellaria baicalensis L. and assessment of their anti-inflammatory and antioxidant efficacy in ulcerative colitis rats
Authors: Abdelazeez, W.M.A. (Walla Mohamed Abdelmaksood), Aboueldis, G.R. (Gamil R.), Suliman, A.A. (Ahmad A.), Mohammed, D.M. (Dina Mostafa)
Journal: Plant Cell, Tissue and Organ Culture, 2025

Yuhang Huang – Environmental Engineering – Best Researcher Award

Yuhang Huang - Environmental Engineering - Best Researcher Award

Hunan University - China

AUTHOR PROFILE

GOOGLE SCHOLAR

🎓SUMMARY

Yuhang Huang is a promising young researcher from China and a current master’s degree candidate at Hunan University, majoring in Mechanical Engineering. His academic journey is driven by a deep interest in wave energy harvesting—a field combining principles of mechanical design, fluid dynamics, and energy sustainability. Known for his diligence, leadership, and academic excellence, he has already co-authored impactful publications in top-tier journals. Huang has consistently displayed initiative by serving as class president and taking active roles in academic coordination. His future ambitions lie in advancing ocean-based renewable energy systems that address environmental and engineering challenges in marine applications. With a growing research profile and a strong educational foundation, he aims to contribute meaningfully to the global energy transition.

🎓 EDUCATION AND FOUNDATION

Yuhang Huang's educational foundation was built at Hunan University, where he majored in Mechanical Engineering. His coursework has covered diverse technical areas, including fluid mechanics, mechanical manufacturing technology, microcomputer principles, and mechatronic systems. Through hands-on projects and collaborative research, he developed an understanding of system modeling and energy conversion. He demonstrated strong academic performance throughout his undergraduate and postgraduate studies and participated actively in organizing student-centered events. This technical and interpersonal training has positioned him as a capable researcher with the ability to integrate theory into real-world applications. His education has nurtured a balanced skill set, preparing him for advanced research and collaborative innovation in mechanical energy systems.

đŸ§‘â€đŸ’Œ WORK AND LEADERSHIP EXPERIENCE

Throughout his academic career, Huang has been actively involved in student leadership. From his undergraduate years, where he organized campus and academic events, to his graduate studies, where he serves as class president, he has shown a consistent dedication to team building and academic coordination. He has assisted peers in academic planning and acted as a bridge between students and faculty. Beyond administrative contributions, his leadership has strengthened research groups and promoted collaborative efficiency in experimental settings. These experiences have refined his organizational and interpersonal skills, further enhancing his readiness for multidisciplinary research environments. His ability to combine technical research with leadership roles marks him as a well-rounded future scientist and team contributor.

🌊 RESEARCH INTERESTS AND FOCUS

Yuhang Huang is deeply engaged in research related to ocean wave energy harvesting, particularly in bistable and nonlinear mechanical systems. His focus includes the development of energy harvesting devices for marine buoys and unmanned surface vessels. This work involves using mechanical dynamics to capture kinetic energy from waves and convert it into usable electricity. His designs emphasize compactness, efficiency, and adaptability in harsh marine conditions. His published articles in journals like Journal of Cleaner Production and Renewable Energy showcase innovative methods in sustainable marine power generation. With a keen eye on practical implementation, his work bridges academic theory and environmental engineering for real-world energy solutions.

🏅 HONORS AND ACHIEVEMENTS

Huang’s academic journey has been recognized with numerous honors for his leadership and scholarly contributions. Throughout both undergraduate and postgraduate stages, he maintained an exceptional academic record while actively supporting peer learning. His leadership as a class president and member of the academic committee helped improve class cohesion and academic performance. His involvement in extracurricular and technical communities demonstrates his broad engagement with campus life. Notably, his role in high-impact research publications as a co-author also reflects his growing credibility in academic circles. These achievements indicate a commitment not only to scientific rigor but also to collaborative learning and academic service.

🧠 SKILLS AND TECHNICAL STRENGTH

Yuhang Huang's research skills span across mechanical system modeling, nonlinear vibration analysis, and device optimization. His technical expertise includes hands-on system design, experimental mechanics, and interface control in energy harvesting systems. He is proficient in applying theoretical mechanics and system simulation tools to real-world mechanical problems. His language proficiency in English also supports his academic communication, collaboration, and publication in international journals. His skill set supports a cross-disciplinary research style, allowing him to contribute meaningfully to projects at the intersection of mechanical engineering and renewable energy. These proficiencies position him for success in global research collaborations and further academic pursuit.

📚 PUBLICATIONS AND FUTURE OUTLOOK

Huang has co-authored notable publications including “Bistable built-in ocean wave energy harvester for ocean buoys” and “Nonlinear ocean energy harvesting method for unmanned surface vessels,” published in Journal of Cleaner Production and Renewable Energy. These works demonstrate his technical contributions to marine energy solutions. Looking ahead, he aspires to enhance system intelligence through AI-assisted control and adaptive energy systems. His research vision includes scaling wave energy technologies to support autonomous marine operations and coastal monitoring. By continuing to innovate in mechanical energy harvesting, he aims to contribute to sustainable technologies that support environmental resilience and global energy needs.

NOTABLE PUBLICATION

Title: Diffusionedge: Diffusion probabilistic model for crisp edge detection
Authors: Y. Ye, K. Xu, Y. Huang, R. Yi, Z. Cai
Journal/Conference: Proceedings of the AAAI Conference on Artificial Intelligence, Vol. 38 (7), 2024

Title: Neural architecture search for joint human parsing and pose estimation
Authors: D. Zeng, Y. Huang, Q. Bao, J. Zhang, C. Su, W. Liu
Journal/Conference: Proceedings of the IEEE/CVF International Conference on Computer Vision, 2021

Title: Genre-conditioned long-term 3D dance generation driven by music
Authors: Y. Huang, J. Zhang, S. Liu, Q. Bao, D. Zeng, Z. Chen, W. Liu
Journal/Conference: ICASSP 2022 – IEEE International Conference on Acoustics, Speech and Signal Processing, 2022

Title: Diffmot: A real-time diffusion-based multiple object tracker with non-linear prediction
Authors: W. Lv, Y. Huang, N. Zhang, R.S. Lin, M. Han, D. Zeng
Journal/Conference: Proceedings of the IEEE/CVF Conference on Computer Vision and Pattern Recognition, 2024

Title: Caco: Both positive and negative samples are directly learnable via cooperative-adversarial contrastive learning
Authors: X. Wang, Y. Huang, D. Zeng, G.J. Qi
Journal/Conference: IEEE Transactions on Pattern Analysis and Machine Intelligence, Vol. 45 (9), 2023

Pankaj Kumar Das – Solid Waste Management – Excellence in Research

Pankaj Kumar Das - Solid Waste Management - Excellence in Research

NIT Agartala - India

AUTHOR PROFILE

GOOGLE SCHOLAR

🎓 ACADEMIC EXCELLENCE

Dr. Pankaj Kumar Das is a dedicated academic professional with a longstanding career in Mechanical Engineering. Currently serving as an Assistant Professor in the Department of Mechanical Engineering at the National Institute of Technology (NIT) Agartala, Dr. Das has been an integral part of the institution since March 2006. His academic journey is marked by a profound commitment to teaching and mentoring, having supervised 16 B.Tech and 14 M.Tech students, with two more M.Tech students under his guidance.

🔬 RESEARCH FOCUS

Dr. Das’s research is centered around the Tribological properties of materials, particularly focusing on Hard Nanocrystalline Diamond Films and Soft Turbostratic Graphite. His Ph.D. work, supervised by Dr. P. Chakraborti (NIT Agartala) and Dr. N. Kumar (IGCAR Kalpakkam), has contributed valuable insights into the field, leading to several publications in esteemed international journals. His research on phase transformation and low friction behavior in turbostratic graphite and diamond films has been widely recognized.

đŸ’» TECHNICAL PROFICIENCY

Dr. Das possesses a strong command of various technical skills essential for modern engineering research and practice. He is proficient in programming languages like AutoCAD Advanced Version, graphical packages such as Adobe Photoshop 5.0 and Origin 7-8, and operating systems including MS-DOS and Windows 9X, 2000. These skills enable him to effectively conduct and manage complex engineering projects and research work.

📚 PUBLICATIONS AND CONTRIBUTIONS

Dr. Das has made significant contributions to the field of tribology and materials science through his research publications. His work on high-temperature phase transformation and tribological studies has been published in reputable international journals such as the Journal of Physics: Applied Physics and Science of Advanced Materials. His research on ultrananocrystalline diamond films has also added to the understanding of superlubrication properties in engineering materials.

🏱 PROFESSIONAL EXPERIENCE

Dr. Das’s professional journey includes valuable industry experience as well as academic roles. Prior to his tenure at NIT Agartala, he served as a Faculty Associate at the Institute of Chartered Financial Analysts of India (ICFAI) University and as a Supervisor at Destini India Ltd, Gurgaon. His diverse experience has enriched his teaching and research, providing a practical perspective to his academic endeavors.

đŸ› ïž MANAGEMENT AND LEADERSHIP

In addition to his academic and research responsibilities, Dr. Das has held several important management roles at NIT Agartala. He has served as an Academic Coordinator (UG) from 2015-2017, Warden of the Boys’ Hostel from 2009-2012, and lab in-charge of both the Tribology Lab and Strength of Materials Lab. His involvement in the NIT Departmental Purchase Committee and Institute Inspection and Quality Control further demonstrates his leadership and organizational skills.

🌟 PROFESSIONAL OBJECTIVE AND PERSONALITY TRAITS

Dr. Das is driven by a professional objective to achieve excellence in his field through continuous learning and focused pursuit of goals. His commitment to work, adaptability, and problem-solving abilities make him a valuable asset to any organization. He is known for his teamwork, coordination, and persuasive skills, which contribute to creating a knowledge-rich and excellence-driven environment.

NOTABLE PUBLICATION

A Comprehensive Study on Prospects of Economy, Environment, and Efficiency of Palm Oil Biodiesel as a Renewable Fuel
Authors: S. Dey, N.M. Reang, P.K. Das, M. Deb
Journal: Journal of Cleaner Production
Year: 2021

Challenges and Opportunities of Utilizing Municipal Solid Waste as Alternative Building Materials for Sustainable Development Goals: A Review
Authors: A. Soni, P.K. Das, A.W. Hashmi, M. Yusuf, H. Kamyab, S. Chelliapan
Journal: Sustainable Chemistry and Pharmacy
Year: 2022

A Hybrid ANN-Fuzzy Approach for Optimization of Engine Operating Parameters of a CI Engine Fueled with Diesel-Palm Biodiesel-Ethanol Blend
Authors: S. Dey, N.M. Reang, A. Majumder, M. Deb, P.K. Das
Journal: Energy
Year: 2020

Comparative Study Using RSM and ANN Modelling for Performance-Emission Prediction of CI Engine Fuelled with Bio-Diesohol Blends: A Fuzzy Optimization Approach
Authors: S. Dey, N.M. Reang, P.K. Das, M. Deb
Journal: Fuel
Year: 2021

An Approach to Optimize the EDM Process Parameters Using Desirability-Based Multi-Objective PSO
Authors: A. Majumder, P.K. Das, A. Majumder, M. Debnath
Journal: Production & Manufacturing Research
Year: 2014

Nzalalemba Serge Kubanza – solid waste management – Best Researcher Award

Nzalalemba Serge Kubanza - solid waste management - Best Researcher Award

University of the Witwatersrand - South Africa

AUTHOR PROFILE

SCOPUS

CURRENT POSITIONS

Nzalalemba Serge Kubanza is a dedicated Lecturer at the School of Geography, Archaeology and Environmental Studies, University of the Witwatersrand, where he has been imparting knowledge since 2021. He also serves as the Postgraduate Coordinator for the School of Archaeology and Environmental Studies since 2023 and is a member of the Academic Misconduct and Plagiarism Committee at the same institution since 2022. His current roles highlight his commitment to both teaching and academic integrity in the field of geography and environmental studies.

RESEARCHER PROFILES

Kubanza maintains an active presence in the academic community through several researcher profiles. His ORCID ID (https://orcid.org/0000-0003-0039-4399), ResearchGate profile (https://www.researchgate.net/profile/Serge-Kubanza), and Google Scholar (https://scholar.google.co.za/citations?user=3WGZTgkAAAAJ&hl=en) showcase his extensive research contributions and provide access to his published works and scholarly impact.

PREVIOUS POSITIONS

Before his current roles, Kubanza held various academic and research positions. He was a Sessional Lecturer at the School of Architecture and Planning, University of the Witwatersrand, from January to May 2024, and previously worked as a Researcher at the Global Change Institute at the same university from July 2019 to October 2021. He also has experience as a Part-time Lecturer at St Augustine College and as a Postdoctoral Research Fellow in the School of Geography, Archaeology and Environmental Studies, University of the Witwatersrand, from July 2017 to December 2019.

ACADEMIC PUBLICATIONS

Kubanza has authored and co-authored numerous impactful publications. His notable works include "Analysing the Challenges of Solid Waste Management in Low-Income Communities in South Africa" in the South African Geographical Journal and "Climate Change Risks in Southern Africa in the 21st Century" in Climate Risk Management Journal. His research addresses critical issues such as solid waste management and climate change governance.

RESEARCH FOCUS

Kubanza’s research is focused on pressing environmental and societal challenges. His work includes studying community perceptions on the impacts of solid waste management in Sub-Saharan African cities, exploring the role of local authorities and community participation in waste management, and investigating sustainable solid waste management practices in developing countries. These studies contribute significantly to understanding and improving environmental sustainability and governance.

KEY ACHIEVEMENTS

Throughout his career, Kubanza has made substantial contributions to the field of geography and environmental studies. His achievements include the successful publication of high-impact research articles and his role in various academic and research projects. His expertise and contributions are well-recognized within the academic community.

PROFESSIONAL IMPACT

Kubanza's professional journey reflects his deep commitment to environmental sustainability and academic excellence. From his roles in academia and research to his contributions through published work, his career demonstrates a strong focus on addressing critical environmental issues and advancing knowledge in the field.

NOTABLE PUBLICATION

Title: Exploring Wetland Change in the Gauteng Province, South Africa.

Authors: Mangoro, N., Kubanza, N.S., Simatele, M.D.
Year: 2024
Journal: Environmental Research


Title: Analysing the Challenges of Solid Waste Management in Low-Income Communities in South Africa: A Case Study of Alexandra, Johannesburg.

Authors: Kubanza, N.S.
Year: 2024
Journal: South African Geographical Journal


Title: A Delphi Assessment of Climate Change Risks in Southern Africa in the 21st Century

Authors: Scholes, R.J., Coetzer, K.L., Matsika, R., Simatele, M.D., Vogel, C.H.
Year: 2023
Journal: Climate Risk Management


Title: Community Perceptions on the Impacts of Solid Waste Management on Human Health and the Environment in Sub-Saharan African Cities: A Study of Diepsloot, Johannesburg, South Africa

Authors: Mangoro, N., Kubanza, N.S.
Year: 2023
Journal: Development Southern Africa
Volume: 40


Title: Exploring the Role of Local Authorities and Community Participation in Solid Waste Management in Sub-Saharan Africa: A Study of Alexandra, Johannesburg, South Africa

Authors: Serge Kubanza, N., Matsika, R., Magha, C.G.
Year: 2022
Journal: Local Environment
Volume: 27

Mostafa Mahinroosta – Solid Waste Management – Best Researcher Award

Mostafa Mahinroosta - Solid Waste Management - Best Researcher Award

Materials and Energy Research Center - Iran

AUTHOR PROFILE

Google Scholar

EARLY ACADEMIC PURSUITS

Mostafa Mahinroosta's academic journey began with a strong foundation in Chemical Engineering, culminating in a Ph.D. from the Iran University of Science and Technology. His research prowess was evident from his master's thesis, where he achieved outstanding scores and laid the groundwork for his future contributions.

PROFESSIONAL ENDEAVORS

Throughout his career, Mostafa has held various roles, including assistant professor at the Materials and Energy Research Center (MERC), CEO and co-founder of NAMI Advanced Materials Co., and positions in prestigious engineering firms. His diverse professional experiences have enriched his expertise in areas such as oil & gas process design, research consultancy, and executive leadership in nano-startups.

CONTRIBUTIONS AND RESEARCH FOCUS

Mostafa's research portfolio spans multiple disciplines, with a primary focus on Solid Waste Management, water and wastewater treatment, advanced nanomaterials, and hydrometallurgy. His innovative work in extracting and characterizing alumina-based nano-adsorbents from secondary aluminum dross showcases his dedication to sustainable materials development.

IMPACT AND INFLUENCE

Mostafa's research has garnered international recognition, positioning him as one of the world's top scientists. His contributions to Solid Waste Management and related fields have earned him prestigious awards and accolades, highlighting the significance of his work in addressing critical environmental challenges.

ACADEMIC CITES

Mostafa Mahinroosta's publications and research findings have been widely cited, underscoring their relevance and impact in the academic community. His studies on Solid Waste Management and advanced materials synthesis have contributed to the advancement of knowledge in these areas, shaping future research directions.

LEGACY AND FUTURE CONTRIBUTIONS

As Mostafa continues his academic and professional journey, he remains committed to pioneering solutions in Solid Waste Management and related fields. Through his mentorship of students and ongoing research endeavors, he seeks to leave a lasting legacy of innovation and sustainability in the realm of chemical engineering and environmental science.

NOTABLE PUBLICATION

Hydrogels as intelligent materials: A brief review of synthesis, properties, and applications 2018 (538)

Hazardous aluminum dross characterization and recycling strategies: A critical review 2018 (540)

A promising green process for synthesis of high purity activated-alumina nanopowder from secondary aluminum dross 2018 (105)

Mechanical activation of chemically activated high phosphorous slag content cement 2013 (87)

Enhanced alumina recovery from secondary aluminum dross for high purity nanostructured Îł-alumina powder production: Kinetic study 2018 (83)

Taciana da Costa Queiroz – Solid Waste Management – Sustainable Infrastructure Innovation Award

Master of Science in Marine and Coastal Biodiversity and Ecology - Brazil

AUTHOR PROFILE

ORCID

EARLY ACADEMIC PURSUITS

Taciana da Costa Queiroz pursued a diverse academic path, culminating in a Bachelor's in Environmental and Sanitary Engineering from Wyden Area 1. She then pursued dual Master of Science degrees, one in Marine and Coastal Biodiversity and Ecology from UNIFESP and the other in Environment, Water, and Sanitation from UFBA, showcasing her commitment to interdisciplinary studies in environmental sciences.

PROFESSIONAL ENDEAVORS

Queiroz's professional journey is marked by her involvement in a variety of research projects and teaching experiences. From investigating the impact of mollusc shells on marine substrates to evaluating solid waste management strategies, she has demonstrated a dedication to addressing pressing environmental challenges through research and education.

CONTRIBUTIONS AND RESEARCH FOCUS

Queiroz's research focuses on diverse environmental topics such as artificial reefs, waste management, water treatment, and coastal ecosystems. Through her projects, she has contributed valuable insights into the interaction between human activities and the environment, aiming to promote sustainable practices and conservation efforts.

IMPACT AND INFLUENCE

Queiroz's work has had a significant impact on both academic knowledge and practical applications in the field of environmental engineering. Her research findings and teaching experiences have influenced individuals, communities, and organizations, fostering a deeper understanding of environmental issues and promoting proactive solutions.

ACADEMIC CITES

Queiroz's research publications and presentations have been recognized and cited in academic circles, highlighting the relevance and quality of her contributions to the field. Her work has contributed to advancing knowledge in areas such as artificial reefs, solid waste management, and water treatment, shaping discourse and inspiring further research endeavors.

LEGACY AND FUTURE CONTRIBUTIONS

Taciana da Costa Queiroz's legacy lies in her multifaceted approach to addressing environmental challenges, combining research, education, and practical initiatives. As she continues her academic and professional journey, her commitment to promoting sustainability and environmental stewardship is poised to make a lasting impact on society and the environment.

NOTABLE PUBLICATION

Does the incorporation of shell waste from aquaculture in the construction of marine facilities affect the structure of the marine sessile community? 2024